Construction method Product List and Ranking from 1581 Manufacturers, Suppliers and Companies | IPROS

Last Updated: Aggregation Period:Aug 05, 2026~Sep 01, 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:Aug 05, 2026~Sep 01, 2026
This ranking is based on the number of page views on our site.

  1. Taiyo Kisokogyo Co.,Ltd. Aichi//General contractors and subcontractors
  2. キシムラ Kanagawa//Service Industry
  3. SIKA JAPAN Ltd. Tokyo//Building materials, supplies and fixtures manufacturers
  4. 4 緑化計画研究所 Kanagawa//Other construction industries
  5. 5 null/null

Construction method Product ranking

Last Updated: Aggregation Period:Aug 05, 2026~Sep 01, 2026
This ranking is based on the number of page views on our site.

  1. 【物理的損傷を抑制】防砂シート引込軽減工法 キシムラ
  2. Rooftop greening system - Rooftop greening without the need for irrigation - Evergreen Kiri grass bag method 緑化計画研究所
  3. External insulation method using roof mats for dry construction on flat roofs.
  4. 4 Foundation Omega Method HOKOKU ENGINEERING CO.,LTD.
  5. 5 【斜面安定化工法】レッドゾーン解除実績有【景観配慮・コスト縮減】 ダイカ

Construction method Product List

331~360 item / All 4345 items

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Examples of Stronger Method Adoption: Fukushima Prefecture

Change the height from 1.5m to 2.5m with a raised type to accommodate your desired fence height.

We would like to introduce an example of the "Stronger Method," which is a reinforcement work for rockfall protection fences utilizing existing structures in Fukushima Prefecture. There were rockfalls that exceeded the fence, and there was a desire to increase the height of the fence. Additionally, it was adopted with consideration for the landscape and to accommodate landscape colors. The height was changed from 1.5m to 2.5m using a raised type to meet the desired fence height. Furthermore, we were able to accommodate landscape colors with hot-dip galvanized coating plus painting. 【Adoption Example】 ■ Location: Fukushima Prefecture ■ Type: Raised type ■ Reasons for Adoption - There were rockfalls that exceeded the fence, and there was a desire to increase the height of the fence. → Addressed with a raised type (H = 1.5m to 2.5m) - There was a desire to accommodate landscape colors with consideration for the landscape. → Possible to accommodate with hot-dip galvanizing plus painting. *For more details, please refer to the PDF materials or feel free to contact us.

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  • Rockfall prevention agent
  • Construction method

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Stronger Method Adoption Example: Yamanashi Prefecture

Change the height from 2m to 3m! This method allows for approximately half the cost and a significant reduction in construction time.

We would like to introduce an example of the "Stronger Method," a rockfall protection fence reinforcement project that utilizes existing structures in Yamanashi Prefecture. There were instances of rockfalls exceeding the fence, and there was a desire to increase the height of the fence. Additionally, although a high-energy protection fence had already been designed, it was costly. There were also bent posts that the client wanted to reuse if possible, which led to the adoption of this method. The height was changed from 2m to 3m using a raising type to meet the desired fence height. Furthermore, this method allows for approximately half the cost and significant shortening of the construction period. Regarding the bent posts, part of the base of the posts was retained and raised to accommodate the situation. 【Adoption Example】 ■ Location: Yamanashi Prefecture ■ Type: Raising Type ■ Reasons for Adoption - There were rockfalls exceeding the fence, and there was a desire to increase the fence height. → Addressed with the raising type (H=2.0→3.0m) - A high-energy protection fence had already been designed, but it was costly. → Approximately half the cost and significant shortening of the construction period. - There were bent posts that the client wanted to reuse. → Raised by retaining part of the base of the posts. *For more details, please refer to the PDF materials or feel free to contact us.

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  • Rockfall prevention agent
  • Construction method

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Hyogo Prefecture Construction Case Study: Reinforcement Method for Existing Rockfall Protection Fences - Implementation of Fence Height Increase

Increase fence height using raised components! The materials are lightweight and installation is simple.

