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Force and segment wear in various granites cutting by diamond frame saw

机译:钻石框架锯切割各种花岗岩中的力和段磨损

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摘要

Influences of cutting parameters (feed rate, cutting length, and flywheel rotation speed) and stone properties (such as quartz content, uniaxial compression strength, and bending strength) on forces in various granites cutting by diamond frame saw (diamond gang saw) were studied. Feed rate ranks first in governing cutting force compared with flywheel rotation speed and cutting length. Uniaxial compression strength affects cutting forces most compared with other stone properties. The mathematical models can predict cutting forces for manufacturers and users, as well as provide a theoretical basis for improvement and optimization of stone sawing machines. Matrix tail can form during half-cycle sawing mode, which can improve the holding force of the bond to diamonds. Segments have better sawing conditions, and the main wear mode of diamond grits are whole and microfractured crystal. Slab productivity represents a 13–21 % increase, while geometrical deviation of the slab is less than 1.5?mm/m, thus reducing subsequent processing cost, such as polishing stage.
机译:研究了切割参数(进料速率,切割长度和飞轮转速)和石材性质(如石英含量,单轴压缩强度和弯曲强度)在钻石架锯(钻石锯锯)中的各种花岗岩中的力(如石英含量,单轴压缩强度和弯曲强度)的影响。进料速率在控制切割力方面排名第一,与飞轮旋转速度和切割长度相比。单轴压缩强度与其他石材性质相比影响切割力。数学模型可以预测制造商和用户的切削力,并为石头锯机的改进和优化提供理论依据。半循环锯切模式中可以形成矩阵尾部,可以改善键的保持力与钻石。段具有更好的锯切条件,并且金刚石砂粒的主磨损模式是整个和微浆晶的晶体。板坯生产率增加13-21%,而板坯的几何偏差小于1.5?mm / m,从而降低随后的加工成本,例如抛光阶段。

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