Construction method Product List and Ranking from 1589 Manufacturers, Suppliers and Companies | IPROS

Last Updated: Aggregation Period:Mar 11, 2026~Apr 07, 2026
This ranking is based on the number of page views on our site.

Construction method Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Mar 11, 2026~Apr 07, 2026
This ranking is based on the number of page views on our site.

  1. TRAWE main office Saitama//Other construction industries
  2. Taiyo Kisokogyo Co.,Ltd. Aichi//General contractors and subcontractors
  3. null/null
  4. 4 シーカ・ジャパン Tokyo//Building materials, supplies and fixtures manufacturers
  5. 5 エルニード協会 Kagawa//Other construction industries

Construction method Product ranking

Last Updated: Aggregation Period:Mar 11, 2026~Apr 07, 2026
This ranking is based on the number of page views on our site.

  1. 建物外壁工事 ロープアクセス工法 TRAWE main office
  2. Hybrid Concrete Reinforcement Method "Solid Remain Alpha"
  3. Install the valve without stopping the water! 'EM Continuous Water Valve Method' 水研
  4. 4 Reinforcement of existing beam after hole cutting: "Redouble Method" コンステック
  5. 5 Lining Method for Sewer Facilities "Plascoat E/L" 中外商工

Construction method Product List

901~930 item / All 4275 items

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T-BAGS Vibration Reduction Method 'Post-Construction Vibration Measurement'

Vibration measurement after the implementation of vibration reduction methods. Results of maximum acceleration measurements under the elevated track are presented.

The T-BAGS vibration reduction method "Post-Construction Vibration Measurement" is a catalog that includes information on the construction locations of the T-BAGS vibration reduction method, measurement sites, measurement details, and measurement results. In all locations, both horizontal and vertical maximum accelerations were reduced. 【Measurement Locations】 ○ Under the JR San'in Main Line elevated section ○ Under the Inbi Line elevated section ○ Top surface of the T-BAGS vibration reduction method construction floor For more details, please contact us or download the catalog.

  • Ground foundation construction method
  • Construction method

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[WIB Construction Method Case Study] Vibration Control in Precision Machining Factory

Designed and constructed WIB work directly beneath the newly built factory! A case where the environment became suitable for the normal operation of precision machining equipment.

At Maetani Architectural Office located in Osaka Prefecture, vibrations from demolition and transportation activities of a nearby metal recycling company were affecting the operation of precision machining equipment. Therefore, during the expansion of the factory, the 'WIB method' was adopted as a vibration countermeasure, and a design targeting micro-vibrations was implemented. We investigated the impact of vibrations on the existing factory's precision machining equipment and based on this data, designed and constructed directly beneath the new factory. As a result, resonant vibrations in the range of 10 to 16 Hz were reduced by 6 to 14 dB (to 1/5 to 1/2 of the original vibrations), creating an environment suitable for the normal operation of precision machining equipment. 【Case Overview】 ■ Construction Location: Osaka Prefecture ■ Client: Maetani Architectural Office Co., Ltd. ■ Vibration Source: Demolition work vibrations ■ Preservation Target: Precision machining factory ■ Countermeasure Method: Plate-type WIB method (honeycomb cell type) ■ Construction Position: Directly beneath the receiving side *For more details, please refer to the PDF document or feel free to contact us.

  • Ground foundation construction method
  • Ground improvement
  • Ground improvement materials
  • Construction method

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[WIB Construction Method Case Study] Road Traffic Vibration Countermeasures for Medical Facilities

Achieved a reduction of 6 to 10 dB in outstanding vibrations, meeting the vibration reduction target! Construction case of the plate-type WIB (honeycomb cell type).

At Mitsui Home in Chiba Prefecture, there were concerns about the impact of vibrations on work within a medical facility being constructed along a road frequently used by large vehicles. To address this, the 'WIB method' was implemented directly beneath the medical facility and the adjacent pharmacy. Using evaluation criteria for micro-vibrations aimed at precision equipment, a vibration reduction target was set. As a result, dominant vibrations in the 10-20Hz range were reduced by 6-10dB, achieving the vibration reduction target. [Case Summary] - Construction Location: Chiba Prefecture - Client: Mitsui Home Co., Ltd. - Vibration Source: Road traffic vibrations - Preservation Target: Medical facility - Countermeasure: Plate-type WIB method (honeycomb cell type) - Construction Position: Directly beneath the receiving side *For more details, please refer to the PDF document or feel free to contact us.

