发明名称 CONE/FRICTION RING TRANSMISSION AND METHOD FOR A CONE/FRICTION RING TRANSMISSION
摘要 In order for it to be also possible to transmit relatively high torques in an operationally reliable manner with low power loss and with a low or inexpensive design outlay in a bevel friction ring gear mechanism, consisting of at least two component transmissions which are configured as bevel friction ring gear mechanisms and have a first adjusting device for a friction ring of the first component transmission and a second adjusting device for a friction ring of the second component transmission, wherein the bevel friction ring gear mechanism has a regulating device for regulating an axial position of the friction rings, it is proposed that the regulating device has at least one first part regulating device with a first reference variable and a second part regulating device with a second reference variable which is separate from the first reference variable, wherein the first component transmission has the first part regulating device for regulating the position of the friction ring of the first component transmission, and the second component transmission has the first part regulating device and the second part regulating device, but at least the second part regulating device, for regulating the position of the friction ring of the second part transmission.
申请公布号 US2016327136(A1) 申请公布日期 2016.11.10
申请号 US201615213616 申请日期 2016.07.19
申请人 ROHS Ulrich 发明人 ROHS Ulrich;DRAEGER Christoph;BRANDWITTE Werner
分类号 F16H15/42;F16H61/664 主分类号 F16H15/42
代理机构 代理人
主权项 1. Cone/friction ring transmission comprising at least first and second subsidiary transmissions structured as cone/friction ring transmissions, which comprise a common cone and first and second further cones for the first and second subsidiary transmissions, respectively, and which have a first adjustment device for a friction ring of the first subsidiary transmission, and a second adjustment device for a friction ring of the second subsidiary transmission, wherein the first further cone of the first subsidiary transmission is connected to interact with a shaft, via a first transmission, and the second further cone of the second subsidiary transmission is connected to interact with said shaft, via a second transmission, wherein said first and second transmissions have an identical translation ratio or the first further cone of the first subsidiary transmission and the second further cone of the second subsidiary transmission are connected with a common shaft, with synchronous speeds of rotation, and wherein the cone/friction ring transmission has a regulation device for regulation of an axial position of the friction rings, wherein the regulation device has at least a first subsidiary regulation device having a first reference variable, and a second subsidiary regulation device having a second reference variable, which is separate from the first reference variable, and wherein the first subsidiary transmission has the first subsidiary regulation device for regulation of the position of the friction ring of the first subsidiary transmission, and the second subsidiary transmission has at least the second subsidiary regulation device for regulation of the position of the friction ring of the second subsidiary transmission; and wherein a regulation variable of the first subsidiary regulation device is said second reference variable of the second subsidiary regulation device; and wherein said first reference variable of the first subsidiary regulation device is not a reference variable of the second subsidiary regulation device.
地址 Dueren DE