期刊文献+
共找到583篇文章
< 1 2 30 >
每页显示 20 50 100
A distributed dynamic mesh model of a helical gear pair with tooth profile errors 被引量:8
1
作者 WANG Qi-bin MA Hong-bo +1 位作者 KONG Xian-guang ZHANG Yi-min 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第2期287-303,共17页
A dynamic model of a helical gear rotor system is proposed.Firstly,a generally distributed dynamic model of a helical gear pair with tooth profile errors is developed.The gear mesh is represented by a pair of cylinder... A dynamic model of a helical gear rotor system is proposed.Firstly,a generally distributed dynamic model of a helical gear pair with tooth profile errors is developed.The gear mesh is represented by a pair of cylinders connected by a series of springs and the stiffness of each spring is equal to the effective mesh stiffness.Combining the gear dynamic model with the rotor-bearing system model,the gear-rotor-bearing dynamic model is developed.Then three cases are presented to analyze the dynamic responses of gear systems.The results reveal that the gear dynamic model is effective and advanced for general gear systems,narrow-faced gear,wide-faced gear and gear with tooth profile errors.Finally,the responses of an example helical gear system are also studied to demonstrate the influence of the lead crown reliefs and misalignments.The results show that both of the lead crown relief and misalignment soften the gear mesh stiffness and the responses of the gear system increase with the increasing lead crown reliefs and misalignments. 展开更多
关键词 gear distributed dynamic model tooth profile errors helical gear pair rotor system dynamic response
在线阅读 下载PDF
Tooth surface error correction of hypoid gears machined by duplex helical method 被引量:9
2
作者 WU Shun-xing YAN Hong-zhi +3 位作者 WANG Zhi-yong BI Ren-gui CHEN Zhi ZHU Peng-fei 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第5期1402-1411,共10页
In this work,synchronous cutting of concave and convex surfaces was achieved using the duplex helical method for the hypoid gear,and the problem of tooth surface error correction was studied.First,the mathematical mod... In this work,synchronous cutting of concave and convex surfaces was achieved using the duplex helical method for the hypoid gear,and the problem of tooth surface error correction was studied.First,the mathematical model of the hypoid gears machined by the duplex helical method was established.Second,the coordinates of discrete points on the tooth surface were obtained by measurement center,and the normal errors of the discrete points were calculated.Third,a tooth surface error correction model is established,and the tooth surface error was corrected using the Levenberg-Marquard algorithm with trust region strategy and least square method.Finally,grinding experiments were carried out on the machining parameters obtained by Levenberg-Marquard algorithm