Construction method Product List and Ranking from 1598 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Oct 22, 2025~Nov 18, 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:Oct 22, 2025~Nov 18, 2025
This ranking is based on the number of page views on our site.

  1. Taiyo Kisokogyo Co.,Ltd. Aichi//General contractors and subcontractors
  2. 水研 Shiga//Building materials, supplies and fixtures manufacturers
  3. null/null
  4. 4 三晃金属工業 Tokyo//General contractors and subcontractors
  5. 5 エスケー化研 Osaka//Building materials, supplies and fixtures manufacturers

Construction method Product ranking

Last Updated: Aggregation Period:Oct 22, 2025~Nov 18, 2025
This ranking is based on the number of page views on our site.

  1. Install the valve without stopping the water! 'EM Continuous Water Valve Method' 水研
  2. Hybrid Concrete Reinforcement Method "Solid Remain Alpha"
  3. Support for bridge pier reinforcement nationwide: "Temporary Closure LPF Method" 日本海洋サービス 大阪支店
  4. 4 Gradient Construction Method for Residential Exterior Walls "KF Gradient Method" KFケミカル
  5. 5 Reinforcement of existing beam after hole cutting: "Redouble Method" コンステック

Construction method Product List

421~435 item / All 4238 items

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Road bridge pavement reinforcement and deck waterproofing GGRW method

Integration of road bridge pavement reinforcement and deck waterproofing work NETIS No. KK-220072-A NEXCO Grade 1 compliant

The reduction in durability of RC road bridges is influenced by the durability of RC slabs and asphalt pavements, which are interrelated factors. Fatigue caused by wheel loads accumulates fatigue in the RC slabs and asphalt pavement surfaces, leading to cracking. The intrusion of rainwater and de-icing agents from these cracks is believed to accelerate the deterioration of the RC road bridge structure. Therefore, the waterproofing effect and durability of slab waterproofing are emphasized. Additionally, the quick release from the public facility of road bridges during renovation work is also an important perspective. The road bridge pavement reinforcement waterproofing system "GGRW Method" developed this time suppresses cracking in the pavement, minimizes damage to the waterproof layer, and allows for quick release. It significantly improves the film strength of conventional asphalt coating waterproof materials and addresses the adhesion issues between resin-based coating waterproof materials and asphalt pavements. A sheet membrane with continuity that integrates waterproofing and reinforcement is created on-site, effectively bonding the pavement and slab with good adhesion to demonstrate its effectiveness in slab waterproofing methods.

  • Bridge Materials

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Resource Recycling Greenery Construction - Dale Chip Method

Connecting the life of trees to natural regeneration... The Dale Chip method circulates the blessings of nature.

This is a resource-circulating greening method that chips wood, stumps, bamboo, and other materials generated on-site to use as the main material for growth substrates. Since raw chips can be used directly, there is no need to dispose of on-site generated materials as industrial waste, eliminating the need for processes or yards to compost the raw chips prior to greening, which reduces costs. Furthermore, because it does not require the removal of on-site generated materials or the composting of chips, it can reduce CO2 emissions.

  • Fiber wall
  • Retaining wall
  • Pile and foundation work

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Strongly acidic soil countermeasure construction - Alplus method

Protecting plants from acid rain and strongly acidic soil using recycled shell materials.

This is a resource recycling greening method that uses shell remedy (crushed shell material) made from shells generated in coastal facilities and aquaculture industries to restore vegetation in strongly acidic soils (pH 4.0 or lower). Depending on the presence of spring water from the underlying ground, two types are selected: the corrective material mixing type and the corrective layer construction type. If there is no spring water from the underlying ground, the "corrective material mixing type" is applied, where shell remedy is mixed into the growth substrate and sprayed. If there is spring water from the underlying ground, the "corrective layer construction type" is applied, where an acidic corrective layer using shell remedy is constructed, and the growth substrate is sprayed on top for greening. When greening strongly acidic soils with a pH of 4.0 or lower, if measures against acidic soils are not taken, plants will be directly affected by hydrogen ions, and there will be indirect negative impacts due to changes in soil components and soil microbial dynamics. Therefore, when strongly acidic soils appear, it is difficult to maintain or restore vegetation with standard greening work, and it is necessary to consider the application of the Alplus method as a measure against strongly acidic soils.

