Filling method - メーカー・企業8社の製品一覧とランキング

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Filling methodのメーカー・企業ランキング

更新日: 集計期間:Oct 15, 2025~Nov 11, 2025
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  1. 橋本産業 Okayama//Building materials, supplies and fixtures manufacturers
  2. ESP Hiroshima//Other construction industries
  3. 協同組合Masters 地盤環境事業部会 『GEOTETS工法』 Hyogo//Construction Consultant
  4. 4 透水性レジンモルタルシステム工法協議会 Osaka//others
  5. 5 エスティーエンジニアリング Osaka//Other construction industries

Filling methodの製品ランキング

更新日: 集計期間:Oct 15, 2025~Nov 11, 2025
※当サイトの各ページの閲覧回数を元に算出したランキングです。

  1. Injection filling method "Cellcrete Method" 橋本産業
  2. Introduction of 12 examples of construction methods for stone walls and revetment repairs and reinforcements. ESP
  3. Permeable resin mortar filling method (PRMS method) 透水性レジンモルタルシステム工法協議会
  4. Soil retaining member pull-out simultaneous filling method 協同組合Masters 地盤環境事業部会 『GEOTETS工法』
  5. 4 Since adjacent construction is possible, it prevents business losses: "Simultaneous Filling Method for Retaining Material Pullout." 協同組合Masters 地盤環境事業部会 『GEOTETS工法』

Filling methodの製品一覧

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Water management for existing structures in scenic areas.

For the maintenance and preservation of openings, gaps, looseness, belly headings, extraction subsidence, voids, etc.!

Introducing water management for existing structures in scenic areas using the "Tosui CON filling method." This method does not require the demolition of existing structures. It suppresses the outflow of backfill soil and does not produce noise or vibration. It is suitable for maintenance and preservation of openings, voids, looseness, sagging, suction settlement, and gaps. 【Features】 ■ Does not compromise the landscape ■ Suppresses outflow of backfill soil ■ No need for traffic restrictions ■ No demolition of existing structures required ■ No noise or vibration ■ Suitable for water management *For more details, please refer to the PDF document or feel free to contact us.

  • 企業:ESP
  • 価格:Other
  • Other construction services

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A filling method suitable for maintaining landscape, reducing costs, and conservation while preserving existing structures.

No need to demolish existing structures without compromising the landscape! The 'Tosui CON Filling Method' enhances the stability of existing structures.

The "Tosui CON filling method" is a construction technique aimed at preserving and maintaining existing structures while maintaining landscape formation. In response to the deterioration of stone masonry and stone walls in riverbanks, waterways, and residential areas, a plant is set up on-site to inject and fill with Tosui CON (aggregate, cement, water, B.CON + S), which excels in permeability, strength, durability, and workability from joints and cracks. This helps maintain the stability of the stone masonry and suppresses piping phenomena by draining water from the joints. 【Features】 ■ Has strength comparable to mortar while ensuring permeability. ■ Suitable for water countermeasures such as piping phenomena. ■ Can be applied in narrow areas as well as extensive regions. ■ Shortens construction time as curing period is unnecessary. ■ No demolition of existing structures, resulting in no noise or vibration. *For more details, please refer to the PDF download or contact us.

  • 企業:ESP
  • 価格:Other
  • Renovation and repair methods

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A filling method that allows for the safe extraction of steel sheet piles in close proximity to railways.

"Over 850 construction achievements" The 'GEOTETS method' ensures no underground obstacles are left due to abandonment (burial)! It minimizes impact on the surrounding area and also addresses soil contamination measures.

The "GEOTETS Method" (Simultaneous Filling Method for Retaining Material Extraction) is a construction method that allows for the safe extraction of steel sheet piles, retaining piles, and pre-cast piles even in close proximity to railways. In recent years, with the active redevelopment and elevation of railway lines, there has been a growing need to mitigate the impact on surrounding lines and facilities. In areas close to important structures such as railways, there is often a significant amount of retained soil material. This method allows for simultaneous filling from pre-installed filling pipes while extracting, addressing the voids created by the extraction. ■ Mitigation of impact on neighboring lines and surrounding facilities ■ Highly suppresses ground subsidence around the extraction area ■ Over 400 successful applications (including JR, Kintetsu, Tobu Railway, Hankyu Railway, etc.) ■ Environmentally friendly method as steel sheet piles can be reused ■ Other applications include construction in reservoirs and river embankments, soil contamination measures, and pile extraction.

  • Ground foundation construction method

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Soil retaining member pull-out simultaneous filling method

A unique method for safely retrieving steel sheet piles and similar materials in proximity construction and levee work.