with trust region strategy,which had a better effect on tooth surface error correction than the least square method.After the tooth surface error is corrected,the maximum absolute error is reduced from 30.9μm before correction to 6.8μm,the root mean square of the concave error is reduced from 15.1 to 2.1μm,the root mean square of the convex error is reduced from 10.8 to 1.8μm,and the sum of squared errors of the concave and convex surfaces was reduced from 15471 to 358μm^(2).It is verified that the Levenberg-Marquard algorithm with trust region strategy has a good accuracy for the tooth surface error correction of hypoid gear machined by duplex helical method. 展开更多
关键词 duplex helical method hypoid gear error measurement Levenberg–Marquard algorithm with trust region strategy correction of tooth surface error
在线阅读 下载PDF
Influence of Setting Error of Tool on Tooth Profile and Contact Point of Face Gear Drive 被引量:2
3
作者 李晓贞 朱如鹏 +1 位作者 李政民卿 李发家 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2014年第4期370-376,共7页
In order to analyze the influence of setting error of tool on both tooth profile and contact characteristic of orthogonal face gear drive,the coordinate systems with and without setting error are established.Moreover,... In order to analyze the influence of setting error of tool on both tooth profile and contact characteristic of orthogonal face gear drive,the coordinate systems with and without setting error are established.Moreover,the equations of tooth profile and contact points of face gear drive are derived by envelope principle.According to the equations,the change of tooth profile and the contact points position on face gear are analyzed.The tooth surface and contact points are obtained by numerical simulation.Results show that the tooth profile and contact characteristic of face gear drive are not sensitive to the setting error of tool. 展开更多
关键词 face gear setting error tooth profile contact characteristic
在线阅读 下载PDF
Optimizing circumferential assembly angle of rotor parts connected by curvic couplings based on acquired tooth surface error data
4
作者 Huibin SUN Meng LIU +1 位作者 Yingzhi ZHANG Chenle WEI 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2024年第3期404-416,共13页
Due to the excellent self-centering and load-carrying capability,curvic couplings have been widely used in advanced aero-engine rotors.However,curvic tooth surface errors lead to poor assembly precision.Traditional ph... Due to the excellent self-centering and load-carrying capability,curvic couplings have been widely used in advanced aero-engine rotors.However,curvic tooth surface errors lead to poor assembly precision.Traditional physical-master-gauge-based indirect tooth surface error measurement and circumferential assembly angle optimization methods have the disadvantages of high cost and weak generality.The unknown tooth