Construction method Product List and Ranking from 1591 Manufacturers, Suppliers and Companies | IPROS

Last Updated: Aggregation Period:Jan 28, 2026~Feb 24, 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:Jan 28, 2026~Feb 24, 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. エルニード協会 Kagawa//Other construction industries
  3. 丸八土建 Mie//General contractors and subcontractors
  4. 4 HOKOKU ENGINEERING CO.,LTD. Osaka//Other construction industries
  5. 5 シーカ・ジャパン Tokyo//Building materials, supplies and fixtures manufacturers

Construction method Product ranking

Last Updated: Aggregation Period:Jan 28, 2026~Feb 24, 2026
This ranking is based on the number of page views on our site.

  1. Soil Coating Method "PoliSoil Greening" <NETIS Registered> 丸八土建
  2. 地下水・軟弱地盤対応の基礎工法『スーパーラップルエルニード工法』 エルニード協会
  3. Foundation Omega Method HOKOKU ENGINEERING CO.,LTD.
  4. 4 Install the valve without stopping the water! 'EM Continuous Water Valve Method' 水研
  5. 5 Hybrid Concrete Reinforcement Method "Solid Remain Alpha"

Construction method Product List

3601~3630 item / All 4287 items

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When troubled by mold growth or salt damage: Examples of flooring installation in the seafood industry.

I was struggling with mold issues when I heard about the Eucrete method from a trading company representative and decided to adopt it.

We would like to introduce a flooring installation example by Asahi Coating for the seafood industry. The seafood industry often involves working with flowing water, making it difficult to keep the floor dry, which leads to a high risk of mold growth. Additionally, due to the high salt content, salt damage is also likely to occur. To address this, we adopted the "Eucleet Method," which is highly resistant to chemicals and can withstand the harsh working conditions of the seafood industry. While our standard method also offers excellent chemical resistance and helps suppress mold growth, we have an option to add a mold inhibitor for particularly poor usage conditions. **Results** - Adopted in seafood-related environments with no windows and poor ventilation, there has been no sign of mold growth even after about four years. - Regarding salt damage, areas with bare concrete deteriorated quickly, but after the Eucleet installation, there have been no issues at all. **Image Descriptions** 1st image: Newly constructed soup factory in the ramen industry. 2nd image: Indoor fish processing facility with no windows at all. *For more details, please refer to the PDF document or feel free to contact us.*

  • Premixed mortar
  • Renovation and repair methods
  • Construction method

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What is the Euclide method for flooring materials with heat resistance, impact resistance, anti-mold properties, and chemical resistance?

High-performance flooring that meets various needs! For installation of factory floors and more, please leave it to us.

The "Euclide Method" uses water-based rigid urethane as its main material, which excels in heat resistance, impact resistance, mold resistance, and chemical resistance. It is a highly safe flooring material equivalent to the non-regulated F☆☆☆☆ category in terms of formaldehyde emission. It has a low possibility of mold growth and bacterial proliferation, making it suitable for flooring in food and beverage industries as well as pharmaceutical factories. Additionally, it is appropriate for areas that require steam cleaning and for floors that become wet and slippery. 【Features】 - Excellent heat resistance, impact resistance, mold resistance, and chemical resistance - Formaldehyde emission category: equivalent to non-regulated F☆☆☆☆ - Low possibility of mold growth and bacterial proliferation - High adhesion to concrete - Low odor due to the main component being water-based rigid urethane *For more details, please refer to the PDF document or feel free to contact us.

  • Special Construction Method
  • Special flooring/indoor
  • Construction method

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Chiyoda Metal Louver System "Noir"

Chiyoda Metal Louver System with a high-quality texture and design featuring a special black plating!

The "Noir" is a Chiyoda Metal Louver System that eliminates the need for troublesome on-site painting of components, allowing for easy and quick installation. The high-quality matte finish and design achieved through a special black plating process greatly expand the range of expression in various settings. Additionally, various components such as hanging bolt receivers are available in the same color as the metal louvers, so there is no need for troublesome on-site painting of components. 【Features】 ■ Ensures safety with excellent durability ■ High-quality matte finish and design from special black plating ■ Louvers can be adjusted in an infinite number of intervals ■ Demonstrates high economic efficiency

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Construction method "CWS Method"

Autonomous operation requires no operator! It enables significant reductions in construction time and personnel.

