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Construction method Product List and Ranking from 42 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 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:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. フルサト工業 建材開発部 Osaka//Building materials, supplies and fixtures
  2. メインマーク 【全国対応】/東京・大阪・札幌・仙台・新潟・金沢・名古屋・福岡 Tokyo//Building materials, supplies and fixtures
  3. スワロー工業 Niigata//Building materials, supplies and fixtures
  4. 4 コスモシステム Tokyo//Industrial Machinery
  5. 5 富士ファーマナイト Kanagawa//Electricity, Gas and Water Industry

Construction method Product ranking

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. Corner steel pipe column on-site no-welding joint method 'Column Coupler' フルサト工業 建材開発部
  2. Solar Mounting System D-SWAT SAMURAI Replacement Method スワロー工業
  3. The "Infrared Welding Machine Series" that changes plastic welding methods. コスモシステム
  4. 4 Exposed-type elastic fixed column base method "Free Base Method" フルサト工業 建材開発部
  5. 5 Airbag-type water stop method ABS method クロダイトグループ

Construction method Product List

391~405 item / All 1388 items

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Underground water storage method

Shortening the construction period for water control and water utilization facilities! Underground storage (infiltration) method using plastic water retention materials.

The "Underground Water Storage Method" is a technique that uses plastic water retention materials and sheets to construct a water storage space underground. It allows for the efficient construction of rainwater retention tanks beneath parks, school grounds, parking lots, etc., and can flexibly respond to rainwater runoff control as a measure against urban flooding caused by recent frequent torrential rains. The materials are made of recycled polypropylene, which has a low environmental impact and does not adversely affect water quality. 【Features】 ■ Assembles plastic water retention materials (layering and stacking) to create a water storage space ■ Has a higher void ratio compared to single particle crushed stone, providing excellent retention efficiency per unit volume ■ Due to the high void ratio, the amount of excavated soil is reduced, allowing for compact facilities ■ Being factory-produced, it has reliability in strength, durability, and seismic resistance *For more details, please refer to the PDF materials or feel free to contact us.

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Dye Q reinforcement method *Repairs for missing areas and anti-corrosion processing are also available!

A reinforcement method that allows for the regeneration, extension of life, and restoration of strength without replacing deteriorated roofs! We are also offering a solution document and case studies featuring our unique technology!

The factory roofs have increasingly required consultations for repairs or replacements due to aging issues such as damage, leaks, asbestos, and deterioration. Goko Shoji proposes materials that can integrate with any object, whether it be slate or corrugated sheets. Utilizing these materials, we offer a new construction method that not only repairs deteriorated structures and buildings but also restores their strength. The reinforcement material "Power Anti-Rust NKRN-66" boasts performance that far exceeds our conventional products in terms of strength and workability, and we implement reinforcement methods using products registered with NETIS (No. 240025-A)! This allows for the regeneration and extension of life of deteriorated roofs, as well as the restoration of strength, without the need for replacement. 【Features】 ■ Lightweight, with no load on the building ■ Can reinforce to 2.37 times the strength of a new slate roof! ■ Can be constructed without stopping operations ■ No waste generated ■ No risk of asbestos dispersion, so no concerns about asbestos! ■ Shorter construction time possible as no asbestos measures are needed, only cleaning ■ Applicable not only to roofs but also to factory floors, kitchen floors, and rust prevention! We also distribute materials that include technical documentation and case studies related to the Dye Q solution.

  • 屋根サムネ?.PNG
  • paint
  • Flooring materials and construction methods for food and pharmaceutical factories
  • Rust Inhibitor

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Lighting pole "Terasu (Terrace) Pole"

Night game production! Simple and slim lighting pole.

"Terra Pole" is a simple and slim lighting pole handled by JFE Civil. By using hot-dip galvanized finish and weather-resistant steel materials, maintenance through repainting as in the past is unnecessary. The high-strength and smart steel pipe pole enhances night games. 【Features of the Net Pole】 ■ Economically creates an open space ■ Can operate during construction ■ No maintenance required for painting ■ Choose joint types according to installation location ■ Matches the surrounding environment *For more details, please refer to the PDF document or feel free to contact us.

