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Forecasting of operational indicators of grinding tools with the controlled form and orientation of abrasive grains

机译:采用控制形式和磨粒的磨削工具运营指标预测

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The interconnection of the abrasive grain front angle parameter with the form, orientation and wear out parameters is investigated. The form of the abrasive grains was estimated by means of form coefficient which represents the relation of diameters of the spheres described around contours of grains, to diameters of the spheres entered in them. The spatial orientation angle of the abrasive grains was defined between main (i.e. the biggest) axis of the grains and the cutting plane. It is established that, depending on an orientation angle at increase in a form coefficient of the abrasive grains can be either an increase or a decrease in the values of their front angles. In most cases, with an increase in a form coefficient of the oriented grinding grains (at orientation angles Θ=10°/125°) the growth of their front angles is fixed. At tangential orientation of grains (Θ=0°) and at the close directions of orientation (Θ=135°/180°) the return picture is observed. Also established that the longer the abrasive grain wears along the main axis and located in the tool body, the larger is its front angle. Besides that, the front angles of the abrasive grains reach the maximum positive values at orientation angles Θ=22.5°/45°. Dependence of tension in grains during the work with parameters of their form, orientation and depth of embedment in the bundle is investigated. It was found that for all orientation angles of grains their tension significantly increases with an increase in their form coefficient. Besides that it is confirmed that the deeper the grain is in the bundle, the lower the tension is there. Also found that tension is minimal when the grains are tangential orientated. Further on increase the option of the grains in the direction of action of the cutting force follows. Such option of orientation is the most rational both from the point of view of minimization of tension, and for ensuring rational sizes of front angles of the abrasive grains. The rational angle of grain orientation for cutting disc are in range Θ=65°/75°. The joint analysis of dependences of front angles and tension in grains from factors of their form and orientation allows the prediction of operating characteristics of grinding tools at the design stage for specific tasks and processing conditions.
机译:与形式,取向和磨损出参数磨粒前角参数的互连进行了研究。这些磨料颗粒的形式,通过其表示围绕直径晶粒的轮廓所描述的,以直径在它们输入的球体的球体的关系形式的系数来估计。这些磨料颗粒的空间取向角主要(即,最大)晶粒的轴和切割平面之间定义的。它建立,这取决于在所述磨料颗粒的形式系数增加的取向角度可以是增加或在其前角的值的降低。在大多数情况下,随着在面向磨粒的形式系数(在取向角Θ= 10°/ 125°)其前角的生长是固定的。在晶粒取向的切向(Θ= 0°),并在取向的闭方向(Θ= 135°/ 180°)的返回图片中观察到。还确定,时间越长,磨粒沿主轴线和穿设在工具主体,较大的是其前角。除此之外,这些磨料颗粒的前角达到在取向的最大正值角Θ= 22.5°/ 45°。与他们的形式,取向和在束嵌入的深度的参数的工作过程中晶粒张力的依赖性进行了研究。结果发现,对晶粒的所有取向角的张力显著与增加其形式系数增大。除此之外确认了更深的晶粒是在束中时,降低张力是存在的。还发现,张力是最小的,当晶粒是切向取向。进一步增加上晶粒的选项中的切削力如下作用的方向。取向的这种选择是最合理的无论从张力的最小化的点,并确保这些磨料颗粒的前角的大小合理的。晶粒取向的用于切割光盘的合理角度是在范围Θ= 65°/ 75°。前角和从它们的形式和取向的因素在晶粒张力的依赖性的联合分析允许在为特定任务设计阶段中操作的研磨工具的特性和加工条件的预测。

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