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HIGH-STRENGTHENING OF CEMENT-TREATED CLAY BY MECHANICAL DEHYDRATION

机译:机械脱水法对水泥处理粘土的高强度强化

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References(32) Cited-By(5) A technique called the cement-mixing and mechanical dehydration method (CMD) as one of recycling techniques for soft clay slurry is developed. In order to evaluate the effectiveness of the CMD for increasing the strength of soft clay, a series of unconfined compression tests and several durability tests were performed together with the literature review of unconfined compressive strength in cement-treated soils. Moreover, a series of constant strain rate consolidation tests were also performed to evaluate the effects of cement content and dehydration speed on the permeability of cement-treated clay. The following conclusions are obtained: 1) Literature review and theoretical considerations on the shear strength of cement-treated soils show that an additional treatment for the purpose of increasing the density of cement-treated specimen is effective for increasing the shear strength of cement-treated soil. 2) The mechanical dehydration of soft clay with high pressure is accelerated by cement mixing, where the coefficient of consolidation of cement-treated clay increases as the cement content increases. 3) The high-strength specimen having the unconfined compressive strength of more than 20 MPa can be created from soft clay treated by the CMD with the cement content of over 20% and the dehydration pressure of 20 MPa.
机译:参考文献(32)Cyted-By(5)开发了一种称为水泥混合和机械脱水法(CMD)的技术,作为软黏土泥浆的回收技术之一。为了评估CMD增强软黏土强度的有效性,进行了一系列无侧限抗压试验和若干耐久性试验,并结合文献对水泥处理过的土壤中无侧限抗压强度进行了综述。此外,还进行了一系列恒定应变率固结试验,以评估水泥含量和脱水速度对水泥处理后粘土渗透性的影响。得到以下结论:1)关于水泥处理过的土的抗剪强度的文献综述和理论考虑表明,以增加水泥处理过的标本的密度为目的的附加处理有效地提高了水泥处理过的土的抗剪强度。泥。 2)通过水泥混合促进了高压软粘土的机械脱水,其中水泥处理的粘土的固结系数随水泥含量的增加而增加。 3)水泥含量超过20%,脱水压力超过20 MPa的软粘土可以通过CMD处理,获得无侧限抗压强度超过20 MPa的高强度试样。

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