  • Other safety and hygiene products
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[Case Study] Biomass Silo and Slipform Method

The scaffolding and formwork assembly process can be omitted! Here is an example of constructing four silos.

We would like to introduce a case study of our company's "Biomass Silo Slip Form Method." This method integrates the formwork and working floor, allowing them to be raised by jacks, which eliminates the need for scaffolding and formwork assembly processes, enabling continuous concrete pouring. For the construction of four silos, we planned to manufacture the slip form device (SF device) in a way that allows it to be divided, thereby shortening the replacement process. (Steel formwork and connection bolts will be newly used with each replacement of the SF device.) [Case Overview] ■ Location: Construction of four silos ■ Details - Planned to manufacture the slip form device (SF device) in a way that allows it to be divided, thereby shortening the replacement process. *For more details, please refer to the PDF document or feel free to contact us.

  • Other safety equipment

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[Case Study] Nice Pole/Slip Form Method

Introducing examples from a hardball baseball field in Kanagawa Prefecture and a chimney at the T Power Plant in Yamaguchi Prefecture!

We would like to introduce examples of the adoption of our "Nice Pole/Slip Form Method." In the renovation work (demolition and new construction) of an existing baseball field by Kawasaki City, a protective net pole was installed above the stands, reaching a height of approximately 30 meters above ground. This project is a two-phase construction, involving the manufacturing and installation of the poles and the complete work of net tensioning, among other tasks. Additionally, in the construction of an RC chimney at a coal-fired power plant, we adopted the "Slip Form Method," which is a safe and labor-saving method that allows for continuous construction of concrete walls. The height of the chimney is 165 meters, and the structure was constructed at a pouring height of approximately 2 meters per day. [Case Overview] <Nice Pole> ■Location: Kanagawa Prefecture, Todoroki Hardball Baseball Stadium ■Details: Protective net poles were installed above the stands, with a height of approximately 30 meters above ground. <Slip Form Method> ■Location: Yamaguchi Prefecture, T Power Plant Chimney ■Details: The chimney height is 165 meters, constructed at a pouring height of approximately 2 meters per day. *For more details, please refer to the PDF document or feel free to contact us.

  • Other safety and hygiene products
  • Other safety equipment
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Rooftop Waterproof Air Control

A waterproofing method that removes moisture and heat from the roof waterproofing layer, contributing to the longevity of the building and energy conservation!

"Rooftop Waterproofing Air Control" is a rooftop waterproofing method that achieves overwhelming ventilation capacity and can be used in conjunction with various existing waterproofing methods. To overcome the shortcomings of traditional methods that focus solely on "waterproofing ability," we have conceptualized the entire waterproof layer as a system and realized "breathable waterproofing" that efficiently expels moisture accumulated within the waterproof layer. It forcibly exhausts high-temperature, high-humidity air and condensation water with a ventilation capacity of up to 300m² per degassing unit. 【Features】 ■ Uses core cone ventilation material in the ventilation layer ■ Autonomous forced supply of fresh air ■ Improves the overall health of the building, including the waterproof layer ■ Achieves longer lifespan, enhanced comfort, and energy savings For more details, please refer to the catalog or feel free to contact us.

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SC Drainage Method (for BRT Tunnel)

The packing material is elastic, allowing for fine height adjustments with anchor bolts!

The "SC Drain Method" is a falling prevention construction method that has a freeze prevention function. The construction procedure consists of three steps: anchor installation → resin injection → anchor installation. It is lightweight and has an appropriate level of flexibility, making it easy to install on tunnel lining surfaces. Additionally, the base material is made of polypropylene hollow boards. It has freeze prevention effects and can also be used for ice column measures within tunnels. 【Features】 ■ Lightweight with appropriate flexibility ■ Can be cut and processed on-site ■ Allows for fine height adjustments ■ Has freeze prevention effects ■ Alkali resistance *For more details, please refer to the PDF document or feel free to contact us.

  • Repair Agent

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IR Coated Steel Wire Used "Reinforced Basket Mat"

NETIS registration! Reinforced cage mats using IR coated wire, ideal for bank disaster recovery work and more.

