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锯片基体
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  saw blades matrix
     Heat Treatment of 65Mn Circular Saw Blades Matrix
     65Mn钢圆锯片基体的热处理
短句来源
     The quenching distortion of 1600mm 65Mn circular saw blades matrix is the key to influence the quality and rate of finished products.
     65Mn 钢1600mm 圆锯片基体的淬火变形是影响产品质量和成品率的关键。
短句来源
     Our study was found that two main reasons making the circular saw blades matrix distortion in quenching were banded structure and the unreasonable quenching process.
     研究发现,原材料的带状组织和淬火工艺的不合理是造成锯片基体淬火变形的两个主要原因。
短句来源
  “锯片基体”译为未确定词的双语例句
     Research on the Key Technology of Innovative Design of New Combined Structure Saw Blade
     新型组合结构圆锯片基体创新设计关键技术研究
短句来源
     In this work, shank(mild steel) and sintered bronze base tips were brazed with three different filler materials(W 40, BAg1 and BAg3S).
     该项研究中采用三种不同焊料 (W 4 0 ,BAg - 1,BAg3S)对低碳钢锯片基体和青铜基烧结刀头进行焊接。
短句来源
     It is shown that micro deformation (planeness≤1.15 mm) can be achieved through the following steps: heating and insulation at 800 ℃~830 ℃ and cooling to 300 ℃ in oil, then pressure cooling to room temperature.
     结果表明,65Mn钢金刚石圆锯片基体采用800℃~830℃加热保温后油冷至约300℃,于压床加压冷却可得小变形量(平面度≤1.15mm)。
短句来源
     Research on the Key Technology of Innovative Design of New Combined Structure Saw Blade
     新型组合式石材切割圆锯片基体创新设计关键技术研究
短句来源
     By measuring CCT diagram of 65Mn steel by means of fullautomatic transformation-testing instrument(Formarstor-Digital) and by studying the effects of heat treatment parameters on structures and properties of 65Mn steel,a reliable base is provided for reasonably working out heat treatment technology of diamond circular saw blades.
     应用Formastor-Digital全自动相变仪测定了65Mn钢的CCT曲线,研究了热处理工艺参数对65Mn钢组织性能的影响,为制订65Mn钢金刚石圆锯片基体的热处理工艺提供了可靠的依据。
短句来源
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  相似匹配句对
     Factors Influencing the Working LIfe of Saw Core
     影响锯片基体寿命因素探讨
短句来源
     Heat Treatment of 65Mn Circular Saw Blades Matrix
     65Mn钢圆锯片基体的热处理
短句来源
     Analysis on Fracture of Saw Blade
     锯片开裂分析
短句来源
     The substrate is K3 Ni-base superalloy.
     基体为K3合金。
短句来源
     Combined Diamond Saw Blades
     组合式金刚石锯片刀头
短句来源
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By measuring CCT diagram of 65Mn steel by means of fullautomatic transformation-testing instrument(Formarstor-Digital) and by studying the effects of heat treatment parameters on structures and properties of 65Mn steel,a reliable base is provided for reasonably working out heat treatment technology of diamond circular saw blades.

应用Formastor-Digital全自动相变仪测定了65Mn钢的CCT曲线,研究了热处理工艺参数对65Mn钢组织性能的影响,为制订65Mn钢金刚石圆锯片基体的热处理工艺提供了可靠的依据。

This paper has analysed and computed stress distribution in the diamond circular sawblade caused by force with saw using finite element method. Calculated results show that with the increasing of the sawblade radius and cutting rate in the stone cutting region, the value of compressive stress is being increased. These results will be helpful to prestressing of the sawblade and optimization of the parameter in cutting stone with diamond circular sawblade.

采用有限元法分析计算了金刚石圆锯片锯切岩石时锯切力引起的锯片基体上的应力分布.计算结果表明,在锯切力作用区域,随着圆锯片半径的增加,压应力值增加;随着锯切速率增加,压应力增加.这些结果将有助于锯片的张力处理与锯切参数优化.

A principle is proposed about the micro deformation quenching of diamond impregnated circular saw matrix. The quenching process of steel 65Mn matrix is studied. It is shown that micro deformation (planeness≤1.15 mm) can be achieved through the following steps: heating and insulation at 800 ℃~830 ℃ and cooling to 300 ℃ in oil, then pressure cooling to room temperature. The key factors are to control the temperature (300 ℃) taken out the saw matrix from the oil and the temperature ≥M s point(270 ℃) before...

A principle is proposed about the micro deformation quenching of diamond impregnated circular saw matrix. The quenching process of steel 65Mn matrix is studied. It is shown that micro deformation (planeness≤1.15 mm) can be achieved through the following steps: heating and insulation at 800 ℃~830 ℃ and cooling to 300 ℃ in oil, then pressure cooling to room temperature. The key factors are to control the temperature (300 ℃) taken out the saw matrix from the oil and the temperature ≥M s point(270 ℃) before puting the press.

本文提出了金刚石圆锯片基体微变形淬火工艺设计原理,研究了65Mn钢制造的基体微变形淬火工艺。结果表明,65Mn钢金刚石圆锯片基体采用800℃~830℃加热保温后油冷至约300℃,于压床加压冷却可得小变形量(平面度≤1.15mm)。指出控制基体出油温度(~300℃)及其在压床加压前的温度≥Ms点(270℃)是获得优良效果的关键。

 
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