首页> 外文期刊>CERAMICS INTERNATIONAL >Drilling machinability of engineering ceramics under low-frequency axial vibration processing by sintering/brazing composite diamond trepanning bit
【24h】

Drilling machinability of engineering ceramics under low-frequency axial vibration processing by sintering/brazing composite diamond trepanning bit

机译:烧结/钎焊复合钻石串钻井钻井在低频轴向振动处理下工程陶瓷的钻井加工性

获取原文
获取原文并翻译 | 示例
           

摘要

Thin-wall diamond trepanning bits are extensively used for processing hard and brittle materials such as engineering ceramics. However, it is difficult to achieve high-efficiency processing of engineering ceramics at a constant feed speed, because of high dynamic compressive strength, high hardness, and low density of engineering ceramics. In this study, a novel composite diamond bit combining sintering and brazing has been designed, along with the low-frequency axial vibration technology, to realize the continuous hole processing of engineering ceramics. Drilling experiments have been conducted on Al2O3 and SiC engineering ceramics with a constant feed speed. The variation of axial force, micromorphology of hole wall surface drilled, as well as the method of removing nesting during the drilling process were analyzed. According to the results, the novel composite diamond bit fabricated by combining sintering and brazing, can achieve the continuous hole processing of engineering ceramics at a constant feed speed, including Al2O3 and SiC. Compared to the conventional drilling (CD), the low-frequency axial vibration drilling (LFVD) can significantly reduce the axial force, and produce fewer plastic scratches on the hole wall surface drilled. In particular, the automatic blanking ratio approaches to 100% by LFVD, and only about 73.58% by CD. It can be concluded that LFVD technology can be used to realize continuous hole processing of engineering ceramics. The research results achieved in this study show that the drilling machinability of engineering ceramics by LFVD and novel composite diamond bit is good. Accordingly, this study provides a useful reference for continuous processing or batch production of engineering ceramics at a constant feed speed.
机译:薄壁金刚石穿越钻头广泛用于加工硬质和脆性材料,如工程陶瓷。然而,由于高动态抗压强度,高硬度和工程陶瓷的低密度,难以实现恒定进料速度的高效加工。在本研究中,设计了一种新的复合金刚石比特,结合烧结和钎焊钻头和低频轴向振动技术,实现了工程陶瓷的连续孔加工。钻探实验已经在Al2O3和SiC工程陶瓷上进行,恒定进给速度。分析了轴力,孔壁表面钻孔的微晶的变化,以及在钻井过程中去除嵌套的方法。根据结果​​,通过组合烧结和钎焊制造的新型复合金刚石钻头,可以以恒定的饲料速度实现工程陶瓷的连续空穴处理,包括Al2O3和SiC。与传统的钻孔(CD)相比,低频轴向振动钻井(LFVD)可以显着减小轴向力,并在钻孔的孔壁表面上产生更少的塑料划痕。特别地,自动消隐比率通过LFVD接近100%,并且仅通过CD的约73.58%。可以得出结论,LFVD技术可用于实现工程陶瓷的连续孔加工。本研究中实现的研究结果表明,LFVD和新型复合金刚石钻头的工程陶瓷钻井加工性很好。因此,该研究提供了在恒定进料速度下连续处理或批量生产的有用参考。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号