surface fitting mechanism is a big barrier to assembly precision prediction and improvement.Therefore,this work puts forward a data-driven assembly simulation and optimization approach for aero-engine rotors connected by curvic couplings.The origin of curvic tooth surface error is deeply investigated.Using 5-axis sweep scan method,a large amount of high-precision curvic tooth surface data are acquired efficiently.Based on geometric models of parts,the fitting mechanism of curvic couplings is uncovered for assembly precision simulation and prediction.A circumferential assembly angle optimization model is developed to decrease axial and radial assembly runouts.Experimental results show that the assembly precision can be predicted accurately and improved dramatically.By uncovering the essential principle of the assembly precision formation and proposing circumferential assembly angle optimization model,this work is meaningful for assembly quality,efficiency and economy improvement of multistage aero-engine rotors connected by curvic couplings. 展开更多
关键词 Curvic couplings tooth surface error Assembly precision Axial and radial runouts Circumferential assembly angle
原文传递
ANALYSIS OF TOOTH FORM ERROR OF EQUAL BASE CIRCLE BEVEL GEAR
5
作者 Gong Yunpeng Ding Shichao Cai Chunyuan(Northeastern University) 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 1995年第4期287-290,共17页
The basic principle of equal base circle bevel gear (EBCBG) is illustrated simply Thetooth surface equation of EBCBG manufactured by end milling cutter with involute profile is de-rived. The tooth form error is analy... The basic principle of equal base circle bevel gear (EBCBG) is illustrated simply Thetooth surface equation of EBCBG manufactured by end milling cutter with involute profile is de-rived. The tooth form error is analyzed on the basis of spherical involute 展开更多
关键词 Equal base circle bevel gear tooth surface equation tooth form error
全文增补中
内齿圈齿形误差对行星齿轮振动特性影响研究
6
作者 杨姝 王勃龙 +2 位作者 周平 韩利强 亓昌 《重庆理工大学学报(自然科学)》 北大核心 2026年第2期45-52,共8页
为了深入研究内齿圈齿形误差对行星齿轮振动特性的影响,以某型汽车行星齿轮变速器为对象,构建齿轮箱多体动力学模型。基于实测齿形数据,通过节点移动法建立包含齿形误差的内齿圈柔性体模型,并进一步构建行星齿轮箱刚柔耦合模型。在此基... 为了深入研究内齿圈齿形误差对行星齿轮振动特性的影响,以某型汽车行星齿轮变速器为对象,构建齿轮箱多体动力学模型。基于实测齿形数据,通过节点移动法建立包含齿形误差的内齿圈柔性体模型,并进一步构建行星齿轮箱刚柔耦合模型。在此基础上,搭建行星齿轮箱振动烈度试验测试平台,通过3种不同工况下的振动烈度数据对比验证模型的准确性。随后,针对不同精度等级内齿圈的行星齿轮箱模型,在多种工况下系统研究内齿圈齿形误差对振动特性的影响。研究结果表明,高精度等级内齿圈的齿形误差对振动特性的影响较小,而低精度等级内齿圈的齿形误差对振动特性的影响明显。此外,采用全因子试验设计方法,进一步探讨内齿圈齿形误差与行星齿轮振动特性之间的相关性。结果显示,齿廓偏差和螺旋线偏差均正相关,且齿廓偏差的影响明显高于螺旋线偏差。 展开更多
关键词 行星齿轮 齿形误差 振动特性 刚柔耦合
在线阅读 下载PDF
直齿插齿刀展成磨削误差建模及误差敏感性分析
7
作者 丁国龙 李盛豪 吴斌 《组合机床与自动化加工技术》 北大核心 2026年第2期110-116,共7页
直齿插齿刀结构复杂,从大端到小端,本质上是连续变位的变位齿轮,且侧后刀面是特殊的渐开螺旋面,磨削加工会出现齿面误差。为提高直齿插齿刀展成磨削精度,建立一种基于检测方法的误差分析模型,分析展成磨削参数对齿面误差的敏感性大小。... 直齿插齿刀结构复杂,从大端到小端,本质上是连续变位的变位齿轮,且侧后刀面是特殊的渐开螺旋面,磨削加工会出现齿面误差。为提高直齿插齿刀展成磨削精度,建立一种基于检测方法的误差分析模型,分析展成磨削参数对齿面误差的敏感性大小。分析直齿插齿刀结构和展成磨削运动,计算展成运动数学关系,规划砂轮运动轨迹,准确描述出插齿刀和砂轮的位置关系,分析插齿刀检测方法原理,基于检测原理建立误差分析模型。计算砂轮截形参数误差、砂轮运动参数误差造成的齿面误差,并分析对齿面误差的影响特点,得出各参数误差敏感性大小,其中砂轮齿形角误差对齿面误差的影响最大,为提高直齿插齿刀磨削精度提供了重要理论参考。 展开更多
