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不锈钢打磨砂带用酚醛树脂关键参数测试与分析
引用本文:邢波,赵金坠,宋运运,冯克明,陈学斌,任冠青,冯兵强,安坤华. 不锈钢打磨砂带用酚醛树脂关键参数测试与分析[J]. 金刚石与磨料磨具工程, 2021, 41(4): 98-103. DOI: 10.13394/j.cnki.jgszz.2021.4.0014
作者姓名:邢波  赵金坠  宋运运  冯克明  陈学斌  任冠青  冯兵强  安坤华
作者单位:国家磨料磨具质量监督检验中心,郑州450001;国家磨料磨具产业计量测试中心(筹),郑州450001;白鸽磨料磨具有限公司,郑州450199
摘    要:针对不锈钢磨削砂带用酚醛树脂的基本理化指标难以全面表征砂带磨削性能的问题,选取基础参数相同的4种酚醛树脂为研究对象,对酚醛树脂进行热重(thermogravimetric,TG)、冲击强度分析,并在同等工艺条件下对用其制作的4种砂带进行剥离强度和磨削性能测试,探究酚醛树脂与砂带磨削性能的相关性.结果表明:当酚醛树脂的固...

关 键 词:砂带  酚醛树脂  基础参数  力学性能  磨削性能

Test and analysis of key parameters of phenolic resin for stainless steel grinding belt
XING Bo,ZHAO Jinzhui,SONG Yunyun,FENG Keming,CHEN Xuebin,REN Guanqing,FENG Bingqiang,AN Kunhua. Test and analysis of key parameters of phenolic resin for stainless steel grinding belt[J]. Diamond & Abrasives Engineering, 2021, 41(4): 98-103. DOI: 10.13394/j.cnki.jgszz.2021.4.0014
Authors:XING Bo  ZHAO Jinzhui  SONG Yunyun  FENG Keming  CHEN Xuebin  REN Guanqing  FENG Bingqiang  AN Kunhua
Affiliation:1. National Quality Supervision & Inspection Center for Abrasives, Zhengzhou 450001, China;2. National Metrology and Testing Center for Abrasives (Preparation), Zhengzhou 450001, China;3. White Dove Abrasives Co., Ltd., Zhengzhou 450199, China
Abstract:To solve the problem that the basic physical and chemical indexes of phenolic resin for stainless steel grinding belt was difficult to fully characterize the grinding performance of the belt, four phenolic resins with the same basic parameters were selected as the research objects. The thermogravimetric(TG) and the impact strength of the phenolic resin were analyzed, the peel strengths and the grinding performances of four belts prepared with four phenolic resins were tested under the same process conditions, the correlation between phenolic resins and abrasive belt grinding performances were explored . The results show that when the basic parameters such as solid content, viscosity, water solubility and pH value of phenolic resins are basically the same, the maximum values of the grinding ratio, the grinding efficiency and the workpiece surface roughness of the four abrasive belts differ by 31.8%, 27.2% and 27.6% respectively. The TG, the impact strength of phenolic resins and the peel strength of the belts made of phenolic resins are positively related to the grinding performance of the belts. The main failure modes of abrasive belts grinding stainless steel are abrasive wear, abrasive particles adhere to debris and debris seriously blocking the chip space. 
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