Construction method Product List and Ranking from 1594 Manufacturers, Suppliers and Companies | IPROS

Last Updated: Aggregation Period:Feb 25, 2026~Mar 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:Feb 25, 2026~Mar 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. TRAWE main office Saitama//Other construction industries
  3. エルニード協会 Kagawa//Other construction industries
  4. 4 null/null
  5. 5 シーカ・ジャパン Tokyo//Building materials, supplies and fixtures manufacturers

Construction method Product ranking

Last Updated: Aggregation Period:Feb 25, 2026~Mar 24, 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 Special foundation roller painting method for interior and exterior finishes "Fine FR Method" エスケー化研

Construction method Product List

1591~1620 item / All 4292 items

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Bridge pier seismic reinforcement method "AT Method"

Extremely suppress the bending moment to reduce the increase in the cross-section of the structure, while also accommodating constraints from adjacent structures!

The "AT Method" is a seismic reinforcement method for bridge piers that significantly reduces the thickness of the reinforcement wrapping compared to the RC wrapping method and conventional PCM wrapping method. By cutting grooves into the surface of the existing concrete and embedding reinforcement bars, the increase in wrapping thickness can be greatly reduced. As a result, the range of applicability expands even in cases with structural constraints. 【Construction Procedure】 ■ Surface treatment → Core space cutting → Core drilling → Embedded groove cutting → Reinforcement bar embedding commencement → Band reinforcement bar installation → Protective coating → Finish material application *For more details, please feel free to contact us.

  • Renovation and repair methods
  • Special Construction Method
  • Construction method

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TACSS method

A pollution-safe liquid injection method for waterproofing structures that does not adversely affect groundwater!

The "TACSS Method" is a one-component system that uses a chemical solution that reacts with water but is difficult to dissolve in water. It confronts high-pressure and high-flow underground water, reliably stopping water and providing waterproofing for structures while minimizing adverse effects on groundwater, making it a highly environmentally safe chemical injection method. Due to its excellent properties, this system is utilized not only for ground reinforcement but also for the preservation of archaeological sites. 【Features】 ■ Complies with JWWA K-135 leaching tests ■ Acquired F☆☆☆☆ certification ■ Forms high-strength, highly waterproof solid bodies and waterproof layers ■ Does not contaminate groundwater even with unreacted chemical solutions or in a gelled state ■ Exhibits excellent performance over a long period *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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[Data] Comprehensive Concrete Repair Method Using Lithium Nitrite

Introducing comprehensive concrete repair methods that support the 100-year concrete era in an easy-to-understand manner.

This document presents a comprehensive concrete repair method using lithium nitrite, which supports the 100-year era of concrete. It clearly explains the deterioration of concrete structures, the selection flow for repair methods for salt damage and carbonation, and the selection flow for repair methods for ASR, using diagrams for better understanding. [Contents] ■ Deterioration of concrete structures ■ Selection flow for repair methods for salt damage and carbonation ■ Mechanism of passive film regeneration by nitrite ions ■ Role of lithium nitrite ■ Selection flow for repair methods for ASR *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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If the floor coating is peeling or damaged, apply Euclite. Fuji Oil Chiba Factory 2.

Low possibility of mold growth and bacteria proliferation! Very effective construction method in terms of hygiene!

We received a request from the Fuji Oil Chiba Plant and carried out construction work using the "U-Crete UD200SR" method. First, we prepared the surface by polishing the floor to ensure its condition. Next, we painted the areas that were different in color first, and then applied the U-Crete UD200SR coating to the entire floor. The U-Crete method has a low possibility of mold growth and bacterial proliferation, making it very effective in terms of hygiene. [Case Overview] ■ Fuji Oil Chiba Plant, Chiba City, Chiba Prefecture ■ Flooring Method: U-Crete UD200SR *For more details, please refer to the PDF document or feel free to contact us.

  • Plastering and painting work
  • Special Construction Method
  • Special flooring/indoor
  • Construction method

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Recycling-type greening method "All Greening Method"

A spraying greening method that enables the efficient return of various construction by-products to slopes!