关键词 直齿插齿刀 精度检测原理 误差建模 误差敏感性
在线阅读 下载PDF
齿厚和齿距偏差对单齿啮合谐波齿轮回程误差的影响研究
8
作者 盛化成 陈晓霞 邢静忠 《机械传动》 北大核心 2026年第3期31-37,共7页
【目的】针对齿厚与齿距累积偏差对单齿啮合谐波齿轮回程误差的影响关联尚未明确的问题,揭示回程误差的分布规律及关键影响因素,为谐波齿轮传动精度优化提供支撑。【方法】首先,采用影像测量仪获取刚轮与柔轮齿廓离散点数据,提取齿距累... 【目的】针对齿厚与齿距累积偏差对单齿啮合谐波齿轮回程误差的影响关联尚未明确的问题,揭示回程误差的分布规律及关键影响因素,为谐波齿轮传动精度优化提供支撑。【方法】首先,采用影像测量仪获取刚轮与柔轮齿廓离散点数据,提取齿距累积偏差及齿厚偏差,为建模提供精准基础数据;其次,基于偏差数据构建单齿啮合回程误差几何模型,推导正向与反向转动时的传动误差表达式,建立偏差与回程误差的关联机制;然后,通过左、右侧啮合角误差计算单波与双波传动下的回程误差,对比不同波数的传动特性;最后,结合啮合区均衡效应,分析多波传动对输出端误差的平滑作用,明确多波传动的优势。【结果】结果表明,谐波齿轮回程误差与固定轮齿厚偏差呈负相关,与齿槽宽偏差呈正相关;相较于单波传动,双波传动的回程误差幅值降低32.2%,左、右侧啮合转角误差幅值分别降低23.1%和34.3%,曲线包络图一致性更高,传动稳定性显著提升。 展开更多
关键词 齿廓投影 单齿啮合 回程误差 齿厚偏差 齿距累积偏差
在线阅读 下载PDF
强力车齿加工齿廓倾斜偏差修正方法研究
9
作者 陈明峰 简圣前 +2 位作者 李达 莫帅 郭二廓 《制造技术与机床》 北大核心 2026年第2期53-59,共7页
强力车齿加工是一种新兴的齿轮加工工艺,具有高效率、高精度及绿色干切等显著优势。为改善强力车齿加工的齿形精度,提出了一种基于调整刀具安装参数的强力车齿加工齿廓倾斜偏差修正方法。通过建立含刀具位姿调整量的强力车齿加工齿廓倾... 强力车齿加工是一种新兴的齿轮加工工艺,具有高效率、高精度及绿色干切等显著优势。为改善强力车齿加工的齿形精度,提出了一种基于调整刀具安装参数的强力车齿加工齿廓倾斜偏差修正方法。通过建立含刀具位姿调整量的强力车齿加工齿廓倾斜偏差计算模型,分析刀具安装轴交角和刀具偏心距离对齿廓倾斜偏差的影响规律。采用二阶多项式响应面模型建立刀具位姿参数调整量与齿廓倾斜偏差的数学表达式,并利用Levenberg-Marquardt(L-M)算法精确高效反算出刀具位姿参数的修正值。车齿加工实验表明,齿形综合偏差和齿廓倾斜偏差的精度等级均得到有效提高,验证了所提修正方法的正确性。 展开更多
关键词 强力车齿 刀具位姿误差 齿廓倾斜偏差 响应面模型 误差修正
在线阅读 下载PDF
Design of Pinion Machine Tool-settings for Spiral Bevel Gears by Controlling Contact Path and Transmission Errors 被引量:12
10
作者 曹雪梅 方宗德 +1 位作者 许浩 苏进展 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2008年第2期179-186,共8页
This paper proposes a new approach to design pinion machine tool-settings for spiral bevel gears by controlling contact path and transmission errors. It is based on the satisfaction of contact condition of three given... This paper proposes a new approach to design pinion machine tool-settings for spiral bevel gears by controlling contact path and transmission errors. It is based on the satisfaction of contact condition of three given control points on the tooth surface. The three meshing points are controlled to be on a predesigned straight contact path that meets the pre-designed parabolic function of transmission errors. Designed separately, the magnitude of transmission errors and the orientation of the contact path are subjected to precise control. In addition, in order to meet the manufacturing requirements, we suggest to modify the values of blank offset, one of the pinion machine tool-settings, and redesign pinion ma- chine tool-settings to ensure that the magnitude and the geometry of transmission errors should not be influenced apart from minor effects on the predesigned straight contact path. The proposed approach together with its ideas has been proven by a numerical example and the manufacturing practice of a pair of spiral bevel gears. 展开更多
