机床与液压
機床與液壓
궤상여액압
MACHINE TOOL & HYDRAULICS
2014年
7期
107-110
,共4页
主轴系统%热交换系数%散热结构%热-应力分析%ANSYS
主軸繫統%熱交換繫數%散熱結構%熱-應力分析%ANSYS
주축계통%열교환계수%산열결구%열-응력분석%ANSYS
Spindle system%Heat transfer coefficient%Cooling structure%Thermal-stress analysis%ANSYS
分析汽车变速箱试验台主轴系统的热源和散热,建立了基于热-应力耦合分析的试验台主轴系统有限元模型,按设计要求与工作实际情况计算出发热率和热交换系数,利用ANSYS的热接触有限元分析方法对主轴系统的温度耦合场进行了分析。分析结果表明,主轴系统的散热结构存在缺陷,达不到散热要求,造成轴承座的形变过大而影响实验精度。针对设计实例,提出改进主轴系统热态特性的措施,并对改进后的结构重新进行有限元分析,在合理的分析结果的基础上对设备进行改进,实际测量发现改进后的主轴系统散热效果良好。研究结果为主轴系统的散热结构设计提供了参考和依据。
分析汽車變速箱試驗檯主軸繫統的熱源和散熱,建立瞭基于熱-應力耦閤分析的試驗檯主軸繫統有限元模型,按設計要求與工作實際情況計算齣髮熱率和熱交換繫數,利用ANSYS的熱接觸有限元分析方法對主軸繫統的溫度耦閤場進行瞭分析。分析結果錶明,主軸繫統的散熱結構存在缺陷,達不到散熱要求,造成軸承座的形變過大而影響實驗精度。針對設計實例,提齣改進主軸繫統熱態特性的措施,併對改進後的結構重新進行有限元分析,在閤理的分析結果的基礎上對設備進行改進,實際測量髮現改進後的主軸繫統散熱效果良好。研究結果為主軸繫統的散熱結構設計提供瞭參攷和依據。
분석기차변속상시험태주축계통적열원화산열,건립료기우열-응력우합분석적시험태주축계통유한원모형,안설계요구여공작실제정황계산출발열솔화열교환계수,이용ANSYS적열접촉유한원분석방법대주축계통적온도우합장진행료분석。분석결과표명,주축계통적산열결구존재결함,체불도산열요구,조성축승좌적형변과대이영향실험정도。침대설계실례,제출개진주축계통열태특성적조시,병대개진후적결구중신진행유한원분석,재합리적분석결과적기출상대설비진행개진,실제측량발현개진후적주축계통산열효과량호。연구결과위주축계통적산열결구설계제공료삼고화의거。
The heat source and cooling of auto gearbox test platform spindle system were analyzed,and finite element model (FEM) based on analysis of thermal-stress coupling of the spindle system of the test platform was built.The heat generation rates and the heat transfer coefficient are calculated according to the design requirements and practical work situation.With the finite element method of ANSYS thermal contact,the spindle system's temperature coupled-field was analyzed.The analysis results show that the cooling structure of the spindle system is flawed,which cannot meet the requirement of cooling,so the deformation of the bearing seat is so large that it affects the accuracy of the experiment.Aiming at design examples,the measures of improving the thermal properties of spindle system are proposed,and improved structural is reanalyzed with finite element analysis (FEA).On the basis of reasonable analysis results,the equipment is improved,and the cooling effect of the improved system is good from actual measurement.The re-search results provide reference and basis for the cooling structural design of spindle system.