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Tooth surface geometry optimization of spiral bevel and hypoid gears generated by duplex helical method with circular profile blade 被引量:12
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作者 张宇 严宏志 +1 位作者 曾韬 曾亦愚 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第3期544-554,共11页
In order to effectively improve meshing performance of spiral bevel and hypoid gears generated by the duplex helical method, the effects of straight lined and circular cutting edges profile on meshing and contact of s... In order to effectively improve meshing performance of spiral bevel and hypoid gears generated by the duplex helical method, the effects of straight lined and circular cutting edges profile on meshing and contact of spiral bevel and hypoid gears were investigated analytically. Firstly, a mathematical model of spiral bevel and hypoid gears with circular blade profile was established according to the cutting characteristics of the duplex helical method. Based on a hypoid gear drive, the tooth bearings and the functions of transmission errors of four design cases were analyzed respectively by the use of the tooth contact analysis(TCA), and the contact stresses of the four design cases were analyzed and compared using simulation software. Finally, the curvature radius of the circular profile blade was optimized. The results show that the contact stresses are availably reduced, and the areas of edge contact and severe contact stresses can be avoided by selecting appropriate circular blade profile. In addition, the convex and concave sides are separately modified by the use of different curvature radii of inside and outside blades, which can increase the flexibility of the duplex helical method. 展开更多
关键词 circular blade profile duplex helical method spiral bevel and hypoid gears modification contact stress
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Tooth surface error correction of hypoid gears machined by duplex helical method 被引量:7
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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
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Effects of parameters on rotational fine blanking of helical gears 被引量:3
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作者 杨珊 宋燕利 张梅 《Journal of Central South University》 SCIE EI CAS 2014年第1期50-57,共8页
The application of fine blanking to the manufacturing of helical gears directly from a strip has been restricted due to the traditional linear cutting stroke of the punch and die.In this work,rotational fine blanking ... The application of fine blanking to the manufacturing of helical gears directly from a strip has been restricted due to the traditional linear cutting stroke of the punch and die.In this work,rotational fine blanking which combined the linear and rotational motion of punch and counterpunch was applied for the forming of helical gears.A three-dimensional(3D) rigid-plastic finite element model was developed on the DEFORM-3D platform.By finite element simulation and analysis,the influences of key parameters on the