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Strengthening Effect after Disintegration of Stainless Steel Using Pulsating Water Jet

机译:脉动喷水法分解不锈钢后的强化效果

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The article deals with the measurement of micro-hardness of the track by the action of ultrasonic excitation of pulsating water jet. The cumulative effect of liquid matter in the form of droplets concentrated in waveform measurements was provided in horizontal and vertical direction to material core (AISI 304). The material was subjected to pressures of p = 40, 50 and 60 MPa with the actuator working at a frequency of 20,14 kHz and traverse speed v = 1,1 mm/s, v = 0,80 mm/s and v = 0,30 mm/s respectively. The micro hardness measurement was carried out after machining it by pulsating water jet. The values were recorded in the zone located transversally under the trace to the depth of 1,5 mm with 0,1 mm distance between successive points. It was found that the deformation of material was ascertained from the boundary to the outer environment created by pulsating water jet to the inner core of the material. The results indicate that the pressure was the most influential parameter, which was responsible for the deformation strengthening of the material.
机译:本文通过脉动水射流的超声激发作用来测量轨道的显微硬度。在水平和垂直方向上,将以波形测量形式集中的液滴形式的液体物质的累积效应提供给了材料核(AISI 304)。使执行器以20.14 kHz的频率工作并且往复速度v = 1,1 mm / s,v = 0,80 mm / s和v =时,使材料承受p = 40、50和60 MPa的压力。分别为0.30 mm / s。显微硬度的测量是在通过脉动喷水对其进行机械加工之后进行的。将该值记录在横向位于迹线下方的区域中,深度为1.5毫米,连续点之间的距离为0.1毫米。已经发现,确定了从边界到外部环境的变形,该变形是通过将水射流脉动到材料的内芯而产生的。结果表明,压力是最有影响力的参数,它负责材料的变形强化。

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