Here is a case study of the "Stronger Method" implemented in Hyogo Prefecture. As a result of the construction, the fence height increased from 2.0m to 3.0m. The construction length was L = 39.1m. This method allows for the existing rockfall protection fence to be utilized as is, enabling simple reinforcement and height increase without any special processing of the facility. [Case Study] ■ Height Increase Type (Fence Height: H = 2.0 → 3.0m, Construction Length: L = 39.1m) ■ Hyogo Prefecture (Construction: Fiscal Year 2018) *For more details, please refer to the PDF document or feel free to contact us.

  • Protective fence
  • Construction method

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Hyogo Prefecture Construction Case Study: Reinforcement Method for Existing Rockfall Protection Fences, Usable Without Small Heavy Machinery.

Simple construction! This method allows for an increase in fence height using raised components.

Here is a case study of the "Stronger Method" conducted in Hyogo Prefecture. As a result of the construction, the fence height increased from 2.0m to 3.0m, with a construction length of L = 39.5m. This method restrains the twisting of the posts with upper and lower reinforcement brackets, allowing for buckling prevention at the base of the posts. Additionally, since no small machinery is used, there is no need to cut down surrounding trees. [Case Study] ■ Raised type (Fence height: H = 2.0 → 3.0m, Construction length: L = 39.5m) ■ Hyogo Prefecture (Construction: Fiscal Year 2018) *For more details, please refer to the PDF document or feel free to contact us.

  • Protective fence
  • Construction method

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Hyogo Construction Case Study: Railway Proximity Work - Reinforcement and Elevation of Existing Protective Fences

A case of railway proximity work where reinforcement and elevation of the existing protective fence were carried out!

Here is a case study of the "Stronger Method" implemented in Hyogo Prefecture. As a result of the construction, the fence height increased from 1.55m to 3.0m, with a construction length of L = 13.0m. This method distributes the load, which was previously supported by a single span in conventional methods, across multiple spans by connecting the tops of the posts with steel rods. Additionally, in areas where there are concerns about insufficient fence height, height-raising materials can be used to increase the fence height. [Case Study] ■ Height-raising reinforcement type (Fence height: H = 1.55 → 3.0m, Construction length: L = 13.0m) ■ Hyogo Prefecture (Construction: FY 2015, Railway proximity work) *For more details, please download the PDF or feel free to contact us.

  • Protective fence
  • Construction method

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Pavement Method: Water-Resistant Drainage Pavement Method (POSMAC Method)

Pavement Method: Water-Resistant Drainage Pavement Method (POSMAC Method)

Waterproof drainage pavement (POSMAC) is a technology for constructing drainage pavements. 【Features】 ○ Using an asphalt finisher equipped with an emulsion spraying device (SPAF), high-concentration modified asphalt emulsion (cationic GS-C) is sprayed in large quantities and uniformly while simultaneously laying the drainage mixture, forming a waterproof layer beneath the drainage mixture layer to protect the base surface from infiltrating rainwater and other sources. ○ By utilizing this method, the reliability of the pavement is enhanced by protecting the base surface compared to conventional drainage pavements that are constructed in a single layer. ○ It allows for significant cost reduction compared to drainage pavements constructed in two layers, including the base layer. ○ The filling of asphalt contributes to stress relief effects, which is expected to suppress reflection cracking. ● For other functions and details, please download the catalog.

  • Drainage and ventilation equipment
  • Paving Materials
  • Construction method

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Jokuso construction method

Jokuso construction method

Subgrade treatment method performed prior to overlay, cushion layer method 【Features】 ○ A "stress relief layer" is provided between the existing pavement and the overlay layer, which is effective in suppressing reflection cracks. ○ The cushion layer method includes OG mix layer (OGM layer) and SD layer. ● For other functions and details, please download the catalog.

  • Dam construction
  • Paving of sidewalks, roads, parking lots and stadiums
  • Pavement construction
  • Construction method

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Hanger-type balance beam method

Construction using precast concrete panels on walls! Ideal for port construction and other applications.