The "Reinforced Basket Mat" is a coastal protection method that uses IR-coated steel wire, making it ideal for facilities that need to maintain strength and for locations that are difficult to maintain. IR-coated steel wire is resistant not only to salt damage caused by seawater and sea breezes but also to oxides contained in volcanic gases and hot spring water, preventing corrosion over the long term and maintaining the initial strength of the wire mesh. Reinforced basket mats for rivers, as well as seaside mats for coastlines and leaf mats for ports, are widely used in public works. Additionally, there are construction records for backfilling warm slope embankments (concrete blocks) at Miyazaki Beach in Miyazaki Prefecture. 【Features】 ■ Resistant to salt and acid ■ High cost performance ■ Environmentally friendly (non-dioxin) ■ Obtained construction technology review certification as a material for basket mats ■ NETIS registered (QS-120018-A) For more details, please refer to the catalog or feel free to contact us.

  • Other metal materials
  • others

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Pin foundation construction method: Example of construction in areas where heavy machinery cannot access.

Simple foundation construction method for NETIS registration! Introducing examples of construction in areas where heavy machinery cannot enter.

Here is an example of the pin foundation construction method in areas inaccessible to heavy machinery. The materials used in this method are only anchoring blocks and multiple pins. Both are lightweight, allowing for transportation entirely by human power. Additionally, construction can be easily carried out using handheld electric tools, making it simple to install the foundation. [Case Study] - Hohashira Forest Botanical Garden (Fukuoka Prefecture) - Structure: 3.0m x 4.0m - Materials Used: - Railing: Ipe wood - Floorboard: Ipe wood - Structural Material: FRP - Foundation Type: DP-S [Other Case Studies] - Nakagawa Town Andoku, Seta no Mizo (Fukuoka Prefecture) - Structure: Effective Width 2.0m - Support Post Pitch 2.5m - Materials Used: - Railing: Cedar wood - Floorboard: Cedar wood - Structural Material: Aluminum alloy - Foundation Type: DP-M For more details, please refer to the catalog or feel free to contact us.

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  • Composite Materials

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【Pin Foundation Construction Example】A place with important historical sites and valuable trees.

Simple foundation construction method for NETIS registration! Introducing examples of construction in locations with important historical sites and valuable trees.

Here are examples of the Pin Foundation Method applied in locations with important historical sites and significant trees. This method involves driving small-diameter pins through a stabilization block, eliminating the need for excavation of the ground surface. It is an effective foundation method when you want to preserve important historical sites as much as possible or avoid damaging the roots of significant trees. 【Example 1】 ■ Nationally Designated Historic Site: Ikebe Temple Ruins (Kumamoto Prefecture) ■ Structure: Effective width 1.5m, pillar pitch 2.5–3.8m ■ Materials Used: ・Railing: Ipe wood, recycled wood, aluminum alloy ・Flooring: Ipe wood ・Structural material: FRP ■ Foundation Type: DP-75, SP 【Example 2】 ■ Historical Park: Maruichi Castle ■ Structure: Effective width 1.5m, pillar pitch 2.0m ■ Materials Used:  Railing, flooring, structural material: Cedar wood ■ Foundation Type: DP-M 【Example 3】 ■ Amagafubaru Rural Park ■ Structure: Effective width 1.8m, pillar pitch 2.5m ■ Materials Used:  Railing: Ipe wood, Chatoba wood  Flooring: Ipe wood  Structural material: Aluminum alloy, Angelim wood, Ipe wood ■ Foundation Type: DP-M For more details, please refer to the catalog or feel free to contact us.

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【Pin Foundation Construction Example】A place where precious flora and fauna inhabit.

Simple foundation construction method for NETIS registration! Introducing examples of construction in areas where valuable flora and fauna inhabit.

We would like to introduce an example of the Pin Foundation method in a location where valuable flora and fauna inhabit. Conventional foundation methods, which involve excavating the ground and pouring large concrete blocks, cause significant environmental changes to the flora and fauna in the area. In our method, only small-diameter steel pins are driven in through a stabilizing block, so there is no alteration to the ecosystem of the valuable flora and fauna. [Case Study] ■ Okikubugawa Promenade (Okinawa Prefecture) ■ Structure: Effective width 1.2m, column pitch 2.5m ■ Materials used: ・Railing/Flooring/Structural materials: FRP ■ Foundation type: DP-100/DP-L/SP For more details, please refer to the catalog or feel free to contact us.