The "CWS Method" is a construction technique that enables long-distance transportation of materials in projects addressing steep slopes and maximum inclines. It achieves the objective at a cost far lower than introducing large cranes. Additionally, the method of extending rails horizontally does not require scaffolding. 【Features】 ■ Achieves significant cost reduction without the need for large crane operations ■ Allows transportation of materials without restrictions on slope angle or distance ■ Reduces the need for scaffolding work ■ Can be installed in narrow workspaces, even on single-lane roads ■ Most materials can be covered with rental items *For more details, please download the PDF or feel free to contact us.

  • Erosion control works
  • Construction method

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[Construction Case] Multi-Drill Method Equivalent to BG Method

Select from various construction machines!

We would like to introduce a case study of underground obstacle removal conducted by our company. In Tokyo, we carried out construction using a multi-drill method equivalent to the BG method. We removed PHC piles and pine piles with a diameter of 1500 mm and a length of 22 m. We have provided images of this case study in the related link, so please take a look. 【Case Overview】 ■ Project Name: Multi-drill Method Equivalent to BG Method ■ Construction Date: June 10, 2022 ■ Location: Tokyo ■ Details: Diameter 1500 mm, Length 22 m *For more details, please download the PDF from the related link or contact us.

  • Other civil engineering works
  • Construction method

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[Construction Case] Underground Obstacle Removal Method in Tokyo (Equivalent to BG Method)

Original tools developed! Examples of removal using the all-casing crushing method.

We would like to introduce a case study of underground obstacle removal conducted by our company. This project took place in Nakano Ward, Tokyo, using an underground obstacle removal method equivalent to the BG method. It features the SR-45 standard mast specification. Piles that could not be removed using the pull-out method were taken out using the all-casing crushing method. We have provided images of this case study in the related links, so please take a look. 【Case Overview】 ■ Project Name: Underground Obstacle Removal Method (Equivalent to BG Method) ■ Construction Date: May 19, 2022 ■ Location: Nakano Ward, Tokyo ■ Details: SR-45 standard mast specification, depth of 16m *For more details, please download the PDF from the related links or contact us.

  • Other civil engineering works
  • Construction method

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【施工事例】マルチドリル工法による壁際地中障害撤去

いろいろな地質、地中障害物に対応!壁に接近した施工が可能な事例

当社で行った地中障害撤去の施工事例をご紹介いたします。 東京都大田区にて、マルチドリル工法(BG工法同等)による 壁際地中障害撤去を実施。周辺への影響が少ないので、壁に 接近した施工が可能です。 関連リンクにて、画像付きで本事例をご紹介しておりますので 是非ご覧ください。 【事例概要】 ■工事名:マルチドリル工法(BG工法同等)による壁際地中障害撤去 ■施工日:2022年04月08日 ■所在地:東京都大田区 ■詳細:φ1000、L=2.3m(52本) ※詳しくは関連リンクからPDFダウンロードいただくか、お問い合わせ下さい。

  • Other civil engineering works
  • Construction method

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[Construction Case Studies] Special Feature on Removed Underground Obstacles - March

We have a track record of construction in various fields! We can cut, remove, and backfill underground obstacles using various methods suitable for the site.

On our company website, we introduce case studies of underground obstacle removal. This page features a special report on underground obstacles removed in March 2022. For more details, please refer to the related links. Our company is capable of cutting, removing, and backfilling underground obstacles using various methods suitable for the site. Please feel free to contact us with your requests. 【Methods for Underground Obstacle Removal】 ■ Multi-Drill Method (Equivalent to BG Method) ■ All-Casing Method (Equivalent to BG Method) *For more details, please download the PDF from the related links or contact us.

  • Other civil engineering works
  • Construction method

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[Construction Example] Removal of Underground Obstacles in Minato Ward & 30m Foundation Pile Driving Work

Feel free to consult us if you are in trouble! Here is an example of a case where we encountered underground obstacles and received a removal request.

