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Experimental Investigations on Aluminium Ultrasonic Welding Parameters

机译:铝超声波焊接参数的实验研究

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Research evolution timely tendencies, in the nonconventional technologies field, are: manufacture conditions optimization and complex equipments design. The increasing of ultrasonic machining use, in various technologies is due to the expanding need of a wide range materials and high quality manufacture standards in many activity fields. This paper present a experimental study made in order to analyze the welded zone material structure and welding quality. The effects of aluminium ultrasonic welding parameters such as relative energy, machining time, amplitude and working force were compared through traction tests values and microstructural analysis. Microhardness tests were, also, made in five different points, two in the base material and three in the welded zone, on each welded aluminium sample. The aluminum welding experiments were made at the National Research and Development Institute for Welding and Material Testing (ISIM) Timisoara. The ultrasonic welding temperature is lower than the aluminium melting temperature, that's so our experiments reveal that the aluminium ultrasonic welding process doesn't determine the appearance of moulding structure. In the joint we have only crystalline grains deformation, phase transformation and aluminium diffusion.
机译:研究进化及时倾向,在非共等技术领域,是:制造条件优化和复合设备设计。在各种技术中,超声加工使用的增加是由于许多活动领域的广泛材料的需求和高质量的制造标准的需求。本文提出了一个实验研究,以分析焊接区域材料结构和焊接质量。通过牵引试验值和微观结构分析比较铝超声波焊接参数如相对能量,加工时间,幅度和工业的影响。同样,在每个焊接的铝样品上,在每个焊接的铝样品上也是微硬度测试,在五种不同的点,两个在基材中的两个不同点,以及焊接区域中的三个。铝焊接实验是在国家研发和材料测试研究所(ISIM)Timisoara的国家研发学院进行。超声波焊接温度低于铝熔化温度,因此我们的实验表明,铝超声波焊接过程不确定模塑结构的外观。在关节中,我们只有晶粒变形,相变和铝扩散。

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