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Formulation and Implementation of Energy Efficient Ultraviolet Curing for Photosensitive Resin-Bound Diamond Wire Saws

机译:光敏树脂结合金刚石线锯高效节能紫外线固化的制定与实施

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摘要

It is a currently dominant method to use wire saws for cutting silicon material because of its production efficiency and energy efficiency. Diamond wire saws, or fixed abrasive wire saws, have attracted much attention to researchers and engineers due to many advantages, including high cutting efficiency and low environmental pollution. This paper develops a novel diamond wire saw using ultraviolet curing technology. High-strength piano wires and polyethylene wires are selected as wire cores, and photosensitive resin is used as the binder. The problem of wire saw strength is mathematically formulated, and the effective parameters are analyzed. The surface morphology is analyzed for the developed diamond wire saw. A series of cutting experiments with different saws of varying manufacturing parameters are carried out. The slicing performance of such diamond wire saws is evaluated and compared. The experimental results show that the developed saw using the photosensitive resin has a very good performance in slicing silicon ingots. By the comparison between the developed diamond wire saw and the electroplated diamond wire saw, the surface smoothness of the workpiece is better than that by the latter.
机译:由于线锯的生产效率和能量效率,因此是目前使用线锯切割硅材料的主要方法。金刚石线锯或固定式磨料线锯由于具有许多优点,包括高切割效率和低环境污染,已引起研究人员和工程师的广泛关注。本文开发了一种使用紫外线固化技术的新型金刚石线锯。选择高强度钢琴线和聚乙烯线作为线芯,并使用光敏树脂作为粘合剂。对线锯强度问题进行了数学公式化,并分析了有效参数。分析了开发的金刚石线锯的表面形态。使用不同制造参数的不同锯进行了一系列切割实验。评估并比较了这种金刚石线锯的切片性能。实验结果表明,使用光敏树脂开发的锯在切片硅锭方面具有非常好的性能。通过比较开发的金刚石线锯和电镀金刚石线锯,工件的表面光滑度要好于后者。

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  • 来源
    《Mathematical Problems in Engineering》 |2013年第4期|698360.1-698360.6|共6页
  • 作者单位

    Key Laboratory of E&M Zhejiang University of Technology, Ministry of Education & Zhejiang Province, Hangzhou 310023, China;

    Key Laboratory of E&M Zhejiang University of Technology, Ministry of Education & Zhejiang Province, Hangzhou 310023, China;

    Key Laboratory of E&M Zhejiang University of Technology, Ministry of Education & Zhejiang Province, Hangzhou 310023, China;

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