  • Ground foundation construction method
  • Ground improvement
  • Ground improvement materials
  • Construction method

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【WIB Method Construction Case】Vibration Control at Construction Sites

Compare the vibration levels of areas without countermeasures and areas with WIB countermeasures! Confirmed a reduction of more than 6dB in both horizontal and vertical directions.

At Daiho Construction in Fukushima Prefecture, there were concerns about the impact of construction vibrations from the government building on surrounding residences. In response, the 'WIB method' was implemented around the government building. After the measures were taken, vibration measurements were conducted to investigate the impact of construction work on the surrounding area. A comparison of vibration levels between untreated areas and those treated with the WIB method showed a reduction of over 6dB in both horizontal and vertical directions. The vibrations were halved. 【Case Overview】 ■ Location: Fukushima Prefecture ■ Client: Daiho Construction Co., Ltd. ■ Vibration Source: Construction work vibrations ■ Preservation Target: Residences around the government building ■ Countermeasure: Wall-type WIB method (screen type) ■ Installation Position: Vibration propagation path *For more details, please refer to the PDF document or feel free to contact us.

  • Ground foundation construction method
  • Ground improvement
  • Ground improvement materials
  • Construction method

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[WIB Construction Method Case Study] Vibration Control in Steel Manufacturing Plant

In the reconstruction of the cafeteria building, measures were implemented directly beneath the structure! A case was confirmed where vibration reduction of 8 to 11 dB was achieved.

At Ishiguro Construction in Toyama Prefecture, road traffic vibrations from the surrounding roads of the steel manufacturing facility and operational vibrations from the truck scale within the facility were propagating to the cafeteria building on the same site, causing vibration issues. Therefore, during the reconstruction of the cafeteria building, the 'WIB method' was implemented directly beneath the building. Vibration measurements conducted before and after the countermeasures confirmed that vertical vibrations within the cafeteria building were reduced by 8 to 11 dB. [Case Summary] ■ Location: Toyama Prefecture ■ Client: Ishiguro Construction Co., Ltd. ■ Vibration Sources: Road traffic vibrations, operational vibrations within the facility ■ Protected Target: Cafeteria building within the steel manufacturing facility ■ Countermeasure Work: Plate-type WIB (honeycomb cell type) ■ Installation Position: Directly beneath the receiving side *For more details, please refer to the PDF document or feel free to contact us.

  • Ground foundation construction method
  • Ground improvement
  • Ground improvement materials
  • Construction method

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Contributing to vibration, liquefaction, and differential settlement measures! WIB method [Helpful materials provided]

Can be used for residential areas, facilities, and roads! Enhances the bearing capacity of weak ground and prevents building settlement and liquefaction.

The "WIB method" is a ground vibration mitigation technique that constructs a rigid plate-like or wall-like cellular structure (WIB structure) at the required depth underground using ground improvement piles. This method reduces environmental vibrations from road traffic, railways, construction work, factories, events, and seismic forces on structures during earthquakes. It consists of a replacement soil (vibration isolation layer) that suppresses and blocks the propagation of ground vibration waves, and a cellular structure (damping layer) that absorbs and blocks vibrations. The combined effects of vibration isolation and damping achieve the target vibration reduction. Additionally, it simultaneously exhibits the effects of "vibration mitigation" (improving vibration environments and reducing seismic motion), "liquefaction countermeasures," and "uneven settlement countermeasures," thereby keeping the overall ground improvement costs low. 【Features】 ■ Usable for residential areas, facilities, and roads ■ Reduces seismic forces on structures during earthquakes ■ Enhances the bearing capacity of soft ground, preventing building settlement and liquefaction ■ Keeps overall ground improvement costs low *For more details, please refer to the PDF materials or feel free to contact us.

  • Ground foundation construction method
  • Ground improvement
  • Ground improvement materials
  • Construction method

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[WIB Construction Method Case Study] Traffic Vibration Mitigation for Existing Roads

Confirmed an average vibration reduction of 7dB and a maximum of 13dB at vibration level Lmax! Comfort has been improved!

