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Testing the effectiveness of release valves under intensive dynamic load to the leg

机译:测试释放阀对腿部密集动态负荷下的有效性

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Release valves are commonly used to protect hydraulic legs against overload caused by rock bursts or bumps. Due to an essential role in ensuring safety in the working, an application of a release valve is conditioned by a positive yield test results of a leg equipped with such a valve. A method of leg yield testing, used in Poland, enables a complex determination of an impact of not only a release valve but also of the parameters of the hydraulic leg, determining its stiffness such as for example a volume of the under-the-piston space, which has an impact on an observed pressure increase. The subject of this publication covers cognitive tests oriented onto a determination of an impact of a release valve exclusively on the pressure changes observed in the leg. The results of the efficiency tests of spring valves (Stoiński, 2018) on a rammer are discussed. The difference between the maximum pressure in the under-piston area of the leg with the release valve and the maximum pressure generated by the same dynamic load in the leg without this valve was the measure of the valve operation's effectiveness. Dynamic load, realized on a rammer, is characterized by a longer increase time than in the case of dynamic load acting on a powered roof support unit from the floor. The time process of the force in the leg is then characterized by a short load rising time – tn, large load increment factor – Kd and the average load growth rate –wp,n. Referring to that aspect, the features of a release valve were analyzed in relation to the parameters characterizing dynamic load acting on a powered roof support unit from the floor. Parameters characterizing the effectiveness of the release valve, i.e. change in the leg load increment index –?Kd and change in the rate of load increase –?wpn were defined. The test stand for generating the load of such parameters using the explosive method is described. Comparison of effects of the dynamic load generated by firing the same mass and the same type of explosive on a hydraulic leg with a release valve and the leg without this valve was the test objective. The effectiveness of the spring valve and two gas valves are analyzed. It was found that despite a very short load rising time, the release valve reduces the load acting on the leg. The positive values of the ?Kd and ?wp,n indices are the evidence.
机译:释放阀通常用于保护液压腿免受岩石爆裂或凸块引起的过载。由于在确保工作中的安全性方面的重要作用,释放阀的应用是通过配备有这种阀门的腿的正产率测试结果来调节。一种在波兰使用的腿部产量测试方法,使得不仅可以释放阀门的影响而且还具有液压腿的参数的复杂测定,确定其刚度,例如诸如欠活塞的体积空间,对观察的压力增加产生影响。本出版物的主题将认知测试覆盖在腿部观察到的压力变化上的释放阀的撞击的确定上。讨论了夯锤上弹簧阀的效率试验结果。用释放阀的腿部腿部的最大压力与腿部相同的动态负载产生的最大压力之间的差异是阀门操作的效果的测量。在RAMMER上实现的动态负载,其特征在于比在从地板上的动力屋顶支撑单元上作用的动态负荷的情况更长的时间。然后,腿中的力的时间过程通过短负载上升时间 - Tn,大负载增量因子-Kd和平均负荷生长速率-wp,n。参考该方面,关于表征作用在从地板上的动力屋顶支撑单元上的动态负荷的参数分析释放阀的特征。表征释放阀的有效性的参数,即腿部负荷增量指数的变化 - ?KD和负载增加率的变化 - WPN被定义。描述了用于使用爆炸方法产生这种参数的负载的测试支架。用释放阀和腿部施用相同质量和相同类型的炸药产生的动态载荷的效果的比较是测试目标。分析了弹簧阀和两个气阀的有效性。发现,尽管负载升高时间非常短,释放阀减小了作用在腿上的负荷。 ?KD和?WP,N个指数的正值是证据。

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