关键词 spiral bevel gear contact path transmission error blank offset tooth contact analysis
在线阅读 下载PDF
高阶分段拓扑修形面齿轮副啮合性能研究
11
作者 何沁怡 郭辉 +4 位作者 阮宇航 周镇宇 刘李 侯智慧 梅向前 《机械强度》 北大核心 2026年第1期11-19,共9页
【目的】为提高面齿轮传动的承载性能并降低对安装错位的敏感性,提出一种基于预设接触路径的高阶分段拓扑修形方法。【方法】首先,分别设计了沿小齿轮预设接触路径与瞬时接触线方向上的2阶、4阶分段修形函数,根据曲面叠加方法建立了修... 【目的】为提高面齿轮传动的承载性能并降低对安装错位的敏感性,提出一种基于预设接触路径的高阶分段拓扑修形方法。【方法】首先,分别设计了沿小齿轮预设接触路径与瞬时接触线方向上的2阶、4阶分段修形函数,根据曲面叠加方法建立了修形后齿面方程。然后,推导了考虑安装误差的齿面接触分析方程,研究了在不同安装误差条件下预设接触路径角度、修形长度、修形曲线阶次及最大修形量等参数对面齿轮副接触特性的影响规律。最后,采用有限元法对比分析了不同修形函数和修形量条件下面齿轮副的承载接触特性。【结果】计算结果表明,相较于2阶修形,采用4阶修形方法的齿面接触应力以及承载传动误差幅值均有所降低,且接触印痕从面齿轮内径齿根向外径齿顶延伸。高阶分段修形方法能够降低面齿轮副对安装误差的敏感度,优化齿面载荷分布并提升啮合性能。 展开更多
关键词 面齿轮副 拓扑修形 承载接触分析 啮合性能 安装误差
在线阅读 下载PDF
基于四轴运动简化模型的成形磨齿齿向修形
12
作者 张静 张浩 《制造技术与机床》 北大核心 2026年第2期45-52,共8页
成形磨齿常用附加径向运动、附加转角运动和附加径向加转角运动等齿向修形方法,齿面扭曲误差大,而五轴附加运动方法优化迭代过程复杂,稳定性差。针对这些问题,提出一种四轴附加运动简化模型实现齿向鼓形修形优化。模型在传统方法上增加... 成形磨齿常用附加径向运动、附加转角运动和附加径向加转角运动等齿向修形方法,齿面扭曲误差大,而五轴附加运动方法优化迭代过程复杂,稳定性差。针对这些问题,提出一种四轴附加运动简化模型实现齿向鼓形修形优化。模型在传统方法上增加了附加切向运动(Y轴)构成X、Y、Z和C四轴附加运动方法,以有效消减双齿面磨削扭曲误差,同时采用3阶多项式描述各联动轴运动轨迹,低阶多项式模型可大幅降低矩阵求解计算量并提升迭代稳定性。在迭代优化过程进一步引入了改进Levenberg-Marquardt(L-M)算法克服矩阵奇异性无解问题,稳定附加运动求解计算。理论分析与实际加工实验表明,所提方法可有效消减斜齿轮齿向修形时出现的齿面扭曲误差,保证磨齿修形精度。 展开更多
关键词 成形磨削 齿向修形 附加多轴运动 齿面误差 改进L-M算法
在线阅读 下载PDF
基于预置传动误差的纯滚接触锥齿轮齿面设计与分析
13
作者 王旺旺 谭儒龙 +1 位作者 张卫青 郭晓东 《机械传动》 北大核心 2026年第1期112-118,共7页
【目的】针对纯滚接触锥齿轮在安装误差作用下易产生角速度突变、诱发振动和噪声的问题,提出一种对安装误差低敏感的齿面设计方法。【方法】首先,基于安装误差对角速度的影响,将传动误差曲线预置为抛物线形;其次,利用预置的传动误差曲... 【目的】针对纯滚接触锥齿轮在安装误差作用下易产生角速度突变、诱发振动和噪声的问题,提出一种对安装误差低敏感的齿面设计方法。【方法】首先,基于安装误差对角速度的影响,将传动误差曲线预置为抛物线形;其次,利用预置的传动误差曲线对小轮理论齿面进行修形,建立了小轮目标齿面的数学模型;最后,构建了修形后的锥齿轮三维实体模型,并进行了齿面接触分析。【结果】结果表明,实际导出的传动误差曲线与预置曲线基本一致,验证了齿面修形的有效性;优化后的齿面实际啮入、啮出点偏离齿面边缘,整体接触区向齿面中部靠拢,可有效避免边缘接触及应力集中。 展开更多
关键词 纯滚接触锥齿轮 传动误差 目标齿面 接触迹线 齿面接触分析
在线阅读 下载PDF
基于啮合模拟的圆弧端齿配合量规检测方法研究
14
作者 刘云朋 《现代制造技术与装备》 2026年第1期79-81,共3页
针对圆弧端齿配合量规检测需求,提出了一种基于啮合模拟的数字化检测方法:建立高保真度的齿轮与量规虚拟啮合数字孪生模型,对啮合过程进行显式动力学仿真;构建能够从仿真结果中精确提取接触点迹的追踪算法,并基于灵敏度矩阵和正则化理... 针对圆弧端齿配合量规检测需求,提出了一种基于啮合模拟的数字化检测方法:建立高保真度的齿轮与量规虚拟啮合数字孪生模型,对啮合过程进行显式动力学仿真;构建能够从仿真结果中精确提取接触点迹的追踪算法,并基于灵敏度矩阵和正则化理论建立关键几何误差参数的逆向辨识模型。将预设误差模型的仿真辨识结果与物理样件的实测结果进行对比,结果表明仿真与实测接触点迹具有良好的一致性,说明采用上述方法能够实现对齿轮主要制造误差的有效解耦与定量评定。 展开更多
关键词 圆弧端齿 啮合模拟 量规检测 误差辨识
在线阅读 下载PDF
Modification Design Method for an Enveloping Hourglass Worm Gear with Consideration of Machining and Misalignment Errors 被引量:16
15
作者 DENG Xingqiao WANG Jinge HORSTEMEYER Mark F 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2013年第5期948-956,共9页
The influences of machining and misalignment errors play a very critical role in the performance of the anti-backlash double-roller enveloping hourglass worm gear(ADEHWG).However,a corresponding efficient method for e... The influences of machining and misalignment errors play a very critical role in the performance of the anti-backlash double-roller enveloping hourglass worm gear(ADEHWG).However,a corresponding efficient method for eliminating or reducing