In Kanagawa Prefecture, traffic vibrations caused by large vehicles passing through the roads have been affecting the living environment along the routes, leading to complaints from residents. As a response, road renovation work was carried out, and the 'WIB method' was implemented directly beneath the road. Vibration measurements were conducted before and after the countermeasures. When comparing the vibrations at the boundary between public and private properties of four residential buildings along the road before and after the measures, an average reduction of 7 dB and a maximum reduction of 13 dB in the vertical vibration level Lmax was confirmed, resulting in improved livability. [Case Summary] ■ Location: Kanagawa Prefecture ■ Vibration Source: Road traffic vibrations ■ Preservation Target: Several residential buildings along the road ■ Countermeasure Method: Plate-type WIB (honeycomb cell type) ■ Installation Position: Directly beneath the vibration source *For more details, please refer to the PDF document or feel free to contact us.

  • Ground foundation construction method
  • Ground improvement
  • Ground improvement materials
  • Construction method

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[WIB Construction Method Case Study] Road Traffic Vibration Mitigation for Detached Houses Near a Logistics Center

The results showed a damping effect that exceeded expectations! It has become a foundation that can be comfortably and safely lived on in the future!

The detached houses in Okayama Prefecture are close to a logistics center, and the front road sees a large number of heavy vehicles passing frequently 24 hours a day, raising concerns that these traffic vibrations could affect the living environment of the newly built houses. The 'WIB method' was implemented directly beneath the detached houses. This achieved an average vibration reduction of 5dB (about 55% of the original vibration), resulting in a reduction effect that exceeded expectations within a limited budget. Additionally, the front road is planned to be widened in the future, and its impact has been considered from this stage, ensuring that the ground remains comfortable and safe for living in the future. [Case Overview] ■ Location: Okayama Prefecture ■ Client: Sanyu Soil Engineering Co., Ltd. ■ Vibration Source: Road traffic vibrations ■ Preservation Target: Detached houses near the logistics center ■ Countermeasure: Plate-type WIB method (honeycomb cell type) ■ Installation Position: Directly beneath the receiving side *For more details, please refer to the PDF document or feel free to contact us.

  • Ground foundation construction method
  • Ground improvement
  • Ground improvement materials
  • Construction method

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[WIB Construction Method Case Study] Railway Vibration Countermeasures for Residential Areas Along Railways H29.2-3

Keep the vibration level below 60dB! To ensure greater vibration reduction, measures will be implemented directly beneath unused land!

A portion of a residential development site in Saitama Prefecture faces a railway, raising concerns about the impact on the living environment after the construction of homes. Therefore, the "WIB method" was implemented directly beneath the residences. Additionally, to ensure greater vibration reduction, countermeasures were also installed directly beneath the unused land. Vibration measurements were conducted before and after the countermeasures, resulting in a reduction of dominant vibrations in the 10-20Hz range by 10-14dB (to 1/5 to 1/3 of the original vibrations), keeping the vibration level below 60dB. [Case Overview] ■ Location: Saitama Prefecture ■ Client: Housing manufacturer ■ Vibration source: Railway vibrations ■ Preservation target: Residential buildings along the railway (a total of 4 buildings + unused land) ■ Countermeasures: Plate-type WIB method (directly beneath residences) and wall-type WIB method (directly beneath unused land) honeycomb cell type ■ Installation position: Directly beneath the receiving side (beneath residences) and along the propagation path (beneath unused land) *For more details, please refer to the PDF document or feel free to contact us.

  • Ground foundation construction method
  • Ground improvement
  • Ground improvement materials
  • Construction method

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[WIB Construction Method Case Study] Railway Vibration Mitigation in Residential Development

Evaluate the vibration levels for each type of train! Confirmed an average reduction of 6dB in the horizontal direction and 5dB in the vertical direction!

Vibrations from trains passing near the residential development site in Kanagawa Prefecture (currently Fujisawa SST) raised concerns about their impact on the living environment after the construction of the houses. In response, the 'WIB method' was implemented directly beneath each house. Vibration measurements on the ground were conducted before and after the countermeasures. When evaluating the vibration levels for each type of train, an average reduction of 6 dB in the horizontal direction and 5 dB in the vertical direction was confirmed. [Case Overview] ■ Location: Kanagawa Prefecture ■ Client: Ando & Associates Co., Ltd. ■ Vibration Source: Railway vibrations ■ Preservation Target: Residential houses along the railway (total of 11 buildings) ■ Countermeasure Work: Plate-type WIB method (honeycomb cell type) ■ Construction Position: Directly beneath the receiving side *For more details, please refer to the PDF document or feel free to contact us.

