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首页> 外文期刊>World journal of engineering >Vibratory weld conditioning during gas tungsten arc welding of al 5052 alloy on the mechanical and micro-structural behavior
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Vibratory weld conditioning during gas tungsten arc welding of al 5052 alloy on the mechanical and micro-structural behavior

机译:Al 5052合金气体钨弧焊过程中的振动焊接调节在机械和微观结构行为中

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摘要

Purpose - Vibratory weld conditioning parameters have a great influence on the improvement of mechanical properties of weld connections. The purpose of this paper is to understand the influence of vibratory weld conditioning on the mechanical and microstructural characterization of aluminum 5052 alloy weldments. An attempt is made to understand the effect of the vibratory tungsten inert gas (TIG) welding process parameters on the hardness, ultimate tensile strength and microstructure of Al 5052-H32 alloy weldments. Design/methodology/approach - Aluminum 5052 H32 specimens are welded at different combinations of vibromotor voltage inputs and time of vibrations. Voltage input is varied from 50 to 230 V at an interval of 10 V. At each voltage input to the vibromotor, there are three levels of time of vibration, i.e. 80, 90 and 100 s. The vibratory TIG-welded specimens are tested for their mechanical and microstructural properties. Findings - The results indicate that the mechanical properties of aluminum alloy weld connections improved by increasing voltage input up to 160 V. Also, it has been observed that by increasing vibromotor voltage input beyond 160 V, mechanical properties were reduced significantly. It is also found that vibration time has less influence on the mechanical properties of weld connections. Improvement in hardness and ultimate tensile strength of vibratory welded joints is 16 and 14%, respectively, when compared without vibration, i.e. normal weld conditions. Average grain size is measured as per ASTM E 112-96. Average grain size is in the case of 0,120,160 and 230 is 20.709, 17.99, 16.57 and 20.8086 μm, respectively. Originality/value - Novel vibratory TIG welded joints are prepared. Mechanical and micro-structural properties are tested.
机译:目的 - 振动焊缝调节参数对焊接连接的机械性能的改善有很大影响。本文的目的是了解振动焊缝调理对铝5052合金焊铝的机械和微观结构表征的影响。试图了解振动钨惰性气体(TIG)焊接工艺参数对Al 5052-H32合金焊件的硬度,最终拉伸强度和微观结构的影响。设计/方法/方法 - 铝5052 H32样品在不同组合的振动电压输入和振动时焊接。电压输入在10V的间隔下变化在50到230V。在输入到振动运动器的每个电压下,有三个振动级别的振动时间,即80,90和100 s。测试振动式粘性标本的机械和微观结构性能。结果表明,通过增加电压输入的铝合金焊接连接的力学性能提高到160 V。此外,已经观察到,通过增加超过160V的振动电压输入,机械性能显着降低。还发现振动时间对焊接连接的机械性能影响较小。在不振动的情况下,振动焊接接头的硬度和最终拉伸强度的改善分别为16和14%,即常规焊接条件。根据ASTM E ASTM E 112-96测量平均粒度。平均晶粒尺寸在0.120,160和230的情况下分别为20.709,17.99,16.57和20.8086μm。制备原创性/值 - 新型振动TIG焊接接头。测试机械和微结构性能。

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