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

Last Updated: Aggregation Period:Sep 10, 2025~Oct 07, 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 10, 2025~Oct 07, 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 10, 2025~Oct 07, 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 リフレクティックス遮熱カバー工法<WBGT値の低減に> 佐武 東京支店

Construction method Product List

1201~1215 item / All 1396 items

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[Construction Case] Large Pachinko Parlor: Earthquake Recovery Work / Slab Floor Settlement Correction Work

Settlement due to compaction: Significant sinking of the floor inside the store due to the impact of the Great East Japan Earthquake! We will introduce our response case.

We would like to introduce a case of "earthquake recovery work" and "floor subsidence correction work" carried out at a large pachinko parlor located in Fukushima Prefecture. In this case, the floor inside the store significantly subsided due to consolidation settlement and the impact of the Great East Japan Earthquake. The tilt of the floor caused discomfort while walking inside the store. An up-con method that can be corrected during nighttime when the store is closed was adopted, and our company carried out the subsidence correction work. 【Case Overview】 ■ Construction Area: Approximately 700m2 ■ Maximum Subsidence: 161mm ■ Area: Fukushima Prefecture ■ Construction Period: Continuous 4 nights *For more details, please refer to the PDF document or feel free to contact us.

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[Construction Example] Supermarket: Subfloor Settlement Correction Work (Chiba Prefecture)

Due to the impact of the Great East Japan Earthquake, the floor inside the store sank! A case where repairs were made during the night while the store was closed.

Here is a case study of "subfloor sinking correction work" conducted at a large supermarket in Chiba Prefecture. Due to the impact of the Great East Japan Earthquake, the floor inside the store sank significantly. The Upcon method, which can be corrected during the night while the store is closed, was adopted, and our company carried out the correction. Since the store mainly handles fresh food products, during the construction, we not only used plastic sheets for protection around the injection gun but also enclosed the injectors to prevent resin dispersion while working. [Case Overview] ■ Construction Area: Approximately 2,000 m² ■ Maximum Sinking Amount: 99 mm ■ Area: Chiba Prefecture ■ Construction Period: Continuous 9 nights * To expedite the construction period, two construction plant vehicles were used (2011). * For more details, please refer to the PDF document or feel free to contact us.

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[Construction Example] Repairing the gaps in the floors and walls of a large shopping center.

A significant subsidence of the floor due to weak ground! Introducing a case where repairs were made at night during the business closure.

Here is a case study of "floor sinking correction" conducted at a large shopping center in Nara Prefecture. Due to weak ground, the floor sank significantly. As a result of the floor sinking, gaps were observed in various places, such as between the floor and the walls and between the walls and the ceiling. An up-con method that can be corrected during nighttime while the business is closed was adopted, and our company carried out the correction. 【Case Overview】 ■ Construction Area: Approximately 3,240m2 (Backyard 405m2, Inside Store 2,835m2) ■ Maximum Sinking Amount: 94mm ■ Area: Nara Prefecture ■ Construction Period: 25 nights ※ Supported by 2 construction plant vehicles *For more details, please refer to the PDF document or feel free to contact us.

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[Construction Case] Apartment: Correction of Sunken Floor in Entrance Hall / Filling of Underfloor Gaps and Voids

Resolve issues such as 'gaps between the wall and ceiling' in just one day with the Upcon construction method!

We would like to introduce a case of "subfloor sinking correction work" and "subfloor void filling work" carried out in a condominium located in Niigata Prefecture. In the RC apartment building (1st floor) we are introducing this time, due to floor sinking, there were issues not only with "floor tilting" but also with "gaps occurring between the walls and ceiling" and "doors not closing." After completing the subfloor sinking correction work and the subfloor void (cavity) work, the gaps between the walls and ceiling were eliminated, and the misaligned tile joints were leveled. Additionally, the doors that had been unable to close due to frame distortion from sinking were now able to close properly. 【Case Overview】 ■ Construction Area: 69m2 ■ Maximum Sinking Amount: 36mm ■ Maximum Void Amount: 190mm ■ Area: Niigata Prefecture ■ Construction Period: 1 day *For more details, please refer to the PDF document or feel free to contact us.

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[Construction Example] Slab Foundation House: Settlement Repair Work (Kyoto Prefecture)

Corrected a maximum settlement of 46mm! A case where the distortion of the door frame caused by settlement was resolved.

