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An improved model for the disking process

机译:磁盘过程的改进模型

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The disking process is an alternative to diamond-sawing for the cutting of brittle rods and bars. Disking involves positioning a pre-cracked, brittle cylindrical rod snug inside an elastic, annular sheath and subjecting the composite to biaxial fluid pressure. At a critical pressure the crack runs across the section of the rod producing a clean cut. A model that considers the influence of the interface between the rod and the sheath is presented here for predicting fracture pressures. The model is based on linear-elastic-fracture-mechanics. A concentric circular cylinders model is assumed with the flaw modeled as an annular crack perpendicular to the interface. The bond at the interface is considered to be imperfect and is represented by distributed shear springs. Stress intensity factors at the crack tip are determined as a function of material, interface, and geometrical parameters. Analytical results indicate tat the shear stiffness of the interface strongly influences the stress intensity factors and consequently the fracture pressures. These analytical results compare favorably with experimentally determined fracture pressures.
机译:对于脆性棒材和棒材的切割,圆盘加工是金刚石锯切的替代方法。压盘涉及将预破裂的,易碎的圆柱形杆紧贴在弹性的环形护套内,并使复合材料承受双轴流体压力。在临界压力下,裂纹横穿杆的整个截面,形成整齐的切口。这里提出了一个模型,该模型考虑了杆和护套之间的界面的影响,以预测断裂压力。该模型基于线性弹性断裂力学。假定同心圆柱模型,其缺陷建模为垂直于界面的环形裂纹。界面处的粘结被认为是不完善的,并由分布的剪切弹簧表示。确定裂纹尖端的应力强度因子是材料,界面和几何参数的函数。分析结果表明,界面的剪切刚度强烈影响应力强度因子,进而影响断裂压力。这些分析结果与实验确定的断裂压力相比具有优势。

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