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超声振动珩磨 ultrasonic vibration honing英语短句 例句大全

时间:2020-08-13 16:56:21

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超声振动珩磨 ultrasonic vibration honing英语短句 例句大全

超声振动珩磨,ultrasonic vibration honing

1)ultrasonic vibration honing超声振动珩磨

1.An experimental research was carried out with a self-developedultrasonic vibration honing device to compare the honing efficiency between the powerultrasonic vibration honing and the ordinary honing,and a machining experiment for AZ91D magnesium alloy was also taken by theultrasonic vibration honing technology to identify the optimum oilstone parameters and process parameters.利用自行研制的功率超声振动珩磨实验装置,对超声珩磨和普通珩磨的磨削效率进行了对比实验研究,并采用超声振动珩磨技术,对AZ91D镁合金材料进行了加工实验,以确定最佳油石参数及工艺参数。

英文短句/例句

1.Experimental Research on Optimization of Process Parameters in Ultrasonic Vibration Honing超声振动珩磨工艺参数优化的试验研究

2.The Design Theory and Vibration Experiment Research of Ultrasonic-Based Gear-Honing Device;超声辅助珩齿装置的设计理论与振动实验研究

3.The Vibration Characteristics and Structural Design of Transmission System in Ultrasonic Gear Honing;超声波珩齿传递系统的振动特性及结构设计

4.The Design and Research on the Vibration System of Ultrasonic-Based Gearhoning Based on ANSYS Software基于ANSYS超声波辅助珩齿振动系统的设计与研究

5.Design of Ultrasonic Gear-honing Vibration System based on Four-terminal Network Method基于四端网络法的超声珩齿振动系统设计

6.Study on Rotary Ultrasonic Honing Machining Mechanism and Processing Parameter Experiment;旋转功率超声珩磨加工机理及工艺实验研究

7.Experimental Study on Grinding Temperature of Different Material in Ultrasonic Plane Grinding不同材料超声振动磨削的磨削温度实验研究

8.Study on Ultrasonic Grinding Vibrations Characteristic Experiment Based on Hypothesized Instrument基于虚拟仪器的超声磨削振动特性实验研究

9.Study on Ductile Grinding Character of Nano ZrO_2 Ceramics using Ultrasonic Vibration Grinding纳米ZrO_2陶瓷的超声振动延性域磨削特性研究

10.Study on the Grinding Surface Temperature of Ultrasonic Vibration Aided Face Grinding超声振动辅助端面磨削表面温度场研究

11.Experimental Research on Grinding Temperature of ZrO_2 in Ultrasonic Grinding Dressed by Elliptic Vibration椭圆振动修整超声磨削ZrO_2温度试验研究

12.Test Research of Grinding and Drilling with Ultrasonic Vibration on Hard and Brittle Glasses在硬脆材料玻璃上超声振动研磨钻孔试验研究

13.The motion process of an abrasive grit during face grinding is analyzed based on the motion diagram of ultrasonic vibration assisted grinding.根据超声振动辅助磨削运动图,分析了平面磨削时单颗磨粒的运动过程;

14.Study of Ultrasonic Vibration Assisted Grinding and Electrical Discharge Machining Mechanism and Its Intelligent Control;超声振动—磨削—脉冲放电复合加工技术及其智能控制的研究

15.Research and Establishment on Ultrasonic Vibration Grinding Experiment System of Hard Brittle Materials硬脆材料超声振动磨削实验系统的建立及其实验研究

16.Design and Application on Control System for Technology of Ultrasonic Vibration Aided Electrical Discharge Grinding Process超声振动辅助磨削—脉冲放电复合加工控制系统设计及应用

17.Study on Form of Tool Wear with Ultrasonic Vibration Cutting SiC_P/Al Composites超声振动切削SiC_P/Al复合材料的刀具磨损形态研究

18.Design of the Vibration System of Ultrasonic Gear Honing超声珩齿的变幅杆设计与有限元分析

相关短句/例句

ultrasonic vibration honing processing超声振动珩磨加工

3)longitudinal ultrasonic honing超声纵振珩磨

1.In order to validate the cutting model and study further surface microscopic feature, some experiments oflongitudinal ultrasonic honing of engineering ceramics Zr02 and high strength P steel have been carried out.为了验证所建模型的正确性及进一步研究超声纵振珩磨的磨削表面特征,本文对工程陶瓷ZrO2和高强度P钢进行了纵向超声振动珩磨试验,通过电镜 SEM观察分析了表面磨削特征,研究表明:纵向超声振动珩磨具有比普通珩磨较大的材料去除率,并且磨削表面光滑,粗糙度低。

4)ultrasonic honing超声珩磨

1.Study of key technology forultrasonic honing acoustics system;超声珩磨声学系统关键技术研究

2.Ductile Cutting Characteristics in Ultrasonic Honing on ZrO_2 Ceramics with Coarse Diamond Grits;粗磨粒金刚石油石超声珩磨ZrO_2陶瓷的延性特征

3.Local resonance mechanism study onultrasonic honing complicated a coustic system(Ⅰ);超声珩磨复杂声学系统的局部共振机理研究(Ⅰ)

5)vibration honing振动珩磨

1.By analyzing the form characteristic of cemented carbide threading insert, thevibration honing method for treating the insert is presented.通过分析硬质合金螺纹刀片的形状特点,提出采用振动珩磨法对螺纹刀片进行ESC工艺处理。

6)ultrasonic honing超声波珩磨

延伸阅读

珩磨珩磨honing用镶嵌在珩磨头上的油石(又称珩磨条)对精加工表面进行的精整加工。又称镗磨。主要加工直径5~500毫米甚至更大的各种圆柱孔,孔深与孔径之比可达10或更大。在一定条件下,也可加工平面、外圆面、球面、齿面等。珩磨头外周镶有2~10根长度约为孔长1/3~3/4的油石,在珩孔时既旋转运动又往返运动,同时通过珩磨头中的弹簧或液压控制而均匀外涨,所以与孔表面的接触面积较大,加工效率较高。珩磨后孔的尺寸精度为IT7~4级,表面粗糙度可达Ra0.32~0.04微米。珩磨余量的大小,取决于孔径和工件材料,一般铸铁件为0.02~0.15毫米,钢件为0.01~0.05毫米。珩磨头的转速一般为100~200转/分,往返运动的速度一般为15~20米/分。为冲去切屑和磨粒,改善表面粗糙度和降低切削区温度,操作时常需用大量切削液,如煤油或内加少量锭子油,有时也用极压乳化液。

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