Construction method Product List and Ranking from 25 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Jul 23, 2025~Aug 19, 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 23, 2025~Aug 19, 2025
This ranking is based on the number of page views on our site.

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  4. 4 エスケー化研 Osaka//Building materials, supplies and fixtures manufacturers
  5. 5 null/null

Construction method Product ranking

Last Updated: Aggregation Period:Jul 23, 2025~Aug 19, 2025
This ranking is based on the number of page views on our site.

  1. Off-site construction method for air conditioning equipment "Vispaire Frame"
  2. Rigid urethane coating waterproofing HU-B method 化研マテリアル
  3. Special foundation roller painting method for interior and exterior finishes "Fine FR Method" エスケー化研
  4. 4 Unrestricted Foundation Roller Method 'Cerami RC-FR Method' エスケー化研
  5. 5 Temporary bridge temporary pier cable-stayed construction method "LIBRA Method"

Construction method Product List

241~255 item / All 2469 items

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Repair method: Squeeze method

Crack repair methods

The squeeze method is an automatic low-pressure resin injection technique used to repair cracks that occur in concrete structures. By attaching an injector above the crack and filling it with resin, a sustained pressure is generated due to the elastic recovery of the rubber, allowing for injection even into fine cracks. As a pioneer of automatic low-pressure resin injection methods, the squeeze method has a wealth of successful construction records.

  • Reinforcement and repair materials
  • Renovation and repair methods

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Crystal NCP method (inorganic coating method using surface impregnation materials)

Repair and anti-corrosion method for agricultural waterways and concrete structures using a hybrid surface impregnation material and polymer cement mortar.

The Crystal NCP method is an inorganic coating method that uses surface impregnation materials. It aims to restore the functionality and extend the lifespan of aging concrete agricultural water channels, allowing for both repair and anti-corrosion work to be carried out in a single application. 【Features】 ■ Concrete body modification effect: Weak concrete that has become vulnerable due to wear and cross-sectional defects is modified using an alkali silicate aqueous solution. ■ Workability and stable quality: The PCM used complies with NEXCO cross-section repair material standards. It provides stable quality with easy application by simply mixing with USCP liquid. ■ Dense structure and crack resistance: By incorporating high furnace crushed slag fine aggregate, it maintains a dense organizational structure for long-term stability and excellent crack resistance. ■ Wear resistance and prevention of deterioration factor penetration: The application of surface impregnation materials improves wear resistance, water absorption prevention, salt shielding, carbonation suppression, and freeze damage resistance. ■ Improvement of roughness coefficient: By creating a highly dense surface structure, it possesses wear resistance while improving the roughness coefficient without reducing the cross-sectional area of the water channel.

  • Agricultural civil engineering works

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Safety Wall Method (ASW Method) Bracket Type

The ASW method is the most suitable technique for constructing and renovating vertical retaining walls in urban areas.

The Safety Wall Method (ASW Method) is a bracket-type or self-supporting vertical retaining wall method that maintains stability through the resistance of piles, columns, retaining walls, bracket plates, weight concrete, and other elements. It does not require a base slab like conventional RC retaining walls such as L-shaped walls, resulting in reduced excavation and backfill cross-sections, which enhances cost-effectiveness and constructability.

  • Renovation and repair methods

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Safety Wall Method (ASW Method) - Self-supporting

The ASW method is the most suitable technique for constructing and renovating vertical retaining walls in urban areas.

The Safety Wall Method (ASW Method) is a bracket-type or self-supporting vertical retaining wall method that maintains stability through the resistance of piles, columns, retaining walls, bracket plates, weight concrete, and other elements. It does not require a base slab like conventional RC retaining walls such as L-shaped walls, resulting in reduced excavation and backfill cross-sections, which enhances cost-effectiveness and workability.

  • Renovation and repair methods
  • Ground foundation construction method

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Safety wall construction method (ASW method) with back anchor type.

The ASW method is the most suitable technique for constructing and renovating vertical retaining walls in urban areas.

The Safety Wall Method (ASW Method) is a bracket-type or self-supporting vertical retaining wall method that maintains stability through the resistance of piles, columns, retaining walls, bracket plates, weight concrete, and other elements. It does not require a base slab like conventional RC retaining walls such as L-shaped walls, resulting in reduced excavation and backfill cross-sections, which enhances economic efficiency and constructability.

  • Renovation and repair methods
  • Ground foundation construction method

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Safety Wall Method (ASW Method) Pit Type

The ASW method is the most suitable construction method for building and renovating vertical retaining walls in urban areas.

