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 エルニード協会 Kagawa//Other construction industries
  5. 5 null/null

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

301~330 item / All 4249 items

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GTF pressure-bearing plate method

Comprehensive greening soil reinforcement works. It effectively functions as a countermeasure against small to medium-scale collapses.

The "GTF Pressure Plate Method" is a slope protection technique that combines the "GT Frame Method," which allows for full greening, with the "GTF Pressure Plate" specifically designed for ground reinforcement soil work (rock bolt work). This method enables full greening without hindering plant growth, thereby enhancing aesthetics and landscape quality. It is particularly effective in sites that prioritize landscape preservation through full greening, as well as in narrow areas such as steep slopes where material transportation and other operations are restricted. 【Features】 ■ Effectively functions as a countermeasure for small to medium-scale collapses ■ Enhances aesthetics and landscape quality ■ Allows for full greening without hindering plant growth ■ Improved workability and low cost ■ Lightweight, compact, and easy to handle materials *For more details, please refer to the PDF materials or feel free to contact us.

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Sky Chuck Method

Sky Chuck Method

The Sky Chuck method combines an earth drill, hammer grab, and crane into one machine! It demonstrates its power on steps, slopes, and in narrow spaces. 【Features】 ○ Adopts a new concept drilling method that uses casing to obtain reaction force for rotary drilling. ○ The drill unit is suspended, making it easy to adjust the height of the construction ground and the working radius, accommodating a wide range of sites. ○ The drill unit can be retracted for repurposing to a crane, allowing one machine to handle various processes. ○ Efficient operation in narrow sites while minimizing vibration and noise. ● For more functions and details, please contact us.

  • Ground foundation construction method
  • Construction method

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Ground improvement method: Stabilization mixer method

Ground Improvement Method: Stabilization Mixer Method

The Stabilizer Mixer Method is a groundbreaking technique that belongs to shallow ground improvement methods within ground improvement techniques, capable of addressing almost all soil types at depths of up to 7 meters. 【Features】 ○ Improvement Rate 100% Effective for liquefaction countermeasures as it integrates the improved body. ○ No Soil Type Restrictions This method can handle not only muddy soil, clayey soil, sandy soil, and organic soil but also boulders and underground obstacles. ○ Excellent Mobility Safe construction is possible as long as conditions allow the backhoe to operate. ● For other functions and details, please contact us.

  • Ground improvement materials
  • Construction method

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Large Tile Wall Construction Method "Gachi Rock"

Easy to install! Wall construction that absorbs the sway of the structure during earthquakes and strong winds, preventing falls.

Maruki's "Gachi Rock" is a construction method for large tile wall surfaces that involves securing a dedicated mounting rail to the structure using screws and anchors. Tiles with specially designed support brackets, which are pre-installed at the factory, are then hooked onto the rail and fixed in place with adhesive. By having each tile hooked onto a newly developed bracket, the independence of the tiles is maintained, allowing them to absorb significant swaying of the structure during earthquakes or strong winds, thus preventing detachment or falling. Due to its simple structure, it can be installed with minimal effort. 【Features】 ■ Improved earthquake resistance ■ Easy installation ■ Prevention of scattering due to falling ■ Selected product for the Ministry of Land, Infrastructure, Transport and Tourism's Frontier Project *Please feel free to contact us for more details.

  • Wood panel and frame wall construction
  • Construction method

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Non-excavation manhole rehabilitation technology MLR method

It is a construction method that is environmentally friendly to the surrounding area, as it does not use large equipment or heavy machinery and does not cause noise problems!

The MLR method, short for Manhole Lining Renewal, is a trenchless manhole rehabilitation technology that provides corrosion resistance and strength to manholes that have deteriorated due to corrosion from hydrogen sulfide and other factors, thereby improving their service life. 【Features】 ○ It can restore the strength of manholes that have weakened due to corrosion. ○ It blocks corrosion factors such as hydrogen sulfide, maintaining the corrosion protection effect of the manhole over a long period. ○ It can prevent water leakage and infiltration within the manhole. ○ As a trenchless rehabilitation method that does not require any excavation of the road surface, it eliminates dust issues and waste, and allows for a shortened construction period. ● For other functions and details, please contact us.

