【24h】

Bulk Mechanical Behavior of Rootzone Sand Mixtures as Influenced by Particle Shape,Moisture and Peat

机译:颗粒形状,水分和泥炭对根区混砂土体力学性能的影响

获取原文
获取原文并翻译 | 示例
       

摘要

Mechanical properties such as bulk modulus,shear modulus,and failure stress of rootzone sand mixtures are some of the key parameters in understanding the load-response of sands used in professional golf courses.According to the United States Golf Association (USGA) specifications,appropriate particle size distributions and their shape are important for preparing putting greens and bunker sands.Despite being an important parameter,the influence of sand particle shape on the bulk mechanical properties of the rootzone mixtures has not been studied systematically using a fundamental tester.Toward this end,bulk mechanical properties were measured using a low-pressure cubical (true) triaxial tester.In this study,four of the commonly used basic shapes,i.e.,round,subround,subangular,and angular sand particles comprising rootzone mixtures with sphagnum peat (organ-ics) were tested at two different moisture levels,air-dried and 30 cm moisture tension conditions.For all rootzone sand mixtures,an increase in bulk modulus was observed with increasing isotropic pressure.The failure stress values increased with the increase in mean pressure for air dried samples.In general,moisture increased compressibility of sands and decreased failure strength and shear modulus values.Peat had a dominant influence on the mechanical response of all four sand shapes.When peat and moisture were added,the rootzone mixture became most compressible and easier to fail,with noticeable changes in bulk mechanical properties.
机译:根区混砂的体积模量,剪切模量和破坏应力等机械性能是理解专业高尔夫球场中砂粒载荷响应的一些关键参数。根据美国高尔夫球协会(USGA)的规范,粒径分布及其形状对于制备果岭和沙坑沙非常重要。尽管是一个重要参数,但尚未使用基础测试仪系统地研究了沙粒形状对根区混合物整体力学性能的影响。 ,大体积力学性能是使用低压立方(真实)三轴测试仪进行测量的。在这项研究中,四种常用的基本形状,即圆形,亚圆形,亚角形和角形沙粒,由根部区域混合物与泥炭泥炭(器官)组成。 -ics)在两种不同的湿度水平下(风干和30 cm湿度条件)进行了测试。对于所有根区砂混合物,随着各向同性压力的增加,观察到了体积模量的增加。空气干燥样品的破坏应力值随平均压力的增加而增加。通常,水分增加了砂的可压缩性,降低了破坏强度和剪切模量值。添加了泥炭和水分后,根区混合物变得最易压缩,更容易破裂,整体力学性能发生了明显变化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号