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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Thermal deformation simulation for an internal grinding cirque by finite element method
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Thermal deformation simulation for an internal grinding cirque by finite element method

机译:内圆磨削热变形的有限元模拟

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摘要

An implicit finite-element code is employed to study the internal grinding process of carbon steel Q235 cirque, and its temperature field and thermal deformation are obtained. The method of thermal load calculation is proposed, a 2D finite element model is developed, and analysis steps are introduced. The diameter of the cirque is 150 mm and that of the inner hole is 56.24 mm. By adopting the clamps of surface locating and three-jaw chuck, it is found that, during the grinding process, the workpiece is in an elastic–plastic state, far from thermal-softening state. The thermal deformation of the ground cirque is basically symmetrical in a diamond shape, but the deformations of the inner circle and the outer circle are not uniform, and the inner circle thermal deformation may be negative or positive. Such different thermal displacements will produce shape error and dimension error in the inner hole. Through comparison of the two clamping modes, it is found that the precision of the surface locating is better than the three-jaw chuck. The symmetrical property of the thermal deformation of the cirque and the comparison of two clamping modes indicate that the computation is valid.
机译:采用隐式有限元法研究了碳钢Q235圆盘的内部磨削过程,得到了其温度场和热变形。提出了热负荷计算方法,建立了二维有限元模型,并介绍了分析步骤。圆形的直径为150毫米,内孔的直径为56.24毫米。通过使用表面定位和三爪卡盘的夹具,可以发现,在磨削过程中,工件处于弹塑性状态,远离热软化状态。接地圆的热变形基本上呈菱形对称,但是内圆和外圆的变形不均匀,内圆的热变形可以是负的或正的。这种不同的热位移将在内孔中产生形状误差和尺寸误差。通过两种夹紧方式的比较,发现表面定位的精度要优于三爪卡盘。圆环热变形的对称性质以及两种夹紧方式的比较表明该计算是有效的。

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