  • Ground foundation construction method
  • Ground improvement
  • Ground improvement materials
  • Construction method

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[WIB Construction Method Case Study] Railway Vibration Countermeasures for Residential Areas Along Railways, July 2014, Tokyo

Confirmed a vibration reduction of 4 to 5 dB! An example of measures taken directly beneath a house during its reconstruction!

In residential areas of Tokyo, vertical vibrations caused by passing trains were affecting the living environment. Therefore, during the reconstruction of the housing, the 'WIB method' was implemented directly beneath the residences. Vibration measurements on the ground were conducted before and after the countermeasures. As a result, a reduction of 4 to 5 dB was confirmed. 【Case Summary】 ■ Location: Tokyo ■ Client: Mitsui Home Co., Ltd. ■ Vibration Source: Railway vibration ■ Preservation Target: Houses along the railway ■ Countermeasure Method: Plate-type WIB (honeycomb cell type) ■ Installation Position: Directly beneath the receiving side *For more details, please refer to the PDF document or feel free to contact us.

  • Ground foundation construction method
  • Ground improvement
  • Ground improvement materials
  • Construction method

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LED construction light (Flash One)

Achieves high visibility with up to 10 LEDs!

Powerful flashing light for installation on traffic cones Easy installation by simply inserting it into the traffic cone Switch to change the flashing mode with just one button

  • Floodlight
  • Safety Supplies
  • Construction method

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Bottom Expansion Type Mechanical Fixing Anchor 'DG Anchor'

Confirmation of construction status is possible! Anchors that can be easily installed with an impact driver.

The "DG Anchor" is an anchor that can be easily installed using an impact driver. No matter who performs the work, there is no difference in pull-out strength. We offer options such as "M-10" with a hole diameter of 14.5mm and a pull-out strength of over 2t, and "M-12" with a hole diameter of 18.0mm and a pull-out strength of over 3t. 【Features】 ■ No difference in pull-out strength regardless of who performs the work ■ Easy to install using an impact driver ■ Pull-out strength of M-10 [over 2t], M-12 [over 3t] ■ Expansion work at the bottom of the hole takes M-10 [10 seconds], M-12 [12 seconds] ■ Ability to check the construction conditions *For more details, please refer to the PDF document or feel free to contact us.

  • Other fittings
  • Work tools
  • Construction method

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Resin column formation pinning method "FS Column Method"

Supports all types of stone paving (dry, dango, wet color)! Even in a 50mm space, resin columns can be formed.

The "FS Column Construction Method" is a resin column formation pinning method that accommodates all types of stone paving (dry, dango, wet color) construction. It allows for resin injection into voids using a movable injection nozzle, enabling the formation of resin columns even in spaces as small as 50mm. By using large neck pins in combination, it ensures fixed strength, and since the stone slabs and the structure are integrated with resin, it exhibits excellent seismic resistance. 【Features】 ■ Compatible with all types of stone paving (dry, dango, wet color) construction ■ Capable of forming resin columns even in spaces as small as 50mm ■ Ensures fixed strength through the use of large neck pins ■ Excellent seismic resistance due to the integration of stone slabs and the structure with resin ■ All threaded pins are coated with resin to prevent rust *For more details, please refer to the PDF materials or feel free to contact us.

  • Special Construction Method
  • Construction method

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Achieving strength recovery and durability improvement of concrete structures! 'IPH Method'

High-density filling with ultra-low pressure injection even for fine cracks of 0.01 mm. Significant reduction in construction time and cost compared to conventional methods is possible! *2020 version of the construction case study collection published.

