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首页> 外文期刊>Journal of Materials Processing Technology >Cutting performances of MCD, SMCD, NCD and MCD/NCD coated tools in high-speed milling of hot bending graphite molds
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Cutting performances of MCD, SMCD, NCD and MCD/NCD coated tools in high-speed milling of hot bending graphite molds

机译:MCD,SMCD,NCD和MCD / NCD涂层工具的切割性能,高速铣削热弯曲石墨模具

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The machining accuracy and service life of high-speed milling tools have a great influence on the surface roughness and dimensional precision of hot bending graphite molds used in the manufacture of 3D curved glass such as protective screens and rear covers of 3C electronic products. The microcrystalline diamond (MCD), submicrocrystalline diamond (SMCD), nanocrystalline diamond (NCD) and micro/nano-crystalline composite diamond (MCD/NCD) coatings were deposited on commercial corner radius end milling tools by using a hot filament chemical vapor deposition (HFCVD) equipment. The morphologies, phase structures and adhesive strength of various types of diamond coatings were systematically tested by Field emission scanning electron microscopy (FESEM), Raman spectroscopy and Rockwell indentation tests respectively. Besides, the tribological performances of various diamond coatings were assessed by the ball-on-disk rotational friction tester. Composite MCD/NCD coating exhibits good friction properties, superior wear resistance and satisfactory material removal rate during the process of sliding against graphite. Further high-speed milling experiments of graphite using bare WC-Co, MCD, SMCD, NCD and MCD/NCD coated milling tools were carried out to characterize their corresponding cutting performances and wear mechanism. Tool wear progressions of different kinds of milling tools with the cutting length were obtained. Moreover, tool wear morphologies were acquired by FESEM and machined surface roughness of graphite were measured by 3D surface profile meter. Results indicate that MCD/NCD coated milling tool exhibits excellent cutting performances compared to the other milling tools due to the comprehensive properties of better surface smoothness and higher adhesive strength with WC-Co substrates. What's more, the machining dimensional accuracy and machined surface roughness during high-speed milling of hot bending graphite molds using MCD/NCD coated milling tool could meet the strict requirements of 3C electronic products even without the need or with less need for subsequent lapping and polishing.
机译:高速铣削工具的加工精度和使用寿命对热弯曲石墨模具的表面粗糙度和尺寸精度具有很大的影响,这些弯曲石墨模具如3D弯曲玻璃的制造,例如3C电子产品的保护屏和后盖。微晶金刚石(MCD),亚晶金刚石(SMCD),纳米晶金刚石(NCD)和微/纳米晶体复合金刚石(MCD / NCD)涂层在商业角落半径端铣刀上沉积在商业角落半径端铣刀上( HFCVD)设备。各种类型金刚石涂层的形态,相结构和粘合强度分别通过现场发射扫描电子显微镜(FESEM),拉曼光谱和罗克韦尔凹口检测系统地测试。此外,通过球盘旋转摩擦测试仪评估各种金刚石涂层的摩擦学性能。复合MCD / NCD涂层在滑动对石墨滑动过程中表现出良好的摩擦性能,卓越的耐磨性和令人满意的材料去除率。进行了使用裸WC-CO,MCD,SMCD,NCD和MCD / NCD涂层铣削工具的石墨的进一步高速研磨实验,以表征其相应的切割性能和磨损机构。获得了不同种类的铣削工具与切割长度的工具磨损进展。此外,通过3D表面轮廓仪测量石墨和加工表面粗糙度的刀具磨损形态。结果表明,MCD / NCD涂覆铣刀表现出相比于其他铣刀优良切削性能由于更好的表面平滑性和高的粘合强度与WC-Co的底物的综合性能。更重要的是,该加工利用MCD / NCD涂覆铣削刀具能够满足3C电子产品的严格要求,即使不需要或与用于随后研磨和抛光的需求减少热弯曲石墨模具的高速研磨期间的尺寸精度和加工表面粗糙度。

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