punch load and cut surface were investigated.It is shown that: 1) with increasing the counterforce or helical angle,the punch load and the depth of die roll increase; 2) with increasing blank holder force,the punch load increases while the depth of die roll decreases; 3) V-ring indenter facilitates an improvement in the quality.The results of this research reveal the deformation mechanism of rotational fine blanking of helical gears,and provide valuable guidelines for further experimental studies. 展开更多
关键词 rotational fine blanking helical gear finite element simulation
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A distributed dynamic mesh model of a helical gear pair with tooth profile errors 被引量:8
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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
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Finite element analysis and simulation for cold precision forging of a helical gear 被引量:13
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作者 冯玮 华林 韩星会 《Journal of Central South University》 SCIE EI CAS 2012年第12期3369-3377,共9页
To investigate the effects of billet geometry on the cold precision forging process of a helical gear, six different billet geometries were designed utilizing the relief-hole principle. And the influences of the bille... To investigate the effects of billet geometry on the cold precision forging process of a helical gear, six different billet geometries were designed utilizing the relief-hole principle. And the influences of the billet geometry on the forming load and the deformation uniformity were analyzed by three-dimensional (3D) finite element method (FEM) under the commercial software DEFORM 3D. The billet geometry was optimized to meet lower forming load and better deformation uniformity requirement. Deformation mechanism was studied through the distribution of flow velocity field and effective strain field. The forging experiments of the helical gear were successfully performed using lead material as a model material under the same process conditions used in the FE simulations. The results show that the forming load decreases as the diameter of relief-hole do increases, but the effect of do on the deformation uniformity is very complicated. The forming load is lower and the deformation is more uniform when do is 10 mm. 展开更多
关键词 helical gear cold precision forging finite element simulation relief-hole principle
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Analysis of axial force of double circular arc helical gear hydraulic pump and design of its balancing device 被引量:2
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作者 WU Yi-fei GE Pei-qi BI Wen-bo 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第2期418-428,共11页
