基于圆筒内硬球颗粒的致密化过程涉及应力传递与堆积结构的耦合作用,是颗粒介质研究中的一个难点问题,为此,采用MTS 858 Mini Bionix Ⅱ型力学性能测试仪,通过改变压力、颗粒粒径、剪切速率等参数,对循环扭转剪切作用下的致密化行为进...基于圆筒内硬球颗粒的致密化过程涉及应力传递与堆积结构的耦合作用,是颗粒介质研究中的一个难点问题,为此,采用MTS 858 Mini Bionix Ⅱ型力学性能测试仪,通过改变压力、颗粒粒径、剪切速率等参数,对循环扭转剪切作用下的致密化行为进行实验研究。研究结果表明:颗粒介质致密化过程表现为快速致密和缓慢致密2个阶段,体积分数的演化过程满足双指数项关联函数,即φ(t)=φ0+A1(1-exp(-t/t1))+A2(1-exp(-t/t2))(其中,φ0为系统初始体积分数,A1和A2为拟合系数,t1和t2分别为快速和缓慢致密过程的特征时间);系统经历快速堵塞过程后,进入颗粒缓慢重排过程;在循环剪切过程中,颗粒体积分数的涨幅Δφ在体积分数达到0.604时发生由降转升的转变;增大压力、粒径与圆筒直径之比(d/D)以及剪切速率均有利于提高致密化程度,循环扭转剪切作用比纯剪切和垂直振动作用的致密化效率更高。展开更多
The work in this study is focused on investigation of composite nickel coatings. The coatings were deposited on ductile cast iron samples of different composition by electroless method EFTTOM NICKEL with addition of s...The work in this study is focused on investigation of composite nickel coatings. The coatings were deposited on ductile cast iron samples of different composition by electroless method EFTTOM NICKEL with addition of strengthening nanodiamond particles (2-4 nm), The samples were prepared by casting and austempering. The microstructure, microhardness and wear resistance of the coatings were investigated. The thickness of the coatings was also determined (8-10μm). Metallographic analyses, SEM (scanning electron microscopic) investigation, microhardness measurements by knoop method, wear resistance tests were carried out. The coatings with and without heat treatment at 290℃, 6 h were tested. Duplication of microhardness value and improvement of the coating's properties of heat treated coatings were observed.展开更多
文摘基于圆筒内硬球颗粒的致密化过程涉及应力传递与堆积结构的耦合作用,是颗粒介质研究中的一个难点问题,为此,采用MTS 858 Mini Bionix Ⅱ型力学性能测试仪,通过改变压力、颗粒粒径、剪切速率等参数,对循环扭转剪切作用下的致密化行为进行实验研究。研究结果表明:颗粒介质致密化过程表现为快速致密和缓慢致密2个阶段,体积分数的演化过程满足双指数项关联函数,即φ(t)=φ0+A1(1-exp(-t/t1))+A2(1-exp(-t/t2))(其中,φ0为系统初始体积分数,A1和A2为拟合系数,t1和t2分别为快速和缓慢致密过程的特征时间);系统经历快速堵塞过程后,进入颗粒缓慢重排过程;在循环剪切过程中,颗粒体积分数的涨幅Δφ在体积分数达到0.604时发生由降转升的转变;增大压力、粒径与圆筒直径之比(d/D)以及剪切速率均有利于提高致密化程度,循环扭转剪切作用比纯剪切和垂直振动作用的致密化效率更高。
文摘The work in this study is focused on investigation of composite nickel coatings. The coatings were deposited on ductile cast iron samples of different composition by electroless method EFTTOM NICKEL with addition of strengthening nanodiamond particles (2-4 nm), The samples were prepared by casting and austempering. The microstructure, microhardness and wear resistance of the coatings were investigated. The thickness of the coatings was also determined (8-10μm). Metallographic analyses, SEM (scanning electron microscopic) investigation, microhardness measurements by knoop method, wear resistance tests were carried out. The coatings with and without heat treatment at 290℃, 6 h were tested. Duplication of microhardness value and improvement of the coating's properties of heat treated coatings were observed.