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Construction method Product List and Ranking from 39 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Jul 30, 2025~Aug 26, 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:Jul 30, 2025~Aug 26, 2025
This ranking is based on the number of page views on our site.

  1. null/null
  2. フルサト工業 Osaka//Building materials, supplies and fixtures 建材開発部
  3. スワロー工業 Niigata//Building materials, supplies and fixtures
  4. 4 null/null
  5. 5 null/null

Construction method Product ranking

Last Updated: Aggregation Period:Jul 30, 2025~Aug 26, 2025
This ranking is based on the number of page views on our site.

  1. [Free Inspection] Teratech Method to Fill Underfloor Cavities and Reduce Machine Vibration
  2. Solar Mounting System D-SWAT SAMURAI Replacement Method スワロー工業
  3. Corner steel pipe column on-site no-welding joint method 'Column Coupler' フルサト工業 建材開発部
  4. 4 Dye Q reinforcement method *Repairs for missing areas and anti-corrosion processing are also available!
  5. 5 Rapid-curing polyurethane spray waterproofing method "Rim Spray"

Construction method Product List

646~660 item / All 917 items

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[WIB Construction Method Case Study] Road Traffic Vibration Countermeasures for Model Houses (1)

Maintenance-free and semi-permanent! It creates a comfortable indoor environment without vibrations!

At the model house along the road in Tokyo, large vehicles pass by approximately every five minutes during the day, raising concerns about the impact of traffic vibrations on the living environment. The 'WIB method' was implemented directly beneath the model house, achieving a vibration reduction of 10-12 dB (about 1/4 to 1/3 of the original vibration level). This installation is maintenance-free and semi-permanent, ensuring that even after the model house becomes a regular residence, a comfortable indoor environment free from vibrations will be maintained. 【Case Overview】 ■ Location: Tokyo ■ Client: Mitsui Home Co., Ltd. ■ Vibration Source: Road traffic vibrations ■ Preservation Target: Model house along the road ■ Countermeasure: Plate-type WIB method (honeycomb cell type) ■ Installation Position: Directly beneath the receiving side *For more details, please refer to the PDF document or feel free to contact us.

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[WIB Construction Method Case Study] Railway Vibration Mitigation for Residential Buildings Along Subway Lines

Support beams were also installed! We were able to keep the vibration level below 50dB!

In Tokyo, residential buildings are located close to railways that run underground, raising concerns about the impact of railway vibrations on the living environment after the construction of new homes. To address this, the 'WIB method' was implemented directly beneath the residences. Since building support was necessary, support piles were also installed. After conducting vibration measurements before and after the implementation of the countermeasures, vibrations were reduced by 12 to 17 dB (from 1/7 to 1/4), successfully keeping the vibration level below 50 dB. 【Case Summary】 ■ Location: Tokyo ■ Client: Business owner ■ Vibration source: Railway vibrations ■ Preservation target: Residential buildings along the railway (underground) ■ Countermeasure method: Plate-type WIB (honeycomb cell type) ■ Installation position: Directly beneath the receiving side *For more details, please refer to the PDF document or feel free to contact us.

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[WIB Construction Method Case Study] Railway Vibration Countermeasures for Residential Areas Along Railways, January 2019, Saitama Prefecture

Measures were implemented directly beneath each residence in Buildings A to E! The vibration level has been reduced to below 60 dB!

Some of the residential development plots in Saitama Prefecture face a railway, raising concerns about the impact on the living environment after the construction of houses. Therefore, the 'WIB method' was implemented directly beneath each of the houses from Building A to Building E. Vibration measurements were conducted before and after the countermeasures. As a result, the dominant vibration at 10Hz was reduced by 14dB (to 1/5 of the original vibration), successfully keeping the vibration level below 60dB. 【Case Summary】 ■ Location: Saitama Prefecture ■ Client: Housing Manufacturer ■ Vibration Source: Railway Vibration ■ Preservation Target: Residential buildings along the railway (total of 5 buildings) ■ Countermeasure Work: Plate-type WIB (honeycomb cell type) ■ Construction Position: Directly beneath the receiving side *For more details, please refer to the PDF document or feel free to contact us.

