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Power transmission unit of an impactor, a hydraulic jet impactor and the application thereof

机译:冲击器的动力传递单元,液压喷射冲击器及其应用

摘要

The invention discloses a fluid-driven impactor, a power transmission mechanism for the impactor and the use of the impactor. In the prior art, the working life of the impactor is short, since a rubber primary seal and an upper fluid-diverging lid for the fluid-driven impactor are both liable to erosion and the efficiency in transmitting power is low due to the complexity of the power transmission mechanism. In order to increase the drilling speed and/or extend the life of the impactor, the side cavity passage is formed in such a way that the inner wall of the outer pipe is isolated from the side cavity passage in a watertight manner without the use of the rubber primary seal. The loss in transmitting power is minimized by integrating the anvil of the power transmission mechanism and the lower joint. The problem of abrasion of the fluid-diverging hole is overcome and the nozzle can be used with different fluid flow by mounting a replaceable nozzle in the upper fluid-diverging lid, the nozzle selected from a series of nozzles with various inner diameters and made of a material more wearable than the material for diverging lid the upper fluid.
机译:本发明公开了一种流体驱动的冲击器,该冲击器的动力传递机构以及该冲击器的用途。在现有技术中,由于橡胶初级密封件和用于流体驱动冲击器的上部流体分流盖都容易受到腐蚀并且由于动力传递装置的效率低,因此冲击器的使用寿命短。动力传递机制。为了提高钻孔速度和/或延长冲击器的寿命,侧腔通道形成为使得外管的内壁以不漏水的方式与侧腔通道隔离而无需使用橡胶主密封。通过整合动力传输机构的砧座和下部接头,可以将传输动力的损失降至最低。克服了流体扩散孔的磨损问题,通过将可更换喷嘴安装在上部流体扩散盖中,可将喷嘴用于不同的流量,该喷嘴选自一系列内径不同的喷嘴,并由比用于分散上层流体的材料更耐磨的材料。

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