The conventional concrete repair method known as "low-pressure resin injection" often fails to reach the internal structure of the concrete due to the obstruction of air inside. In contrast, the concrete repair and reinforcement method "IPH method" allows the injected resin to diffuse radially within the concrete while removing the air present inside the structure, effectively filling even the finest cracks at the ends. This filling enhances the bond strength between the rebar and concrete, providing anti-corrosion effects as well. Recently, there have been many successful applications in public works projects such as tunnels and bridges, and inquiries from private large facilities and factories have significantly increased in recent years! ~ We are currently offering the latest construction case collection for download as a PDF! ~ 【Features of the IPH Method】 ■ Extracts air from inside the cracks and releases it outside ■ Achieves high-density filling through ultra-low-pressure injection ■ Restores and enhances the strength of the internal structure ■ By filling voids, it provides water-stopping, anti-corrosion effects, neutralization suppression, and salt damage countermeasures ■ Can be performed without stopping facility usage * For more details, please refer to the PDF materials or feel free to contact us.

  • Renovation and repair methods
  • Construction method

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[Sample Distribution] Insulation Waterproof Repair Material for Factory Roofs 'Isotan System'

Short-term construction without stopping the factory! Repair materials for factory roofs that allow for insulation and waterproofing repairs at the same time [Safe slate repair method].

The "Isotan System" is an insulation, waterproofing, and repair material for factory roofs that can perform all three functions at once. It is easy to apply due to its high adhesion polyurethane foam, and because it uses a spray application method, it allows for seamless roof construction. Additionally, it is safe as it meets the specifications for fire resistance testing (for slate, corrugated panels, etc.). = Currently offering free samples to 30 lucky winners through a lottery! = 【Features】 ■ Safe ■ Insulation, waterproofing, and repair can be done simultaneously ■ Short construction period ■ Seamless roof construction possible due to the spray application method ■ Can be used in conjunction with existing energy-saving measures * For more details, please refer to the PDF document or feel free to contact us.

  • Reinforcement and repair materials
  • Construction method

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Rain Leak Prevention" Insulated Waterproof Repair Material for Factory Roofs "Isotan System

Renovate before leaks occur! Lightweight yet incredibly strong! Why not restore that old roof you had given up on? A polyurethane repair material that allows for insulation, waterproofing, and repairs all at once!

The "Isotan System" is an insulation, waterproofing, and repair material for factory roofs that can be applied all at once. With its revolutionary external insulation method, it can rejuvenate old roofs. It is compatible with any roof shape and can be used alongside existing energy-saving measures without the need to change factory equipment. < We are currently giving away free samples to 30 lucky winners! > 【Features】 ■ Strong against water, allowing for long-term insulation ■ Lightweight yet highly durable, suitable for old roofs that cannot bear heavy weight ■ Solves insulation, waterproofing, and repair all at once ■ Easy to apply with high-adhesion foam polyurethane ■ As it is external insulation, it can be installed quickly without moving equipment *For more details, please download the catalog or feel free to contact us. If you would like a sample, please reach out using the contact information below.

  • Reinforcement and repair materials
  • Construction method

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Soil amendment snail

We at Bio-Worth Co., Ltd. want to protect the future through our soil conditioner "Katatsumuri." That's what we believe.

"Snails" are soil improvement materials that can ensure quality superior to cement-based and lime-based solidifying agents, while also providing workability, cost-effectiveness, and appropriate recycling methods to achieve zero emissions, thereby reducing environmental impact and creating added value that fully satisfies social demands.

  • Landscaping materials
  • Soil improvement material
  • Construction method

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Wall sawing method

Low noise and no vibration! Contributes to shortening construction time and reducing costs with high precision and high-speed operations.

The "Wall Sawing Method" achieves high-precision cutting for reinforced concrete and wall joint cutting. It is capable of cutting concrete up to a maximum thickness of 50 cm. Since cutting can be done from inside the building, there is less need for temporary equipment. Additionally, the cutting surface is highly precise and smooth, resulting in minimal post-cutting repairs. 【Features】 ■ Low noise and vibration-free ■ Dust-free ■ Dry method without water is also possible ■ Capable of cutting concrete up to 50 cm thick ■ Inclined cutting *For more details, please refer to the PDF document or feel free to contact us.

  • Special Construction Method
  • Construction method

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Core drilling method

From small diameter to large diameter! High-precision drilling is possible to meet various construction purposes.

The "Core Drilling Method" allows for various drilling operations to be performed more quickly, from small to large diameter holes. It can drill holes with diameters ranging from 28 to 600 mm and lengths of over 10 m. The machine is lightweight and portable, making it suitable for construction in narrow spaces. By connecting core drilling for continuous core boring, it can accommodate openings of various sizes and shapes. 【Features】 ■ Low noise and vibration-free ■ Dry method that does not use water is also possible ■ Drilling diameters from 28 to 600 mm ■ Drilling depths up to 20 m ■ Free drilling *For more details, please refer to the PDF document or feel free to contact us.