We would like to introduce a case of underground obstacle removal conducted by our company in Takanawa, Minato-ku, Tokyo. During the construction using the Aboron method, we encountered an underground obstacle at a depth of 18 meters, which made it impossible to continue the work, leading to a request for removal from our company. Using the multi-drill excavator SR-45, we performed the underground obstacle removal with the multi-drill method, and after the obstacle was removed, we also carried out the installation of the foundation piles for the tower crane, measuring 350×350H. [Case Overview] ■ Project Name: Underground Obstacle Removal & 30m Foundation Pile Installation in Minato-ku ■ Construction Date: March 11, 2020 ■ Location: Takanawa, Minato-ku, Tokyo *For more details, please download the PDF from the related link or contact us.

  • Other civil engineering works
  • Construction method

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[Construction Case] SR45 Multi-Drill Method Underground Obstacle Removal

Introducing examples of smooth removal made possible by using our independently developed tools!

We would like to introduce a case study of underground obstacle removal conducted by our company. In Nihonbashi, Chuo-ku, Tokyo, where the Shinkansen runs nearby, we used the SR45 multi-drill to remove a site construction pile with a diameter of 1200 mm and a depth of 22 m. The removal of the site construction pile in a narrow area was extremely challenging, but by utilizing our uniquely developed Kelly grab, 3D bucket, and lightweight power jack, we were able to achieve a smooth removal. 【Case Overview】 ■ Project Name: SR45 Multi-Drill Method - Underground Obstacle Removal ■ Construction Date: September 11, 2021 ■ Location: Hon-Ishicho, Nihonbashi, Chuo-ku, Tokyo ■ Details: Diameter 1200 mm, Depth 22 m *For more details, please download the PDF from the related link or contact us.

  • Other civil engineering works
  • Construction method

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[Construction Case Studies] Special Feature on Removed Underground Obstacles

For inquiries and requests regarding foundation work, please contact us! We feature underground obstacles that have been removed using our developed tools.

On our company website, we introduce case studies of underground obstacle removal. On this page, we feature underground obstacles that were removed using tools developed by our company. For more details, please check the related links. Additionally, we have included images of the removal status from January 2022, so please take a look. 【Methods for Underground Obstacle Removal】 ■ Multi-Drill Method (Equivalent to BG Method) ■ All-Casing Method (Equivalent to BG Method) *For more details, please download the PDF from the related links or contact us.

  • Other civil engineering works
  • Construction method

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[Construction Case Studies] Special Feature on Removed Underground Obstacles (6)

Track record of construction in various fields! Consistent in-house construction is possible from ground surveys to ground improvement work.

On our company website, we introduce examples of underground obstacle removal projects. This page features Part 6 of our series on removed underground obstacles. For more details, please refer to the related links. Our company offers a comprehensive in-house service from ground surveys to ground improvement work. Please feel free to contact us if you have any requests. 【Methods for Underground Obstacle Removal】 ■ Multi-Drill Method (Equivalent to BG Method) ■ All-Casing Method (Equivalent to BG Method) *For more details, please download the PDF from the related links or contact us.

  • Other civil engineering works
  • Construction method

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[Construction Case Studies] Special Feature on Removed Underground Obstacles (8)

In the multi-drilling method, tools are selected and constructed according to the situation! Original tools are also developed.

On our company website, we introduce case studies of underground obstacle removal. This page features Part 8 of our series on removed underground obstacles. For more details, please refer to the related links. Our company has also developed original tools, achieving significant results in various field situations. 【Methods for Underground Obstacle Removal】 ■ Multi-Drill Method (Equivalent to BG Method) ■ All-Casing Method (Equivalent to BG Method) *For more details, please download the PDF from the related links or contact us.

  • Other civil engineering works
  • Construction method

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[Construction Case] Sagamihara City, Midori Ward T Column New Construction and Renovation Work

290 construction locations, excavation length of about 10m! A case of columnar improvement work using the T-column method.