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[WIB Construction Method Case Study] Railway Vibration Countermeasures for Residential Areas Along Railways, September 2018, Saitama Prefecture

Concerns about the impact on the living environment after residential construction! Introducing examples aimed at increasing vibration reduction effects!

Some plots of a residential development in Saitama Prefecture face a railway, raising concerns about the impact on the living environment after the construction of the houses. Therefore, the "WIB method" was implemented directly beneath the houses. In buildings D and E, where the vibration level exceeded 70dB before the measures were taken, the countermeasures were extended on the railway side to enhance the vibration reduction effect. After conducting vibration measurements before and after the measures, the dominant vibration at 10Hz was reduced by 6dB to 14dB (to 1/5 to 1/2 of the original vibration), successfully keeping the vibration level below 60dB. 【Case Summary】 ■ Location: Saitama Prefecture ■ Client: Housing manufacturer ■ Vibration source: Railway vibration ■ Preservation target: Residential buildings along the railway (total of 5 buildings) ■ Countermeasure: Plate-type WIB method (honeycomb cell type) ■ Installation position: Directly beneath the receiving side (partly on the propagation path) *For more details, please refer to the PDF document or feel free to contact us.

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[WIB Construction Method Case Study] Road Traffic Vibration Mitigation for Residential Areas Along Elevated Bridges

Reduced vibrations of 4Hz by approximately 5dB and vibrations of 12.5 to 20Hz by approximately 10dB! The vibrations have become such that they do not affect livability!

The planned construction site for housing in Kanagawa Prefecture was experiencing traffic vibrations from the elevated bridge and the road in front of the site. As a countermeasure, we implemented measures directly beneath the apartment building. The vibrations from the elevated bridge were predominantly at 4Hz, while those from the road in front of the site ranged from 12.5 to 20Hz. We designed the 'WIB method' to address each type of vibration accordingly. As a result, we reduced the 4Hz vibrations by approximately 5dB and the 12.5 to 20Hz vibrations by about 10dB, ensuring that the vibrations did not affect the livability. [Case Overview] ■ Construction Location: Kanagawa Prefecture ■ Client: Housing Manufacturer ■ Vibration Source: Road Traffic Vibration ■ Preservation Target: Apartment Building (New, 3 Stories) ■ Countermeasure: Plate-type WIB Method (Honeycomb Cell Type) ■ Construction Position: Directly beneath the receiving side *For more details, please refer to the PDF document or feel free to contact us.

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[WIB Construction Method Case Study] Railway Vibration Countermeasures for Residential Areas Along Railways, January 2017, Saitama Prefecture

Measures were implemented directly beneath the residence! Dominant vibrations in the 10-20Hz range were reduced by 6-12dB!

Some plots of a residential development in Saitama Prefecture face a railway, raising concerns about the impact on the living environment after the construction of houses. Therefore, the 'WIB method' was implemented directly beneath the houses. Vibration measurements were conducted before and after the countermeasures. Dominant vibrations in the range of 10-20Hz were reduced by 6-12dB (to 1/4 to 1/2 of the original vibrations), keeping the vibration level below 60dB. 【Case Summary】 ■ Location: Saitama Prefecture ■ Client: Housing manufacturer ■ Vibration source: Railway vibrations ■ Preservation target: Houses along the railway (total of 9 buildings; 5 buildings + 4 buildings) ■ Countermeasure work: Plate-type WIB method (honeycomb cell type) ■ Installation position: Directly beneath the receiving side *For more details, please refer to the PDF document or feel free to contact us.

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[WIB Construction Method Case Study] Road Traffic Vibration Countermeasures for Residential Areas Along Roads

Confirmed a vibration reduction of 3-6 dB on the first floor and 4-5 dB on the second floor! Introducing a case where livability has improved!

