我国对螺旋锥齿轮加工的研究仍集中在“格里森”机床方面。
Researchers still put their emphasis on studying Gleason machine tools in our country.
而螺旋锥齿轮加工质量的控制一直是其加工中的一个关键问题。
But the quality control of spiral bevel gear processing has been the key problem in the processing.
这些公司对外均进行技术保密,外界很难获得螺旋锥齿轮的加工技术。
They keep their technique secret and others hardly acquire the machining technology about spiral bevel gears.
应用统计过程控制技术,对国产七轴五联动数控螺旋锥齿轮磨齿机yk2050的加工性能进行实验研究。
By applying SPC technology, the experimental study on processing performance of homemade YK2050 CNC spiral bevel gear grinding machine was done.
螺旋锥齿轮副的成形法大轮,利用合适的成形铣刀,在通用的立式加工中心上,可以实现热处理后硬齿面的高速铣削。
For spiral bevel gears' formate gear, using proper figurate cutting tool and generic CNC machining center, the gear's hard tooth-surface can be milled with high speed.
通过分析锥齿轮的加工方法和齿轮啮合理论,建立了螺旋锥齿轮齿面数学模型。
A mathematical model of spiral bevel gear tooth surface was built by analyzing manufacture method and meshing theory.
在上述研究的基础上,结合螺旋锥齿轮的精切齿原理及特点,探讨了脉冲电化学光整加工在螺旋锥齿轮上的应用模式。
It is discussed the application mode of PECF on the spiral bevel gear based on the research above and the principle and characteristic of precision cutting of spiral bevel gear.
目前国外齿轮厂家纷纷采用先进的五轴联动数控加工方法来加工螺旋锥齿轮以提高其加工精度。
Now, one after another, foreign gear plants adopt the advanced five-axes coordinated numerical controlling machining technique to machine spiral bevels in order to improve machining precision.
实验结果表明,螺旋锥齿轮数控机床的几何精度提高,其齿轮加工精度也提高。
The result of experiments indicates that improvement of geometric positioning accuracy of CNC machine tool of Spiral Bevel Gear can improve machining precision of gears.
刀倾半展成法是加工螺旋锥齿轮和准双曲面齿轮的有效方法。
The "Tool Pan Tilted method" is a high effect method to generate spiral-bevel gears and Hypoid gears.
上述研究查明了磨床误差及加工调整参数误差对螺旋锥齿轮齿面误差的影响机制。
The above research finds out the influence of grinder error and machining setting parameter error on tooth surface error of spiral bevel gear.
为了满足螺旋锥齿轮等大型零件的脉冲电化学光整加工的要求,设计了高频、窄脉宽、大电流的脉冲电源。
To meet with the requirement of PECF finishing, pulse power source with high frequency, narrow pulse width and high current is designed.
螺旋锥齿轮是机械传动的基础元件,其空间形状和加工过程相当复杂。
Spiral bevel gear is the mechanical transmission fundamental element. Its space shape and the machining process are very complicated.
实验验证了本文齿面误差修正模型及提出的TSVD法求解的正确性,提高螺旋锥齿轮齿面加工质量。
The error correction model of tooth surface and solving method using TSVD were verified experimentally, and the tooth surface machining quality of spiral bevel gear was improved.
在螺旋锥齿轮硬齿面精加工这一环节上,我国与发达国家的差距尤为明显。
There is an obvious disparity between our nation and other developed nations in the field of hard surface finish machining of the spiral bevel gear.
目前国外螺旋锥齿轮数控加工质量控制技术仅为少数公司所拥有,国内尚处于起步阶段。
At present, the quality control technologies of spiral bevel gear NC processing are grasped only the minority companies in overseas and are still at the starting stage in domestic.
通过对螺旋锥齿轮机械式铣齿机与CNC铣齿机之间加工调整参数转换原理的研究,推导了这两类机床运动轴数学模型;提出了求解各运动轴表达式系数的速度求导法。
By studying the transformation principle of the machining setting parameters from cradle style machine to CNC gear generator, mathematical kinematic models of every axis are deduced.
研究了四轴数控螺旋锥齿轮铣齿机的运动规律,建立了铣齿机加工坐标系。
This paper studied 4-axis CNC spiral bevel gear machine movement rules, and set up machine machining coordinates.
实际应用表明,该系统不但实现了螺旋锥齿轮的计算机辅助铣齿,提高了加工效率,降低了加工成本;而且还提供了非常真实的仿真效果。
The application shows that the system can manufacture spiral bevel and hypoid gears on computer and raise machining efficiency and reduce machining cost, and can provide a real simulation effect.
螺旋锥齿轮和准双曲面齿轮数控磨齿机是一种新机床,将齿轮加工所需全部运动用六坐标数控来实现。
The CNC hypoid cutting machine is a new kind of machine tool, which coordinates all machine movement necessary for gear manufacturing in 6 axes of motion.
螺旋锥齿轮和准双面齿轮数控铣齿机是一种新机床,将齿轮加工所需全部运用用六座标数控来实现。
The CNC Hypoid Cutting machine is a new kind of machine tool, which coordinates all machine movement necessary for gear manufacturing in 6 axis of emotion.
螺旋锥齿轮和准双面齿轮数控铣齿机是一种新机床,将齿轮加工所需全部运用用六座标数控来实现。
The CNC Hypoid Cutting machine is a new kind of machine tool, which coordinates all machine movement necessary for gear manufacturing in 6 axis of emotion.
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