The "All-Greening Method" is a recycling-type greening technique that utilizes locally generated soil, felled trees, and root chips, which are construction by-products, as the main materials for slope greening work. It features a dedicated plant system and high erosion resistance achieved through the incorporation of short fibers, enabling high workability and providing a quality growth foundation. [Features] - Ensures very high retention and erosion resistance by mixing short fibers into the growth foundation. - Accommodates construction methods that consider biodiversity. - Uses dedicated plants tailored to the type and quantity of construction by-products and the scale of construction. *For more details, please download the PDF or feel free to contact us.

  • Renovation and repair methods
  • Special Construction Method
  • Ground foundation construction method
  • Construction method

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Shape Memory PVC Pipe Rehabilitation Method "Omega Liner Method"

Speedy restoration to a circular shape with just heating! It is possible to achieve highly safe and reliable pipeline rehabilitation.

The "Omega Liner Method" is a rehabilitation method for PVC pipelines that utilizes shape memory PVC pipes, excelling in strength, durability, corrosion resistance, and hydraulic properties. As a non-excavation method, it minimizes the impact on the surrounding environment. Please feel free to contact us if you have any inquiries. 【Features】 ■ Fast and easy construction ■ Contributes to shortening construction time and reducing costs *For more details, please feel free to contact us.

  • Special Construction Method
  • Construction method

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Ground improvement work ☆ Deep mixing method 'T-column method' * Certification obtained

This is a columnar improvement work of deep mixing treatment made possible by a self-developed stirring device (patent obtained) that enables high quality, low cost, and flexible responsiveness!

The T-column method is a construction technique that involves excavating the ground while injecting cement-based solidifying materials, efficiently mixing and stirring the solidifying materials with the soil using a uniquely developed mixing device, thereby constructing stable, high-quality columns (columnar improved bodies). ■ Japan Building Center Foundation Construction Technology Examination Certification (Building Technology)  BCJ - Examination Certification - 219 ■ NETIS Number KT-150083-A <Features> - Maximum column diameter of 1.60 m and maximum depth of 16 m. It is possible to construct up to the maximum column diameter with a base machine of 0.7 m³ class without using a three-point pile driver. It can accommodate various types of soil, including cohesive soil, sandy soil, and loam, allowing for flexible responses to various road and neighboring conditions. - By using a fully automated plant, the slurry production process can be managed, ensuring stable quality. - In the case of small-scale buildings, a mold core can be created by sampling with a depth mold sampler. There is no need to collect boring cores, which can reduce construction time and costs. *Documents can be downloaded from the related links.

  • Ground foundation construction method
  • Construction method

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[Construction Example] Multi-Drill Method (Equivalent to BG Method)

We will perform cutting, removal, and backfilling suitable for the site! A case of removing PHC piles that could not be completely taken out.

We would like to introduce a case study of underground obstacle removal conducted by our company. In Yokosuka City, Kanagawa Prefecture, we carried out the work using the multi-drilling method (equivalent to BG method). We removed PHC piles that could not be extracted using the pull-out method. Upon receiving notice that extraction was impossible, we promptly commenced work and successfully completed the project. 【Case Overview】 ■ Project Name: Multi-Drilling Method (Equivalent to BG Method) ■ Construction Date: May 12, 2022 ■ Location: Yokosuka City, Kanagawa Prefecture ■ Details: φ1000 GL-25m *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 Example] Multi Drill SR-45 (Equivalent to BG) Low Headroom Size

Introducing a case of underground obstacle removal conducted on April 1, 2022!

On our company website, we introduce numerous case studies of underground obstacle removal. On this page, we present the sizes for low-headroom construction using the multi-drill method (equivalent to BG method) in drawings. Our company selects tools based on the situation and carries out the construction accordingly. 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] Removal of Subsurface Obstacles March Part 2

Introducing actual underground obstacles! We have a proven track record in various situational sites.