We would like to introduce a case study of ground improvement work carried out by our company. In a vast area in Tsukui, Sagamihara City, we performed columnar improvement work using our original deep mixing method and T-column method. Due to the project involving 290 locations and an excavation depth of approximately 10 meters, we installed a 30-ton silo and plant for the solidifying material. Solidifying material was delivered daily, and the work was successfully completed. 【Case Overview】 ■ Project Name: T-Column New Construction and Renovation Work in Midori Ward, Sagamihara City ■ Construction Date: March 16, 2020 ■ Location: Chigira, Midori Ward, Sagamihara City *For more details, please refer to the PDF materials or feel free to contact us.

  • Ground foundation construction method
  • Construction method

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[Construction Example] Atsugi City Surface Improvement Using Mixing Bucket

Introducing a case of surface improvement associated with new construction work conducted in Atsugi City, Kanagawa Prefecture!

We would like to introduce a case study of ground improvement work carried out by our company. In Atsugi City, Kanagawa Prefecture, we performed surface improvement work associated with the new construction of the Atsugi Fire Station South Mohri Branch. A mixing bucket was attached to a 0.7 backhoe, and we mixed 162 tons of solidifying agent for an area of 893 m². 【Case Overview】 ■ Project Name: Surface Improvement in Atsugi City Using a Mixing Bucket ■ Construction Date: October 14, 2020 ■ Location: Nagase, Atsugi City, Kanagawa Prefecture *For more details, please refer to the PDF document or feel free to contact us.

  • Ground foundation construction method
  • Construction method

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[Construction Example] Underground Obstacle Removal using Multi-Drill Method

Introduction of the original tool "Kachi Waku-kun"! Pile removal work using the multi-drilling method.

We would like to introduce a case study of underground obstacle removal conducted by our company. At a site in Honmoku, Yokohama City, an existing PHC pile with a depth of 28m and a diameter of 600mm broke during extraction, leading to a request for underground obstacle removal from our company. Using our original tool "Kachi-Wakukun," we performed the removal using a casing with a diameter of 1,000mm and the all-casing method with the SR-45 multi-drill excavator. 【Project Overview】 ■ Project Name: Introduction of "Kachi-Wakukun" and pile removal using the multi-drill method ■ Construction Date: September 27, 2023 ■ Location: Yokohama City, Kanagawa Prefecture *For more details, please refer to the related links or feel free to contact us.

  • Other civil engineering works
  • Other earthworks, foundation works, and exterior floors
  • Drilling Machine
  • Construction method

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Bead Ringer Net Method

Capable of handling 1300 kJ of rockfall energy! The cushioning mechanism reduces the anchor force.

The "Bead Linger Net Method" is a pocket-type rockfall protection net equipped with a cushioning device designed for high energy absorption. Its pulley structure disperses rockfall energy over a wide area, efficiently absorbing falling rocks. Compared to conventional methods, it contributes to cost reduction in rockfall countermeasure works. Additionally, it uses general-purpose components for major parts, allowing for quick maintenance. 【Features】 ■ Capable of handling rockfall energy of 1300 kJ ■ Reduces the load on anchors ■ Complies with performance verification methods based on experiments from the rockfall countermeasure handbook ■ Cost reduction and rapid maintenance ■ Suitable for snow-covered regions *For more details, please refer to the PDF materials or feel free to contact us.

  • Special Construction Method
  • Net fence
  • Construction method

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Wire Pre-Cutting Method "L-Line System - Wire Unit"

By using the unit wiring method, we simplify electrical construction and standardize the installation! We are freed from the joint connection work of VVF cables, reducing mistakes and shortening construction time!

The electric wire unit cable is a product that pre-cuts electrical wiring for homes and turns it into a unit! It streamlines the indoor wiring work of VVF cables (connecting to switches, outlets, lighting fixtures, distribution boards, etc.). This product is processed in a dedicated factory in advance. 【Features】 ■ Reduction of construction errors and shortened construction period By using color sheathed cables and destination labels, construction errors can be reduced. Since wiring at the ceiling beams is unnecessary on-site, work time is shortened. ■ Storage of electrical drawings Approval drawings for the power company can be created, digitized, and stored for management. ■ High quality and high reliability Since the branch connection parts are processed in the factory and all circuits are inspected, it is possible to deliver good products. ■ Diverse needs In addition to electric wire units, it is also possible to pick out information-related wiring devices and ship them by individual residence. ■ It is a product certified by the Japan Electric Wire and Cable Industry Association (JCS).