  • Retaining wall
  • Earthworks
  • Pile and foundation work

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Orgasoil construction method

Vegetation spraying method using quality-focused organic materials "Orga Soil" and erosion control material "Remi Control."

This is a vegetation substrate spraying method that combines "Orga Soil," an organic growth substrate made from a mixture of high-quality bark compost and peat moss, with "Remi Control," an inorganic erosion control material that does not adversely affect plant growth, to create a growth substrate that is highly resistant to erosion and suitable for plant germination and growth.

  • Waste treatment facilities
  • Erosion control works
  • Other civil engineering works

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Resource Recycling Green Construction - Recycle Earth Green Method

Create a durable growth substrate suitable for the germination and growth of plants using locally sourced soil, while also contributing to the reduction of CO2 emissions at a low cost.

This is a resource-circulating greening method that uses site-generated soil, such as excavated soil and collapsed earth, as the main material for the growth substrate. By combining a unique adjustment technology for site-generated soil at the construction plant with a spraying method that uses a granulation agent solution in the water, up to 80% of the growth substrate can be made from site-generated soil. Using site-generated soil as the main material reduces CO2 emissions associated with the transportation of earth and minimizes the use of growth substrate materials that produce CO2 during the production process at the factory. It also creates a low-cost growth substrate with a granular structure suitable for plant germination and growth, and high erosion resistance. In traditional methods, using site-generated soil as the main material required it to be made into a slurry, as in the case of imported soil spraying work. However, the Recycling Earth Green Method allows for the omission of wire mesh installation and enables the spraying of a growth substrate made from site-generated soil at a thickness of 3 to 10 cm or more by employing 1) a unique adjustment method for site-generated soil, 2) the mixing of short fibers, and 3) using the granulation agent solution as water. The Recycling Earth Green Method can accommodate a wide range of greening purposes, from rapid greening to natural recovery greening using domestically produced native species.

  • Fiber wall
  • Retaining wall
  • Pile and foundation work

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Wire mesh omission countermeasure construction - Non-Rus Green method

Vegetation substrate spraying work that achieved shortened construction periods, cost reduction, labor saving, and reduced CO2 emissions due to the omission of wire mesh installation.

This construction method involves directly spraying a high-quality organic growth substrate "Orgasoil" mixed with a reinforcement material "Non-Ras Fiber" and a thickening adhesive "Non-Ras Bond" onto the ground, thereby eliminating the need for wire mesh installation (Ras installation) while enhancing erosion resistance and strength. Although the wire mesh omission method has been developed and adopted in various regions across the country, it had the drawback of the growth substrate peeling off due to weather and site conditions when the spray thickness was thin. This method significantly improves the durability of the growth substrate through the use of the newly developed "Non-Ras Bond" and "Non-Ras Fiber," addressing the shortcomings of conventional techniques.

  • Road construction
  • Civil Engineering Method
  • Power generation facilities

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Long-distance high-rise vegetation substrate spraying work - High Green Shot Method

Long-distance high elevation vegetation substrate spraying method targeting slopes with a vertical height of 80m or more, where market unit prices do not apply.

This method enables spraying in sites with a vertical height of over 80 meters, which was difficult with conventional vegetation substrate spraying methods. It has a proven track record of long-distance and high-elevation construction, with at least 700 meters of pumping distance and a vertical height of 160 meters, eliminating the need for temporary spraying plant yards or cableways for transporting materials. This method is particularly suitable for greening disaster recovery work in areas affected by landslides due to heavy rainfall, where the installation of temporary scaffolding is challenging. Additionally, this method can accommodate various greening objectives, ranging from rapid greening using non-native herbaceous plants to natural recovery greening with native species (herbaceous and woody plants) and the use of locally sourced seeds for regional seedling utilization.

  • Civil Engineering Method
  • Other civil engineering works
  • Dam construction

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Natural Invasion Promotion Work - New Remi Forest Method

A natural invasion promotion work that combines a highly durable growth substrate (high durability substrate) and a seed fixation promotion net (Seed Catcher V2).