The hanger-type balance beam construction method is a installation technique for attaching precast concrete panels to steel sheet piles, steel pipe sheet piles, concrete sheet piles, etc. It is suitable for construction that is constrained during execution, such as port construction. 【Features】 - By dropping the balance beam panel, which has a hanger plate attached, into channel steel or similar structures installed at the same position as the installation structure, the spacing between the installation structure and the panel's vertical position is determined. - Since it hangs from the channel steel via a hanger (hook) plate, it allows for easy lateral adjustment of the panel's left and right positions by sliding it horizontally. Additionally, because it hangs via the plate, the alignment of the balance beam panel's surface and wall slope can be easily determined. - The balance beam panel is suspended from the channel steel through a hanger plate, which enhances crane efficiency and improves workability. *For more details, please download the catalog or contact us.*

  • Special Construction Method
  • Construction method

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Slope Greening: Rock Face Planting Method D-1

Slope greening with planting - Rock surface planting method D-1

This is a construction method that can be implemented in environments where construction machinery cannot be brought in. 【Features】 ○ Even on steep slopes, the use of TK Bans prevents the runoff of compost and quality soil, while also excelling in water retention and stability. ○ The products are made from burlap bags, which, over time, provide the effect of nurturing tree roots as compost and contribute to environmental conservation through natural recycling. It is also possible to restore greening in areas such as steep slopes, crushed stone sites, and former quarry sites. ○ Patent No. 2847086 ● For other functions and details, please contact us.

  • Wall and rooftop greenery
  • Construction method

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Slope greening with vegetation planting on existing mortar spray surfaces using vegetation planting methods.

Slope greening with vegetation planting - Existing mortar spray surface vegetation planting method.

This is a vegetation planting method that is advantageous for the regeneration of the natural environment on existing mortar spray surfaces. 【Features】 ○ Minimizes industrial waste such as mortar and rubble that typically accumulates during regular construction. ○ Uses TK Claw, ensuring secure fixation of tree roots. ○ Plants directly into the ground, promoting healthy growth. ○ Minimal drilling required, making the disposal of excavated soil easy. ○ Existing mortar and concrete spray surfaces can harmonize with the landscape. ○ Patent No. 3460007 ● For other functions and details, please contact us.

  • Earthworks
  • Pile and foundation work
  • Planting work
  • Construction method

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Rooftop greening T.K. method of rooftop planting greening technique

It is an environmentally friendly rooftop greening that alleviates the heat island phenomenon.

■We have made it possible to plant greenery using rooftop greening materials (thin-layer greening base mats) that can withstand strong winds on the roof. ■Construction can be completed in a short period, making it suitable for urgent projects. ■It complies with municipal environmental regulations. ■It is a project certified by the Ministry of Economy, Trade and Industry as a "New Collaboration."

  • Wall and rooftop greenery
  • Construction method

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Ground improvement Top Base (Koma) method

Ground Improvement Top Base (Koma) Method

This is a very innovative construction method that generates minimal pollution, such as vibrations and noise, during on-site construction work, resulting in a small impact on the environment. 【Features】 ○ Safely supports superimposed loads even on extremely weak ground. ○ Controls settlement and prevents differential settlement. ● For other functions and details, please download the catalog.

  • Earthworks
  • Ground improvement
  • Pile and foundation work
  • Construction method

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Soil conditioner Parcoat

Soil improvement material Parcoat

It is a non-polluting wood pulp sludge ash-based solidifying material. 【Features】 ○ Wood ash originally has weak alkaline properties, but it neutralizes with soil and moisture in the soil, maintaining the pH value of improved soil in the neutral range. ○ Certified by the Japan Environmental Association Eco Mark Office. ● For other functions and details, please contact us.

  • Soil improvement material
  • Other civil engineering works
  • Construction method

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Automated Open Caisson Method (SOCS)

Automated Open Caisson Method (SOCS)

This construction method overcomes the issues associated with traditional open caisson methods by utilizing advanced technology, enabling reliable and high-precision sinking of caissons under various ground conditions. It is environmentally friendly and allows for significant labor savings and shortened construction periods through automation. The key feature of this method is the introduction of an automatic underwater excavation machine at the caisson's cutting edge, which allows for reliable excavation of the ground directly beneath the caisson, a task that was previously difficult. This excavator can handle hard ground and withstand water pressure of up to 1.0 MPa, making it capable of construction at depths of up to 100 meters. Since the excavation and soil removal operations can be performed independently, it is also applicable to large-diameter shafts. The method consists of three systems: an automatic excavation and soil removal system, an automatic sinking management system, and a precast body system, making it applicable to a wide range of ground conditions from soft soil to medium-hard rock. These systems can be used in combination, or each system can be employed individually or in pairs depending on the site conditions.

