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Multi Parameter Sliding Test Result Evaluation for The Selection of Material Pair for Wear Resistant Components of a Hydraulic motor Dedicated for Use With Environmentally Friendly Working Fluids

机译:多参数滑动试验结果评价用于耐液压马达的耐磨部件的材料对,专用于环境友好的工作流体

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In the paper the method and results are presented of the testing of tribological performance of a number of hard materials available commercially. The tests consisted in unidirectional sliding with liquid lubrication. The load and velocity regime chosen were similar to a standard four-ball lubricity test with constant velocity and load increasing over time. The regime was modified in such a way that over the initial part of the test both the velocity and load were linearly increased until a certain stable level of each input parameter was reached and the test was then continued till the termination due to chosen criteria. The materials used were high alloy tool steels and sintered carbides, normally used in working of metals by cutting. The lubricants environmentally inert or friendly fluids: water, mineral oil-in-water emulsion and vegetable oil. In the tests, typical sliding friction parameters were recorded, later evaluated on the basis of multiple parameters observable within the test such as e.g. maximum load and velocity reached, calculated maximum surface pressure or presence and amplitude of friction induced vibrations. In the group of material/material/lubricant combinations a ranking was created for each parameter in the assessment set by awarding points for performance. Best performance was granted the least amount of points. Overall performance was then judged by the accumulated number of points. The materials, which were evaluated as performing best have been chosen as input materials for the design and manufacture of a prototype motor for later laboratory and field testing.
机译:本文在商业上可用的许多硬质材料的摩擦学性能的测试提供了方法和结果。测试组成,用液体润滑单向滑动。选择的负载和速度制度类似于标准的四球润滑性试验,随着时间的推移恒定速度和负载增加。该制度以这样的方式修改,即在测试的初始部分上,速度和负载的速度和负荷均被线性增加,直到达到每个输入参数的某个稳定水平并且然后继续测试直至由于所选择的标准而终止。所用材料是高合金工具钢和烧结碳化物,通常用于通过切割加工金属。润滑剂环绕惰性或友好流体:水,矿物油包水乳液和植物油。在测试中,记录典型的滑动摩擦参数,后来基于测试内可观察到的多个参数评估,例如例如,如例如。最大载荷和速度达到,计算最大的表面压力或摩擦诱导振动的存在和幅度。在材料/材料/润滑剂组合中,通过颁发绩效点,为评估中的每个参数创建排名。最佳表现是最少的积分。然后通过累计的点判断整体性能。被选择为最佳评估的材料被选为用于设计和制造原型电动机的输入材料,用于稍后的实验室和现场测试。

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