脉冲激光钎焊金刚石砂轮的裂纹特性

IF 5.4 3区 材料科学 Q2 CHEMISTRY, PHYSICAL ACS Applied Energy Materials Pub Date : 2024-09-20 DOI:10.1016/j.optlastec.2024.111830
Shichun Li , Huijun Yan , Gang Xiao , Qi He , Junzhe Li , Mengcen Zou , Qinwen Yang
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引用次数: 0

摘要

本文进行了金刚石砂轮脉冲激光钎焊实验。对钎焊层的裂纹特征和残余应力进行了检测和评估。研究了脉冲宽度、频率、金刚石混合比、堆叠层数、粉末厚度和预热温度对裂纹特征的影响规律。讨论了脉冲激光特性系数(脉冲峰值功率密度/脉冲间隔时间)以及热应力和裂纹之间的相关规律。结果表明,通过改变能量输入和脉冲间隔时间,脉冲激光的脉宽和频率会影响开裂率。与脉冲宽度和频率相对应的脉冲特性系数的合适值对应于较低的开裂率。不同金刚石百分比、堆叠层数和预热温度下的工艺条件变化所导致的热应力变化是开裂率变化的主要原因。脉冲激光钎焊金刚石和镍铬合金钎料时,开裂不仅受热应力的影响,还受成型表面质量的影响。例如,开裂率变化的主要原因是在不同的铺粉厚度变化情况下,铺粉厚度的变化导致成型表面形态的变化。
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Crack characteristics of pulsed laser brazed diamond grinding wheel

Experiments on pulsed laser brazing of diamond grinding wheels were carried out in this paper. The crack characteristics and residual stress of brazed layer were detected and evaluated. The influence laws of pulse width, frequency, diamond mixing ratio, number of stacked layers, powder thickness and preheating temperature on crack characteristics were investigated. The pulsed laser characteristic coefficients (peak pulse power density/pulse interval time) and the correlation law between thermal stresses and cracks are discussed. The results show that the pulse width and frequency of the pulsed laser affect the cracking rate by varying the energy input and the time between pulses. The existence of a suitable value for the pulse characteristic coefficient corresponding to pulse width and frequency corresponds to a lower cracking rate. Thermal stress variations due to changes in process conditions at different diamond percentages, number of stacked layers, and preheating temperatures are the main causes of crack rate variations. Cracking is not only affected by thermal stresses, but also by the quality of the formed surface when pulsed laser brazing diamond to nickel–chromium alloy brazing material. For example, the main reason for the variation in cracking rate is the change in the morphology of the molded surface due to the variation in the thickness of the powder spread at different variations in the thickness of the powder spread.

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来源期刊
ACS Applied Energy Materials
ACS Applied Energy Materials Materials Science-Materials Chemistry
CiteScore
10.30
自引率
6.20%
发文量
1368
期刊介绍: ACS Applied Energy Materials is an interdisciplinary journal publishing original research covering all aspects of materials, engineering, chemistry, physics and biology relevant to energy conversion and storage. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important energy applications.
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