Concrete Repair Materials Product List and Ranking from 35 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.

Concrete Repair Materials 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. Tokyo Fukko Co.,Ltd. 本社 Yamanashi//Building materials, supplies and fixtures manufacturers
  2. 中日建設株式会社/一般社団法人 IPH工法協会 Aichi//Other construction industries
  3. NIPPO Tokyo//Other construction industries
  4. 4 和田商事 Hyogo//Renovation and home construction industry
  5. 5 SNC Fukuoka//General contractors and subcontractors

Concrete Repair Materials 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. Exposed finish repair material for floors: "Fukko Hard Mortar" Tokyo Fukko Co.,Ltd. 本社
  2. Technical Data: Comparison Table of Cross-Section Repair Methods 中日建設株式会社/一般社団法人 IPH工法協会
  3. Fast-setting, low-shrinkage concrete repair material 'Super Set 45' NIPPO
  4. 4 "Ripe Reji" Each color Single item (5kg x 4 bags 20kg) 和田商事
  5. 5 SNC Corporation Business Introduction SNC

Concrete Repair Materials Product List

46~60 item / All 73 items

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Technical Data: Comparison Table of Cross-Section Repair Methods

A thorough comparison of the IPH system, chipping removal + backfilling (polymer cement mortar), and chipping removal + backfilling (epoxy resin mortar).

This is a technical document comparing the IPH system (internal pressure filling joint reinforcement method) with chipping removal + backfilling (polymer cement mortar) and chipping removal + backfilling (epoxy resin mortar). 【Comparison Contents】 ■Overview Diagram ■Method Overview ■Method Features ■Discussion ■Neutralization and Salt Damage Countermeasures ■Workability of Leak Areas ■Adhesion between Rebar and Concrete ■Economic Efficiency ■Comprehensive Evaluation ■Durability ■30-Year Life Cycle Cost *For more details, please refer to the technical document.

  • Renovation and repair methods

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IPM Method Case Study Civil Engineering: Aichi Prefectural Nagoya Airport Runway Repair Work

This is an introduction to the IPH method (Internal Pressure Filling Joint Reinforcement Method). Case study of the repair work on the runway of Nagoya Airport operated by the prefecture.

This is an introduction to the IPH method (Internal Pressure Filling Joint Reinforcement Method) in civil engineering. 【Project Name】 Prefectural Nagoya Airport Runway Repair Project 【Construction Period】 February 29, 2016 – March 23, 2016 【Project Overview】 Concrete pavement repair 【Project Purpose】 Repair of floating sections *For more details, please refer to the PDF document or feel free to contact us.

  • Renovation and repair methods

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IPH Method Case Study Civil Engineering H27 Bridge No. 2 Miyagawa Bridge Repair Work

This is an introduction to the IPH method (internal pressure filling joint reinforcement method). H27 Bridge No. 2 Miyagawa Bridge repair work.

This is a case study of the IPH method (Internal Pressure Filling Joint Reinforcement Method) in civil engineering. 【Project Name】 Fiscal Year 2015 Bridge No. 2 Miyagawa Bridge Repair Work 【Construction Period】 January 18, 2016 – February 8, 2016 【Project Overview】 Bridge repair work 【Project Purpose】 Crack repair, cross-section restoration (exposed rebar, delamination), internal pressure filling joint reinforcement (floating, bean plate) *For more details, please refer to the PDF document or feel free to contact us.

  • Renovation and repair methods

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[IPH Method Case Study Civil Engineering] Road Improvement Project (Subsidy) No. 3 Work

This is an introduction to the IPH method (internal pressure filling joint reinforcement method). Case study of road improvement work (subsidy) Project No. 3.

This is an introduction to the IPH method (Internal Pressure Filling Joint Reinforcement Method) case study (Civil Engineering). 【Project Name】 Road Improvement Project (Subsidy) No. 3 【Construction Period】 February 15, 2016 - March 4, 2016 【Project Overview】 Culvert 【Project Purpose】 Crack Repair *For more details, please refer to the PDF document or feel free to contact us.

  • Renovation and repair methods

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IPH Method Case Study Civil Engineering: Bunkabashi Bridge External Fall Prevention Work

This is a case study of the IPH method (Internal Pressure Filling Joint Reinforcement Method). It involves the construction work for preventing the collapse of the Bunka Bridge.

This is an introduction to the IPH method (internal pressure filling joint reinforcement method) in civil engineering. 【Project Name】 General Prefectural Road Kawachi Hanazaki Line External Road Comprehensive Grant (Disaster Prevention and Bridge Repair) Bunka Bridge External Bridge Collapse Prevention Work 【Construction Period】 June 4, 2015 - June 10, 2015 【Project Overview】 Bridge 【Project Purpose】 Repair Work *For more details, please refer to the PDF document or feel free to contact us.

