Search Result of "tire-chip"

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ผลงานตีพิมพ์ในวารสารวิชาการ

Interaction between geogrid reinforcement and tire chip-sand lightweight backfill

ผู้แต่ง:ImgDr.Tawatchai Tanchaisawat, Lecturer, ImgBergado, DT, ImgVoottipruex, P, ImgShehzad, K,

วารสาร:

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ผลงานตีพิมพ์ในวารสารวิชาการ

Interaction between Geogrid Reinforcement and Tire Chip-Sand Mixture.

ผู้แต่ง:ImgDr.Tawatchai Tanchaisawat, Lecturer, ImgD.T. Bergado, ImgSuriyon Prempramote,

วารสาร:

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ที่มา:วิทยาสารเกษตรศาสตร์ สาขา วิทยาศาสตร์

หัวเรื่อง:ไม่มีชื่อไทย (ชื่ออังกฤษ : Interaction between Geogrid Reinforcement and Tire Chip-Sand Mixture)

ผู้เขียน:Imgดร.ธวัชชัย ตันชัยสวัสดิ์, อาจารย์, ImgD.T. Bergado, Imgดร.สุริยน เปรมปราโมทย์, ผู้ช่วยศาสตราจารย์

สื่อสิ่งพิมพ์:pdf

Abstract

The interaction between reinforcing and backfill materials is a significant factor for analysis and design of reinforced earth structures. It can be simplified as pullout resistance and direct shear resistance, which depend on both reinforcing and backfill materials. This study is aimed at studying the interaction between geogrid and tire chip-sand mixture. Numerous experiments including index tests, compaction tests, pullout tests and large-scale direct shear tests were conducted to meet the mentioned objectives. Saint-Gobain and Polyfelt geogrids were selected as reinforcing materials whereas tire chipsand mixtures at the mixing ratios of 30:70, 40:60 and 50:50 % by weight were used as fill materials. The mixture at the mixing ratio of 30:70 % was found to be the most suitable fill material. The pullout resistance and the pullout interaction coefficients of Saint-Gobain geogrids were higher than those of Polyfelt geogrids. In contrast, the direct shear resistance, the direct shear interaction coefficients, and the efficiency values of Polyfelt geogrids were higher than those of Saint-Gobain geogrids. The ultimate tensile strength of Polyfelt geogrid was slightly lower than that of Saint-Gobain geogrid. Finally, Polyfelt geogrid and the tire chip-sand mixture at the mixing ratio of 30:70 % by weight were recommended as reinforcing and backfill materials for field applications.

Article Info
Agriculture and Natural Resources -- formerly Kasetsart Journal (Natural Science), Volume 040, Issue 5, Jan 06 - Jun 06, Page 320 - 326 |  PDF |  Page 

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ที่มา:การประชุมวิชาการ ครั้งที่44 มหาวิทยาลัยเกษตรศาสตร์

หัวเรื่อง:พฤติกรรมปฏิสัมพันธ์ระหว่างวัสดุเสริมแรงจีโอกริดและวัสดุผสมระหว่างเศษยางกับทราย

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ผลงานตีพิมพ์ในวารสารวิชาการ

Interaction between Geogrid and Tire Chips-Sand Mixture:Pullout Test Simulation

ผู้แต่ง:ImgDr.Tawatchai Tanchaisawat, Lecturer, ImgDennes T. Bergado,

วารสาร:

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ที่มา:วิทยาสารเกษตรศาสตร์ สาขา วิทยาศาสตร์

หัวเรื่อง:ไม่มีชื่อไทย (ชื่ออังกฤษ : Interaction between Geogrid and Tire Chips-Sand Mixture: Pullout Test Simulation)

ผู้เขียน:Imgดร.ธวัชชัย ตันชัยสวัสดิ์, อาจารย์, ImgDennes T. Bergado

สื่อสิ่งพิมพ์:pdf

Abstract

The aims of the study were to measure and calculate the interaction coefficient between geogrid and sand and between geogrid and a tire chips-sand mixture using a laboratory test and numerical simulations. Numerical simulation was imperative for the sensitivity analyses of the laboratory test results to find the important parameters. Two types of material were used as backfill, namely sand and a tire chips-sand mixture. The sand and tire chips in the mixture were in the proportion by weight of 70 and 30%, respectively. Polyfelt geogrid was used as geosynthetic reinforcement with a tensile strength of 97.48 kN/m from the in-air tensile test. Pullout tests were carried out on a large-scale pullout machine. The shear strength parameters of Ayutthaya sand and the tire chips-sand mixture were a 29.8? friction angle with cohesion of 15.6 kPa for sand and a 24.4? friction angle with 14.3 kPa cohesion for the tire chips-sand mixture. The results revealed that the interaction coefficient obtained from the pullout test was 0.7 and 0.6 for the sand and tire chips-sand mix, respectively. Numerical analyses were also performed using finite element software. The results of the numerical simulation agreed reasonably with the laboratory results. Sensitivity analyses were carried out for the pullout test by varying the interaction coefficient and axial stiffness of the geogrid. These two important parameters were found to affect the efficiency of the geogrid reinforcement.

Article Info
Agriculture and Natural Resources -- formerly Kasetsart Journal (Natural Science), Volume 043, Issue 5, Dec 09 - Dec 09, Page 399 - 403 |  PDF |  Page