发明名称 Center bearing support
摘要 A center bearing support (1) is provided which prevents a vibration absorbing function from being lowered on the basis of an increase of a dynamic spring constant by a resonance of an elastic body (13), at the time of an input of a vibration of a propeller shaft and a vibration. An inner periphery of an outer ring (11) fixed to a vehicle body side is provided with an inner ring (12) retaining a center bearing (2) via the elastic body (13) formed as a bent shape which is convex to one side in an axial direction and made of a rubber-like elastic material, the elastic body (13) has flexible portions (132, 133) in an inner diameter side and an outer diameter side than the bent portion (131) as a spring, and a resonance frequency thereof is equal to or more than 1500 Hz.
申请公布号 US8961024(B2) 申请公布日期 2015.02.24
申请号 US201213728307 申请日期 2012.12.27
申请人 NOK Corporation 发明人 Ikeda Masahiro
分类号 F16C27/00;F16C27/04;F16C27/06;B60K17/24;F16F1/38;F16C19/06 主分类号 F16C27/00
代理机构 Harness, Dickey & Pierce, P.L.C. 代理人 Harness, Dickey & Pierce, P.L.C.
主权项 1. A center bearing support comprising: an outer ring fixed to a vehicle body; an inner ring provided on an inner periphery of the outer ring, the inner ring retaining an outer race of a center bearing; and an elastic body connected between the inner and outer rings, the elastic body having a bent shape which is convex to one side in an axial direction, an outer peripheral end portion connected to the outer ring, an inner peripheral end portion connected to the inner ring, and made of elastomeric material, wherein said elastic body has an intermediate bent portion, a first flexible portion on an inner diameter side of the bent portion connecting the bent portion to the inner peripheral end portion, and a second flexible portion on an outer diameter side of the bent portion connecting the bent portion to the outer peripheral end portion, and wherein an orthogonal cross-sectional thickness of the bent portion relative to a tangent of the bent portion is t1, a maximum orthogonal cross-sectional thickness of each of the first and second flexible portions relative to an extension direction of each of the first and second flexible portions is t2, and t1<t2/2.
地址 JP