Bartkowski Piotr, Ciemiorek Marta, Bukowiecki Hubert, Zalewski Robert
Faculty of Automotive and Construction Machinery Engineering, Warsaw University of Technology, 00-661 Warsaw, Poland.
Faculty of Materials Science and Engineering, Warsaw University of Technology, 00-661 Warsaw, Poland.
Materials (Basel). 2022 Jul 17;15(14):4978. doi: 10.3390/ma15144978.
This article describes the cyclic loading of jammed granular systems represented by vacuum-packed particles in compression and tension, focusing on the influence of the properties of the granular material on the mechanical response. A jammed granular system is represented by a cylindrical sample filled with polymer granules (vacuum-packed particles) and is examined in symmetric cyclic compression and tension for up to 2000 cycles and at selected values of underpressure, i.e., 0.01, 0.04 and 0.07 MPa. Force and displacement are analyzed during the test, as well as changes in granule morphology by means of microscopic observations. The conducted tests indicate that it is possible to acquire repetitive results of maximum forces in the analyzed loading rage with the condition that granules do not plasticize during loading, i.e., they are resistant to damage during loading.
本文描述了以真空包装颗粒为代表的压实颗粒系统在压缩和拉伸过程中的循环加载,重点关注颗粒材料特性对力学响应的影响。一个压实颗粒系统由一个填充聚合物颗粒(真空包装颗粒)的圆柱形样品表示,并在对称循环压缩和拉伸中进行测试,循环次数高达2000次,且在选定的负压值下进行测试,即0.01、0.04和0.07兆帕。在测试过程中分析力和位移,以及通过显微镜观察颗粒形态的变化。所进行的测试表明,在颗粒在加载过程中不发生塑化的条件下,即在加载过程中具有抗损伤能力,可以在分析的加载范围内获得最大力的重复结果。