  • Manhole body
  • Other civil engineering works
  • Other civil engineering services
  • Construction method

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Civil Engineering Construction Method Introduction: Wooden House Foundation External Insulation Method "TB Board"

Civil engineering wooden house foundation external insulation method

The TB board method involves inserting insulation material with termite resistance into the foundation's outer perimeter, reinforcing the joints with specialized tape after removing the formwork, and allows for direct mortar finishing on the surface of the TB board, making it a fast and reliable construction method.

  • board
  • Insulation work
  • Heat insulation and heat shielding methods
  • Construction method

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Civil Engineering Construction Method Introduction: Simple Floor Concrete Method "Ecoslab"

Civil engineering - Floor concrete construction method

"Eco Slab" is an inexpensive and easy-to-install simple concrete suitable for parking lots and entrance floors. It also serves to strengthen weak ground.

  • Special Construction Method
  • Construction method

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For reinforcing weak ground! GeoCross Yubifa method

The GeoCross Yubifa method is used for reinforcing weak ground! Its strength is 2.5 times that of conventional methods, and it has a shorter construction time and a more user-friendly price.

We used Ubifasheet made from high-strength fibers produced by Unichika in Geocross. By laying it only in the short fiber direction, we achieved support strength that surpasses conventional non-woven fabric methods. It has also become possible to offer a more cost-effective, safer, and shorter construction period, as well as to accommodate underground beams. We are pioneering the forefront of residential ground improvement using geotextiles. The construction scope is up to three stories for wooden structures, and the ground must be parallel layers. For more details, please contact the NPO Geocross Method Research Association.

  • Ground foundation construction method
  • Construction method

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Maintenance and repair of concrete structures

From "creating" to "repairing" era. For the repair and reinforcement of various concrete structures, contact us!

In the green industry, we are engaged in the "maintenance and repair of concrete structures." We take preventive measures for concrete structures expected to deteriorate due to aging, starting with "structural repairs" to prevent secondary disasters caused by deterioration, as well as undertaking "seismic reinforcement" to compensate for insufficient strength and "inspection of bridges" among others. For concrete repair work, please leave it to us. 【Target Structures (partial list)】 ■ PC girders ■ RC girders ■ Abutments ■ Piers ■ Bridge deck, etc. *For more details, please refer to the PDF materials or feel free to contact us.

  • Concrete construction
  • Construction method

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Insulation for folded plate roofs using magnetic pin method

Easy insulation installation without stopping factory operations! It's a short-term, low-cost method that only requires inserting magnetic pin fittings.

By simply inserting magnetic pin fittings into the insulation material, we achieve improved insulation with a short construction period and low installation costs. It can be completed in a short time without stopping factory operations. 【Features】 ○ Newly developed support fittings Improves wobbling after installation and prevents caps from falling off in case of emergencies. ○ Can be installed in older factories after establishment ○ Removable due to magnets, suitable for leased factories ○ Can be installed not only in factories but also in homes, garages, and storage sheds if there are metal roofs or walls ● For other functions and details, please contact us.

  • Roof and gutter construction
  • Insulation work
  • Imported houses and log houses
  • Construction method

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Cost Reduction Construction Method: Randoseru Construction Method

A cost reduction method that effectively utilizes backfill crushed stone as 100% self-weight.

[NETIS SK-060007-A] This is a large block retaining wall made of "backfill material (crushed stone)" filled inside the back of a "large stacking block with a leaning style" that is integrated with cast-in-place concrete. The back of the block is equipped with a corrosion-resistant "back material (expanded metal)," and the backfill material is utilized as self-weight. Traditionally, the backfill material was intended for collecting groundwater behind the retaining wall, but now it can be used not only for drainage purposes but also as 100% self-weight. This allows for a reduction in the cross-section of the concrete part of the retaining wall itself, enabling cost savings.

