图J 0.17%℃HSLA钢六种不同退火温度的分析

N. Emordi, Iweriolor Sunday, Onyekpe Basil Obimma
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摘要

退火是一种热处理过程,其中材料的机械性能被改变,这种改变会导致其强度和硬度等性能的变化。通常是为了提高延展性和韧性,降低硬度和去除碳化物。本研究采用图像分析处理方法对6种0.17%高强度低合金(HSLA)钢(840°C - 990°C)退火试样进行了组织测量,温度间隔为30°C,保温时间为30分钟。利用Image J程序对光学显微镜图像进行面积计算、像素值统计、距离和角度测量、圆度、雪点角、固体度和周长、平均面积和百分比面积等参数检测。960℃退火后的晶粒数最高,为543,周长为41.518;标准偏差为7.057,平均值为28.722,表明退火处理大大提高了钢的疲劳寿命。从力学分析结果来看,840℃退火后的试样硬度值最高,为129.4 BHN,冲击值最低,为58.75 j。研究表明,随着退火温度的升高,硬度值显著降低,表明退火温度提高了钢的疲劳性能和抗拉强度(磨损强度)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Image J Analysis of Six Different Annealed Temperatures of 0.17% C of HSLA Steels
Annealing is a heat treatment procedure in which the mechanical properties of a material are being altered, and such alterations cause changes in its properties such as strength and hardness. It is usually carried out to improve ductility and toughness, to reduce hardness and to remove carbides. This study deals with the use of image analysis processing method for the measurement of structure of six annealed samples of 0.17% High Strength Low Alloy (HSLA) Steels (840°C - 990°C) with 30°C interval and 30 minutes soaking time. From the optical microscope images using Image J program, some parameters like calculation of area, pixel value statistics, distances and angles measurements, edge detection, such as the circularity, ferret angle, solidity and perimeter, average area and the percentage area were examined. The annealed sample of 960°C gave the highest grain count of 543 with a perimeter of 41.518; standard deviation 7.057 and a mean of 28.722 which shows that annealing greatly improved the fatigue life of the steel. From the mechanical analysis result, the annealed sample at 840°C has a highest hardness value of 129.4 BHN and gave the lowest impact value of 58.75 J. This study shows a significant decrease in the hardness value as the annealing temperature increased which signifies that annealing temperature enhanced the fatigue property and tensile strength (wear strength) of the steel in study.
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