In view of the axial force produced in the working process of double arc helical gear hydraulic pump,the theory of differential equation of curve and curved surface was utilized so that the calculation formula of axia... In view of the axial force produced in the working process of double arc helical gear hydraulic pump,the theory of differential equation of curve and curved surface was utilized so that the calculation formula of axial force was obtained and the relationship between the axial force and structure parameters of gears was clarified.In order to balance the axial force,the pressure oil in the high pressure area was introduced into the end face of the plunger to press the plunger against the gear shaft,and the hydrostatic bearing whose type is plunger at the end of the shaft was designed.In order to verify the balance effect of axial force,the leakage owing to end clearance and volume efficiency of gear hydraulic pump before and after the balancing process was analyzed.This paper provides a new analysis idea and balance scheme for the axial force produced in the working process of the double arc helical gear hydraulic pump,which can reduce the leakage owing to end clearance caused by the axial force and improve the volume efficiency of the gear hydraulic pump. 展开更多
关键词 double arc helical gear gear hydraulic pump axial force hydrostatic bearing
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Optimization of mesh characteristics of gear pair considering influence of assembly errors
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作者 ZHAO Xiao-jian MA Hui +5 位作者 MA Ze-yu LIU Jia-qi CAO Peng WU Yu-ping DING Xiang-fu ZHAO Tian-yu 《Journal of Central South University》 2025年第4期1400-1430,共31页
Gear assembly errors can lead to the increase of vibration and noise of the system,which affect the stability of system.The influence can be compensated by tooth modification.Firstly,an improved three-dimensional load... Gear assembly errors can lead to the increase of vibration and noise of the system,which affect the stability of system.The influence can be compensated by tooth modification.Firstly,an improved three-dimensional loaded tooth contact analysis(3D-LTCA)method which can consider tooth modification and coupling assembly errors is proposed,and mesh stiffness calculated by proposed method is verified by MASTA software.Secondly,based on neural network,the surrogate model(SM)that maps the relationship between modification parameters and mesh mechanical parameters is established,and its accuracy is verified.Finally,SM is introduced to establish an optimization model with the target of minimizing mesh stiffness variations and obtaining more even load distribution on mesh surface.The results show that even considering training time,the efficiency of gear pair optimization by surrogate model is still much higher than that by LTCA method.After optimization,the mesh stiffness fluctuation of gear pair with coupling assembly error is reduced by 34.10%,and difference in average contact stresses between left and right regions of the mesh surface is reduced by 62.84%. 展开更多
关键词 helical gear mesh characteristics gear tooth modification assembly errors neural network multi-objective optimization
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Strength of plastic with various helical wheels meshed types of worms 被引量:2
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作者 Makoto Nomura Takao Koide +2 位作者 Akio Ueda Yusuke Ishida Atsutaka Tamura 《材料与冶金学报》 CAS 北大核心 2015年第3期232-235,238,共5页