In residential houses along the roads in Tokyo, vibrations from large vehicles were propagating, and vertical vibrations were affecting the living environment. Therefore, during the reconstruction of the houses, the 'WIB method' was implemented directly beneath the residences. Vibration measurements were conducted before and after the countermeasures within the buildings. As a result, a reduction of 3-6 dB on the first floor and 4-5 dB on the second floor was confirmed, leading to an improvement in livability. 【Case Summary】 ■ Location: Tokyo ■ Client: Sekisui Heim Corporation ■ Vibration Source: Road traffic vibrations ■ Preservation Target: Houses along the road ■ Countermeasure Method: Plate-type WIB (honeycomb cell type) ■ Installation Position: Directly beneath the receiving side *For more details, please refer to the PDF document or feel free to contact us.

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[WIB Construction Method Case Study] Railway Vibration Countermeasures for Residential Areas Along Railways, January 2014, Saitama Prefecture

Railway vibrations have been reduced by half! A damping effect of approximately 4dB in the horizontal direction and about 6dB in the vertical direction has been confirmed!

In the vicinity of the planned construction site for a detached house (two-story lightweight steel frame) in Saitama Prefecture, trains frequently pass by, raising concerns about the impact of railway vibrations on the living environment. Therefore, the 'WIB method' was implemented directly beneath the house. Vibration measurements taken before and after the construction confirmed a vibration reduction effect of approximately 4 dB in the horizontal direction and about 6 dB in the vertical direction, effectively halving the railway vibrations. 【Case Overview】 ■ Construction Location: Saitama Prefecture ■ Client: Sanyu Soil Engineering Co., Ltd. ■ Vibration Source: Railway vibrations ■ Preservation Target: Houses along the railway ■ Countermeasure Work: Plate-type WIB method (honeycomb cell type) ■ Construction Position: Directly beneath the receiving side *For more details, please refer to the PDF document or feel free to contact us.

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FS Technical Co., Ltd. Product Handling General Catalog

Introducing exterior wall renovation methods such as the FST method and FS non-break anchors.

FS Technical Co., Ltd. Product Handling Comprehensive Catalog features various solutions, including the "Exterior Wall Renovation Method - FST Method," which resolves all issues related to resin injection work while using a wet low-noise drill, and the "Resin Column Formation Pinning Method - FS Column Method," which can form resin columns even in a 50mm space. It also includes the "Inner Tube Expansion Type Injection Port Anchor Pin - FS Non-Break Anchor," which prevents damage to the finished surface during driving, among many others. 【Featured Products】 ○ Exterior Wall Renovation Method - FST Method ○ Resin Column Formation Pinning Method - FS Column Method ○ Inner Tube Expansion Type Injection Port Anchor Pin - FS Non-Break Anchor ○ New Concept Post-Installed Anchor - DG Anchor, etc. For more details, please contact us or download the catalog.

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New exterior wall renovation method "FST Method"

Low noise, low vibration, and no dust! A new exterior wall renovation method equipped with both automatic nozzle adjustment and manual adjustment features.

The "FST Method" achieves high rotation, high torque, high precision, and high work efficiency, while allowing for resin injection work using a wet low-noise drill. Resin is injected from the deepest part of the hole, and simultaneously, a mechanism is in place that automatically retracts the nozzle due to the rebound pressure generated from the injection pressure. Additionally, the position of the resin injection nozzle can be freely adjusted using a manual mechanism, allowing for continuous monitoring of the resin injection situation while proceeding with the injection work. 【Features】 ■ Improved drill accuracy ■ Non-core drilling blades ■ Automatic nozzle adjustment function ■ Manual adjustment ■ Adjustment of resin injection volume *For more details, please refer to the PDF document or feel free to contact us.

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Concrete repair methods *Free materials featuring construction achievements and case studies!

[Free Offer] Over 300 construction achievements! A flat plug system that can fix any type of flooring!