  • Special Construction Method
  • Construction method

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Grooving method

Narrow spaces are also feasible for installation! Our self-developed air-cooled system can reduce waste and costs.

The "Grooving Method" can prevent hydroplaning phenomena and maintain highways and similar roads in optimal condition. It allows for quick and safe construction within the scope of one-lane traffic regulation, and can accommodate both wet methods using water and dry methods without water. Additionally, when combined with dry cutting methods, it offers a wide range of applications for airport construction. 【Features】 ■ Can cut while minimizing dust generation ■ Dry method without water is possible ■ No wastewater, which is a waste product, is generated since no water is used ■ Can be applied to wide roads ■ Safe construction is possible within the scope of one-lane traffic regulation *For more details, please refer to the PDF materials or feel free to contact us.

  • Special Construction Method
  • Construction method

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Water jet method

Cut, grind, peel, and wash concrete! Freely cut with the power of water.

The "Water Jet Method" can cut various materials with ultra-high pressure water and is a noteworthy technique that can be used in various construction locations. Due to its low vibration, it is unlikely to cause microcracks (fine cracks), and it can remove only the rusted parts of rebar. It removes only the deteriorated parts of concrete while preserving the sound portions. 【Features】 ■ Freely cuts using the power of water ■ Unlikely to cause microcracks ■ Removes only deteriorated parts ■ Preserves sound portions ■ Can remove only rusted parts of rebar *For more details, please refer to the PDF document or feel free to contact us.

  • Special Construction Method
  • Construction method

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Landscape construction method - Stamped concrete method

Just press a mold onto the surface of the partially dried concrete! Achieve short construction time and low cost!

Stamp concrete is a method where a mold with patterns resembling natural stone, brick, or wood is pressed onto freshly poured concrete before it fully hardens, creating a textured surface. With over 50 design patterns and a rich variety of colors, it can produce more than 10,000 different appearances. 【Features】 ■ Can create floors with a gentle texture of natural materials. ■ High durability allows for long-term use with peace of mind. ■ With over 40 design patterns and customizable colors, more than 10,000 variations are possible. ■ Significantly reduces costs and construction time, making it ideal for large areas. *For more details, please contact us or download the catalog.

  • Special Construction Method
  • Construction method

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Pattern-based inverted concrete construction method "Paper Concrete"

This is a stamping method using beautifully designed paper templates.

"Stamp Concrete" is a site construction method that applies designs to the floor surface using templates that mimic brick, tile, and natural stone paving. It combines sharp joint design patterns created with templates and the stamping technology of stamp concrete. Compared to traditional stamp concrete, the finished surface is more uniform and relatively flat, making it suitable for barrier-free environments such as public facilities, apartment complexes, and shopping malls. 【Features】 ■ Flat finish that is easy to walk on and suitable for barrier-free access ■ Accommodates complex site shapes ■ Low initial investment ■ Quick installation: over 100m² of stamping possible in a day if conditions are met ■ Easy to differentiate colors and patterns *For more details, please refer to the PDF document or feel free to contact us.

  • Special Construction Method
  • Exterior and paving materials <General>
  • Construction method

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Template-type spray polymer mortar method "Spray Deck"

The spray application method of polymer mortar can beautifully transform the existing floor surface.

The "Spray Deck" is a construction method that involves laying down variously designed templates on existing concrete floors or asphalt surfaces, spraying a special colored polymer mortar over them, and then removing the templates to create a design on the floor surface. With a thickness of only about 1 to 2 mm, there is little need for raising the floor level, and it can relatively easily refresh the image of the existing floor. For small areas, it is possible to complete the installation in just one day. 【Features】 ■ Recommended for renovations ■ Excellent wear resistance, allowing for vehicle access ■ Cost-effective as it can be installed without breaking the existing floor ■ Safe finish that is slip-resistant ■ Versatile design options *For more details, please refer to the PDF document or feel free to contact us.

  • Special Construction Method
  • Exterior and paving materials <General>
  • Construction method

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Landscape Asphalt Method "Street Print"

We will change the existing asphalt pavement directly into cobblestones or brick patterns.

