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    • 1. 发明授权
    • Main bearing for crankshaft of internal combustion engine
    • 内燃机曲轴主轴承
    • US08979379B1
    • 2015-03-17
    • US14462806
    • 2014-08-19
    • Daido Metal Company Ltd.
    • Yuki KawashimaMotohiko Koushima
    • F16C33/10F16C9/02
    • F16C33/1065F16C9/02F16C17/022F16C33/046F16C2240/40F16C2240/42F16C2360/22
    • A main bearing for a crankshaft of an internal combustion engine has first and second half bearings forming an axial groove on an inner circumferential side of a butting portion. Each half bearing has a main cylinder portion including a central portion in a circumferential direction, and crush relief portions each extending toward the central portion from an end surface of the half bearing in the circumferential direction with a center angle of 3° to 15°. A plurality of crush relief grooves are formed in each crush relief portion to extend in the circumferential direction and communicate with the axial groove. The first half bearing has an oil groove extending in the circumferential direction and a transition region having an inward protruding curved surface with a wall thickness becoming thinner toward the crush relief portion from the main cylinder portion.
    • 用于内燃机的曲轴的主轴承具有在对接部的内周侧上形成轴向槽的第一和第二半轴承。 每个半轴承具有包括在圆周方向上的中心部分的主圆筒部分和从圆周方向的半轴承的端面朝向中心部分以3°至15°的中心角延伸的挤压部分。 在每个挤压释放部分中形成有多个凹陷释放槽,以在圆周方向上延伸并与轴向槽连通。 第一半轴承具有沿圆周方向延伸的油槽,并且具有向内突出的弯曲表面的过渡区域,其中壁厚度从主缸部分朝向压溃释放部分变薄。
    • 2. 发明授权
    • Connecting rod bearing
    • 连杆轴承
    • US08840307B2
    • 2014-09-23
    • US13971135
    • 2013-08-20
    • Daido Metal Company Ltd.
    • Yuki KawashimaMotohiko Koushima
    • F16C33/10F16C33/04F16C9/04F16C3/14
    • F16C3/14F16C9/04F16C17/022F16C33/046F16C33/1055F16C33/1065F16C2240/40F16C2240/42F16C2240/54
    • According to the invention, there is provided a connecting rod bearing constituted by a half bearing, which has a main cylindrical portion, crush reliefs and a transitional region. The crush relief is formed so that a depth from a virtual inner circumferential surface at a position of an end surface of the half bearing in a circumferential direction is larger than a depth from the virtual inner circumferential surface at a position where the crush relief connects with the transitional region. Further, a plurality of circumferential grooves are provided in the main cylindrical portion to continuously extend in the circumferential direction throughout an entire length of the main cylindrical portion in the circumferential direction, and are continuously provided also in the transitional region.
    • 根据本发明,提供一种由半轴承构成的连杆轴承,半轴承具有主圆柱形部分,挤压浮雕和过渡区域。 形成凹凸形状,使得在圆周方向上的半轴承的端面的位置处的假想内周面的深度大于在压溃释放与...的位置连接的位置处的虚拟内周面的深度 过渡地区。 此外,在主圆柱形部分中设置多个周向槽,以在圆周方向的主圆柱形部分的整个长度上沿圆周方向连续延伸,并且也连续地设置在过渡区域中。
    • 6. 发明授权
    • Main bearing for crankshaft of internal combustion engine
    • 内燃机曲轴主轴承
    • US09243660B2
    • 2016-01-26
    • US14462714
    • 2014-08-19
    • DAIDO METAL COMPANY LTD.
    • Yuki KawashimaMotohiko Koushima
    • F16C9/02F16C33/10F16C3/14F16C9/04F16C33/04
    • F16C9/02F16C3/14F16C17/022F16C33/046F16C33/10F16C33/1065F16C2240/42
    • A main bearing for a crankshaft of an internal combustion engine has first and second half bearings forming an axial groove on an inner circumferential surface of a butting portion. Each half bearing has a main cylinder portion including a central portion, and crush relief portions each extending toward the central portion from an end surface of the half bearing with a center angle of 3° to 15°. A plurality of crush relief grooves are formed in each crush relief portion in the circumferential direction to communicate with the axial groove. An oil groove is formed in the circumferential direction on an inner circumferential surface of the first half bearing. The second half bearing has a transition region having an inward protruding curved surface a wall thickness of which becomes thinner toward the crush relief portion from the main cylinder portion.
    • 用于内燃机的曲轴的主轴承具有在对接部的内周面上形成轴向槽的第一和第二半轴承。 每个半轴承具有包括中心部分的主圆筒部分和从半轴承的端面朝向中心部分以3°至15°的中心角延伸的挤压部分。 在每个挤压卸载部分中沿圆周方向形成多个挤压释放槽以与轴向沟槽连通。 在第一半轴承的内周面上沿圆周方向形成油槽。 第二半轴承具有向内突出的弯曲表面的过渡区域,该过渡区域的壁厚从主缸部分朝向压溃释放部分变薄。