机床与液压
機床與液壓
궤상여액압
MACHINE TOOL & HYDRAULICS
2014年
7期
24-28
,共5页
芮执元%陈涛%雷春丽%周寅成
芮執元%陳濤%雷春麗%週寅成
예집원%진도%뢰춘려%주인성
高速电主轴%传热%冷却系统%正交试验
高速電主軸%傳熱%冷卻繫統%正交試驗
고속전주축%전열%냉각계통%정교시험
High-speed motorized spindle%Heat transfer%Cooling system%Orthogonal test
为了研究高速电主轴水冷系统对主轴热稳定性的影响,采用正交试验方法对高速电主轴冷却系统在不同工况下的冷却效果进行了研究。设计主轴电机发热功率与冷却液流速的正交试验,计算主轴电机发热功率并分为三档,将冷却液流速分别取为0.3、0.4、0.5、0.6、0.7、0.8 m/s,基于CFX的仿真试验得出电主轴在各工况下的试验结果。正交试验的结果表明:各工况下调节冷却液速度只能使主轴降低5~8℃;主轴最佳工作温度为40℃;正交试验法为主轴温度精确控制提供了数值依据。
為瞭研究高速電主軸水冷繫統對主軸熱穩定性的影響,採用正交試驗方法對高速電主軸冷卻繫統在不同工況下的冷卻效果進行瞭研究。設計主軸電機髮熱功率與冷卻液流速的正交試驗,計算主軸電機髮熱功率併分為三檔,將冷卻液流速分彆取為0.3、0.4、0.5、0.6、0.7、0.8 m/s,基于CFX的倣真試驗得齣電主軸在各工況下的試驗結果。正交試驗的結果錶明:各工況下調節冷卻液速度隻能使主軸降低5~8℃;主軸最佳工作溫度為40℃;正交試驗法為主軸溫度精確控製提供瞭數值依據。
위료연구고속전주축수랭계통대주축열은정성적영향,채용정교시험방법대고속전주축냉각계통재불동공황하적냉각효과진행료연구。설계주축전궤발열공솔여냉각액류속적정교시험,계산주축전궤발열공솔병분위삼당,장냉각액류속분별취위0.3、0.4、0.5、0.6、0.7、0.8 m/s,기우CFX적방진시험득출전주축재각공황하적시험결과。정교시험적결과표명:각공황하조절냉각액속도지능사주축강저5~8℃;주축최가공작온도위40℃;정교시험법위주축온도정학공제제공료수치의거。
In order to research on the spindle thermal stability by water cooling system of the high-speed motorized spindle,the cooling effects of cooling system of the high-speed motorized spindle by using orthogonal test method under different working conditions were researched.The heating power of motorized spindle and orthogonal test of coolant velocity were designed.The heating power was divided into three levels,and the coolant velocity were taken separately as 0.3,0.4,0.5,0.6,0.7,0.8 m/s,then the experi-mental results of motorized spindle under every working conditions were gotten based on the Compute Flow Dynamics software (CFX) simulation test.The results of orthogonal test show that the temperature of spindle can only be reduced for 5 ~8 ℃ by adjusting the coolant velocity under every working conditions and the optimal working temperature of spindle is at 40 ℃.The method of orthogonal test provides the numerical basis for accurate temperature control of motorized spindle.