An essential construction method in areas with high annual rainfall! It is also effective on unstable foundation grounds!
Our company has a track record of road improvement construction. Box-shaped retaining walls, based on various experiments, show that the vertical earth pressure acting on the foundation ground is smaller compared to rigid cantilever retaining walls, similar to the shear stress occurring in the retaining wall, making them advantageous from the perspective of ensuring bearing capacity. Additionally, the structure that acts in a well-balanced manner, as demonstrated in experiments, is effective even on non-stable foundation grounds. In regions with high annual rainfall, box-shaped retaining walls with high drainage performance are an essential construction method. Furthermore, their excellent seismic resistance has been verified through experiments and real phenomena. 【Case Overview】 ■ Purpose: Road improvement construction ■ Method: Box-shaped retaining wall ■ In regions with high annual rainfall, box-shaped retaining walls with high drainage performance are an essential construction method ■ Their excellent seismic resistance has also been verified through experiments and real phenomena *For more details, please refer to the PDF materials or feel free to contact us.
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【Quantity Table - Per Total Count】 ■Installation Work: 700.0m2 ■Box-Type Retaining Wall ・Type A (1,000×2,000×1,250mm): 350 units ■Medium and Backfill Crushed Stone Work S-40 Approx. (Single-graded Crushed Stone): 1091.3m3 ■Drainage Work φ150mm (Plastic): 60.0m ■Foundation Crushed Stone Work S-40 Approx. (Single-graded Crushed Stone): 35.76m3 ■Anti-Suction Material: 906.5m2 *For more details, please refer to the PDF document or feel free to contact us.
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Our company primarily engages in the development of new industrial property rights related to box-type retaining wall methods, as well as the acquisition, research, technical development, and consulting services related to these rights. The "box-type retaining wall method" we offer is a construction method that features high seismic performance and excellent drainage capabilities, and it is being adopted in various locations across the country.