When performing temporary earth retention in soft ground, the extraction of steel sheet piles can significantly impact nearby houses and buried utilities, leading to many cases where they are left in place. Additionally, in the construction of reservoirs and river embankments, the risk of embankment failure during floods caused by water channels created during extraction is a concern. This method has accumulated approximately 200 successful cases as a solution to these issues. A new technology has been patented and registered with NETIS, which involves filling the voids created during extraction with a special filling material simultaneously as the steel sheet piles are pulled out. This helps prevent business losses and reduces costs.

  • Civil Engineering Method

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[Construction Case] Short-term Correction: Certain Food Warehouse Void Filling Work

Upcon construction method using rigid polyurethane foam! Introducing a case where a cavity was corrected in three days.

We would like to introduce a case of "void filling work" conducted at a certain food warehouse in Kanagawa Prefecture. Using the Upcon method, which allows for the filling of voids that developed under the floor with polyurethane resin in a short period, we corrected a maximum void of 270mm (with a construction area of approximately 171m2) in just three days. After the resin filling, we checked the filling condition with a CCD camera and used non-shrink mortar to seal the injection holes. 【Case Overview】 ■ Construction Area: Approximately 171m2 ■ Maximum Void Size: 270mm ■ Location: A certain food warehouse in Kanagawa Prefecture ■ Construction Period: 3 days *For more details, please refer to the PDF document or feel free to contact us.

  • Renovation and repair methods
  • Ground foundation construction method
  • Civil Engineering Method

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[Construction Case] Slab Foundation House: Void Filling Work (Tokyo)

A gap or cavity of approximately 200mm at most occurred! A case where it was resolved in one day using the up-con method.

We would like to introduce a case of "void filling work" conducted on a slab foundation house located in Tokyo. Due to ground subsidence, the ground level has lowered, resulting in the formation of voids beneath the slab foundation of the house. The voids were resolved in a single day of construction. 【Case Overview】 ■ Maximum void: Approximately 200mm ■ Area: Tokyo ■ Construction period: 1 day *For more details, please refer to the PDF document or feel free to contact us.

  • Renovation and repair methods
  • Ground foundation construction method
  • Special Construction Method

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Urethane Hollow Filling Method "NTR Method"

A product lineup that can be selected according to conditions, ranging from 10 times expansion to 40 times expansion.

High-expansion polyurethane injection material [NTR Foam] is a product developed for filling cavities behind tunnel walls. Due to its high expansion, it can fill cavities with a small amount, making it very economical. Moreover, it has an extremely low specific gravity, which does not impose a significant load on the tunnel. Additionally, its curing time is very short, making it suitable for projects that require quick construction. 【Features】 ○ Because it is a high-expansion polyurethane, the required material can be reduced by the expansion ratio, making construction simple and lightweight. ○ The short curing time allows for limited injection, and even in the presence of water inflow, the possibility of material separation and outflow is minimal, thus not adversely affecting the water environment. ○ The foamed solid forms a water-insoluble polymer compound with a three-dimensional structure, which is chemically stable and maintains its shape and strength over the long term. ○ Compliant with the "Guidelines for Safety Management of Polyurethane Injection Materials in Mountain Tunnel Construction." ○ A lightweight, compact injection machine that offers good workability and can be used in long and narrow environments. For more details, please contact us or download the catalog.

  • Safety and consumables

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Permeable resin mortar filling method (PRMS method)

This is a method of rubbing high-strength resin mortar into the voids of drainage pavement.

The permeable resin mortar filling method (PRMS method) is a technique that involves mixing a high-performance resin binder with special particle-sized fine aggregates to create a permeable resin mortar mixture, which is then filled into the gaps between the surface aggregates of permeable pavement. This method not only strengthens the surface of permeable pavement and helps maintain and extend its functionality but also allows for repairs, further enhancing the lifespan of this valuable infrastructure while also achieving a high level of noise reduction.

  • Mortar and plaster materials

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Characteristics of the Tōsui CON Filling Method

Introducing the characteristics of the TOSUI CON filling method for landscape maintenance, cost reduction, and conservation.

The "Tosui CON Filling Method" is a maintenance and preservation measure aimed at extending the lifespan of structures. By pumping permeable concrete, which excels in permeability and workability, into the voids of existing structures through surface openings and injection holes, the filling material functions as a filter material. This method can suppress piping phenomena caused by infiltrating water from the back, thereby enhancing the stability of existing structures. 【Features】 - Existing structures remain as they are, maintaining aesthetics, reducing costs, and preserving integrity. - Has strength comparable to mortar while ensuring permeability. - Compressive strength: 13N–15N/mm² (at 28 days or older). - Does not contain water quality pollutants. - No noise or vibration as there is no demolition of existing structures. *For more details, please refer to the PDF document or feel free to contact us.