On our website, we introduce case studies of underground obstacle removal. This page features the second installment of our special on underground obstacles removed in March 2022. For more details, please check the related links. We have included images of actual underground obstacles, 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 (7)

Introducing actual underground obstacles! We select tools according to the situation and carry out the construction.

On our company website, we introduce case studies of underground obstacle removal. This page features Part 7 of our series on removed underground obstacles. For more details, please refer to the related links. We have included images of actual underground obstacles, 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 Example] New Warehouse Construction Using T-Column Method

Carefully planned and constructed to match the building! Introducing examples from the construction site of a new warehouse.

We would like to introduce a case study of the ground improvement work we conducted. At the site of a new warehouse construction in Chigasaki City, Kanagawa Prefecture, we implemented our original deep mixing method and T-column method. The improvement diameters varied widely, with the largest being Φ1400mm and the smallest Φ800mm, totaling five types. We carefully planned and executed the work to match the building requirements. 【Case Overview】 ■ Project Name: Warehouse New Construction T-Column Method ■ Construction Date: September 30, 2019 ■ Location: Chigasaki City, Kanagawa Prefecture *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 Case] Nihonbashi, Chuo Ward, Tokyo T-Column Method (Deep Mixing Method)

We will introduce a case where the T-column method was implemented in a strict and narrow area to improve φ1000.

We would like to introduce a case study of the ground improvement work we conducted. In Nihonbashi, Chuo Ward, Tokyo, we performed the T-column method (deep mixing method) using construction machine S-15. We have introduced this case with images in the related links, so please take a look. 【Case Overview】 ■ Project Name: T-column Method (Deep Mixing Method) in Nihonbashi, Chuo Ward, Tokyo ■ Construction Date: June 5, 2021 ■ Location: Nihonbashi, Chuo Ward, Tokyo *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] Ground Improvement using Deep Mixing Method (T-Column Method)

Construction case of columnar improvement work at the ground with 170 piles of diameter Φ160 at 3 locations!

Here is an introduction to a case study of ground improvement work conducted by our company. In Machida City, Tokyo, the columnar improvement work for the newly created Tokiwa Ground within the Obirin Gakuen Machida Campus has begun, utilizing the original method "T-Column Method," which has obtained technical examination certification and is based on deep mixing treatment technology. This project involved columnar improvement work for the ground, special L-shaped retaining walls, and L-shaped retaining walls. 【Case Overview】 ■ Project Name: Ground Improvement using Deep Mixing Treatment (T-Column Method) ■ Construction Date: September 3, 2020 ■ Location: Tokiwa Town, Machida City, Tokyo ■ Details: Pile diameter Φ160, total of 170 piles *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 Case] T Column Method, Odawara City, Kanagawa Prefecture

Introducing a case of ground improvement work conducted in Odawara City, Kanagawa Prefecture on September 30, 2021!

We would like to introduce a case study of ground improvement work conducted by our company. We performed our original deep mixing method, the T-column method (Construction Technology Examination Certification), on the site of a factory located in Odawara City, Kanagawa Prefecture. We have provided images along with this case study in the related links, so please take a look. 【Case Overview】 ■Project Name: T-column Method in Odawara City, Kanagawa Prefecture ■Construction Date: September 30, 2021 ■Location: Odawara 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 Case] Sagamihara City T Column Method (Deep Mixing Method)

Introducing a case where the T-column method (deep mixing treatment method) was implemented using construction machine S-15!

We would like to introduce a case study of the ground improvement work we conducted. In Midori Ward, Sagamihara City, Kanagawa Prefecture, we implemented our original T-column method (deep mixing method) using construction machine S-15. A total of 176 locations were completed successfully. 【Case Overview】 ■ Project Name: Sagamihara City T-Column Method (Deep Mixing Method) ■ Construction Date: October 5, 2021 ■ Location: Midori Ward, Sagamihara City, Kanagawa Prefecture ■ Details: Five types of piles with a small diameter of Φ800mm and a large diameter of Φ1300mm *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] T-Column Method (Deep Mixing Method) in Machida City, Tokyo

Leave your foundation construction work to us! Excavation length of 9.0m, with 120 construction sites as examples.