关键词 塑钢 涡轮 复合材料
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Matching between mechanics and thermodynamics among 4 individual strokes in a 4-stroke engine by non-circular gear mechanism
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作者 ZHAO Yuan-ping HE Chang-hua 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第7期2112-2126,共15页
The relationship between engine mechanics and thermo-dynamics has been investigated by means of numerical simulation.The inherent mismatching between the mechanical behaviors and the thermodynamic process in internal ... The relationship between engine mechanics and thermo-dynamics has been investigated by means of numerical simulation.The inherent mismatching between the mechanical behaviors and the thermodynamic process in internal combustion engine is identified,which is believed to be one of the important limiting factors of energy efficiency for conventional engines available in the current market.An approach for engine efficiency improvement through optimal matching between mechanics and thermodynamics(OMBMT)is proposed.An ideal matching model is defined and the conflicts due to the constraints among the mapping strokes in a 4-stroke engine are analyzed.A novel mechanical model is built for approaching optimal matching among all 4 individual strokes in a 4-stroke spark-ignition engine,which is composed of non-circular gears(NCG)and integrated with conventional slider crank engine mechanism.By means of digital mechanical model and numerical simulation,the matching gains among all 4 strokes are defined and calculated for quantifying the NCG engine efficiency improvement by comparing with a baseline engine.The potentials with the OMBMT implemented and the enhancements made by NCG mechanism for engines in terms of overall engine efficiency are reported.Based on the results achieved,it is recommended that the feasibility studies and the experimental validations should be conducted to verify the engine matching concept and effectiveness of the NCG mechanism engine model proposed,and the engine performance and NCG design parameters should be further optimized. 展开更多
关键词 ENGINE engine matching optimization optimal matching between mechanics and thermodynamics(OMBMT) matching gain engine efficiency improvement non-circular gears(NCG) NCG engine
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斜齿轮表面形貌分形特征对时变接触刚度的影响 被引量:2
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作者 吴石 高增阔 +1 位作者 王明珠 赵成睿 《中国机械工程》 北大核心 2025年第1期59-68,77,共11页
基于改进的W-M分形函数,利用齿高和齿宽表征斜齿轮齿面的表面形貌。采用圆锥微凸体并考虑啮合过程中斜齿轮接触曲率半径的时变性建立了斜齿轮时变接触刚度模型,计算发现基于圆锥微凸体模型计算的时变啮合刚度与ISO6336-1—2006标准计算... 基于改进的W-M分形函数,利用齿高和齿宽表征斜齿轮齿面的表面形貌。采用圆锥微凸体并考虑啮合过程中斜齿轮接触曲率半径的时变性建立了斜齿轮时变接触刚度模型,计算发现基于圆锥微凸体模型计算的时变啮合刚度与ISO6336-1—2006标准计算所得结果接近。研究结果表明,斜齿轮的时变接触载荷和时变接触刚度随着分形维数、特征尺度系数、量纲一接触面积、材料塑性指数的变化而表现出不同的变化趋势。 展开更多
关键词 斜齿轮啮合 表面形貌 分形特征 圆锥微凸体 时变接触刚度
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面向啮合接触的斜齿轮修形多目标优化研究 被引量:1
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作者 周微 张全民 《机械设计与制造》 北大核心 2025年第1期374-379,384,共7页