The Safety Wall Method (ASW Method) is a bracket-type or self-supporting vertical retaining wall method that maintains stability through the resistance of piles, supports, retaining walls, bracket plates, weight concrete, and other elements. It does not require a base slab like conventional RC retaining walls such as L-shaped walls, resulting in reduced excavation and backfill cross-sections, thus offering excellent economic efficiency and constructability.

  • Renovation and repair methods
  • Ground foundation construction method

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Safety Wall (ASW) Method: A Vertical Retaining Wall Construction Method Without a Base

No need for a foundation! A vertical retaining wall safety wall method that excels in construction efficiency and cost-effectiveness.

The "Safety Wall (ASW) Method" is a vertical retaining wall construction method that utilizes piles and tie-back anchors, characterized by the absence of a base slab, which is essential for conventional vertical retaining walls. This allows for a smaller construction profile, minimizing the impact on the natural environment. It has already been certified by the Minister of Construction as a retaining wall that does not require a base slab (certified by the Japan Building Center and obtained "individual" certification from the Minister of Construction) and has patents for three types: back anchor type, bracket type, and pit type. 【Features】 - Since a base slab is not required, the amount of earthworks such as excavation and backfilling associated with construction is reduced. - The new structural form allows for the construction of retaining walls even in narrow sites where conventional methods are not feasible. - Reinforcement and repair of retaining walls at risk of collapse can be carried out with minimal impact on existing buildings. - By using H-beams for the supports and PC panels (factory-produced) for the wall body, construction time can be shortened. - It is also possible to use cast-in-place RC structures for the wall body, allowing for flexible adaptation to local conditions. For more details, please contact us or download the catalog.

  • Retaining wall

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Lift roller method

Eliminate work in confined spaces! A lift roller method that allows for easy transportation and installation of concrete products.

The "Lift Roller Method" allows for the transportation and installation of concrete products using a lift cart in difficult locations where the installation site is narrow and truck cranes cannot approach. Since it is a self-propelled device that does not require special guides on the foundation concrete, it can be used for construction at curved sections and corners. We offer two types to suit site conditions: "Hanging Type (Internal Suspension)" and "Side Type (External Suspension)." 【Features】 - Can accommodate slope construction in the longitudinal direction up to 10% - Accurate positioning in all directions (up, down, left, right) using hydraulic cylinders - The lift roller is electric, resulting in low noise and low vibration, minimizing impact on surrounding areas - Construction can be performed without the need to fell trees, showing consideration for the natural environment - Widely compatible with products such as box culverts, three-sided ditches, L-shaped ditches, inverted T-shaped products, and slabs *For more details, please refer to the external link page or feel free to contact us.

  • Renovation and repair methods

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Open shield method

Widely adaptable to densely populated residential areas and soft ground! A method for laying conduits and similar structures.

The "Open Shield Method" utilizes the advantages of both open-cut and shield methods, allowing for the installation of structures such as conduits that are adapted to urban areas and various conditions. The shield machine uses the surrounding friction of the casing and the ground, as well as its own weight, as reaction forces, and advances while adjusting direction and slope with jacks. Depending on the site conditions, we offer NOS Type I, NOS Type II, NOS Type III, and NOS Type V. 【Features】 ■ Capable of constructing sharp curves ■ Can be constructed close to buildings, etc. ■ Usable in weak ground and aquifers ■ The upper part of the shield machine can be opened ■ Low noise and vibration *For more details, please refer to the external link page or feel free to contact us.

  • Civil Engineering Method

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TSKJ method

Economically superior seismic resistance (T), water resistance (S), flexibility (K), and joint (J) construction methods that reduce total costs.

The "TSKJ method" has the flexibility to follow ground displacement caused by differential settlement and uplift, demonstrating excellent seismic resistance even during significant ground displacement events such as earthquakes. Furthermore, because the joint rubber follows the displacement, it enables more complete water sealing. It complies with Level 2 seismic motion as outlined in the Japan Sewage Works Association's "Guidelines for Seismic Measures for Sewage Facilities and Required Items for the Design of New Pipelines." 【Features】 ■ Flexible joints are set at all joint sections of the blocks. ■ Each joint follows changes in the ground and absorbs excessive deformation (maximum ground strain of 1.5%). ■ In terms of water tightness, it can maintain an internal water pressure of 0.06 MPa at the top grade. ■ All connection points flexibly respond to ground liquefaction and differential settlement. ■ By using joint sealing materials in conjunction, it complies with Level 1 seismic motion. *For more details, please refer to the external link page or feel free to contact us.