We would like to introduce a case study of the ground improvement work we conducted. In Machida City, Tokyo, we implemented our original T-column method (deep mixing method). The excavation depth was 9.0 meters, with 120 construction locations, and a silo for the solidifying agent was installed for the work. We have provided images of this case study in the related links, so please take a look. 【Case Overview】 ■ Project Name: T-column Method (Deep Mixing Method) in Machida City, Tokyo ■ Construction Date: October 9, 2021 ■ Location: Machida City, Tokyo *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 Examples] FCB Method, JR Bubble Mortar Embankment, etc.

Numerous construction examples aimed at lightweight solutions such as road widening, railway elevation, and apartment renovations!

There are numerous examples of construction using air milk and air mortar for lightweight embankments and related lightweight applications! In the lightweight embankment of the track slope, we conducted construction for a railway grade separation project in Tokyo using bubble mortar. Air mortar (air milk) can be utilized for various applications, including lightweight embankments for steep slope stabilization, reducing lateral earth pressure behind retaining walls, alleviating loads on buried structures, and lightweight construction in building floor areas. 【Steep Slope Stabilization Lightweight Embankment Construction Example】 ■ Area: Kanagawa ■ Public/Private: Private ■ Construction Location: Slope ■ Detailed Construction Location: A villa owned by the chairman of a certain listed company ■ Additional Information: "FCB Method" *For more details, please refer to the PDF materials or feel free to contact us.

  • Mortar and plaster materials
  • Construction method

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Slope Erosion Prevention Surface Soil Erosion Control Method "EPM"

Measures against frequent guerrilla rainstorms. Maintenance is easy because the materials can be replaced.

"EPM" is a surface soil erosion control method that can prevent erosion of ground layers up to approximately 1.0m thick. By using a tensile "EPM net (wire mesh)" to secure the entire slope, it is possible to prevent slope erosion and the outflow of seeds from the "EPM mat." Even if the ground surface subsides, the compressive effect from the rebound force of the support springs continuously applies pressure to the ground, maintaining the effectiveness of soil erosion control. 【Features】 ■ Prevents slope erosion and seed outflow ■ Suppresses surface soil outflow ■ Continuously controls soil outflow ■ Excellent workability and easy maintenance ■ Shortens construction time and reduces costs *For more details, please refer to the PDF materials or feel free to contact us.

  • Civil Engineering Method
  • Construction method

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SUS (stainless steel) & SGP (steel pipe) prefabricated eco construction method

The idea of outsourcing "construction sites"! We will solve various challenges faced by the site.

The construction method responds effectively to the current needs for environmental protection, construction site conditions, working environments, safety, and cost awareness. By not bringing in materials and equipment, it reduces noise and smoke generated from on-site work. It also addresses the reduction of waste materials such as scrap and packaging. Additionally, it allows for management of work processes according to the construction schedule, enabling appropriate personnel allocation in line with product delivery dates. 【Features】 ■ Environmental conservation ■ Safety measures ■ Reduced number of entrants ■ Cost reduction ■ Shortened construction period ■ Improved quality *For more details, please refer to the PDF materials or feel free to contact us.

  • Special Construction Method
  • Piping and insulation
  • Water and sewerage pipe fittings
  • Construction method

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Rope access technology

Safe, reliable, low-cost close visual inspection in high and difficult locations.

Our company offers a groundbreaking technology called "Rope Access Technology," which enables safe and low-cost work in difficult and high-altitude locations. This technology has been improved from SRT technology, which was developed for cave exploration, allowing qualified personnel to move to the desired location more safely, easily, quickly, and reliably, thereby ensuring safer on-site inspections. 【Features】 ■ Safe and reliable ■ Low cost ■ Full service from planning to execution ■ Diverse qualified personnel *For more details, please download the PDF or feel free to contact us.

  • Civil Engineering Method
  • Construction method

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Excavation Shield Method "OSJ Method"

A groundbreaking advanced technology for underground conduit installation work.

