首页> 外文会议>Symposium on Multiaxial Fatigue and Deformation Testing Techniques held in Denver, Colorado, on 15 May 1995 >Adjustable Work Coil Fixture Facilitating the Use of Induction Heating in Mechanical Testing
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Adjustable Work Coil Fixture Facilitating the Use of Induction Heating in Mechanical Testing

机译:可调工作线圈夹具,方便在机械测试中使用感应加热

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Induction heating has been used in fatigue testing for over 30 years. Typically, a work coil is used in conjuction with a workstation and a radio frequency power supply to provide localized specimen heating. One disadvantage of the approach is that the localized nature of the heating leads to temperature gradients over the specimen's length. However, experience has shown that the configuration of work coils can be optimized to give relatively uniform temperature profiles over the specimen's gage section. The variables of interest include: coil diameter and overall length, number of turns, spacing of turns, and grouping of turns. Optimization of these variables by trial and error can be a lengthy and frustrating process. This is particularly the case in multiaxial experiments involving large tubular specimens and correspondingly large work coils. The subject work coil fixture was designed and developed to facilitate the optimization process. The approach adopted was to subdivide the work coil into three segments. Each segment has its own positioning mechanism that allows independent adjustment in both the radial and vertical senses. It was shown that use of this fixture allows temperature profiles within +- 1percent of the mean to be achieved with minimum difficulty. Such levels of precision were found to be necessary in a recent series of thermomechanical experiments conducted on Hastelloy X.
机译:感应加热已经在疲劳测试中使用了30多年。通常,工作线圈与工作站和射频电源结合使用,以提供局部样本加热。该方法的一个缺点是加热的局部性导致在试样长度上的温度梯度。但是,经验表明,可以对工作线圈的配置进行优化,以在样品的量具截面上提供相对均匀的温度曲线。感兴趣的变量包括:线圈直径和总长度,匝数,匝数间隔以及匝数分组。通过反复试验来优化这些变量可能是一个漫长而令人沮丧的过程。在涉及大型管状试样和相应大型工作线圈的多轴实验中,尤其如此。设计并开发了主题工作线圈夹具,以促进优化过程。所采用的方法是将工作线圈细分为三个部分。每个段都有自己的定位机制,可以在径向和垂直方向上进行独立调整。结果表明,使用该固定装置可以以最小的难度实现温度分布在平均值的±1%之内。发现这种精度水平在最近对Hastelloy X进行的一系列热机械实验中是必需的。

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