  • Renovation and repair methods
  • Construction method

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Reinforcing existing rockfall protection fences! Stronger Method [*with construction examples*]

Rockfall capture performance is more than doubled! Reinforcement and height increase of the fence can be achieved without special processing!

The Stronger Method is a completely new rockfall countermeasure technique that utilizes existing rockfall protection fences without any special processing for reinforcement and achieves an increase in fence height. It allows for a "simple, inexpensive, and short-term" increase in fence height, with rockfall capture performance more than doubled! It is compatible with both newly installed and existing H-beam type rockfall protection fences. *We are currently offering a catalog with case studies of the Stronger Method, which has also been adopted by the Ministry of Land, Infrastructure, Transport and Tourism! Please download for more details. 【Features】 ■ No need for large-scale traffic regulations or detours due to heavy machinery! ■ Reinforcement is done without processing, allowing for quick and economical construction! ■ NETIS Registration No: HR-140004-A *For more details, please contact us or download the catalog to view.

  • Protective fence
  • Construction method

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Groundbreaking rockfall prevention method "Stronger Method" *Case study collection giveaway

Easily, cheaply, and quickly raise the height of the existing stone guard! [Check the easy installation in the video]

We are currently offering a catalog featuring case studies of the Stronger Method, which has been adopted by the Ministry of Land, Infrastructure, Transport and Tourism! For more details, please download it. The Stronger Method is a completely new rockfall countermeasure technique that utilizes existing rockfall protection fences without any special processing, allowing for reinforcement and an increase in fence height. It can raise the fence height "easily, inexpensively, and in a short period," and the rockfall capture performance is more than doubled! It is compatible with both new and existing H-beam type rockfall protection fences. Adoption Case (Ministry of Land, Infrastructure, Transport and Tourism) ● Initially planned to "break down the retaining wall → new construction," but wanted to minimize damage to the retaining wall as it had been repaired multiple times.  → No need for any demolition (or core drilling) of the retaining wall concrete. ● As it is a major national road, we wanted to shorten the traffic regulation period.  → Only one day of regulation during material delivery (normally, regulations last about two weeks). ● We wanted to utilize existing stock and reduce costs.  → No processing required for existing structures, resulting in about a 20% cost reduction compared to new construction. *For more details about the case studies, please contact us or download the catalog to view.

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  • キャプチャ11.PNG
  • Protective fence
  • Construction method

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What is a revolutionary reinforcement method for easily raising the height of fences?

*Essential for those worried about rockfall protection fences* *Easily, inexpensively, and in a short period, increase the height of existing stone guards with the "Stronger Method"*

The "Stronger Method" utilizes existing rockfall protection fences as they are, allowing for easy reinforcement and height increase without special processing. It can double the rockfall capture performance with "simple, low-cost, and short-term" height increases! It is compatible with both new and existing H-beam type rockfall protection fences. ♦ If the protection fence is damaged or rocks have flown over to the road or houses, simple countermeasures are needed... ♦ Rebuilding incurs high construction costs. If we could reduce costs... ♦ We want to minimize the construction period as much as possible... If you have any concerns like these, please feel free to consult with us. *For more details on case studies, please contact us or download the catalog to view.

  • Protective fence
  • Construction method

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Reinforcement and Height Increase of Rockfall Protection Fences Utilizing Existing Structures

Numerous examples and benefits of the "Stronger Method" are featured with color photographs!

This document is about the simple construction method "Stronger Method" for attaching components to existing rockfall protection fences. It includes numerous examples with photos based on requests such as, "We planned to demolish and rebuild the retaining wall, but we have repaired it multiple times and want to minimize damage to the wall," and "Since this is a major national road, we want to shorten the traffic regulation period." Additionally, the features and benefits of the "Stronger Method" are also introduced. [Contents (excerpt)] ■ What is Stone Guard? ■ Application range of the Stronger Method ■ Features of the Stronger Method ■ Mechanism of the Stronger Method ■ Examples of adoption *For more details, please refer to the PDF document or feel free to contact us.

  • Protective fence
  • Construction method

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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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