The "OSJ Method" is a continuous excavation shield pipe (box) installation method that involves performing a series of operations from excavation to backfilling while conducting soil retention using an open shield machine (OSJ machine) during the underground construction of pipes (box culverts) and open channels in urban areas. With a wealth of construction achievements, continuous improvements to the machinery, and numerous patents obtained, this method has now established itself as a reliable and unique construction technique, enabling safer and faster construction. Additionally, this method is registered in ARIC (Agricultural and Rural Development Private Technology Database). 【Features】 ■ Reduction of impact on living environments and decrease in traffic disruptions ■ Improved safety ■ Wide applicability ■ Significant shortening of construction periods ■ Cost reduction *For more details, please download the PDF or feel free to contact us.

  • Ground foundation construction method
  • Civil Engineering Method
  • Construction method

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All Geological Adaptable Open-Cut Shield Method "OSJ-CONG Method"

Eliminates the need for auxiliary waterproofing methods such as liquid injection! It is also possible to reduce the impact on the surrounding area.

The "OSJ-CONG method" suppresses the outflow of groundwater from the face and the inflow of groundwater from the excavation bottom, eliminating the need for groundwater lowering methods such as well points and auxiliary waterproofing methods like chemical injection. By equipping the OSJ machine itself with collection and drainage functions, it eliminates the prior lowering of groundwater levels and allows for early recovery of water levels after passing through the OSJ machine. Furthermore, by minimizing the duration of groundwater level reduction, it prevents impacts on the surrounding area. 【Features】 ■ Prevents collapse of the face by suppressing the outflow of groundwater from the face. ■ Improves the constructability of the foundation by suppressing the inflow of groundwater from the excavation bottom. ■ Eliminates prior lowering of groundwater levels and enables early recovery of water levels after passing through the OSJ machine. ■ Minimizes the duration of groundwater level reduction, thereby preventing impacts on the surrounding area. *For more details, please refer to the PDF document or feel free to contact us.

  • Special Construction Method
  • Construction method

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Dissolving kettle "Pipe-type asphalt dissolving kettle"

Standard installation of a bimetal thermometer and an internally opening and closing special asphalt cock!

The "Pipe-type Asphalt Melting Kettle" is a melting kettle with internal heating that achieves high fuel efficiency and economic benefits. The main body of the melting section is insulated with glass wool (16kg/m3), providing excellent thermal insulation and preventing heat impact on the slab. Additionally, it is equipped with wide tires, making it easy to move. 【Features】 ■ Achieves high fuel efficiency and economic benefits ■ High thermal insulation performance with no heat impact on the slab ■ Easy to move with wide tires ■ Can be completely fixed using support legs and jacks during use ■ The melting kettle, burner, and fuel tank are integrated, minimizing damage and facilitating installation *For more details, please download the PDF or feel free to contact us.

  • others
  • Construction method

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Long-term corrosion protection system for steel materials "Puzzle(R) Method"

It is a long-term corrosion protection system for steel materials using room temperature metal thermal spraying!

The "Puzzle(R) Method" is a corrosion protection technique that dramatically enhances the corrosion resistance of sacrificial anode metal spraying (aluminum/zinc) and protective coatings by combining them, pursuing the principle of [1+1=4]. With the introduction of advanced sealing materials [Highbon AZ Sealer] and primer for metal spraying [Highbon Conductive Primer], it has become a groundbreaking long-term corrosion protection system for steel materials. 【Goals of the Puzzle(R) Method】 ■ Improvement of expected service life of corrosion resistance ■ Reduction of LCC (Life Cycle Cost) ■ Enhancement and generalization of maintenance technology ■ Gaining trust in steel materials *For more details, please download the PDF or feel free to contact us.

  • Special Construction Method
  • Construction method

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Small Injection Gun for Waterproofing Work 'KG-330 I (for High Viscosity)'

Greasing and injection work for bearings! Introducing our manual high-pressure small injection gun.