these errors on the tooth profile of the ADEHWG is seldom reported.The gear engagement equation and tooth profile equation for considering six different errors that could arise from the machining and gear misalignment are derived from the theories of differential geometry and gear meshing.Also,the tooth contact analysis(TCA) is used to systematically investigate the influence of the machining and misalignment errors on the contact curves and the tooth profile by means of numerical analysis and three-dimensional solid modeling.The research results show that vertical angular misalignment of the worm wheel(Δβ) has the strongest influences while the tooth angle error(Δα) has the weakest influences on the contact curves and the tooth profile.A novel efficient approach is proposed and used to minimize the effect of the errors in manufacturing by changing the radius of the grinding wheel and the approaching point of contact.The results from the TCA and the experiment demonstrate that this tooth profile design modification method can indeed reduce the machining and misalignment errors.This modification design method is helpful in understanding the manufacturing technology of the ADEHWG. 展开更多
关键词 worm gears tooth contact analysis machining and misalignment errors tooth profile errors modification method
在线阅读 下载PDF
Pinion Tooth Surface Generation Strategy of Spiral Bevel Gears 被引量:9
16
作者 LIU Guanglei FAN Hongwei 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2012年第4期753-759,共7页
Aviation spiral bevel gears are often generated by spiral generated modified(SGM) roll method.In this style,pinion tooth surface modified generation strategy has an important influence on the meshing and contact per... Aviation spiral bevel gears are often generated by spiral generated modified(SGM) roll method.In this style,pinion tooth surface modified generation strategy has an important influence on the meshing and contact performances.For the optimal contact pattern and transmission error function,local synthesis is applied to obtain the machine-tool settings of pinion.For digitized machine,four tooth surface generation styles of pinion are proposed.For every style,tooth contact analysis(TCA) is applied to obtain contact pattern and transmission error function.For the difference between TCA transmission error function and design objective curve,the degree of symmetry and agreement are defined and the corresponding sub-objective functions are established.Linear weighted combination method is applied to get an equivalent objective function to evaluate the shape of transmission error function.The computer programs for the process above are developed to analyze the meshing performances of the four pinion tooth surface generation styles for a pair of aviation spiral bevel gears with 38/43 teeth numbers.The four analytical results are compared with each other and show that the incomplete modified roll is optimal for this gear pair.This study is an expansion to generation strategy of spiral bevel gears,and offers new alternatives to computer numerical control(CNC) manufacture of spiral bevel gears. 展开更多
