润滑与密封
潤滑與密封
윤활여밀봉
LUBRICATION ENGINEERING
2014年
12期
1-5,57
,共6页
杜发荣%姬芬竹%聂磊%郭雨琛
杜髮榮%姬芬竹%聶磊%郭雨琛
두발영%희분죽%섭뢰%곽우침
空间润滑%供油方式%结构设计%性能仿真
空間潤滑%供油方式%結構設計%性能倣真
공간윤활%공유방식%결구설계%성능방진
space lubrication%oil supply mode%structure design%performance simulation
针对空间环境中微重力条件下的液体润滑系统,基于谐波原理提出一种新型润滑油供应方式。该供油方式通过弹性体变形和质点振动将储油腔内的润滑油供应到摩擦表面,实现了不需要油泵驱动供应润滑油的目的。建立弹性体的径向弯曲变形模型和弹性体质点振动模型,利用有限元软件计算并分析弹性体变形和质点振动,研究弹性体壁厚和连通油孔直径及油孔倾斜角等结构参数对润滑油供应的影响。计算结果表明:改变弹性体厚度和连通油孔直径,系统的供油性能发生变化;在工作载荷作用下弹性体产生径向弯曲变形和弹性体质点沿径向的振动,从而使储油腔内的润滑油供应到摩擦表面,验证了所设计润滑系统供油原理的可行性。
針對空間環境中微重力條件下的液體潤滑繫統,基于諧波原理提齣一種新型潤滑油供應方式。該供油方式通過彈性體變形和質點振動將儲油腔內的潤滑油供應到摩抆錶麵,實現瞭不需要油泵驅動供應潤滑油的目的。建立彈性體的徑嚮彎麯變形模型和彈性體質點振動模型,利用有限元軟件計算併分析彈性體變形和質點振動,研究彈性體壁厚和連通油孔直徑及油孔傾斜角等結構參數對潤滑油供應的影響。計算結果錶明:改變彈性體厚度和連通油孔直徑,繫統的供油性能髮生變化;在工作載荷作用下彈性體產生徑嚮彎麯變形和彈性體質點沿徑嚮的振動,從而使儲油腔內的潤滑油供應到摩抆錶麵,驗證瞭所設計潤滑繫統供油原理的可行性。
침대공간배경중미중력조건하적액체윤활계통,기우해파원리제출일충신형윤활유공응방식。해공유방식통과탄성체변형화질점진동장저유강내적윤활유공응도마찰표면,실현료불수요유빙구동공응윤활유적목적。건립탄성체적경향만곡변형모형화탄성체질점진동모형,이용유한원연건계산병분석탄성체변형화질점진동,연구탄성체벽후화련통유공직경급유공경사각등결구삼수대윤활유공응적영향。계산결과표명:개변탄성체후도화련통유공직경,계통적공유성능발생변화;재공작재하작용하탄성체산생경향만곡변형화탄성체질점연경향적진동,종이사저유강내적윤활유공응도마찰표면,험증료소설계윤활계통공유원리적가행성。
For the liquid lubrication system operating at microgravity conditions in space,a new mode of oil supply was proposed based on the harmonic principle.The oil was supplied to the friction surface by means of the elastomer deforma-tion and particle vibration from storage chamber.The purpose of oil supplying with no need for pump was achieved.The theoretical modes were founded on the radial bending deformation and a particle vibration of the elastomer;The deforma-tion and particle vibration were calculated and analyzed utilizing finite element software;The affection on lubrication per-formance was studied which was caused by the structure parameters of elastomer,such as the wall thickness,the diameter of connecting oil-hole.The calculation results show that:the performance of oil supplying varies with the elastomer thickness, diameter and inclination angle of connecting oil-hole.Under the working load,the radial bending deformation of the elasto-mer and the vibration of the particle along the radial direction are occurred to supply the oil to friction surface from storage chamber.The calculation results verify the feasibility of oil supply principle for the designed lubrication system.