  • Earthquake-resistant construction method

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Sidewalk Installation Method "Safety Road"

Speeding up construction and improving safety! In urban areas, it is possible to install sidewalks with minimal land use.

"Safety Road" is a cantilevered sidewalk installation method. Since it is a cantilever beam structure supported by the foundation, it can be installed along rivers and waterways without disrupting the flow section, and in urban areas, it allows for sidewalk installation with minimal land use. The construction is quick, which helps reduce traffic restrictions due to construction. Additionally, the rib structure has integrated the foundation and the slab, significantly enhancing safety. [Features] ■ Speeding up construction ■ Improved safety ■ Protection of flow sections ■ Semi-permanent structure *For more details, please refer to the external link page or feel free to contact us.

  • Paving of sidewalks, roads, parking lots and stadiums

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Slider method

A construction method that enables the installation of products in urban areas with narrow road widths or in locations where side roads cannot be secured.

The "Slider Method" utilizes wires and pulleys to slide box culverts into position on guide angles embedded in the foundation concrete. In cases where the soil cover is deep or the excavation width is wide, the density of the cutting beams may increase, potentially hindering crane installation, making this method effective. 【Features】 - Effective in urban areas with narrow road widths or where side roads for installation cannot be secured. - Products are laid by sliding them on guide angles embedded in the foundation using towing machinery. - Enables installation of products under roads and railway overpasses. - Capable of handling large products by using lubricants and movable pulleys as friction-reducing materials. - Also useful for laying large flumes and similar structures.

  • Civil Engineering Method

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NK Rust Stabilization Anti-Corrosion Method for the Maintenance and Repair of Bridges and Steel Structures NETIS

Inorganic coating: A long-lasting repainting method with three types of surface preparation. Solvent-free epoxy resin-based rust stabilization paint + inorganic paint.

NETIS Registration Number: SK-100009-VR (Promotional Technology) (VR) The surface preparation involves three types of grinding, and any rust that cannot be removed is stabilized with a solvent-free epoxy resin-based rust stabilization paint: NK-100-E. It is then protected with a durable coating method using an inorganic paint: Seal Coat 007M, which excels in electrical insulation and weather resistance. This method reduces noise, dust, and industrial waste generated during surface preparation. The paint system uses safe materials that do not contain harmful heavy metals. Since NK-100E is solvent-free, it does not compromise the active film. It has high gas barrier properties, preventing the intrusion of water and oxygen, which are factors that cause rust. Seal Coat 007M consists of two-thirds inorganic components, resulting in minimal degradation of the coating film due to ultraviolet rays (chalking) and providing superior weather resistance compared to fluoropolymer paints. The two-layer application of inorganic paint protects the primer paint, creating a long-lasting painting system. It is also possible to use the solvent-free inorganic paint Seal Coat 007U as a topcoat. This repainting method contributes to the maintenance and repair of bridges and steel structures where blasting is difficult, enhancing long-term durability. It is also suitable for repainting systems that contain harmful substances, lead and lead compounds, chromium and chromium compounds, and PCBs.

  • Renovation and repair methods

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NK rust stabilization anti-corrosion method NETIS registered technology

We contribute to reducing life cycle costs for infrastructure preventive maintenance such as bridges and pedestrian overpasses.

This is a long-lasting repainting method that requires a surface preparation of at least three types of grinding. The primer used is a solvent-free rust stabilization paint that does not compromise the active film, ensuring a reliable application without defects. The intermediate and topcoat paints are inorganic paints that have a slower film wear rate than fluorine, providing double the film thickness to protect the primer paint.

  • Bridge Materials

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G-type asbestos containment method

Maintaining fire prevention and fire resistance performance! It is easy to manage because the treated material remains stable after processing!

In the case of containment methods where there is no contact with asbestos-containing building materials and no risk of asbestos dispersion due to vibrations, it is not subject to the Air Pollution Control Act. "G-type asbestos treatment" involves spraying at low pressure, so in most cases, it is not subject to the Air Pollution Control Act. There is no need for isolation, installation of an ante-room, or negative pressure dust removal, and wetting work is carried out using "Asgen Sealer." Additionally, due to its extremely high permeability, it offers good workability and can shorten the construction period. Since it can maintain fire and heat resistance performance, there is no need for new fire and heat resistance measures like organic treatment agents. This also helps reduce treatment costs. *For more details, please refer to the PDF materials or feel free to contact us.

  • Renovation and repair methods

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