以齿轮啮合接触分析为研究对象,提出了一种既能减振降噪又能使齿面载荷均匀分布的多目标优化设计方法。通过传输误差幅值的对比实验与理论计算,验证了载荷齿面接触分析模型的正确性。在此基础上,给出了齿面载荷分布的计算方法,并进一步... 以齿轮啮合接触分析为研究对象,提出了一种既能减振降噪又能使齿面载荷均匀分布的多目标优化设计方法。通过传输误差幅值的对比实验与理论计算,验证了载荷齿面接触分析模型的正确性。在此基础上,给出了齿面载荷分布的计算方法,并进一步提出了齿面载荷均匀分布的判断方法。以扭转方向相对速度最小和齿面载荷均匀分布为优化目标,构造多目标优化函数,得到最优修形参数。在此基础上给出了实例来说明所提出的方法,结果表明优化后沿扭转方向相对速度和左右齿面载荷差得到了大幅降低,验证了优化后的修形效果。 展开更多
关键词 载荷分配 修形 斜齿轮 动力特性 多目标优化
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计入齿面摩擦的斜齿轮啮合动力学特性研究 被引量:1
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作者 路晓云 刘启连 《机械设计与制造》 北大核心 2025年第1期56-61,共6页
针对斜齿轮啮合过程中,建立了考虑齿面摩擦的斜齿轮啮合副动力学模型。首先对斜齿轮副啮合进行齿面接触分析和加载齿面接触分析,得到齿面接触路径、接触位置法向位移,在此基础上计算了时变啮合刚度激励、齿面滑动摩擦系数和摩擦力臂。其... 针对斜齿轮啮合过程中,建立了考虑齿面摩擦的斜齿轮啮合副动力学模型。首先对斜齿轮副啮合进行齿面接触分析和加载齿面接触分析,得到齿面接触路径、接触位置法向位移,在此基础上计算了时变啮合刚度激励、齿面滑动摩擦系数和摩擦力臂。其次,建立并求解了考虑齿面摩擦的斜齿轮副动力学模型,计算了动态啮合力/速度/位移。由齿面上的滑动摩擦系数、摩擦力臂和动力学方程构成斜齿轮副啮合动力学耦合系统,通过解耦计算,对模型系统方程进行了求解。最后通过实例验证了该模型的有效性。 展开更多
关键词 斜齿轮 齿面摩擦 齿面接触分析 接触路径
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面向双斜齿轮啮合接触的传动特性研究
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作者 陆春元 焦洪宇 卜王辉 《机械设计与制造》 北大核心 2025年第1期358-364,共7页
针对双斜齿轮啮合特性,提出了一种考虑小齿轮轴向支承刚度的双斜齿轮三维加载齿面接触分析模型。该模型根据微分几何和力学分析,考虑了变形协调条件、力平衡条件、轴向力平衡约束,为了减小三维载荷传递误差以改善载荷分布,建立了双斜齿... 针对双斜齿轮啮合特性,提出了一种考虑小齿轮轴向支承刚度的双斜齿轮三维加载齿面接触分析模型。该模型根据微分几何和力学分析,考虑了变形协调条件、力平衡条件、轴向力平衡约束,为了减小三维载荷传递误差以改善载荷分布,建立了双斜齿轮的多目标优化数学模型。最后,通过数值仿真研究了载荷、小齿轮轴向支承刚度和齿面修形对双斜齿轮径向载荷传动误差和轴向载荷传动误差的影响,结果表明所提模型可以准确地计算双斜齿轮的传动误差。最后通过实验对比分析了齿面修形前和修形后的振动加速度情况。 展开更多
关键词 双斜齿轮 接触特性 载荷分配 多目标优化
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航空燃油斜齿轮泵瞬时几何流量的计算方法
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作者 王建森 李文宣 +3 位作者 司国雷 陈君辉 闫红亮 王旭 《浙江大学学报(工学版)》 北大核心 2025年第5期1040-1050,共11页
为了明确斜齿结构对泵瞬时几何流量特性的影响规律,以某型渐开线外啮合航空燃油斜齿轮泵为研究对象,对瞬时几何流量的计算方法进行探究.将泵的密封排油容腔看成由轴向多层切片堆叠而成,每一层切片端面的轴向投影为分段光滑曲线构成的单... 为了明确斜齿结构对泵瞬时几何流量特性的影响规律,以某型渐开线外啮合航空燃油斜齿轮泵为研究对象,对瞬时几何流量的计算方法进行探究.将泵的密封排油容腔看成由轴向多层切片堆叠而成,每一层切片端面的轴向投影为分段光滑曲线构成的单连通域,基于齿廓参数化建模方法建立各层投影面几何域边界分段曲线的数学模型.利用格林公式计算得到各层几何域的面积和各层切片的体积,沿轴向叠加求和得到排油容腔总体积,更新齿轮转角,可得排油容腔的体积变化量和齿轮泵的瞬时几何流量特性.经案例计算表明,与端面渐开线参数相同的直齿轮泵相比,当吸排油可靠隔离设有卸荷槽结构及有侧隙啮合时,齿宽一定,斜齿轮螺旋角越大,泵的平均输出流量变小,流量脉动率略有增大;螺旋角不变,齿宽越大,泵的平均输出流量越大,流量脉动率略有增大;当排油侧无卸荷槽时,增大螺旋角和齿宽可以降低流量脉动. 展开更多
关键词 斜齿轮泵 渐开线齿形 外啮合 瞬时几何流量
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汽车电动座椅调节器中蜗杆斜齿轮副降噪测试
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作者 陈燕 王文韬 蒲云 《机械强度》 北大核心 2025年第5期71-79,共9页
针对汽车电动座椅调节器中的噪声问题,对其主要传动系统采用修形蜗杆和修形斜齿轮配对以减少啮合冲击。建立其数学模型,加工了不同修形量的蜗杆和斜齿轮,搭建了噪声测试试验台,测试了原模型和不同修形量情况下汽车座椅调节器的加速度频... 针对汽车电动座椅调节器中的噪声问题,对其主要传动系统采用修形蜗杆和修形斜齿轮配对以减少啮合冲击。建立其数学模型,加工了不同修形量的蜗杆和斜齿轮,搭建了噪声测试试验台,测试了原模型和不同修形量情况下汽车座椅调节器的加速度频谱,选取较优组合进行了齿廓修形后的整机降噪测试。分析结果表明,合适的蜗杆和斜齿轮齿廓修形可有效降低加速度频谱峰值,斜齿轮、蜗杆修形量分别取0.04、0.02 mm下的座椅调节器加速度峰值较原产品下降明显;6套试验产品的噪声与对标产品的最大噪声的差值在1.6 dB以内,且试验产品的加速度频谱和加速度峰值较原产品明显降低,验证了蜗杆斜齿轮副齿廓修形降噪的可行性。 展开更多
关键词 座椅调节器 蜗杆 斜齿轮 齿廓修形 降噪
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基于点位加工交错轴面齿轮修形技术研究
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作者 刘雪颖 胡子越 +2 位作者 王铁钢 杜康隆 李敬财 《工具技术》 北大核心 2025年第2期78-83,共6页