We would like to introduce a case of "settlement correction work" carried out on a slab foundation house located in Kyoto Prefecture. This is a construction case of a house that had sunk due to ground subsidence, resulting in distorted door frames and gaps. We corrected a slab foundation house with a maximum settlement of 46mm in 2.5 days. 【Case Overview】 ■ Maximum Settlement: 46mm ■ Area: Kyoto Prefecture ■ Construction Period: 2.5 days *For more details, please refer to the PDF document or feel free to contact us.

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  • Calibration and repair

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[Construction Case] Slab Foundation House: Settlement Correction Work Due to Earthquake (Ibaraki Prefecture)

A maximum settlement of 500mm occurred! An example of correction using a combination of the up-con method and single pipe pile driving method.

We would like to introduce a case of "settlement correction work" carried out on a flat foundation house located in Ibaraki Prefecture. The house was newly built and experienced a maximum settlement of 500mm due to the Great East Japan Earthquake. Due to the significant tilt, we used a combination of the up-con method and the single pipe pile driving method for the correction. 【Case Overview】 ■ Maximum Settlement: 500mm ■ Area: Ibaraki Prefecture ■ Construction Period: 10 days *For more details, please refer to the PDF document or feel free to contact us.

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[Construction Case Study] Slab Foundation House: Settlement Correction Work Due to Liquefaction - Site Tour

A case study of correcting liquefied ground due to the earthquake! A maximum settlement of about 60mm was corrected in a day and a half.

We would like to introduce a case of "settlement correction work" carried out on a slab foundation house located in Urayasu City, Chiba Prefecture. The house sank due to the impact of the Great East Japan Earthquake. The maximum settlement of approximately 60mm was corrected in 1.5 days. Additionally, there were many requests to visit our construction site, so with the kindness of our customers, we held an open house at this site. Many people were able to visit and observe the work. 【Case Overview】 ■ Maximum Settlement: Approximately 60mm ■ Area: Urayasu City, Chiba Prefecture ■ Construction Period: 1.5 days *For more details, please refer to the PDF document or feel free to contact us.

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[Construction Case] Slab Foundation House: Settlement Correction Work (Kawasaki City, Kanagawa Prefecture)

Possible to carry out without moving! Introducing a case where a settlement of up to 107mm was quickly corrected.

We would like to introduce a case of "settlement repair work" carried out on a slab foundation house located in Kawasaki City, Kanagawa Prefecture. The homeowner, who purchased the house as a pre-built property, was deprived of a comfortable living environment due to the tilting of the house caused by ground subsidence. Several methods for settlement repair were considered, but the homeowner chose our company for the quick and non-disruptive repair without having to move. 【Case Overview】 ■ Maximum settlement amount: 107mm ■ Area: Kawasaki City, Kanagawa Prefecture ■ Construction period: 4 days *For more details, please refer to the PDF document or feel free to contact us.

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[Construction Case] Slab Foundation House: Settlement Correction Work (Tokyo)

No need for large-scale demolition work! Here is an example of correcting a settlement of up to 95mm in just two days of construction.

We would like to introduce a case of "settlement repair work" carried out on a slab foundation house located in Hachioji City, Tokyo. Due to a maximum settlement of 95mm observed, polyurethane resin was injected under the slab foundation to implement the settlement correction. If you are troubled by the tilting of your slab foundation house caused by earthquakes, liquefaction, or ground subsidence, please feel free to contact us. 【Case Overview】 ■ Construction Area: Approximately 43m2 ■ Maximum Settlement Amount: 95mm ■ Area: Hachioji City, Tokyo ■ Construction Period: 2 days *For more details, please refer to the PDF document or feel free to contact us.

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[Construction Case] Slab Foundation House: Settlement Correction Work (Kanagawa Prefecture)

Even in cases where the space between neighboring properties is very narrow, construction is possible! A maximum settlement of 66mm can be corrected in 3 days.

We would like to introduce a case of "settlement correction work" carried out at a certain house with a flat foundation in Kanagawa Prefecture. Due to a maximum settlement of 66mm observed in one corner of the living room, polyurethane resin was injected under the flat foundation to implement the settlement correction. This time, the work was performed in a house with very limited space between neighboring properties, but our company can carry out the work without the need for extensive construction, allowing for a short construction period without affecting the neighboring property. 【Case Overview】 ■ Construction Area: 40m2 ■ Maximum Settlement Amount: 66mm ■ Area: Certain residence in Kanagawa Prefecture ■ Construction Period: 3 days *For more details, please refer to the PDF document or feel free to contact us.

