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首页> 外文期刊>Journal of Materials Processing Technology >Processing effects in aluminum micro-channel tube for brazed R744 heat exchangers
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Processing effects in aluminum micro-channel tube for brazed R744 heat exchangers

机译:钎焊R744热交换器用铝微通道管的加工效果

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摘要

The effects of processing on the mechanical behavior of aluminum alloy micro-channel tubing used in brazed automotive heat exchangers are evaluated in light of the stringent requirements of CO_2 (R744 refrigerant) based systems. An apparatus was developed to simulate system operating conditions of pressure and elevated temperature in tube samples. Commercially extruded and processed AA3102 micro-channel tube samples were given a simulated brazing thermal cycle and a series of static and cyclic pressure tests were performed at various temperatures. Failure stress in the tube walls was estimated and compared to tensile test data. At room temperature, the strength of the post-braze micro-channel decreased by about 17 percent, and about 22 percent at 180 deg C (compared to tube that was not given a simulated brazing thermal cycle). This decrease in strength is attributed to large grains that form during the brazing thermal cycle.
机译:根据基于CO_2(R744制冷剂)的系统的严格要求,评估了加工工艺对钎焊汽车热交换器中使用的铝合金微通道管的机械性能的影响。开发了一种设备来模拟试管样品中压力和高温的系统运行条件。对商业挤出和加工的AA3102微通道管样品进行了模拟钎焊热循环,并在不同温度下进行了一系列静态和循环压力测试。估算管壁的破坏应力,并将其与拉伸试验数据进行比较。在室温下,钎焊后微通道的强度下降了约17%,在180摄氏度下下降了约22%(与未进行模拟钎焊热循环的管相比)。强度的下降归因于在钎焊热循环期间形成的大晶粒。

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