This construction method combines a high-durability substrate that is highly resistant to erosion and does not mix seeds, with a seed fixation promotion net called "Seed Catcher V2," which efficiently captures seeds that fly in from the surrounding area. This allows for the rapid natural invasion of surrounding vegetation even on uneven rock slopes. The natural invasion promotion method utilizes the inherent recovery potential of nature for greening, aiming for vegetation through plants that invade from the surrounding area without bringing in plant materials (such as seeds or seedlings) from other regions. This helps avoid disruption of local genetic diversity. Therefore, it can be applied in greening projects in areas with high environmental conservation standards, such as national parks, where obtaining local seeds (seeds collected from the construction site area or seedlings grown from them) may be difficult. Additionally, this method is effective in cases where it is challenging to introduce vegetation through seeding or planting on sloped areas, or when the scale of the slope is relatively small and there are natural forests nearby, providing a close source of seeds.

  • Slope protection material
  • Civil Engineering Method
  • Road construction

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Traditional Seed Sowing Worker - Original Landscape Greening Method

Introduce native herbaceous plants produced domestically to achieve slope greening.

This is a greening method that rapidly green slopes by spraying domestic native herbaceous seeds, achieving full greening while considering regional ecosystems and biodiversity. It enables speedy greening comparable to that of foreign grasses and can create landscapes reminiscent of Japan's original scenery (grasslands). Currently, most native seeds used for slope greening are imported foreign species referred to as "foreign native species." These foreign native species have been pointed out to pose risks such as genetic disruption due to hybridization with indigenous species that originally grow in the country, as well as ecological disruption caused by the unintended mixing of foreign species' seeds. This has been explicitly stated as "not to be used" in the action plan of the 2023-2030 National Biodiversity Strategy. Domestic native herbaceous seeds are stored and managed at the RS Center (seed-specific storage facility) by applying the early germination power testing method and seed storage technology that our company has cultivated for native woody seeds. When shipping seeds to the site, we deliver products that are accurately weighed and packaged based on seed mixture design for each construction unit.

  • Civil Engineering Method

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Shield waterproofing work using mesh-reinforced light-curing resin sheet method.

Compliance with D2 type (sheet lining method) in the sewer concrete structure corrosion prevention technology manual.

The light-curing sheet is a composite sheet that sandwiches a mesh of high-density polyethylene fibers between two mats made of glass fibers that are impregnated with light-curing vinyl ester resin. Surface preparation and primer treatment are performed on the concrete repair surface of sewer pipes, and a pre-formed resin sheet is then attached on top. Next, light is irradiated onto the surface to cure it and form a corrosion-resistant coating layer.

  • Water Supply Facilities
  • Sewerage facilities
  • Waterproofing work

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Anti-corrosion construction: Rosy anti-corrosion method

It protects the base material from corrosive environments for an extended period.

The Longy anti-corrosion method is a corrosion prevention technique that uses synthetic resin to form a specified thickness of anti-corrosion coating on the base material, aiming to protect the base material from corrosive environments for an extended period. We offer various standard specifications for resin-based corrosion prevention tailored to different environments and conditions. Additionally, we conduct anti-corrosion design based on the environmental conditions presented by our customers.

  • Other civil engineering works

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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 Floor Waterproofing Method: Inorganic Hybrid Type

A waterproof and freeze-resistant inorganic hybrid concrete slab waterproofing method!

**Features** The "Crystal Slab Waterproofing Method" is an inorganic hybrid concrete slab waterproofing method composed of a primer made primarily of modified silicate and a topcoat made primarily of colloidal silica, combining waterproofing and freeze-thaw resistance. ■ Waterproofing → Prevents corrosion of concrete slabs due to the water resistance and durability effects unique to inorganic materials. ■ Surface Modification → By modifying the surface to approximately 5mm, it imparts water resistance and freeze-thaw resistance. ■ Freeze-Thaw Resistance → Provides high freeze-thaw resistance through a multi-layer finish of inorganic materials. ■ Non-Combustibility → Unlike conventional products, it forms a non-combustible waterproof layer. ■ Shortened Construction Period → The construction time is short, allowing for a reduction in the overall construction period. It is also adaptable to complex substrate shapes. ■ Safety → The materials used are composed of inorganic substances, ensuring high safety.

  • Other civil engineering works
  • Waterproofing work
  • Roof and gutter construction

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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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