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[Construction Example] Disaster Recovery Concrete Pavement Slab Settlement Correction Work

Our method, which raises the CO pavement using the foaming pressure of rigid urethane resin, has been adopted!

We would like to introduce a case of "Disaster Recovery Concrete Pavement Slab Settlement Correction Work" conducted on the Route 4 Bypass in Koriyama City, Fukushima Prefecture. This was a restoration project for the CO pavement slabs of the Route 4 Koriyama Bypass, which were damaged and settled due to the Great East Japan Earthquake. Our method was adopted, which raises the still sound CO pavement slabs using the foaming pressure of rigid polyurethane resin, while keeping traffic restrictions limited to lane reduction during construction without replacing them. 【Case Overview】 ■ Construction Area: Approximately 2,430 m² ■ Area: Route 4 Bypass in Koriyama ■ Construction Period: 24 days (March 2013) ■ Client: Tohoku Regional Development Bureau, Koriyama Route Office *For more details, please refer to the PDF document or feel free to contact us.

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[Construction Case] Middle School (Gymnasium Floor): Settlement Correction and Void Filling Work

Due to the impact of the earthquake, the gymnasium floor has significantly sunk in a bowl shape! A case where the Upcon method was used to solve the problem.

We would like to introduce a case of "settlement correction and void filling work" carried out on the gymnasium floor of a junior high school in Fukushima Prefecture. Due to the effects of an earthquake, the floor had significantly sunk in a bowl shape from the outer edges towards the center, causing issues with the use of the gymnasium. The area that had sunk by a maximum of 108mm was corrected to within the planned value of -15mm, and it was confirmed using a CCD camera that the polyurethane resin was filled without any gaps, completing the work. [Case Overview] ■ Construction Area: 1,036m2 ■ Construction Period: 8 days ■ Maximum Settlement: 108mm ■ Area: Fukushima Prefecture *For more detailed information about the case, please refer to the related links. For further details, please check the PDF materials or feel free to contact us.

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[Construction Example] Elementary School: Floor Slab Settlement Correction Work

Utilizing spring break for quick subsidence correction! The cycle from construction to restoration is short.

Here is an example of "settlement correction" performed at an elementary school in Miyagi Prefecture. Due to floor settlement, gaps occurred between the classroom walls and ceiling, causing the classroom door to tilt and hindering the opening and closing of the lock. The overall floor level of the classroom and hallway was corrected from a maximum settlement of 69mm to within -18mm, and the gaps that had formed between the walls and ceiling before the work were also improved. 【Case Summary】 ■ Construction Area: 331m2 ■ Maximum Settlement: 69mm ■ Area: Tagajo City, Miyagi Prefecture / Elementary School ■ Construction Period: 4 days *For more detailed information about the case, please refer to the related link. For further details, please check the PDF document or feel free to contact us.

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Slate roof and folded plate roof "Polyurea roof insulation method"

The repair of aging slate and metal roofs of factories and warehouses is done with polyurea. Using rigid foam polyurethane and polyurea provides insulation, heat shielding, and extended lifespan.

By using rapid curing, we can carry out construction with minimal risks such as production line stoppages and construction periods. Our innovative method using rigid polyurethane foam and polyurea adds value to repairs. ■ Heat insulation and thermal insulation ■ Shortened construction period and low cost ■ Corrosion resistance and salt damage resistance ■ Impact resistance *For more details, please download the PDF or feel free to contact us.

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Instant Hardening Coating Method "Swael Upper Water System"

The curing time after construction can also be shortened! Material management is easy, and uniform quality and film thickness control can be achieved.

We would like to introduce our instant curing coating method, the "Swael Drinking Water System." This revolutionary instant curing coating system is developed based on a spray technology that combines a two-component polyurethane resin made of isocyanate and a special curing agent, designed for corrosion and waterproofing of concrete structures for drinking water. The use of a two-component high-pressure impingement mixing spray machine enables significant labor savings and a dramatic increase in construction efficiency. 【Technical Features】 ■ Instant curing ■ Cures regardless of humidity and temperature ■ Improved efficiency with a mechanical construction system ■ Excellent workability for ceilings and walls *For more details, please download the PDF or feel free to contact us.

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