超声暴露时间对聚丙烯焊接接头强度及其它参数影响的统计依赖性

Мурашкин Сергей Викторович, Селиванов Александр Сергеевич, Спиридонов Николай Германович, Савина Елена Борисовна
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摘要

聚丙烯是工业上最常用的热塑性材料之一。为了从这种材料中生产产品,经常使用超声波焊接方法。然而,尽管有大量的科学论文,但超声波焊接方式的某些参数对聚丙烯接头强度特性的影响尚未得到研究。本文介绍了3mm厚01003-26级聚丙烯板接触点焊的试验研究结果。作者考虑了超声工具工作面逐渐渗入聚丙烯的过程,其深度等于焊接板的总厚度。得到了刀具面穿透材料深度和材料分离力对超声曝光时间的统计依赖关系。确定了超声刀具工作面侵彻深度对焊接试样撕裂力的影响。当刀具穿透深度超过3.5 mm时,撕裂力从150到400 N显著增加,这是由于熔融材料流入间隙导致焊接板之间材料相互混合的标称面积增加。作者提出了一种假设,即熔融材料在与刀具穿透方向相反的方向上通过形成行瑞利波进行流动。然而,要确认这一点,还需要进一步研究超声波焊接方式参数和待连接部件之间的间隙尺寸对熔融材料流入间隙速率的影响。
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Statistical dependences of influence of ultrasonic exposure time on the strength and other parameters of a polypropylene welded joint
Polypropylene is one of the most popular thermoplastic materials used in industry. To produce goods from this material, the ultrasonic welding method is often used. However, despite a large number of scientific papers, the influence of some parameters of the ultrasonic welding mode on the strength characteristics of polypropylene joints remains unstudied. The paper presents the results of experimental studies of contact spot ultrasonic welding of plates 3 mm thick made of 01003-26 grade polypropylene. The authors considered the process of gradual penetration of the ultrasonic tool working face into polypropylene to a depth equal to the total thickness of the welded plates. Statistical dependences of the depth of the tool face penetration into the material and the force of material separation on the ultrasound exposure time are obtained. The influence of the depth of the ultrasonic tool working face penetration on the tearing force of welded specimens is determined. A significant increase in the tearing force from 150 to 400 N was found at the tool penetration depth of more than 3.5 mm due to an increase in the nominal area of mutual mixing of the material between the welded plates caused by the flow of molten material into the gap. The authors proposed a hypothesis about the flow of the molten material in the direction opposite to the direction of penetration of the working tool by forming traveling Rayleigh waves. However, its confirmation requires additional studies of the influence of the ultrasonic welding mode parameters and the size of the gap between the parts to be joined on the rate of the molten material flow into the gap.
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