刀体

  • 网络knife body;tool body
刀体刀体
  1. 所述刀柄位在刀体的主刀口区的正上方。

    The handle is arranged over the main knife-edge area of the knife body .

  2. 微细的纳米结构令涂层和刀体附着力更强,涂层的表面更光滑,刀刃更加锋利,加工时达到较低的磨擦系数。

    Fine structure of the nano-coating and knife body stronger adhesion , coating the surface more smooth , more sharp blade , process to achieve the low coefficient of friction .

  3. 数控铣刀盘形刀体CAPP系统的开发

    The Development of CAPP System for Milling Cutter with Disc-shaped Body

  4. 数控盘铣刀刀体的CAPP系统

    CAPP System for NC Plate Milling Cutter

  5. 面铣刀铣削切入方式与破损寿命的研究采用ANSYS进行了不同转速下高速面铣刀刀体、刀片、刀具附件等刀具构件、装配的应力、应变、位移有限元分析。

    Study of Face-Milling Process Cut-in Type and Disrepair Life The stress , strain , and displacement of component of the cutters have been simulated under different rotate speeds in ANSYS .

  6. 特点:进口钨钢刀体专为数控雕刻MDF材质而设计,结合了硬质刀体和高级刀刃几何,经久耐用。

    Features : import-tungsten steel body tool is specially designed for carving NC MDF material , a combination of rigidity cutter body and senior blade geometry , durable .

  7. 最后根据结构设计数据,借助UG软件实现了刀体的三维建模,通过铣刀的装配模型,检验了铣刀各零件的设计合理性和干涉情况。

    Finally , according to structural design data , using UG software found the three-dimensional modeling of the cutter . Through parts of the assembly model , the article check up reasonable configuration and interference among the various components of the milling cutter .

  8. 镶齿三面刃铣刀刀体裂纹分析

    Cracking analysis of cutter body for insert three side milling-cutter

  9. 加工中心加工可转位式盘状铣刀刀体的方法探讨

    Research on the Method of Changeable Disc Cutter Body Processing with Machining Center

  10. 沥青砼路面铣削刀具刀体材料选择与强化的研究

    Research on body material choice and hardening of milling tools for bituminous road

  11. 镐形刀体无飞边胎模锻工艺

    Non-overlap swage forging technology on pick cutter body

  12. 系统的研究了可转位高速铣刀刀体容屑槽与刀片槽加工工艺方案。

    The scheme of machining process on chip letting groove & blade groove has been studied .

  13. 本文主要研究机构式毛竹镗簧刀体浮动机构。

    This paper reports on the study of the Phyllostachys pubescens boring mechanism by floating-knifes cutting .

  14. 本实用新型由刀片、导向块、刀体和刀杆组成。

    The utility model comprises blades , guide blocks , a cutter body and a tool bar .

  15. 同时,采用HL315硬钎焊解决了与45号钢制刀体的焊接问题。

    HL 315 as brazing metals can solve the problem when welded with 45 steel cutter holder .

  16. 对目前国内外沥青砼路面铣削刀具刀体材料的选材与强化进行了一定程度的探讨。

    Body material choice and hardening of milling tools for bituminous road is approached to a certain extent .

  17. 微型电动机与锥形刀体之间通过大小齿轮连接。

    The miniature motor and the tapered sharpener body are connected through a big and a small gears .

  18. 结果表明,所取得的研究结果对高速铣刀刀体制造技术水平的提高具有较强的实际意义。

    Results shows the achieved research results are valuable to improve cutter body maching standard of high speed face milling tools .

  19. 高速端铣刀刀体弹性极限转速的理论计算及其影响因素

    Theoretics calculate of the elasticity limited rotary speed of the high speed face milling cutter body and study its influence factors

  20. 在刀体的钢制端面上精确加工的高精度刀座可确保刀片的精确定位。

    Steel in the knife body-side surface of the high-precision machining precision knife block to ensure that accurate positioning of the blade .

  21. 你检查时应考虑打开刀体时背锁凸起的高低程度(这是纯个人的喜好)。

    The degree of stiffness in the opening action is a personal preference and needs to be considered when judging the knife .

  22. 使用时,人们可根据需要,选择不同的刀体,利用卡阀将其与手柄固定;

    When in use , the user can select different screwdriver bodies on demand , and fix same with the handle with the clamp valve ;

  23. 在分析加工颤振机理的基础上,对加工齿轮泵壳体齿圈槽专用刀具的刀体结构和刀具参数进行了优化设计。

    Based on the analysis of cutting chatter , the cutter body structure and parameters of special cutter for machining gear pump bodies are optimum designed .

  24. 一种削铅笔的卷笔刀,主要有刀体、刀片、压板和螺钉组成。

    The utility model discloses a pencil sharpener for cutting pencils , comprising a sharpener body , a knife blade , a pressing plate and screws .

  25. 以及为实现本实用新型目的而增设的、与所述射频刀体并列设置的体内可视机构。

    The in vivo visible device is arranged in parallel with the radio frequency cutter body and additionally equipped for realizing the goal of the utility model .

  26. 通过对麻花钻前角约束的研究,采用遗传算法对麻花钻结构参数进行优化,并结合界面函数编程,开发了麻花钻刀体结构参数优化系统。

    Furthermore , the front angle restrict are studied to develop an optimization system for twist-drill structure parameters by integrating genetic algorithm and Graphical User Interface of MATLAB .

  27. 进一步,从刀具精度角度出发针对性的设计金刚石尖劈刀和双圆锥形圆弧刀具的刀体结构,为高精度光栅刻划刀具的研制提供统一基准的刀具。

    Further , design tool body structure aim at precision of the chisel-edge tool and double-conical arc tool respectively , and provide an benchmark for developing high precision grating ruling tool .

  28. 由于刀体在做旋转运动,因此可以把袋装垃圾破开,达到垃圾与塑料袋分离。

    As the knife body does the rotation movement , it can break out the garbage in bags so as to achieve the purpose of separating the garbage and plastic bags .

  29. 比例是各个段、面、间隔或者刀体各部之间以及刀柄和刀体作为整体关系。

    Proportion is the relationship of the sections , areas , spacers , or part of the knife to each other as well as to the handle and blade as a whole .

  30. 从研制的几种刀体浮动机构中,筛选出两种实践效果较好、性能优良、结构简单、成本较低的机构,并进行深入分析、论证、对比。

    From several types of the floating-knifes cutting mechanisms , two effective ones in simple constraction of low cost and with excellent performance were selected and analysed studied and compared in detail .