Construction method Product List and Ranking from 1597 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Oct 29, 2025~Nov 25, 2025
This ranking is based on the number of page views on our site.

Construction method Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Oct 29, 2025~Nov 25, 2025
This ranking is based on the number of page views on our site.

  1. Taiyo Kisokogyo Co.,Ltd. Aichi//General contractors and subcontractors
  2. 水研 Shiga//Building materials, supplies and fixtures manufacturers
  3. null/null
  4. 4 三晃金属工業 Tokyo//General contractors and subcontractors
  5. 5 日本海洋サービス 大阪支店 Osaka//Building materials, supplies and fixtures manufacturers

Construction method Product ranking

Last Updated: Aggregation Period:Oct 29, 2025~Nov 25, 2025
This ranking is based on the number of page views on our site.

  1. Install the valve without stopping the water! 'EM Continuous Water Valve Method' 水研
  2. Hybrid Concrete Reinforcement Method "Solid Remain Alpha"
  3. Support for bridge pier reinforcement nationwide: "Temporary Closure LPF Method" 日本海洋サービス 大阪支店
  4. 4 Reinforcement of existing beam after hole cutting: "Redouble Method" コンステック
  5. 5 Temporary bridge temporary pier cable-stayed construction method "LIBRA Method" 横山基礎工事

Construction method Product List

2266~2280 item / All 4237 items

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On-site cast-in-place PC method

On-site cast-in-place PC method

The on-site cast prestressed concrete method involves placing a sheath with PC cables inside the formwork at the construction site, and applying prestress using hydraulic jacks after the concrete reaches its strength. 【Features】 ○ Characteristics of the PC method: Allows for large spans, with smaller beam heights ○ Types of tensioning methods: VSL method, Freyssinet method, CCL method, SM method ● For other functions and details, please contact us.

  • Special Construction Method

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Presentation of a collection of case studies on PC seismic reinforcement methods adopted by Tsukuba University and others.

A collection of case studies on PC seismic reinforcement methods adopted by Tsukuba University and others, available as a gift.

The "Case Study Collection of PC Seismic Reinforcement Methods Adopted by Tsukuba University and Others" is a collection that presents examples of a construction method that involves installing new frames made of precast prestressed concrete (PCa・PC) structure on the exterior of existing buildings. This method connects the existing frames and the new frames using slabs and PC steel bars to transmit horizontal forces, thereby increasing the seismic capacity of the existing building through the reinforcement provided by the new frames. It is currently available for free as a gift. 【Featured Cases】 ○ School facilities construction ○ Residential buildings, hospitals, office buildings, logistics facilities ○ Symbolic spaces ○ Large spaces ○ Seismic reinforcement methods, and others For more details, please contact us or download the catalog.

  • Vibration isolation, vibration control, and earthquake resistance construction
  • Heat insulation and heat shielding methods
  • Reinforced concrete structural systems (including PCa)

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Presentation of case studies on PC construction methods adopted in places like Fukuoka Dome.

A collection of case studies on PC construction methods adopted in places like Fukuoka Dome, available as a gift.

"The collection of case studies on the PC construction method adopted in places like Fukuoka Dome" is a compilation of examples showcasing the introduction of a systematic construction method aimed at improving the quality and constructability of structural frameworks in sports venues and leisure facilities. It is currently available for free as a gift. [Featured Cases] - School facilities construction - Residential buildings, hospitals, office buildings, logistics facilities - Symbolic spaces - Large spaces - Seismic reinforcement methods, and more For more details, please contact us or download the catalog.

  • Vibration isolation, vibration control, and earthquake resistance construction
  • Heat insulation and heat shielding methods
  • Reinforced concrete structural systems (including PCa)

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2019 Edition - Kenken Co., Ltd. 'PCa/PC Method' Case Studies

Starting with 'high schools,' we have various examples including 'memorial halls' and 'rugby fields'!

This catalog is a collection of case studies featuring examples of the "PCa/PC method" conducted by our company. This method involves constructing buildings by integrating precast components such as columns and beams manufactured in a factory through prestressing. We present various examples of buildings, including "high schools," "memorial halls," "rugby fields," "arenas," and "office buildings." [Featured Case Studies (Excerpt)] ■ Schools ■ Memorial Halls ■ Rugby Fields ■ Arenas ■ Gymnasiums ■ Museums *For more details, please refer to the PDF materials or feel free to contact us.

  • Special Construction Method
  • Civil Engineering Method
  • Specialized Construction

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Reinforced Soil Wall Method "Aqua Tail 35"

A construction method that demonstrates its true value in water, featuring a short construction period and low cost! It can be used in combination with the tail arm method.

