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In calculating stress intensity from relation between data compression ratio and stress intensity you used

机译:从数据压缩率和应力强度之间的关系计算应力强度时,您使用了

摘要

PROBLEM TO BE SOLVED: To design a cushioning material on the basis of appropriate evaluation of the degree of maximum stress generated to the cushioning material in construction.;SOLUTION: In this design method of the cushioning material in curve jacking of a jacking pipe, the stress degree to the compressibility of the cushioning material is computed from the relation between the stress degree and compressibility of the cushioning material, and the thickness of the cushioning material is determined so that the maximum stress degree of the cushioning material is the allowable stress degree of concrete. A relational expression of the stress degree and compressibility of the cushioning material is obtained by making experiments for every cushioning material to obtain an approximate expression from experimental values, and the stress degree to compressibility is computed from the expression. The cushioning material is subdivided in parallel, and the area (a) and compressibility of every section of the subdivided cushioning material are obtained to determine the stress degree σc of every section from the compressibility. The integrated value of the product of the area and stress degree σc of every section is made the thrust of the jacking pipe, and the maximum stress degree at that time is made the maximum stress degree generated to the jacking pipe in that thrust.;COPYRIGHT: (C)2006,JPO&NCIPI
机译:解决的问题:在适当评估施工中对缓冲材料产生的最大应力程度的基础上,设计一种缓冲材料。解决方案:在此设计方法中,在顶管弯曲顶管中使用缓冲材料时,根据缓冲材料的应力程度与可压缩性之间的关系来计算相对于缓冲材料的可压缩性的应力程度,并且确定缓冲材料的厚度,以使缓冲材料的最大应力程度为材料的容许应力程度。具体。通过对每种缓冲材料进行实验来获得缓冲材料的应力程度和可压缩性的关系表达式,以从实验值获得近似表达式,并且从该表达式计算相对于可压缩性的应力程度。将缓冲材料平行地细分,并且获得细分后的缓冲材料的每个部分的面积(a)和可压缩性,以根据可压缩性确定每个部分的应力度σc。面积与每个截面的应力度σc的乘积的积分值作为顶管的推力,而此时的最大应力度成为在该推力下对顶管产生的最大应力度。 ;版权:(C)2006,JPO&NCIPI

著录项

  • 公开/公告号JP3944191B2

    专利类型

  • 公开/公告日2007-07-11

    原文格式PDF

  • 申请/专利权人 中川ヒューム管工業株式会社;

    申请/专利号JP20040170650

  • 发明设计人 服部 恵光;

    申请日2004-06-09

  • 分类号E21D9/06;

  • 国家 JP

  • 入库时间 2022-08-21 21:10:53

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