  • Ground foundation construction method
  • Construction method

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Riprap construction method

Riprap construction method

A lapstone is a structure that integrates natural stones with narrow holes, anchored by zinc-aluminum alloy coated iron wire and synthetic resin stopper panels. By backfilling this with backing material and stacking it at a steep gradient, it creates an "anchored natural stone masonry method," resulting in an economical and robust revetment that considers the ecosystem of aquatic organisms such as fish and crabs. 【Features】 ○ Creates a porous revetment that can support the habitat of fish and crabs. ○ Despite being a masonry structure, it forms a strong revetment that can withstand soil pressure and water flow due to the anchoring effect. ● For other functions and details, please contact us.

  • Airport facilities
  • River construction
  • stone
  • Construction method

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Ultra-lightweight and ultra-simple panel assembly method for rainwater storage and infiltration using recycled plastic.

Rainwater storage infiltration tank using a panel assembly method with a 0.5m span.

Excellent in storage space, transportation efficiency, and constructability, flexibly adaptable to any location or terrain.

  • Aggregates and crushed stone
  • Agricultural civil engineering works
  • Rainwater infiltration facilities
  • Construction method

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Sewer Composite Manhole Rehabilitation Method "Eba Sheet Method"

No special skills required! A sewer composite manhole rehabilitation method that can be constructed with a small road occupancy area.

The "Evashito Method" is a composite manhole rehabilitation technique that involves attaching an "FRP sheet" to the inner wall of an existing manhole that has advanced corrosion, using an expansion frame, and filling the gap between the sheet and the existing manhole with mortar. With a thickness of 1.5mm for the FRP sheet, the method promises increased longevity through enhanced corrosion resistance and durability, while the filling material, a non-shrink mortar, maintains strength over the long term. Additionally, there is no need for heavy machinery, and no special skills are required, allowing for construction in a small road occupancy area. By utilizing the existing manhole, material savings are achieved, resulting in excellent economic efficiency along with shortened construction periods. 【Features】 ■ Demonstrates strong robustness through complete integration with the existing manhole ■ Filling material maintains strength over the long term with non-shrink mortar ■ Can be constructed in a small road occupancy area ■ Achieves material savings by utilizing the existing manhole ■ Passes acid resistance and sulfur intrusion tests *For more details, please refer to the PDF document or feel free to contact us.

  • Sewerage facilities
  • Construction method

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Seismic reinforcement method "Remake Ring"

The applicable rehabilitation pipe is a self-supporting pipe! Seismic reinforcement method for the connection between the rehabilitation pipe and the manhole using non-excavation.

"Remake Ring" is a seismic retrofitting method that installs flexible joints at the connection points between the rehabilitation pipe (self-supporting pipe) and the manhole without excavation, designed to accommodate the extraction, protrusion, and bending of the rehabilitation pipe under Level 2 seismic motion. It is possible to install flexible joints in areas where pipe rehabilitation methods have already been completed, as well as to install flexible joints in conjunction with pipe rehabilitation methods. The applicable existing pipe types are reinforced concrete pipes and ceramic pipes, with applicable existing pipe diameters of nominal sizes 250 and 300. 【Features】 ■ Accommodates extraction, protrusion, and bending of rehabilitation pipes under Level 2 seismic motion ■ Obtained construction technology examination certification in March 2016, No. 1504 *For more details, please refer to the PDF materials or feel free to contact us.

  • Earthquake-resistant construction method
  • Construction method

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Construction method "Runan HAT Method"

The lifting work takes only a few minutes! A new method for installing roofs and walls, wiring and piping for electricity, equipment work, and painting materials is done on the ground.

The "Runan HAT Method" is a new construction technique that builds truss panels in the same way a gentleman in a suit wears a hat. The assembly of truss panels is done on the ground, where the installation of roofs and walls, as well as the wiring and piping for electricity, air conditioning, and sprinklers, along with equipment work and painting of materials, takes place. If there is extra space on the site, the foundation and steel frame construction, as well as the assembly of trusses and roof and piping work, can proceed in parallel. 【Features】 ■ Improved work efficiency ■ Shortened construction period ■ Reduced manpower for roof and piping work ■ Cost reduction ■ The lifting operation is completed in just a few minutes after starting the lift *For more details, please refer to the PDF materials or feel free to contact us.