线包络啮合理论常用于相交轴面齿轮加工(插齿、剐齿加工),此类工艺并不适用于交错轴大螺旋角面齿轮的加工,针对该问题本文采用数值法对面齿轮进行修形并基于点位加工方法对面齿轮进行加工。基于啮合理论建立面齿轮数学模型,计算齿面瞬... 线包络啮合理论常用于相交轴面齿轮加工(插齿、剐齿加工),此类工艺并不适用于交错轴大螺旋角面齿轮的加工,针对该问题本文采用数值法对面齿轮进行修形并基于点位加工方法对面齿轮进行加工。基于啮合理论建立面齿轮数学模型,计算齿面瞬时包络线,根据啮合接触区要求,对面齿轮包络线采用数值法修形并建立修形后用于数控加工的面齿轮3D模型,通过实际算例在加工中心采用球头铣刀点位加工出面齿轮,经面齿轮副的滚检实验后,验证该算法的可行性,达到预期效果。 展开更多
关键词 斜齿圆柱齿轮 面齿轮 点位修形 啮合
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基于正交试验法的内斜齿轮成形磨削工艺参数优化
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作者 金明选 苏建新 +2 位作者 蒋闯 张祥 李明宇 《机床与液压》 北大核心 2025年第15期79-85,共7页
在内斜齿轮成形磨削过程中,工艺参数的选择至关重要。为优化内斜齿轮高效精密成形磨削工艺,探讨成形法磨齿与平面磨削的内在联系,研究数控成形内斜齿轮磨削机制,并推导出内斜齿轮成形磨齿的磨削力数学模型。在数控成形磨齿机上进行磨齿... 在内斜齿轮成形磨削过程中,工艺参数的选择至关重要。为优化内斜齿轮高效精密成形磨削工艺,探讨成形法磨齿与平面磨削的内在联系,研究数控成形内斜齿轮磨削机制,并推导出内斜齿轮成形磨齿的磨削力数学模型。在数控成形磨齿机上进行磨齿加工试验,验证磨削力数学模型的有效性。最后,通过三因素三水平正交试验的极差分析法,研究磨削工艺参数对磨削力的影响规律,同时分析不同磨削工艺参数对磨齿效率和表面质量的影响,确定了成形磨削的最佳工艺参数。结果表明:工艺参数对磨削力的影响程度由大到小依次为磨削深度、砂轮线速度、进给速度;粗磨阶段的最优组参数组合为磨削深度0.03 mm、进给速度6 m/min、砂轮线速度49.987 m/s,精磨阶段的最优参数组合为磨削深度0.01 mm、进给速度4 m/min、砂轮线速度49.987 m/s;使用优化后的磨削工艺参数对齿轮成型件进行检测,右齿面齿向形状偏差减小0.8μm,左齿面齿向形状偏差减小1.2μm,精度等级达到设计图纸要求,表明精磨阶段的磨削工艺参数优化方案合理有效。 展开更多
关键词 内斜齿轮 成形磨削 正交试验 工艺优化
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基于ICEEMDAN算法的高速双圆弧斜齿轮泵振动试验特性分析
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作者 董庆伟 李博 +2 位作者 李阁强 韩帅康 皇甫科维 《机床与液压》 北大核心 2025年第4期151-157,共7页
针对双圆弧斜齿轮泵高速工况下引起的振动问题,以过渡曲线为正弦曲线的双圆弧斜齿轮泵为研究对象,搭建液压工作站,以转速与压力负载为变量,采集不同转速与压力负载下泵的进油口、出油口与泵体上侧的振动信号,然后对数据进行时、频域分... 针对双圆弧斜齿轮泵高速工况下引起的振动问题,以过渡曲线为正弦曲线的双圆弧斜齿轮泵为研究对象,搭建液压工作站,以转速与压力负载为变量,采集不同转速与压力负载下泵的进油口、出油口与泵体上侧的振动信号,然后对数据进行时、频域分析。在此基础上,基于增强型完全集合经验模态分解(ICEEMDAN)算法对数据进行特征提取,通过模糊熵与峭度构建的综合指标选取内在模态函数分量(IMF)进行分析,得到双圆弧斜齿轮泵在不同转速和压力负载工况下的振动特性。结果表明:在所测工况下,出油口区域的振动幅度普遍高于进油口和泵体上侧区域,而且压力负载对泵的振动分布具有一定影响;在恒定压力负载下,泵的振动幅值随转速的提高而增加,且这种增长随转速的提高而加剧;在恒定转速下,泵的振动幅度整体趋势随着压力负载的增加而上升,但在特定压力负载点出现下降。 展开更多
关键词 斜齿轮泵 高速工况 振动特性 增强型完全集合经验模态分解(ICEEMDAN)算法
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粗糙度对航空发动机高速斜齿轮润滑特性的影响研究
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作者 侯岩锟 刘振刚 +2 位作者 胡敦珂 郭海龙 刘振侠 《西北工业大学学报》 北大核心 2025年第1期1-12,共12页
针对航空发动机某型高速斜齿轮,基于有限长线接触热弹流润滑模型,考虑斜齿轮表面粗糙度的影响对啮合位置开展了润滑特性研究。获得了粗糙度波长、幅值、无量纲参数(材料参数G、速度参数U、载荷参数W)对斜齿轮润滑特性的影响规律。引入... 针对航空发动机某型高速斜齿轮,基于有限长线接触热弹流润滑模型,考虑斜齿轮表面粗糙度的影响对啮合位置开展了润滑特性研究。获得了粗糙度波长、幅值、无量纲参数(材料参数G、速度参数U、载荷参数W)对斜齿轮润滑特性的影响规律。引入油膜特征参数(压力、膜厚、温升)波动标准差,量化了不同输入参数对润滑油膜稳定性的影响程度。结果表明,齿轮表面的粗糙度显著影响润滑油膜的稳定性,当齿面粗糙度与油膜厚度处于同一量级时,油膜特征参数相较于光滑解的波动幅度达到50%,导致接触区局部油膜厚度显著低于中心区域,增加了干摩擦的风险。粗糙度幅值的增加与波长的减少会加剧油膜特征参数的波动,齿轮卷吸速度方向的粗糙度分布情况对润滑油流动的影响更为显著。随着G的增加,油膜压力与温升的波动更为剧烈,而参数U的增加会在一定程度上抑制粗糙度带来的压力波动,W的增加则放大了粗糙度的影响。通过减小齿轮表面粗糙度峰值,避免粗糙度尖峰的密集分布,可以有效改善斜齿轮的润滑状态。 展开更多
关键词 斜齿轮 有限长线接触 弹流润滑 粗糙度 无量纲参数
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考虑轮齿变形的修形斜齿轮啮合刚度改进计算方法
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作者 赵冬艳 王国平 石慧荣 《振动与冲击》 北大核心 2025年第14期75-83,113,共10页
斜齿轮轮齿受载变形会导致轮齿超前进入或滞后退出啮合,使轮齿啮合点偏离理论位置从而产生啮入或啮出冲击,而采用齿顶修形可减小或避免斜齿轮传动中进入或退出啮合时的冲击现象。针对齿顶修形斜齿轮传动,综合考虑轮齿齿面接触刚度和轮... 斜齿轮轮齿受载变形会导致轮齿超前进入或滞后退出啮合,使轮齿啮合点偏离理论位置从而产生啮入或啮出冲击,而采用齿顶修形可减小或避免斜齿轮传动中进入或退出啮合时的冲击现象。针对齿顶修形斜齿轮传动,综合考虑轮齿齿面接触刚度和轮齿弯曲变形引起的扩展啮合现象,根据齿轮接触线变化机理和切片法原理,建立了齿轮啮合刚度、轮齿接触线长度和载荷分布系数的计算模型,并利用给出方法对不同修形参数和外载荷作用下的斜齿轮啮合刚度及其波动特性进行了分析。通过与文献结果的比较,表明给出方法能够更加高效地准确计算斜齿轮啮合刚度,并获取啮合刚度波动系数与齿顶修形参数和传递载荷之间内在关系。 展开更多
关键词 齿顶修形 啮合刚度 斜齿轮 载荷分布 扩展接触
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