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1.
有误差的螺旋锥齿轮传动接触分析   总被引:13,自引:2,他引:11  
以多体系统误差建模理论和齿轮啮合原理为基础,提出含有机床运动几何误差以及齿轮副安装误差的螺旋锥齿轮齿面接触分析(Error tooth contact analysis, ETCA)方法。以SGM法(大轮展成法加工,小轮变形法加工)加工的弧齿锥齿轮为例,通过ETCA分析,得到机床运动误差和安装误差对螺旋锥齿轮齿面加工质量影响的定量关系,对ETCA和TCA的结果进行对比分析,结果表明机床运动误差和安装误差对螺旋锥齿轮的齿面接触质量有较大的影响,为了通过齿面接触分析达到更准确的反调加工参数的目的,采用ETCA的分析结果指导加工参数反调更为合理。  相似文献   

2.
Although a great deal of research has been dedicated to the synthesis of spiral bevel gears, little related to reverse engineering can be found. An approach is proposed to reverse the machine-tool settings of the pinion of a spiral bevel gear drive on the basis of the blank and tooth surface data obtained by a coordinate measuring machine(CMM). Real tooth contact analysis(RTCA) is performed to preliminary ascertain the contact pattern, the motion curve, as well as the position of the mean contact point. And then the tangent to the contact path and the motion curve are interpolated in the sense of the least square method to extract the initial values of the bias angle and the higher order coefficients(HOC) in modified roll motion. A trial tooth surface is generated by machine-tool settings derived from the local synthesis relating to the initial meshing performances and modified roll motion. An optimization objective is formed which equals the tooth surface deviation between the real tooth surface and the trial tooth surface. The design variables are the parameters describing the meshing performances at the mean contact point in addition to the HOC. When the objective is optimized within an arbitrarily given convergence tolerance, the machine-tool settings together with the HOC are obtained. The proposed approach is verified by a spiral bevel pinion used in the accessory gear box of an aviation engine. The trial tooth surfaces approach to the real tooth surface on the whole in the example. The results show that the convergent tooth surface deviation for the concave side on the average is less than 0.5 μm, and is less than 1.3 μm for the convex side. The biggest tooth surface deviation is 6.7 μm which is located at the corner of the grid on the convex side. Those nodes with relative bigger tooth surface deviations are all located at the boundary of the grid. An approach is proposed to figure out the machine-tool settings of a spiral bevel pinion by way of reverse engineering without having known the theoretical  相似文献   

3.
弧齿锥齿轮的齿面主动设计及试验验证   总被引:8,自引:0,他引:8  
齿面印痕和传动误差对齿轮传动的性能起着决定作用,根据齿面印痕的位置、方向及传动误差幅值的要求,在齿面上设计三个啮合点,通过对这三个啮合点的控制,达到对齿面啮合质量的全程控制。在此基础上,为了满足不同的加工要求,又提出按照给定的垂直轮位的值对齿面进行再设计,保证传动误差的幅值不变且接触迹线仅有较小的改变,为弧齿锥齿轮副设计提供了新的方法和途径。最后在磨齿机上加工了一对齿轮,通过印痕检测验证了本文设计方法的正确性。  相似文献   

4.
为提高弧齿锥齿轮齿面修正的效率,提出了一种仅修正小轮齿面偏差的等效修正方法。通过比较实测齿面与设计齿面Ease off之间的失配值,计算出小轮齿面等效偏差。通过建立齿面等效偏差与加工参数之间的修正数学模型,反求出满足理论失配要求的小轮加工参数。实验结果表明:通过对小轮齿面偏差进行等效修正,小轮实际齿面与大轮实际齿面之间的失配值与设计值误差在5μm以内,传动误差幅值与理论值相差0.5″,实际齿面啮合结果满足理论设计要求。  相似文献   

5.
马伟  邓效忠  曹雪梅  张华 《中国机械工程》2004,15(11):951-953,977
研究了高齿弧齿锥齿轮和普通弧齿锥齿轮的加载接触过程,对比了二者在载荷作用下的齿面载荷分布、齿面加载接触印痕和承载传动误差,计算了齿根弯曲应力。在台架试验台上测定了高齿弧齿锥齿轮和普通弧齿锥齿轮的噪声和振动量,实验证明高齿弧齿锥齿轮齿面载荷分布合理,弯曲应力较小,具有较低的噪声和较好的动态特性。  相似文献   