  • 企業:ESP
  • 価格:Other
  • River construction
  • Renovation and repair methods
  • Civil Engineering Method

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Introduction of 12 examples of construction methods for stone walls and revetment repairs and reinforcements.

Introducing the construction method of the Tōsui CON filling technique by ESP Co., Ltd.!

Introducing the "Construction Method" of ESP Corporation, which conducts repairs and reinforcements of stone walls and embankments. For the aging of stone masonry and stone walls in embankments, waterways, and residential areas, we install a plant on-site. We inject and fill with Tōsui CON, which excels in permeability, strength, durability, and workability, from joints and cracks to maintain the stability of the stone masonry. By draining from the joints, it is possible to suppress the piping phenomenon. We aim to preserve and maintain stability while maintaining the landscape. *For more details, please refer to the catalog or feel free to contact us.

  • 企業:ESP
  • 価格:Other
  • River construction
  • Renovation and repair methods
  • Civil Engineering Method

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Soil retaining member pull-out simultaneous filling method

- Proximity construction - reliable settlement control - Soil contamination measures - water barrier even after extraction - Embankment construction - no creation of waterways

When performing earth retention using temporary materials in areas close to important structures such as residential buildings and underground installations, significant impacts on the surrounding ground can occur during the extraction of earth retention piles (such as steel sheet piles or H-piles), often leading to business losses such as building compensation. Without an effective solution, there was no choice but to leave the earth retention piles in place, causing difficulties for many stakeholders. This method simultaneously fills the void created during extraction by pulling from pre-installed filling pipes. Under conditions with a variety of ground conditions and differences in extraction machinery, it highly suppresses ground displacement after extraction, allowing for the safe retrieval of earth retention materials. In recent years, due to frequent major disasters caused by heavy rainfall, this method has seen an increase in usage as a unique solution for earth retention work on river and pond embankments that does not create water channels. It contributes to cost reduction in proximity construction, prevention of business losses, and reduction of environmental impact through the reuse of steel sheet piles. This method can also be applied underwater. *For more details, please download the catalog PDF or feel free to contact us.*

  • Ground foundation construction method
  • Special Construction Method
  • Civil Engineering Method

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Since adjacent construction is possible, it prevents business losses: "Simultaneous Filling Method for Retaining Material Pullout."

No underground obstacles will be left behind due to abandonment (entombment)! The 'GEOTETS method' is effective in such areas.

■Close Proximity Construction [Preventing Business Loss] In areas close to important structures such as residential houses, there seems to be a lot of residual soil retaining materials. This method allows for simultaneous filling while pulling out the material through pre-installed filling pipes, addressing the voids created by the extraction. It highly suppresses ground displacement, enabling safe extraction of the soil retaining materials. ■Reservoirs and River Embankments [No Water Path Creation] In recent years, due to frequent major disasters caused by heavy rain, there has been an increase in the use of construction methods that do not create water paths in soil retaining works for river and reservoir embankments. This method can also be applied underwater. ■Soil Contamination Countermeasures [Waterproof Wall Even After Soil Retaining Material Removal] In soil contamination countermeasure works, groundwater monitoring is required for two years after the completion of the project. Therefore, it is not possible to pull out the soil retaining materials. By adopting this method, which has the function of a waterproof wall, it is possible to remove the soil retaining materials early and reduce costs. ■Pile Extraction [High-Speed Simultaneous Filling to Suppress Settlement] Initially, filling was done at a rate of 20 to 30 liters per minute. Now, it has advanced to allow for high-speed simultaneous filling of up to 140 liters in large volumes. This development achievement has made it possible to use this method for extracting large cross-section existing piles as well.

  • Ground foundation construction method
  • Civil Engineering Method
  • Earth retaining wall/foundation reinforcement

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Injection filling method "Cellcrete Method"

Leave the reliable filling work for the drainage pipe to the Cellcrete method!

The "Cellcrete Method" is a groundbreaking injection filling technique that improves upon the shortcomings of previous methods such as "Air Mortar" and "Air Milk." By incorporating Cellcrete as fine aggregate, it is possible to obtain a filling material with very little material separation and almost no material diffusion in water. This method uses this water-resistant lightweight fibrous mortar for injection filling. 【Features】 ■ Water Resistance: Strong resistance to separation in water, making it difficult for the contact surface with water to be disturbed. ■ Stability: No breathing or bubble disappearance, preventing the occurrence of voids after curing. ■ Workability: Excellent fluidity, requiring no high injection pressure for pumping. *For more details, please download the PDF or feel free to contact us.

  • Ground foundation construction method
  • Civil Engineering Method

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