关键词 spiral bevel gears tooth surface generation strategy local synthesis tooth contact analysis transmission error optimization
在线阅读 下载PDF
螺旋锥齿轮热致齿面加工误差建模及实验验证
17
作者 景秀并 王徉扬 +3 位作者 邢侃 李正霖 宋晓菲 王福军 《天津大学学报(自然科学与工程技术版)》 北大核心 2025年第10期1095-1106,共12页
为了研究五轴数控铣齿机热误差对螺旋锥齿轮齿面误差的影响,基于传统铣齿机的加工原理与啮合理论,构建展成法铣齿加工运动模型和螺旋锥齿轮齿面方程,并利用旋转投影法推得理论齿面的离散点坐标.通过构建五轴数控铣齿机与传统铣齿机的运... 为了研究五轴数控铣齿机热误差对螺旋锥齿轮齿面误差的影响,基于传统铣齿机的加工原理与啮合理论,构建展成法铣齿加工运动模型和螺旋锥齿轮齿面方程,并利用旋转投影法推得理论齿面的离散点坐标.通过构建五轴数控铣齿机与传统铣齿机的运动等效关系,获得齿面离散点对应的各运动轴坐标.基于多体理论和热特性实验数据,建立五轴数控铣齿机的空间热误差模型,求得机床末端刀尖点-工件的相对误差,进而构建机床热误差与螺旋锥齿轮齿面误差的映射关系,获得齿面预测误差.现场试切实验表明,预测误差与实测值之间的均方根误差为2.57μm,齿面偏差的整体变化趋势基本一致,所提出的方法能够预测机床热误差影响下的螺旋锥齿轮齿面误差. 展开更多
关键词 螺旋锥齿轮 啮合原理 齿面误差方程 多体理论
在线阅读 下载PDF
大平面砂轮磨削对角修形斜齿轮原理与分析
18
作者 尹逊民 贾海涛 +1 位作者 苏进展 常乐浩 《机械科学与技术》 北大核心 2025年第2期271-278,共8页
为了减小作为振动激励的承载传动误差波动量,本文提出斜齿轮对角修形优化设计及大平面砂轮的磨削原理。由渐开线齿面方程和对角修形定义,分别计算齿根和齿顶的修形起始线;根据修形曲线的阶次和最大修形量,确定对角修形曲面,再与标准螺... 为了减小作为振动激励的承载传动误差波动量,本文提出斜齿轮对角修形优化设计及大平面砂轮的磨削原理。由渐开线齿面方程和对角修形定义,分别计算齿根和齿顶的修形起始线;根据修形曲线的阶次和最大修形量,确定对角修形曲面,再与标准螺旋面在法向方向上进行叠加,获得修形齿面。借助齿面接触分析(Tooth contact analysis, TCA)和齿面承载接触分析(Loaded tooth contact analysis, LTCA)方法,以承载传动误差波动量最小为目标函数,采用遗传算法优化获得相应的对角修形参数。计算大平面砂轮的最小直径,基于假想产形斜齿条概念,推导大平面砂轮磨削对角修形的齿面方程。算例分析结果表明:通过修形优化后,不同修形曲线的阶次均可降低承载传动误差波动量,阶次越高,效果越明显,最高达82.58%;大平面砂轮磨削时会产生齿面偏差,但偏差均控制在2μm以内,达到较高的齿面精度,且该方法易于数控编程实现。 展开更多
关键词 对角修形 大平面砂轮 磨削 承载传动误差 齿面偏差
在线阅读 下载PDF
考虑误差因素的渐开线少齿差行星传动优化设计
19
作者 何卫东 张喆 张迎辉 《大连交通大学学报》 2025年第6期58-67,共10页
针对目前渐开线少齿差行星齿轮副在几何设计时未考虑误差因素的问题,以理论齿侧间隙计算为基础,开展综合偏心量、相邻齿距差与实际齿侧间隙的关联性研究,明确了误差因素影响下实际中心距、啮合角、变位系数及实际齿侧间隙的关系,进而提... 针对目前渐开线少齿差行星齿轮副在几何设计时未考虑误差因素的问题,以理论齿侧间隙计算为基础,开展综合偏心量、相邻齿距差与实际齿侧间隙的关联性研究,明确了误差因素影响下实际中心距、啮合角、变位系数及实际齿侧间隙的关系,进而提出以误差影响下的最小啮合角为优化目标、变位系数为优化变量的齿轮副设计方法,并通过对比试验验证遗传算法优化设计方式的可行性与优越性。在不考虑误差的理想状态下,正常工作的少齿差齿轮副中,啮合齿对前后非工作齿对的齿侧间隙极小,其间隙与齿轮副的设计参数及与啮合齿对的距离相关,啮合角越小齿侧间隙越小。综合偏心量和相邻齿距差的影响,实际中心距的上下波动对实际齿侧间隙的影响十分显著。在精度等级不变的情况下,综合偏心量为公差范围内的定值,将其影响等效到中心距后,建立实际中心距的波动方程,进而得到实际中心距与实际齿侧间隙的数学模型。通过分析实际齿侧间隙与相邻齿距差的关系,得到避免齿轮副啮合干涉的最小中心距。基于遗传算法建立以最小啮合角为优化目标、变位系数为优化变量、最小中心距为约束条件之一的优化设计模型。设计搭载优化前后齿轮副的星轮减速器,开展空载传动误差试验,验证了所提遗传算法的可行性和优越性,对少齿差行星机构的精密设计与制造具有参考及指导意义。 展开更多
关键词 少齿差 误差因素 齿侧间隙 优化设计
在线阅读 下载PDF
考虑齿向修形的非圆齿轮几何接触特性分析
20
作者 刘永平 李泽宇 +2 位作者 魏永峭 李大伟 董长斌 《机械设计》 北大核心 2025年第5期89-97,共9页
为了解决非圆齿轮的边缘接触问题,对非圆齿轮齿面进行了修形处理并对其齿面接触特性展开了研究。提出并建立了非圆齿轮齿面数学模型,通过齿向修形原理引入修形矩阵,建立圆弧鼓形齿面方程,建立含有安装误差的坐标系,经由坐标变换使主动... 为了解决非圆齿轮的边缘接触问题,对非圆齿轮齿面进行了修形处理并对其齿面接触特性展开了研究。提出并建立了非圆齿轮齿面数学模型,通过齿向修形原理引入修形矩阵,建立圆弧鼓形齿面方程,建立含有安装误差的坐标系,经由坐标变换使主动轮鼓形齿与未修形从动轮渐开线齿在该坐标系下实现正确啮合,进而得到了修形齿轮副的齿面接触分析(TCA)数学模型,分析了不同参数对齿轮副的几何接触特性的影响。结果表明:中心距误差仅对齿轮重合度影响较小,轴平行度误差对其接触轨迹及接触区域均有较大影响。 展开更多
关键词 非圆齿轮 齿向修形 齿轮接触分析 安装误差 接触迹线
原文传递
上一页 1 2 30 下一页 到第
使用帮助 返回顶部