We would like to introduce the "KG-330 I" handled by Takasho Sangyo Co., Ltd. It comes with an injection nozzle and replacement packing. It is suitable for high viscosity (cream-like to grease-like viscosity). Please feel free to contact us if you have any requests. 【Specifications】 ■ Capacity: 300ml ■ Cylinder diameter: φ60mm ■ Total length: 408mm ■ Discharge amount: 1.5ml ■ Maximum pressure: 25MPa ■ Weight: 1.41kg *For more details, please refer to the PDF document or feel free to contact us.

  • Waterproofing work
  • Work tools
  • Construction method

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Basic Pile Installation Method: "Cement Milk Casing Method"

The vertical accuracy of the excavation hole is extremely good! A foundation pile installation method with increased rigidity that is strong against bending.

The "Cement Milk Casing Method" is a construction technique that adds a casing rotation mechanism to the outside of the auger screw, allowing the auger screw and casing to rotate relative to each other while excavating. This method is effective across a wide range of ground conditions, and can be applied to gravel ground, cobble layers, boulder layers, bedrock layers, sloped bedrock layers, and ancient cave layers in former coal mine sites. 【Features】 - The relative rotation of the auger screw and casing ensures excellent vertical accuracy of the excavation hole. - There is almost no high stopping of the piles. - The adhesion between the piles and the original ground is good. - There are no concerns regarding bearing capacity. *For more details, please feel free to contact us.

  • Pile and foundation work
  • Ground foundation construction method
  • Construction method

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SMW Soil Continuous Wall Method

By using different mixing devices that match the soil conditions, a uniform and high-quality continuous wall can be constructed.

This technology involves using a multi-axis earth auger equipped on a three-point pile driver to drill into the original ground while mixing and stirring with a cement-based slurry to create a continuous wall and insert stress materials with appropriate strength. By utilizing mixing devices that are suitable for the soil conditions, it is possible to create a uniform and high-quality continuous wall. Additionally, it can be used for various applications such as retaining walls, water-stopping walls, underground collapse prevention walls, various ground improvements, and pre-drilling for sheet pile driving in hard ground, making it versatile across a wide range of uses. 【Features】 ■ Can be constructed if there is more than 400mm between adjacent structures and the soil core ■ By changing the drilling and mixing device, it is possible to increase the pile diameter ■ Usable across a wide range of applications *For more details, please refer to the PDF materials or feel free to contact us.

  • Civil Engineering Method
  • Construction method

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Donut auger method

Introduction to the casing pile insertion method, which is extremely effective for groundwater pollution control.

This technology is a foundation pile embedding method that ensures reliable construction by inserting piles into a casing, preventing damage to the piles from impacts and other factors. It can be implemented even in ground conditions with groundwater flow and where excavation holes are prone to collapse. Additionally, after inserting the piles into the casing, surrounding sand is filled and the casing is pulled up, preventing groundwater contamination. Moreover, this method is particularly effective in a wide range of ground types, including gravel layers, cobble layers, and boulder layers. 【Features】 ■ Uses auger screws and donut auger machines ■ Enables reliable construction ■ Extremely effective for groundwater contamination prevention ■ Reduces the discharge of industrial waste ■ Effective in a wide range of ground types *For more details, please refer to the PDF materials or feel free to contact us.

  • Civil Engineering Method
  • Construction method

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Double Bowling Method

We will introduce a foundation pile installation method that can be carried out with low noise and low vibration.

This technology is a foundation pile embedding method that demonstrates its effectiveness in unstable ground, such as gravel layers in the intermediate layer. First, a large auger screw is used for the first excavation based on the pile diameter, while simultaneously injecting cement milk and mixing it to solidify the excavation hole. After allowing some time for solidification, a second excavation is performed, and root-fixing milk and surrounding stabilizing liquid are injected to embed the pile. 【Features】 ■ Effective in unstable ground ■ Increased bearing capacity ■ Can be constructed with low noise and low vibration *For more details, please refer to the PDF materials or feel free to contact us.

  • Civil Engineering Method
  • Construction method

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