The "Flat Plug System" is a system that can significantly shorten the curing period of concrete. By reducing the curing period to just 2 days, it shortens the construction time. It can be applied without freezing even in sub-zero temperatures. It prevents the swelling of coating materials and suppresses moisture from the ground. There are over 300 successful installations in the country, and case studies are also featured in the catalog. 【Features】 ■ Curing period reduced to just 2 days! Shortens construction time ■ Prevents swelling of coating materials ■ Can be applied without freezing even in sub-zero temperatures ■ Capable of stopping moisture from the ground ■ Improves strength and durability *For more details, please refer to the catalog. Feel free to contact us with any inquiries.

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Spray Foam Insulation Method

Reduction of heating and cooling energy consumption! Formation of a seamless insulation layer with excellent airtightness.

The "urethane spray application method" is a technique that involves mixing and reacting two main raw materials to generate polyurethane foam insulation material, which is then sprayed on. It possesses excellent insulation performance among foam plastic insulation materials, achieving high insulation efficiency while keeping the application thickness to a minimum compared to other insulation materials. It effectively insulates even areas with complex shapes or where wood and building materials are intertwined, forming a seamless insulation layer that reduces condensation and mold growth. Additionally, it suppresses outdoor noise such as traffic and construction sounds. 【Features】 ■ Top-class insulation performance among insulation materials ■ High insulation and airtightness ■ Reduces condensation and mold growth ■ Offers similar benefits to wooden houses and RC buildings For more details, please refer to the catalog or feel free to contact us.

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Insulation construction: Blowing method

Improvement of comfort, energy efficiency, and health! Quick and easy insulation installation is possible.

The "Blowing Method" is an insulation technique that can create a uniform thickness of insulation layer without any gaps in ceilings, walls, and floors. It can be used not only for new constructions but also for renovations, allowing for insulation improvements while living in the space, thereby enhancing comfort, energy efficiency, and health through high insulation performance. Using a specialized machine called a blowing machine, fluffy insulation material is blown in, making the insulation installation faster and easier compared to conventional mat-type insulation materials. The thickness of the insulation material can be freely set, allowing for easy adaptation to achieve higher insulation and energy efficiency than typical homes. 【Features】 ■ Quick and easy insulation installation ■ Easily accommodates high insulation performance ■ Ensures uniform and stable construction quality ■ Can be installed while residents continue to live in the home ■ Improves comfort, energy efficiency, and health For more details, please refer to the catalog or feel free to contact us.

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Diamond polishing method "FGS Permashine System"

Reduce long-term maintenance costs! The floor's shine increases, making the room brighter.

The "FGS Permashine System" is a diamond grinding method that revitalizes the surface and functionality of existing floors (new installations are also possible). Thanks to the effects of the penetrating agent, wear resistance, dust resistance, and stain resistance are improved, while long-term maintenance costs are reduced, maintaining aesthetic appeal. If you are having trouble with your floor or are considering floor renovations, please try concrete polishing using our method. 【Features】 ■ Revitalizes the surface and functionality of existing floors (new installations are also possible) ■ Environmentally friendly system ■ Improved wear resistance, dust resistance, and stain resistance due to the effects of the penetrating agent ■ Colorization is possible by using level DL leveling material ■ Increases the gloss of the floor, brightening the room *For more details, please refer to the PDF materials or feel free to contact us.

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Concrete floor slab settlement correction method "Upcon"

No need to remove cargo or machinery! Quickly correct floor subsidence, unevenness, tilting, and gaps without stopping operations.

The "Upcon Method" involves drilling small holes with a diameter of 16mm into existing concrete floors that have experienced sinking or tilting. While continuously monitoring the level in millimeter increments, polyurethane resin is injected. The resin injected beneath the floor compresses and strengthens the ground with pressure that causes it to expand in a short time. This process raises the concrete back to its original position while improving the bearing capacity of the ground. Additionally, the final strength of the resin develops in about 60 minutes, and even if voids occur beneath the floor, the same method can be used to fill those voids. 【Features】 ■ Construction time is 1/10 of conventional methods (concrete replacement) (based on our company’s comparison) ■ No need to remove goods or machinery ■ Construction without stopping operations ■ High precision and reliable construction by our skilled employees ■ Completely non-fluorinated resin *For more details, please refer to the PDF materials or feel free to contact us.

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