热轧金属塑性变形阻力研究

An Experimental study of the Resistance to plastic Deformation of Hot Rolling Metals

  • 摘要: 采用凸轮式形变试验机,压缩端面带凹槽并在凹槽里充满不同熔点温度的玻璃粉作润滑剂的圆柱形试件。为保证试验过程中整个试件温度的均匀和衡定,采用了试件保温装置。在变形温度为850°~1100℃、变形速度为5-80秒-1、变形程度(e=ln H/h)最大为ln2的条件下,实验研究了1Cr18Ni9Ti等十个钢种在高温高速条件下的变形阻力。
    文中叙述了金属塑性变形阻力的试验方法,分析了变形温度、变形速度、变形程度、等诸因素对变形阻力的影响规律,通过对实验数据的回归分析——非线性回归,提出在计算机控制的设定模型以及工程计算中可优先采用的变形阻力计算公式和查用图表。
    其表达式为:
    \sigma = \rmEXP(\frac\rmU_1\rmT\rm + \rmU_2\rm)\cdot(\frac\rmu10\rm)^\rmU_3\rmT + \rmU_4\rm\cdot\left( \rmU_6(\frac\rme0.4)^\rmU_5 - (\rmU_6 - 1)\frac\rme0.4 \right)
    式中:T=\frac\rmt + 2731000
    U1~U6为系数,其值与钢种有关。

     

    Abstract: A Can Plastometer Was used to Compress Cylindrical specimens. There are hollows on the cross-section of one end of the specimens and the hollows were filled up with glass powder with various fusion temperatures. A heat keeping device was used to assure uniform and constant temperature during the experiment. The experimental results concern with the resistance to deformation of ten types of steel at elevated temperature and high strain rates. The experimental conditions were as follows:temperature 850-1200℃, Strain rate 5-80S-1 and reduction up to ln2(e=ln1hH).
    In this paper the experimental method has been described and influences of temperature of strain rates and of reduction on the resistance to deformation hsave been analysed. By linear and non-linear regression analysis of the exper mental data, a formula for calculating resistance to deformation which may be preferable for either computer-controll model or engeneering practice was recommended.
    The formula is:
    \sigma =\rmEXP(\frac\rmU_1\rmT\rm + \rmU_2\rm)\cdot(\frac\rmu10\rm)^\rmU_3\rmT + \rmU_4\rm\cdot\left(\rmU_6(\frac\rme0.4)^\rmU_5-(\rmU_6-1)\frac\rme0.4 \right)
    here:T=\frac\rmt + 2731000
    U1-U6 are coefficients determined by the properties of the experimental steel.

     

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