  • Renovation and repair methods

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【IPH Method Case Study Civil Engineering】H27 Machido Menkawa Line Kanmon No. 2 Tunnel Repair Work

This is a case introduction of the IPH method (Internal Pressure Filling Joint Reinforcement Method). H27 Town Road Menkawa Line Kanmon No. 2 Tunnel Repair Work.

This is an introduction to the IPH construction method (internal pressure filling joint reinforcement method) in civil engineering. 【Project Name】 Repair Work for the Second Kanmon Tunnel on the Town Road Menkawa Line, Fiscal Year 2015 【Construction Period】 September 24, 2015 - October 10, 2015 【Project Overview】 Tunnel repair work: injection of 11.50 m² for cross-section restoration, injection of 8.39 m² for floating sections, injection of 20 m for cracks, and injection of 3.95 m² for significantly floating sections with water leakage. 【Project Purpose】 Repair work for the ceiling area of the tunnel (structure: mortar spray thickness of 10 cm, height approximately 4.8 m, width approximately 5.0 m, length 29.8 m) within a range of 4.6 m. *For more details, please refer to the PDF document or feel free to contact us.

  • Renovation and repair methods

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IPM Method Case Study Civil Engineering No. 77: Reinforcement Work for the Floating Pier Support at Kogō Port

This is a case introduction of the IPH method (Internal Pressure Filling Joint Reinforcement Method). No. 77: Reinforcement work for the bearing section of the floating pier at Kogō Port.

This is an introduction to the IPH method (Internal Pressure Filling Joint Reinforcement Method) case study (Civil Engineering). 【Project Name】 No. 77 Small Kō Port Floating Pier Bearing Reinforcement Work 【Construction Period】 August 20, 2015 – August 22, 2015 【Project Overview】 IPH method 1 set (Chipping 0.9m², Cross-section restoration 0.9m², Resin injection (Drilling depth 10cm, 2 rotations) 61 holes 【Project Purpose】 Reinforcement of the anchor bolts for the ferry pier bearings and repair of the concrete defects in the parapet. *For more details, please refer to the PDF document or feel free to contact us.

  • Renovation and repair methods

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IPM Method Case Study: Repair Work on Embankment Bridge

This is an introduction to the IPH method (Internal Pressure Filling Joint Reinforcement Method). Case study of the repair work on a bridge over a levee.

This is an introduction to the IPH method (Internal Pressure Filling Joint Reinforcement Method) case study (construction). 【Project Name】 Repair Work for the Tsutsumi Bridge 【Construction Period】 October 3, 2015 - October 29, 2015 【Project Overview】 Repair of floating and honeycomb defects in the newly constructed box culvert and water leakage sealing. 【Project Purpose】 Repair of areas with poor concrete quality. *For more details, please refer to the PDF document or feel free to contact us.

  • Renovation and repair methods

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[Water Ceramic Construction Case] National Treasure, World Cultural Heritage Himeji Castle

The beauty of Himeji Castle for the future. Introducing examples of measures taken against biological contamination and weathering.

Aqua Tech Co., Ltd. handles "Water Ceramic," which enables the restoration and strengthening of deteriorated concrete and stone surfaces. It was adopted at Himeji Castle, a national treasure and UNESCO World Heritage site, as a measure to prevent the proliferation of fungi and algae, as well as to prevent water absorption in unglazed tiles and shachihoko. The areas of use include almost all external surfaces, including plaster, exterior walls, tile plaster, tiles, and shachihoko. If you are interested in measures against plaster contamination, we have samples available, so please feel free to contact us. [Case Overview] ■ Adopted in 2014 ■ Areas of Use - Almost all external surfaces, including plaster, exterior walls, tile plaster, tiles, and shachihoko ■ Purpose - Measures to prevent the proliferation of fungi and algae, as well as to prevent water absorption in unglazed tiles and shachihoko *For more details, please refer to the PDF materials or feel free to contact us.

  • Reinforcement and repair materials
  • Coating film waterproofing material/permeable waterproofing material

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T& Japan Maintenance Development Co., Ltd. Business Introduction

For concrete structures, leave the investigation and repairs to us!

T& Japan Maintenance Development Co., Ltd. is a company that provides various products, repair methods, and repair techniques to customers through the investigation of aging deterioration of concrete structures and repair construction. We also have our own methods, such as the Maintenance Angle C method and fine crack repair methods, so please feel free to consult with us. 【Business Activities】 ■ Civil engineering work ■ Construction work ■ Gas supply and drainage pipe work ■ Repair and reinforcement of structures ■ Consulting services, etc. *For more details, please download the PDF or feel free to contact us.

  • Consulting companies
  • Other civil engineering works

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