  • Wiring devices
  • Power distribution and control panels
  • Unit and other construction
  • Construction method

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Side Ditch Repair Construction System "Neplus Method"

12th National Land Technology Development Award "Regional Contribution Technology Award" received! Revolutionary drainage repair construction system.

The "Neplus Method" involves cutting and removing only the damaged upper part of the drainage ditch while preserving the still usable lower part, significantly reducing industrial waste. Additionally, it is an environmentally friendly method that reduces the work process, minimizes the materials used, and requires little to no heavy machinery, thereby also reducing CO2 emissions. 【Advantages】 ■ Construction waste reduced by 80% compared to conventional methods ■ Excavation residual soil reduced by 100% compared to conventional methods ■ Can be implemented even when structures are close together ■ Immediate traffic reopening for residents is possible ■ Significant reduction in construction and indirect costs, etc. *For more details, please download the PDF or contact us.

  • Civil Engineering Method
  • Construction method

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Sheet lining method "BKU (Baker-Woo)"

It is suitable for long-term durability as it maintains concrete corrosion resistance, allowing for savings in maintenance costs.

"BKU" is a sheet lining method that protects concrete sewer pipes and structures with synthetic resin plates (BKU plates = PVC ribbed plates). The joining of BKU plates, which are approximately 30 cm wide, can be easily done with a joining material called BKU joint. It can be installed without being affected by weather or temperature. Additionally, there is the "BKU anti-corrosion method," which offers excellent economic benefits. Please contact us for more details. 【Features】 ■ Corrosion resistance, smoothness, and wear resistance ■ Physically integrates strongly with concrete, eliminating the risk of delamination ■ Joining can be easily done with a joining material called BKU joint ■ Easy attachment of BKU panels (repair work) ■ Maintains long-term corrosion resistance of concrete, suitable for extending lifespan and reducing maintenance costs *For more details, please refer to the PDF document or feel free to contact us.

  • Renovation and repair methods
  • Construction method

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Airheart Method

A pneumatic-operated wastewater pump method that achieves high efficiency at low cost! It significantly contributes to recovery and reconstruction.

This technology is a simple water replacement method that responds to diverse needs in the sewer restoration work following the Great East Japan Earthquake. Since it does not use a power motor, temporary power sources or portable generators are unnecessary. It is a completely self-sufficient pump that does not require "priming water," so high-pressure washing trucks and water supply vehicles are not needed. It has also been adopted in the disaster recovery work following the Kumamoto Earthquake and the Tottori Chubu Earthquake, making a significant contribution to restoration and reconstruction. 【Features】 ■ Achieves high efficiency and low cost ■ Provides a hygienic working environment ■ Allows for water replacement only at the construction site ■ Quick installation and removal ■ Enables emergency pipeline opening *For more details, please refer to the PDF materials or feel free to contact us.

  • Special Construction Method
  • Construction method

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Pipe Rehabilitation System: Thru-Lining Method

Integrated rehabilitation of sewer pipes! We revive various pipelines in daily life without excavation.

The "Thru-Ring Method" is a technology for rehabilitating aging pipelines that are facing numerous issues without excavation. It can completely resolve problems associated with aging pipes (such as corrosion, cracks, infiltration of water, and intrusion of tree roots). By adjusting the thickness of the rehabilitated pipe, it can also accommodate standalone pipes and dual-layer structure pipes. Additionally, it is characterized by the ability to perform special constructions (such as large-diameter pipes, pressure pipes, curved and steep gradient piping, etc.). 【Features】 ■ It is a technology developed domestically, providing stable quality materials and construction. ■ It enables the restoration of functionality, improvement of service life, and reinforcement of aging pipes without excavation. ■ Structural design is carried out according to the purpose and conditions, allowing for the rehabilitation of aging pipes tailored to specific needs. ■ It can completely resolve the issues associated with aging pipes. ■ By adjusting the thickness of the rehabilitated pipe, it can accommodate standalone pipes and dual-layer structure pipes. *For more details, please refer to the PDF materials or feel free to contact us.