6.
采用齿轮啮合仿真和承载啮合仿真技术,研究了重合度达到2.0的弧齿锥齿轮的齿距误差对啮合性能的影响,针对航空弧齿锥齿轮允许的齿距误差,研究了误差量值对齿轮实际重合度,传动误差、齿间载荷分配和弯曲强度的影响。结果表明,相对齿距误差将降低齿轮的实际重合度,使单齿承受的载荷量增加,边缘接触加剧,弯曲强度不过,在容许范围内的齿距误差将不会严重影响重合度达到2.0的齿轮传动的性能。  相似文献   

7.
弧齿锥齿轮小轮加工参数的分析与设计   总被引:4,自引:2,他引:4  
在局部综合法的基础上提出了将小轮加工参数——垂直轮位作为一个自由设计变量,并控制其变化范围在机床调整范围内,由此计算其他调整参数。为了控制弧齿锥齿轮啮合的传动误差的幅值和齿面接触迹线为直线,结合齿接触分析方法采用改进的遗传算法对垂直轮位、传动比函数的一阶导数、小轮加工的二阶、三阶滚比等可控参数进行优化,从而保证小轮齿面与大轮齿面啮合时传动误差的幅值、对称度、接触迹线的直线度及方向满足预定的设计要求。  相似文献   

8.
一种弧齿锥齿轮安装误差变动范围的确定方法   总被引:4,自引:0,他引:4  
提出一种接触印痕位置参数分析法,用于确定弧齿锥齿轮安装误差的可变动范围。根据设计要求的啮合性能,采用局部综合法,设计弧齿锥齿轮加工参数,得到弧齿锥齿轮副齿面。在齿面参考点处的压入深度为0.006 35 mm的条件下,计算小轮驱动力矩。在此力矩作用下,进行安装误差状态下的轮齿加载接触分析(Loaded tooth contact analysis,LTCA),获得描述承载齿面接触印痕的位置参数。以接触印痕边界点到齿面边界的距离为设计目标,分别以不同类型的单因素安装误差为设计变量,采用优化设计方法确定接触印痕在齿面有效边界内变动时,对应的安装误差的变动范围。以某航空发动机附件传动系统中的弧齿锥齿轮为对象,依据上述方法,确定出不同类型安装误差的可变动范围,验证上述方法的有效性。所提出的方法为合理确定弧齿锥齿轮副安装误差的变动范围提供一种参考。  相似文献   

9.
In this study the influence of tooth modifications induced by machine tool setting and head-cutter profile variations on tooth contact characteristics in face-hobbed spiral bevel gears is investigated. The concept of face-hobbed spiral bevel gear generation by an imaginary generating crown gear is applied. The modifications of tooth surfaces are introduced into the teeth of both members. The lengthwise crowning of teeth is achieved by applying a slightly bigger radius of lengthwise tooth flank curvature of the crown gear generating the concave side of pinion/gear tooth-surfaces, and by the variation of machine tool settings in the generation of pinion/gear teeth. The ease-off in the tooth height direction of meshing tooth surfaces is achieved by applying a head-cutter whose profile consists of two circular arcs, instead of a straight-line. The method of tooth contact analysis applied determines the path of contact, the potential contact lines, the separations along these lines, and the transmission errors. A computer program implements the method. By using this program the influence of the variation of machine tool settings and of head-cutter geometry on tooth contact is investigated and discussed.  相似文献   

10.
To obtain the change tendency of output angular velocity and tangential contact force of a gear when the pinion under the step input during meshing of a new type of spiral bevel gear, which is a logarithmic spiral bevel gear, the tooth flank equation of logarithmic spiral bevel gear is deduced based on the formation mechanism of the tooth flank formation. A three-dimensional model of a pair of logarithmic spiral bevel gears whose number of teeth was 37:9, with modules being 4.5 mm, normal pressure angle being 20 degrees and spiral angle being 35 degrees were built and assembled. Based on Hertz elastic contact theory, the calculation formulas and parameters sets of contact force for conventional spiral bevel gear meshing simulation and logarithmic spiral bevel gear meshing simulation were done. Consider the dynamic simulation about meshing angular velocity and tangential contact force for conventional spiral bevel gear meshing and logarithmic spiral bevel gear meshing, respectively. Finally, by analyzing and comparing the simulation data, the results show that under the same input conditions, the fluctuation of the gear angular velocity and tangential contact force of logarithmic spiral bevel gear meshing are smaller than the conventional spiral bevel gear. That is, the transmission stationary of logarithmic spiral bevel gear meshing is superior to conventional spiral bevel gear.  相似文献   