"Aqua Tail 35" is a groundbreaking construction method that achieves significant reductions in construction time and costs while maintaining high reliability. By matching the wall thickness of conventional revetment blocks, it dramatically increases resistance to impacts and abrasion from floating debris. The improved construction speed allows for new joint shapes that enable installation along the streamlined flow of rivers, and it can also be used in conjunction with conventional products at water level. With wall materials that boast exceptional stability, it enables utilization in new fields, meets the "Ministry of Land, Infrastructure, Transport and Tourism River Disaster Prevention Standards," and maintains high reliability while achieving significant reductions in construction time and costs compared to traditional methods. 【Features】 - Achieves high stability against flowing water and applicability in salt damage areas with a wall thickness of 35 cm. - Confirms high safety against impacts from floating debris. - Ensures sufficient impact resistance of wall panel materials. - Uses highly permeable "coarse aggregate" for embankment materials. *For more details, please refer to the PDF document or feel free to contact us.

  • Retaining wall
  • Renovation and repair methods
  • Ground foundation construction method

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Minister-certified reinforced soil wall construction method "Tail Armé for Residential Development"

Supporting the town's landscape and adding color. We create new "town value" with flexible design.

The "Taille Armée" is a technology that stabilizes soil particles through the friction of strips (strip steel) and retains the soil with a skin (wall material), forming a vertical and stable wall surface. Unlike gravity retaining walls, it does not suppress the soil but utilizes the flexibility of the soil, making it a flexible structure that is resistant to earthquakes and suitable for the natural conditions of our disaster-prone country. This technology can be applied across various fields such as architecture, civil engineering, and landscaping, enabling flexible designs that align with the specific plans and designs of various facilities in Japan. 【Features】 - It is the only reinforced soil wall that has obtained ministerial certification as a "Taille Armée retaining wall," allowing its use in highly important areas such as residential land development. - Being a vertical retaining wall, it maximizes the effective use of residential land. - Unique "free linear expression" characteristic of Taille Armée. - By flexibly responding to the choice of materials and colors for the skin and adding expressions, it harmonizes with the surrounding landscape. *For more details, please refer to the PDF materials or feel free to contact us.

  • Retaining wall
  • Renovation and repair methods
  • Ground foundation construction method

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Reinforced Soil Wall Method "Taille Armé Method"

Simple materials for easy construction! We protect the infrastructure that supports the foundation of the nation with reliable technology.

The "Terra Armé Method" is a reinforced soil wall construction method with a proven track record worldwide, developed in 1963 and implemented globally. Our company is developing new construction methods based on the principles and concepts of the Terra Armé Method. These new methods are registered in the Ministry of Land, Infrastructure, Transport and Tourism's information provision system for the utilization of new technologies (NETIS) and are being utilized as valuable new technologies. We promise to continue evolving in a more efficient and robust manner according to various environments, contributing to the creation of a better future for humanity. 【Features】 ■ Strong against disasters due to its resilient structure ■ Easy to construct with a simple component configuration ■ Versatility to accommodate various applications ■ Easy detection of anomalies due to its flexible structure *For more details, please refer to the PDF materials or feel free to contact us.

  • Retaining wall

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『PAN WALL工法』 安全な逆巻施工で施工中の事故を防止

環境に優しくより安全に!安全な地山補強土工法『PAN WALL』

PAN(Panel And Nail)WALL工法は急勾配斜面安定工法、地山補強土工法の理論に基づく工法です。 補強土工法の表面工としてプレキャストコンクリート板を使用し、急勾配(垂直~5分)化により自然法面を可能な限り残す、逆巻き施工を基本とした安全性の高い工法です。 詳しくはお問い合わせ、もしくはカタログをダウンロードしてください。

  • Special Construction Method

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The "PAN WALL method" adapts to various environments.

Environmentally friendly and safer! Safe ground reinforcement construction method "PAN WALL".

The "PAN WALL Method," which adapts to various environments, includes the "VERTICAL PAN WALL," a soil reinforcement method through vertical construction, and provides "protection for existing roads, structures, and boundaries" when cutting slopes to construct structures during road improvement and widening projects. It also addresses "reduction of long slopes (protection of natural slopes)" when constructing roads in mountainous areas that result in long slopes, as well as "reinforcement of existing stone masonry and weathered bedrock" when existing stone masonry facing the road has deteriorated or changed. Additionally, there is the "River PAN WALL," which reinforces aging riverbank blocks while leaving the existing blocks in place. For more details, please contact us or download the catalog.

  • Special Construction Method

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Cantilever construction method for cast-in-place beams

Cantilever construction method for cast-in-place beams

The cantilever construction method involves extending without any supporting scaffolding from the ground, generally balancing from the bridge piers to the left and right, using a moving work vehicle or a movable erection girder. It sequentially extends towards the center of the span while casting concrete in blocks of appropriate length. 【Features】 ○ It enables the construction of long-span PC bridges, and since its technical introduction to our country in 1958, there have been numerous construction achievements, extending the length of the long spans. ● For other functions and details, please download the catalog.

