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首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >Investigation on the brazing mechanism and machining performance of diamond wire saw based on Cu-Sn-Ti alloy
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Investigation on the brazing mechanism and machining performance of diamond wire saw based on Cu-Sn-Ti alloy

机译:基于Cu-SN-Ti合金的金刚石锯钎焊机构及加工性能研究

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AbstractBrazing connection between diamond particles and KSC82 carbon steel wire was established by the Cu-Sn-Ti alloy, and a diamond wire saw of 500m in length and about 0.75mm in diameter was fabricated. The brazing morphology of the diamond particles was observed using scanning electron microscopy (SEM), and the products and elemental distribution characteristics at the diamond brazed interface were analyzed by the energy disperse spectroscopy (EDS) and X-ray diffraction (XRD). The tensile mechanical properties of the brazed diamond wire saw was obtained through tensile tests, and the morphology of the fracture was observed using the SEM to analyze the tensile fracture mechanism. Further, the diamond wire saw was used for slice processing test of G663 granite, and the failure mode of the wire saw was analyzed. The results showed that there was Ti segregation at the diamond brazing interface, and that Ti2C new phase was detected at the interface, where brazing connection of diamond particles was achieved through by reactive wetting. The tensile and yield strengths of the brazing diamond wire saw were 1289.08 and 923.18MPa respectively, its plasticity was twice that of original KSC82 steel wire, and the tensile failure mode of the wire saw was ductile fracture. The stable cutting efficiency of the brazing diamond wire saw cutting the G663 granite with cross-sectional dimensions of 480mm×260mm could reach 15mm/min. There were three abrasive wear modes for the diamond particles of the wire saw working layer, including normal wear, shear fracture and separation, of which separation accounted for 14.3%. The reason for the separation of diamond was attributed to the oxidation of Ti element in Cu-Sn-Ti alloy and the fatigue crack initiation and growth at the diamond brazing interface.Highlights?Brazed diamond wire saw of 500m in length and about 0.75mm in diameter was fabricated. The tensile strength can meet the practical requirements.?There was Ti segregation at the diamond brazing interface, and that Ti2C new phase was detected at the interface.?The stable cutting efficiency of the brazing diamond wire saw cutting the G663 granite with cross-sectional dimensions of 480×260mm could reach 15mm/min.]]>
机译:<![cdata [ 抽象 金刚石颗粒和KSC82碳钢线之间的钎焊连接由Cu-Sn-Ti合金建立,A和a金刚石锯长度为500米,直径为约0.75mm。使用扫描电子显微镜(SEM)观察金刚石颗粒的钎焊形态,并通过能量分散光谱(EDS)和X射线衍射(XRD)分析金刚石钎焊界面的产物和元素分布特性。通过拉伸试验获得钎焊金刚石锯的拉伸力学性能,并且使用SEM观察骨折的形态来分析拉伸骨折机制。此外,金刚石线锯用于G663花岗岩的切片处理试验,分析了线锯的故障模式。结果表明,钻石钎焊界面上存在Ti隔离,并且在界面处检测到Ti 2 C新阶段,其中金刚石颗粒的钎焊连接通过反应性润湿来实现。钎焊金刚石锯的拉伸和屈服强度分别为1289.08和923.18MPa,其可塑性是原始KSC82钢丝的两倍,电线锯的拉伸失效模式是延展性骨折。钎焊金刚石锯的稳定切割效率切割G663花岗岩,横截面尺寸为480mm×260mm,可达到15mm / min。电线锯工作层的金刚石颗粒有三种磨料磨损模式,包括正常磨损,剪切断裂和分离,分离占14.3%。金刚石分离的原因归因于Cu-Sn-Ti合金中Ti元素的氧化和金刚石钎焊界面的疲劳裂纹引发和生长。 亮点 制造500米的钎焊金刚石锯,直径约为0.75mm。拉伸强度可以满足实际要求。 钻石钎焊界面上有TI隔离,并且TI 2 C新阶段在接口处检测到新阶段。 钎焊金刚石锯的稳定切割效率切割G663花岗岩具有480×260mm的横截面尺寸可以达到15mm / min。 ]]>

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