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  • Composite Materials

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【Pin Foundation Construction Example】Difficult-to-install locations in wetlands with standard foundations.

Simple foundation methods for NETIS registration! We will introduce examples of construction in areas where conventional foundations are difficult to install, such as wetlands.

Examples of the pin foundation method in areas where conventional foundations are difficult to install, such as wetlands. In soft ground areas like wetlands or lake regions, traditional concrete foundations may not be suitable, but the pin foundation method allows for very deep pin embedment, making it possible to accommodate such weak ground. Additionally, since there is no need for concrete pouring, it can be easily constructed even when water is present on the surface. 【Case Study】 ■ Hibikinada Biotope (Fukuoka Prefecture) ■ Structure: Effective width 1.5m, column pitch 3.0m ■ Materials Used ・Railing: FRP ・Decking: Recycled wood ・Structural material: FRP ■ Foundation Type: DP-75, SP *For more details, please refer to the catalog or feel free to contact us.

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【Pin Foundation Construction Example】A place where water does not drain.

Simple foundation construction method for NETIS registration! Here are examples of construction in areas where water cannot be drained.

Places where water cannot be drained We will introduce examples of the pin foundation construction method. In conventional methods, foundation work could not be done without draining water from wetlands or lakes, but with the pin foundation method, underwater construction can be carried out by divers in the existing state. 【Case Study】 ■ Chigoike Park (Miyazaki Prefecture) ■ Structure: Effective width 2.5m, pillar pitch 2.0m ■ Materials Used - Railing: Aluminum, cedar - Floorboards: Cedar - Structural materials: Aluminum alloy, greenheart wood ■ Foundation Type: DP-100 *For more details, please refer to the catalog or feel free to contact us.

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【Pin Foundation Construction Example】Locations where conventional foundations are difficult to install, such as sandy ground.

Simple foundation methods for NETIS registration! We will introduce examples of construction in locations where installation is difficult with conventional foundations, such as sandy ground.

Locations where it is difficult to install a standard foundation, such as sandy ground, are introduced with examples of the pin foundation method. When installing a standard concrete foundation, excavation of the ground surface is necessary. However, in sandy areas, even if excavation is performed, the sand will flow away, requiring a significantly larger excavation area compared to the size of the concrete foundation. In the case of the pin foundation method, it is very easy to install even on sandy ground, as it only involves driving pins through a stabilization block. 【Example】 ■ Kushira Town Nakayama Pond Park (Kagoshima Prefecture) ■ Structure: Effective width 1.5m, column pitch 3.0m ■ Materials used ・Railing: Jatoba wood ・Flooring: Ipe wood ・Structural materials: Bongoshi wood, Angelim wood ■ Foundation type: SP *For more details, please refer to the catalog or feel free to contact us.

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Precision machining of aluminum and stainless steel using NC lathe processing one-chucking method.

Even in cases where multiple verifications are required, we will responsibly assist until the new product leads to mass production!

Our company minimizes the occurrence of work axis misalignment and can create complex and more precise products. One-chucking refers to a machining method in complex machining processes such as NC lathe processing and Peter-man processing, where, in addition to the x-axis, y-axis, and z-axis, the remaining one face is completed using machining (general-purpose machine) and chuck work. The one-chucking technology can significantly reduce the occurrence of work axis deviations and is specialized for products that require complexity and higher precision. At this time, it is possible to create better products by allowing the processing of the remaining face to be in areas where precision is not required. Additionally, while there are many aspects that require skilled knowledge in the processing method, operating the machines 24 hours a day allows us to keep production costs low. [Case Overview] ■ Material: Aluminum, stainless steel, and various others ■ Size: Machining possible from Φ2mm to Φ80mm (for larger workpieces, machining centers are used) ■ Supported lot sizes: 100 to 5000, other inquiries welcome *For more details, please download the PDF or feel free to contact us.

  • Processing Contract

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