  • Special Construction Method
  • Construction method

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Dual Shield Method

Easily construct pipelines in densely populated urban areas! A construction method that shortens the construction period.

The "Dual Shield Method" is a shield switching type of thrust construction method that incorporates the advantages of both thrust and shield methods. It employs a cost-effective thrust method for gentle curves and straight sections, while using the shield method for sharp curves and continuous curve sections. This makes it easier to construct pipelines in densely populated urban areas, significantly reducing costs. 【Features】 ■ Capable of sharp curves (R10m) without the need for rotating shafts at intersections ■ Can be constructed with shafts sized for thrust methods ■ Equipment from thrust methods can be used ■ Average daily progress increases by combining thrust methods ■ Using a mud slurry method increases thrust extension *For more details, please download the PDF or feel free to contact us.

  • Civil Engineering Method
  • Construction method

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Special Yatoko Method

A foundation pile installation method that does not require cutting costs for the pile head! The cost of pile materials is sufficient for the actual length.

We would like to introduce the "Special Yattoko Method." The "Special Yattoko" developed by our company is a Yattoko specification that does not cut any piles and has been highly evaluated by various government agencies. This product is made of steel pipes with the same diameter as the piles and is installed in the bolt holes of the pile heads to integrate with the piles, allowing for the embedding of four or more long bolts. After inserting the piles, the portion above ground is checked for pile alignment using a transit level, and temporarily fixed with a wooden camber. Then, the bolts protruding above ground are loosened and pulled out. **Features** - Economical - Does not compromise pile performance - No reinforcement due to pile misalignment - Yattoko construction is possible up to a maximum of 10m - Usable for PHC piles, joint piles, steel pipe piles, and H-beams *For more details, please refer to the PDF document or feel free to contact us.*

  • Civil Engineering Method
  • Construction method

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Two-axis coaxial underground steel pipe installation method

The pull-out resistance is extremely strong! Since the soil will return to the steel pipe after installation, soil treatment will require only a small amount.

This technology uses a dual-axis coaxial drilling machine to embed steel pipe piles through an inner excavation foundation pile embedding method. The augers used are formed by an auger that rotates the screw and an auger that rotates the steel pipe. Each type comes in both separate and single models, which are selected based on construction conditions. Additionally, when excavating gravel layers or bedrock layers, a necessary number of ultra-hard pipe bits for the cutting edge are attached to the tip of the steel pipe pile. 【Features】 ■ Extremely strong pull-out resistance ■ Embedding in gravel and bedrock is also possible ■ Vertical accuracy is exceptionally good ■ Soil is returned to the steel pipe after embedding, resulting in minimal soil disposal ■ Construction can be performed with low vibration and low noise *For more details, please refer to the PDF document or feel free to contact us.

  • Civil Engineering Method
  • Construction method

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Down-the-Hole Method

Since the selection of bits can be made based on the geology, suitable construction can be carried out according to the site conditions.

This technology is a drilling method that excels in mobility, allowing for a speedy setup from equipment assembly to construction. Using "down-the-hole" air drive to excavate rock formations, the impact force is transmitted directly to the bit without passing through the rod, resulting in high work efficiency. Additionally, the exhaust air blows away the excavated debris, keeping the drilling surface constantly clean, enabling efficient construction. The bit can be replaced according to the geological conditions. 【Features】 ■ Can be used in narrow sites or areas inaccessible to large machinery ■ Excavated debris is discharged by air lift ■ Enables efficient and economical construction ■ The drilling surface is constantly cleaned *For more details, please refer to the PDF materials or feel free to contact us.

  • Special Construction Method
  • Construction method

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Medium and deep ground improvement methods

The automatic flow recording device controls the discharge amount of the solidifying liquid, allowing for homogeneous ground improvement.

