1、

Theoretical and Experimental Study on Fuzzy Zone in On-line Identification for Grinding Burn

磨削烧伤在线辨识中模糊区的理论分析与实验研究

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2、

A Sort of New Detection Method of Grinding Burn of Camshaft

一种用于凸轮轴磨削烧伤检测的新方法

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3、

Study on grinding burn with radial water jet impingement cooling and brazed grinding wheel

采用径向射流冲击与钎焊砂轮解决磨削烧伤的研究

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4、

The occurance of grinding burn is mainly caused by the high contact zone temperature.

磨削接触区温度过高是引起磨削烧伤的主要因素。

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5、

Gear grinding quality includes many contents. Here means primarily profile accuracy, tooth spacing accuracy, tooth flank roughness, flank grinding burn, and so on.

磨齿质量涉及内容广泛,这里主要指的是齿形精度、齿距精度、齿面粗糙度、齿面磨削烧伤等。

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6、

forecast and control on grinding burn of cementation steel when end-grinding

端磨渗碳钢时磨削烧伤的预测和控制

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7、
8、

The grinding burn causes the surface hardness falling off and wear speeding up.

磨削烧伤使表面硬度下降,磨损加剧。

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9、

The grinding burn how to affect the wearing capacity of spindle pivot point and step bearing

磨削烧伤对锭杆锭底摩擦副耐磨性能的影响

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10、

The mechanism of profile grinding burn and its influencing factors are analysed through the simulated test of profile grinding racks, and the improvements of grinding burn are proposed simultaneously.

采用金相分析法,分析齿轮烧伤试件的齿面温度分布状态,结合成形磨削齿条的模拟试验,研究成形磨削烧伤形成机理及影响因素,提出了避免成形磨削烧伤的工艺措施。

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11、

In-Process Monitoring and Prediction of Grinding Burn during Grinding of Casehardened Steels

表面硬化钢磨削烧伤的监测和预报

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12、

Resin bonded silicon carbide grinding block during the grinding process, high grinding efficiency, good self sharpening abrasive tool, workpiece surface is not easy to burn and polishing performance and good processing properties, it can be widely applied in the field of material surface processing.

树脂结合剂碳化硅磨块在磨削过程中磨削效率高、磨具自锐性好、被加工工件表面不容易烧伤和抛光性能好等加工特性,因此在材料表面加工领域得以广泛应用。

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13、

The Workpiece Temperature Characteristics and Burn Mechanism in Creep Feed Grinding

缓进深磨的温度特征与烧伤机理

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14、

In this paper, the mechanism of workpiece burn during grinding of casehardened steel and titanium alloys was studied by the use of SEM, EPMA, XPS and the metallograph analysis.

本文应用SEM,EPMA、XPS及金相显微分析等技术研究了表面硬化钢和钛合金的烧伤机理。

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15、

Research of Grinding Teeth Burn and Crack and Thier Thermal Damage Layer

磨齿烧伤和裂纹及其变质层深度

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16、

Study on Grinding Temperature and Surface Burn out in High Efficiency Deep Grinding

高效深磨中磨削温度和表面烧伤研究

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17、

Burn Test on Grinding of 300M Ultra High Strength Steel

300M超高强度钢磨削烧伤的试验研究

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18、

The mechanism of workpiece burn in grinding difficult to machining materials is analyzed.

分析了难加工材料磨削弧区强化换热的机理;

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19、

Mechanism of Workpiece Burn in Grinding and the Improvement

磨削烧伤机理及其改善措施的研究

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20、

optimization control strategy was changed in the different grinding stage. deep-feed within the limit of burn and variety velocity grinding were adopted during the rough grinding stage;

该系统根据各磨削阶段的特点,在不同阶段分别采用不同的优化控制策略:粗磨阶段,采用在烧伤极限内大进给和变速磨削优化策略;

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