11.
弧齿锥齿轮的齿面主动设计   总被引:16,自引:0,他引:16  
齿面印痕和传动误差对齿轮传动的性能起着决定作用,针对齿面印痕和传动误差,提出弧齿锥齿轮点啮合齿面主动设计的方法。该方法突破了传统齿轮设计的局限性,采用“局部共轭原理”和“局部综合法”,并依据弧齿锥齿轮的加工原理,使齿轮设计人员能够按照要求的传动性能来设计齿面的形状,并可在摇台结构的铣齿机进行加工。齿面主动设计能保证齿面在整个啮合过程中满足预先设计的传动误差和齿面接触路径的要求,从而达到对齿面啮合质量的全程控制,它为弧齿锥齿轮副设计提供新的方法和途径,这对于高速和重载齿轮以及有特殊要求的齿轮的设计具有十分重要的意义。  相似文献   

12.
螺旋锥齿轮点接触齿面生成法   总被引:2,自引:0,他引:2  
提出一种能直接生成点接触,满足啮合配对要求的齿面方法,该方法利用齿面接触分析设计齿面,为齿轮NC加工运动计算提供新的途径。  相似文献   

13.
为了制造出高精度硬齿面斜齿面齿轮和获得抛物线传动误差并改善啮合性能,对采用碟形砂轮加工双向修形的斜齿面齿轮的磨齿方法进行了研究。设计了渐开线失配的碟形砂轮齿面,分析了碟形砂轮磨削斜齿面齿轮的展成原理,根据展成原理和用渐开线失配的碟形砂轮并改变砂轮的运动,推导出双向修形斜齿面齿轮的齿面方程。给出了双向修形斜齿面齿轮的齿面计算和接触分析实例,结果表明:理论齿面的最大齿面误差为5.98×10-4μm,采用碟形砂轮加工双向修形斜齿面齿轮的磨齿方法是可行的,获得了斜齿面齿轮抛物线传动误差,避免了边缘接触并改善了斜齿面齿轮的啮合性能。  相似文献   

14.
A method for the determination of optimal tooth modifications in spiral bevel gears based on improved load distribution and reduced maximum tooth contact pressure and transmission errors is presented. The modifications are introduced into the pinion tooth-surface by using a head-cutter with bicircular profile and with optimal diameter. In the optimization of tool parameters the influence of relative position errors of the mating gears is included.By using the computer program developed for load distribution calculation, the influence of head-cutter parameters and relative position errors of the mating gears on tooth contact and transmission errors is investigated. Based on the results obtained, the radii and the position of the circular tool profile arcs and the cutter diameter for pinion teeth finishing were optimized. By applying the optimal tool parameters, the maximum tooth contact pressure is reduced by 45% and the maximum angular position error of the driven gear by 60%, in regard to the spiral bevel gear pair with a pinion manufactured by a cutter of straight-sided profile and of diameter determined by the commonly used methods.  相似文献   

15.
为了改善准双曲面齿轮动态性能、减小齿面磨损提出齿面动态抗磨修形设计与分析方法。小轮修形齿面表示为共轭齿面与法向Ease-off曲面两个矢量的和,Ease-off曲面通过预置抛物线修形参数及几何传动误差参数表达。提出考虑磨损深度影响的齿面承载接触分析(Tooth contact analysis with wear,WLTCA)数值方法,该方法通过承载接触分析(Tooth contactanalysis,LTCA)方法获得啮合刚度及齿面静载荷,在此基础上根据动力学分析获得齿面动载荷,结合Archard磨损公式进一步获得齿面磨损量,将齿形更新时的同时啮合齿对的磨损量叠加到齿对的初始间隙,为磨损后的LTCA计算提供准确的参数,重复以上循环可得到齿形更新后齿面上任一点的磨损深度及次数。以无磨损时法向相对振动加速度均方根最小、齿面磨损量最小进行修形优化获得最优Ease-off曲面;分析齿面磨损与系统动态响应之间的耦合作用。结果表明最优Ease-off齿面主要通过齿廓修形减少了磨损量,有效改善了系统动态响应。该方法充分考虑了齿面修形、磨损、动态响应的耦合性且计算效率较高,为高性能准双曲面齿轮齿面抗磨、减振设计与分析提供理论参考。  相似文献   