  • Wood panel and frame wall construction
  • Civil Engineering Method
  • Construction method

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Reinforced soil method "Pan Wall" using reverse installation.

Achieving excellent durability due to high strength! The diversification of pattern designs allows for compatibility with various landscapes.

"Panwall" is a construction method based on the theory of steep slope stability and ground reinforcement techniques. By using reverse construction to finish the structure from top to bottom, it protects obstacles and prevents loosening of the ground and collapse accidents during construction. Additionally, the precasting of surface works allows for improved quality, shortened construction periods, and labor savings. With high durability and maintenance-free features, it demonstrates superiority in long-term life cycle costs. [Features] ■ Enables effective land use at the top and bottom of slopes ■ Protects obstacles and prevents loosening of the ground and collapse accidents during construction ■ Allows for improved quality, shortened construction periods, and labor savings ■ Demonstrates superiority in long-term life cycle costs ■ Achieves excellent durability due to high strength *For more details, please refer to the PDF materials or feel free to contact us.

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  • Special Construction Method
  • Retaining wall
  • Concrete Retaining Wall
  • Construction method

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Soil-filled reinforced earth wall method "Taille Armé"

Applicable to vertical embankments up to approximately 15 meters! It allows for effective land use with minimal land width required.

The "Tail Arm" method involves embedding steel materials called strips in layers within the soil and compacting them, creating a stable soil structure through friction with the soil. As it is a standardized prefabricated method, it does not require skilled workers or special techniques, allowing for a reduction in construction time. Due to its flexible structure, the load on the foundation ground is evenly distributed, making it applicable to a wider range of ground conditions. Additionally, color skins and design skins tailored to specific purposes, such as usage and environmental harmony, can also be produced. 【Features】 ■ Applicable to vertical embankments of up to approximately 15 meters ■ Efficient use of land with minimal land width required ■ No skilled workers or special techniques needed ■ Even distribution of load on the foundation ground due to flexible structure ■ Predominantly composed of standardized components, resulting in a quieter construction environment *For more details, please refer to the PDF materials or feel free to contact us.

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  • Special Construction Method
  • Retaining wall
  • Concrete Retaining Wall
  • Construction method

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Precast tidal embankment protection method

No skilled labor is required for the circular formwork of the wave return surface! Automation in construction allows for a reduction in manpower.

The "Precast High Tide Embankment Protection Method" is a concrete embedded formwork method that ensures specifications and performance similar to cast-in-place by pouring concrete on-site after laying the products, allowing for the construction of wave return works, foundation works, and covering works. It facilitates the installation of water stop boards and reduces the assembly and removal of formwork, leading to shortened construction periods. Additionally, it contributes to resource conservation by reducing the amount of formwork needed. 【Features】 ■ A concrete embedded formwork method that allows for the construction of wave return works, foundation works, and covering works. ■ Facilitates the installation of water stop boards and reduces the assembly and removal of formwork. ■ Eliminates the need for skilled labor for curved formwork in wave return works. ■ Enables labor-saving through mechanized construction. ■ Contributes to resource conservation by reducing the amount of formwork needed. *For more details, please refer to the PDF document or feel free to contact us.

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  • Port supplies
  • River construction
  • Harbor Construction
  • Construction method

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Product transportation installation method - Lift roller method PAT.

A self-propelled device that does not require special guides for basic concrete! Capable of construction on curved sections and corners!

We introduce the 'Lift Roller Method PAT.' which allows for easy transportation and installation in places where truck cranes cannot be used, such as under elevated roads and railways, under power lines, or in areas where temporary roads cannot be constructed. Since it is a self-propelled device that does not require special guides for the foundation concrete, it can be used for construction in curved sections and at bends. The lift roller is electric, resulting in low noise and low vibration, with no impact on the surrounding area. 【Features】 - Can accommodate slope construction in the longitudinal direction up to 10%, and can also handle drop sections (with some exceptions for specific models). - Adjustments in the vertical and horizontal directions are made using hydraulic cylinders, allowing for precise positioning. - Widely compatible with products such as box culverts, three-sided ditches, and L-shaped ditches. - Available in "Hanging type" (internal suspension) and "Side type" (external suspension) to suit site conditions. *For more details, please refer to the PDF document or feel free to contact us.

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  • Special Construction Method
  • Construction method

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