This technology is a ground improvement method that allows for the production of improved soil with a specified strength by setting the additive rate of solidifying agents according to the soil characteristics of the target ground. The improved soil achieves strength in a short period, enabling early use. Since no consolidation settlement occurs, the upper soil does not deform. Additionally, our company can implement both wet and dry improvement methods under a complete construction management system, tailored to various soil and ground conditions. 【Features】 ■ Improved soil with specified strength can be obtained ■ Improved soil achieves strength in a short period, allowing for early use ■ No consolidation settlement occurs, preventing deformation of the upper soil ■ Low vibration and low noise ■ Minimal impact on surrounding areas *For more details, please refer to the PDF materials or feel free to contact us.

  • Ground improvement
  • Construction method

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PC curtain wall construction method

On the exterior walls of office buildings! A variety of finishes such as stone, tile, and paint are possible.

The "PC Curtain Wall Method" is used for facades that adorn the exterior walls of office buildings and similar structures. It allows for a variety of finishes such as stone, tile, and paint. It consists of several components, which not only ensure performance but also contribute to aesthetic features, with various forms of components and interlayer displacement tracking methods during earthquakes being adopted according to the characteristics of the building. [Features] ■ Used for facades that adorn the exterior walls of office buildings and similar structures ■ Offers a variety of finishes ■ Accommodates free shapes ■ Three support methods *For more details, please refer to the PDF materials or feel free to contact us.

  • Housing structure technology/long-term superior housing technology
  • Wood panel and frame wall construction
  • Construction method

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Exterior Waterproofing Repair Method "Rianet E Method"

We guarantee the prevention of exterior wall peeling and waterproof performance for up to 20 years. Applicable to buildings up to 60 meters tall! Ideal for tile wall renovations!

The "Rianet E Method" is a construction technique that firmly secures the exterior walls with pins and nets, and covers the entire building with a high-elasticity acrylic rubber-based waterproof coating that excels in weather resistance and flexibility. With its high elasticity and waterproofing properties, it prevents leaks and deterioration of exterior walls due to weather conditions, ensuring the long life of the building while also preventing cracking and peeling of exterior materials. We offer a construction guarantee of up to 10 years from the initial renovation using the Rianet E Method, and an additional maximum of 10 years from the re-renovation with the maintenance layer, for a total of up to 20 years. 【Features】 ■ No peeling of exterior wall materials or cracking of repair surfaces occurred even during actual major earthquakes. ■ Excellent waterproof performance, blocking carbonation, salt damage, and other external deterioration factors. ■ Can be applied over existing finishes, shortening the renovation period. ■ Uses water-based materials, resulting in minimal odor generation and consideration for the environment. ■ Provides a guarantee of up to 10 years from the first renovation, and an additional maximum of 10 years from re-renovation. ■ Obtained technical review certification from the Japan Architectural Center (JAC). ■ The total area of construction so far exceeds the area of 10 Tokyo Domes. *For more details, please download the PDF or feel free to contact us.

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  • Renovation and repair methods
  • Rubber sheet
  • Construction method

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Reinforcement of existing beam after hole cutting: "Redouble Method"

Post-extraction opening reinforcement of beams using carbon fiber and cast steel plates - 'Redouble Method'

The "Ridabble Method" is a reinforcement technique that uses carbon fiber sheets, carbon fiber plates, and specialized anchoring hardware (cast steel plates) to shear-reinforce the cut-out sections of existing beams, allowing them to achieve a load-bearing capacity equal to or greater than that of the beams before the openings. This method has obtained general evaluation certification. Unlike traditional anchoring methods using L angles or flat bars for carbon fiber sheets, this method is compact and simple, yet ensures reliable anchoring of the carbon fiber sheets. There are two types of anchoring plates: flat type and vertical type, which can also be applied to reinforcement of wall-mounted columns and T-shaped beams. 【Features】 ■ A method that has obtained general evaluation certification for opening reinforcement General evaluation (Public Interest Incorporated Foundation) Better Living CBL RC001-10 ■ Suitable for opening reinforcement due to equipment renewal ■ Allows for pseudo-closed reinforcement through the use of anchoring hardware ■ Applicable to underground beams as well *For more details, please refer to the PDF materials or feel free to contact us.

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  • Paving Machine
  • Construction method

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