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ANALYSIS OF CONE PENETRATION AND INDENTATION TESTS IN CLAYEY SOILS

机译:黏土中锥体穿透力和压痕试验的分析

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Penetration tests with 20 mm diameter steel cones have been made in large cylindrical samples of a reconstituted artificial clayey silt. A relationship is given between the point resistance q(c), the apex angle of the cone 2 theta, and the undrained shear strength S-u. For all cone angles, the results agree with Baligh's penetration theory. The experiments show that the point resistance first decreases with increasing cone angles and reaches a minimum value for a cone angle of about 60 degrees, then it increases again with increasing cone angles, up to a maximum value attained for a flat cone. Penetration tests have also been carried out from the bottom of drilled vertical holes in order to examine the mobilization of point resistance with depth. The results indicate that the maximum point resistance is reached after very small penetrations and is much higher than that predicted by the theory of expansion of cavities in elastic-plastic materials. In addition, indentation tests were carried out using the 60 degrees apex angle cone on two different artificial clayey silts. These tests allow the determination of undrained shear strengths of clays by means of indentation theory. [References: 28]
机译:在重新构造的人造黏土粉砂的大型圆柱形样品中,进行了直径为20 mm的钢锥的渗透试验。在点电阻q(c),圆锥体2θ的顶角和不排水剪切强度S-u之间给出关系。对于所有锥角,结果均与Baligh的穿透理论相符。实验表明,点电阻首先随锥角的增加而减小,并在锥角约为60度时达到最小值,然后随锥角的增加而再次增大,直至达到平锥的最大值。为了检查点电阻随深度的动员,还从钻孔垂直孔的底部进行了渗透测试。结果表明,最大的点电阻是在很小的穿透力之后达到的,并且比弹塑性材料中的孔洞膨胀理论所预测的要高得多。此外,在两个不同的人造黏土粉砂上使用60度顶角锥进行压痕测试。这些测试允许通过压痕理论确定粘土的不排水剪切强度。 [参考:28]

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