  • Foundation construction

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Repair and reinforcement method: High-strength micro-pile method

It is possible to select an appropriate micropile method based on the installation conditions, load conditions, construction conditions, and ground conditions of the structure.

This is a pile foundation method developed to respond to harsh construction environments, such as under bridge girders or in close proximity to existing structures, as a seismic reinforcement method for existing foundations. By using small construction machinery and small-diameter steel pipes, it enables construction in confined spaces while minimizing the impact on the surrounding area. 【Features】 ○ The optimal micro-pile method can be selected according to the installation conditions, load conditions, construction conditions, and ground conditions of the structure. ○ By incorporating drilling techniques and pressurized grouting techniques used in ground anchor methods into micro-pile technology, and additionally using steel pipes along with deformed reinforcing bars as reinforcement materials, it forms piles with high strength and high load-bearing capacity. ● For other functions and details, please download the catalog.

  • Renovation and repair methods
  • Ground foundation construction method

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IM method

Suppress weeds with invisible mulch! Centipede grass can grow vigorously.

The "IM Method" is a technique for greening agricultural land and embankments using the transplantation of centipede grass seedlings, combined with soil surface acidification treatment using sulfur flowers. The strong acidification of the soil significantly suppresses weed growth even under non-mulched conditions. It is also possible to greatly reduce mowing work from the first year of construction. Please feel free to contact us when you need our services. 【Features】 ■ Centipede grass seedlings grow vigorously without being covered by weeds ■ Almost complete coverage of the construction area ■ It is possible to significantly reduce mowing work from the first year of construction * For more details, please refer to the PDF materials or feel free to contact us.

  • Special Construction Method

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Paralink: Embankment reinforcement method on weak ground (grid method)

High-strength strip geosynthetics "Paralink" used in embankment reinforcement methods on weak ground are materials that excel in high strength, workability, cost-effectiveness, and earthquake resistance.

High-strength strip geosynthetics "Paralink" used in embankment reinforcement methods on weak ground. It is a material with high strength, workability, cost-effectiveness, and high durability. It has obtained construction technology examination certification (Civil Engineering Research Center). 【Features】 - It uses high-strength polyester long fibers arranged parallel and densely as the core material, with the fiber bundle coated with polyethylene to form a strip material. - Paralink is a high-strength strip geosynthetic that aligns the strip material at equal intervals in the vertical direction on a surface of 4.5m width. - It suppresses deformation of the embankment during liquefaction. - It is a material that is resistant to earthquakes and is also used for seismic measures in high embankments. *For more details, please download the materials or contact us.

  • Foundation construction
  • Paving Materials
  • Civil Engineering Method

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Geosynthetics Liquefaction Deformation Suppression Method (SECURE-G Method)

As a liquefaction countermeasure method, it enables cost reduction and shorter construction periods compared to conventional methods! It suppresses the deformation of embankments during liquefaction in level 2 earthquakes. [Currently offering a collection of achievements!]

The "SECURE-G Method" involves constructing a crushed stone layer that incorporates geosynthetics, which are tensile reinforcement materials made of high-strength fibers, beneath the embankment. This method suppresses the deformation of the embankment during liquefaction. In addition to preventing cracks and unevenness at the top, it significantly reduces costs compared to conventional solidification-based liquefaction countermeasures. It can be applied to earth structures (such as bridge abutment backfills, tsunami multi-defense embankments, emergency roads, etc.), as well as parking lots and disaster prevention stations. 【Features】 ■ Reduces settlement deformation by over 30% ■ Suppresses lateral displacement ■ Prevents sliding of the embankment, cracks, and unevenness at the top ■ Damage is limited, allowing for rapid recovery of embankment functionality ■ Standard performance that significantly reduces costs and greenhouse gas emissions compared to conventional solidification-based liquefaction countermeasures ■ NETIS registration No. TH-140012-VR ☆ Currently, we are offering five years' worth of back issues of the "Geosynthetics Deformation Suppression Method Research Society SECURE Newsletter," which summarizes case studies. For more details, please refer to the PDF materials or feel free to contact us.

  • Civil Engineering Sheet
  • Ground improvement
  • Earthquake-resistant construction method

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Building material product: Screw-fix anchor for concrete 'Tap Star'

Speedy and reliable construction with an impact driver!

The concrete screw anchor "Tapstar" allows anyone to easily and reliably install it in a short time using an impact driver. It is resistant to cracking at the ends and finishing materials, and height adjustments can be made after installation (unevenness adjustment feature). Moreover, it is a hexavalent chromium-free anchor that is environmentally friendly and can be removed when no longer needed.

  • Joints between components

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