"Street Print" is a revolutionary method that transforms the surface of existing asphalt pavement into something resembling cobblestones or brick paving. While asphalt pavement has many excellent advantages, it has two major drawbacks: it looks dull and is prone to deterioration. "Street Print" dramatically resolves these two issues. It is a high-value-added method that can change asphalt pavement into something aesthetically pleasing and highly durable. 【Features】 ■ Unlimited installation locations ■ No cracking or peeling, requiring minimal maintenance ■ Excellent cost-effectiveness ■ Flexible design options ■ Slip-resistant and safe paving material *For more details, please refer to the PDF document or feel free to contact us.

  • Special Construction Method
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Mortal Formwork Technique

We will reproduce the texture of natural materials such as natural stone, bricks, and wood on the mortar wall!

"Mortar Sculpting" is a sculpting technique that requires particular skill among the decorative concrete technologies that use concrete and mortar. It mainly involves applying mortar to walls and, while it is still soft before it hardens, sculpting it with a knife or tapping it with a brush to create the appearance of real stones or bricks stacked together. This technique excels at recreating historical European streetscapes and old brick walls. By using a specially developed mortar for sculpting called "Carving Mix," we have made this specialized technique of mortar sculpting, which was previously only possible for a very limited number of skilled craftsmen, more accessible. [Features] ■ Versatile design capabilities ■ Easy to work with lightweight mortar specifically for sculpting ■ Applicable for both interior and exterior construction *For more details, please refer to the external link or feel free to contact us.

  • Interior wall decoration
  • Interior and exterior wall coating materials
  • Cement mortar coating
  • Construction method

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"Landscape Construction Method Catalog 6-Item Set" *Currently available for free!

Leave the landscape construction methods such as "stamp concrete" and "street print" to us.

We are offering a free set of 'Landscape Construction Method Catalog (6 items)' from Mitoyo Kogyo, a specialized company in landscape construction methods. Since 1998, we have started construction using landscape methods such as stamped concrete, gaining extensive experience across various types of sites from large commercial facilities to residential areas. Subsequently, we gradually began selling materials as a manufacturer. Since 2008, we have also been implementing stamping methods on asphalt, and we are capable of applying stamping methods to both concrete and asphalt. 【List of Methods】 ■ Stamped Concrete ■ Paper Concrete ■ Spray Deck ■ Stamped Wall ■ Street Print ■ Stain Concrete *For more details, please refer to the PDF materials or feel free to contact us.

  • Interior wall decoration
  • Construction method

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Metal Waterproof 【Sky Promenade】

The metal waterproof sky promenade has a track record of over 460,000 buildings in balcony waterproofing for 46 years. It requires no maintenance and can also be realized with wooden structures on the roof!

The Sky Promenade is a waterproofing method that does not require regular maintenance. While conventional waterproofing requires maintenance every 5 to 10 years, the Sky Promenade is essentially maintenance-free. (Please note that drain cleaning is required.) Additionally, due to partnerships with major insurance companies, it comes with a 10-year warranty for standard specifications and a 30-year warranty for high-grade specifications. In recent years, the adoption of this waterproofing method has rapidly increased not only for balconies but also for rooftops. **Features** - Passes non-combustibility certification (Non-combustibility certification NM-1981) - Reliable 10 and 30-year warranties - Strong against earthquakes - Quick installation due to dry construction methods - Suitable for large balconies and rooftops For more details, please contact us or download the catalog.

  • Humidity control materials
  • Construction method

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Sky Promenade Construction Process

Quick construction due to the dry construction method! Introducing the construction procedures of the metal waterproofing method with over 480,000 successful projects.

We will introduce the construction process of the metal waterproofing method "Sky Promenade." The installation of this product uses a dry construction method that does not require materials needing water. Since there is no need to wait for materials to dry, the construction period is not extended due to weather or temperature. For a standard balcony, installation can be completed in one day, allowing the next phase to proceed the following day. 【Features】 ■ Dry construction method that does not use materials requiring water ■ No need to wait for materials to dry ■ Not affected by weather or temperature ■ Installation of a standard balcony can be completed in one day *For more details, please refer to the PDF document or feel free to contact us.

  • Waterproofing work
  • Construction method

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