16.
为了提升驱动桥准双曲面齿轮传动的啮合性能,针对准双曲面齿轮刀倾半展成法(HFT)提出一种Ease-off拓扑修正方法。在建立齿面共轭啮合数学模型的基础上,推导出小轮基准齿面方程,通过计算小轮实际齿面与基准齿面之间的偏差,构建出Ease-off拓扑。借助二阶多项表达式对Ease-off拓扑分解,计算出齿面失配系数,通过调整齿面失配系数构建出修正Ease-off拓扑。通过比较当前Ease-off拓扑与修正Ease-off拓扑,消除小轮当前齿面与修正齿面之间的偏差,反求出小轮加工参数。最后以一对准双曲面齿轮为例进行齿面拓扑修形与磨齿加工,实际齿面印痕与仿真结果一致,验证了齿面拓扑修形方法的有效性。齿面加载接触分析结果表明,修形后齿面接触应力分布得到了改善,实际载荷下齿面接触重合度增加,从而验证了修形方案的合理性。  相似文献   

17.
具有最佳加载接触性能的弧齿锥齿轮主动设计研究   总被引:2,自引:0,他引:2  
基于局部综合理论的弧齿锥齿轮齿面接触分析(TCA )和接触性能预控技术可保证弧齿锥齿轮在无载时具有较理想的接触区域和传动误差 ,但无法保证其加载接触性能。本文在柔性多体运动学基础上 ,建立了两弹性共轭齿面运动基本方程。将啮合点弹性变形分解为支承变形、轮体变形和接触变形 ,获得了变形前后齿面几何量的变化规律以及两弹性点共轭齿面间的接触条件。提出了一种在初始设计阶段就可保证弧齿锥齿轮具有预期加载接触性能的主动设计方法 ,并将其用于某航空发动机中央传动弧齿锥齿轮的齿面综合  相似文献   

18.
螺旋锥齿轮齿面扫描式测量法及其应用研究   总被引:1,自引:0,他引:1  
螺旋锥齿轮的实际齿面形状是影响其动力学性能的一个非常重要的因素。本文介绍了采用虚拟共轭基准面的螺旋锥齿轮齿面的扫描式测量、数据处理及应用方法,即大齿轮的基准面采用的是由机床设定参数计算出的理论齿面,而小齿轮的基准面采用的是与大齿轮共轭的假想小齿轮齿面。由于采用了二维测头进行齿面测量,有效地避免了测头与齿面间摩擦力的影响,既能保持高精度,又能进行快速测量。同时,该种测量采用连续扫描的方法,信息量大、速度快,适合于大批量生产中的螺旋锥齿轮的齿面质量管理与控制。由于扫描式测量采用了虚拟共轭基准齿面,所以从测量数据本身就可以判断齿面的接触斑点位置与形状,因而可以直观、有效地对齿面质量进行管理与控制。  相似文献   

19.
弧齿锥齿轮接触特性的概率分析   总被引:1,自引:0,他引:1  
弧齿锥齿轮齿面接触特性受到传动系统中许多随机因素的影响,概率分析可对齿面接触中的随机特性进行量化描述。本文针对某航空发动机弧齿锥齿轮传动系统,将传递功率、转速、转子不平衡量及支承刚度等作为基本随机变量,通过对系统进行动态概率计算,获得了齿轮安装基点变形的统计规律。将概率分析引入齿面接触分析技术中,研究了在齿轮安装基点随机变化过程中齿面接触域和传动误差的概率特性,计算了齿面稳定接触的可靠性。  相似文献   

20.
为了提高面齿轮的磨齿效率,采用不做齿向进给运动的大半径盘形砂轮磨齿得到的面齿轮具有近似齿面,然而该近似面齿轮与双向修形小轮的啮合性能不够理想.因此进一步通过啮合理论重新构造小轮齿面,并根据预设的啮合性能对该新构造的小轮齿面进行拓扑修形设计,以控制近似面齿轮传动的啮合性能.小轮的拓扑修形齿面采用盘形砂轮局部点共轭法磨齿加工,建立了小轮拓扑修形齿面与加工参数之间的线性方程.用实例说明了所提方法的应用,齿面接触分析结果与给定的啮合性能基本一致.  相似文献   

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