System and method for enhancing the operation of a continuously variable transmission of a work vehicle
US-9217505-B2 · Dec 22, 2015 · US
US11408496B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11408496-B2 |
| Application number | US-202015734998-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 10, 2020 |
| Priority date | Jan 20, 2020 |
| Publication date | Aug 9, 2022 |
| Grant date | Aug 9, 2022 |
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A gear-hydraulic-metal belt integrated multi-mode hydro-mechanical hybrid transmission device includes an input assembly, an output assembly, a metal belt transmission mechanism, a planetary gear assembly, a hydraulic transmission mechanism, a clutch assembly and a brake assembly. The input assembly is connected to the metal belt transmission mechanism, the planetary gear assembly and the hydraulic transmission mechanism. The metal belt transmission mechanism and the hydraulic transmission mechanism are connected to the planetary gear assembly. The planetary gear assembly is connected to the output assembly. The clutch assembly connects the input assembly to the metal belt transmission mechanism and the planetary gear assembly, and connects each of the metal belt transmission mechanism and the hydraulic transmission mechanism to the planetary gear assembly. The clutch assembly and the brake assembly provide a continuous transmission ratio between the input assembly and the output assembly.
Opening claim text (preview).
What is claimed is: 1. A gear-hydraulic-metal belt integrated multi-mode hydro-mechanical hybrid transmission device, comprising an input assembly, an output assembly, a metal belt transmission mechanism, a planetary gear assembly, a hydraulic transmission mechanism, a clutch assembly, and a brake assembly, wherein the input assembly is connected to the metal belt transmission mechanism, the planetary gear assembly and the hydraulic transmission mechanism; the metal belt transmission mechanism and the hydraulic transmission mechanism are each connected to the planetary gear assembly; the planetary gear assembly is connected to the output assembly; the clutch assembly connects the input assembly to the metal belt transmission mechanism and the planetary gear assembly, and connects each of the metal belt transmission mechanism and the hydraulic transmission mechanism to the planetary gear assembly. 2. The gear-hydraulic-metal belt integrated multi-mode hydro-mechanical hybrid transmission device according to claim 1 , wherein the planetary gear assembly comprises a front planetary gear mechanism and a rear planetary gear mechanism, a ring gear of the front planetary gear mechanism is connected to an output end of the input assembly; a sun gear of the front planetary gear mechanism is connected to a ring gear of the rear planetary gear mechanism, a planet carrier of the rear planetary gear mechanism is connected to the output assembly; the ring gear of the rear planetary gear mechanism is connected to an output end of the metal belt transmission mechanism. 3. The gear-hydraulic-metal belt integrated multi-mode hydro-mechanical hybrid transmission device according to claim 2 , wherein the clutch assembly comprises a first clutch and a fifth clutch; the first clutch is configured for selectively connecting an output end of the hydraulic transmission mechanism to a sun gear of the rear planetary gear mechanism to achieve synchronous rotation; the fifth clutch is used for selectively connecting the ring gear of the rear planetary gear mechanism to the sun gear of the front planetary gear mechanism to achieve synchronous rotation; the brake assembly is configured for selectively connecting the ring gear of the rear planetary gear mechanism to a fixed member; a hydraulic transmission mode is provided between the input assembly and the output assembly by adjusting a displacement ratio of the hydraulic transmission mechanism and controlling engagement of the first clutch, the fifth clutch and the brake assembly. 4. The gear-hydraulic-metal belt integrated multi-mode hydro-mechanical hybrid transmission device according to claim 3 , wherein the clutch assembly further comprises a fourth clutch, the fourth clutch is configured for selectively connecting a planet carrier of the front planetary gear mechanism to the planet carrier of the rear planetary gear mechanism to achieve synchronous rotation; a gear transmission mode is provided between the input assembly and the output assembly by controlling engagement of the fourth clutch, the fifth clutch and the brake assembly. 5. The gear-hydraulic-metal belt integrated multi-mode hydro-mechanical hybrid transmission device according to claim 4 , wherein the clutch assembly further comprises a second clutch and a third clutch; the second clutch is configured for selectively connecting an input end of the metal belt transmission mechanism to the ring gear of the front planetary gear mechanism to achieve synchronous rotation; the third clutch is configured for selectively connecting the output end of the metal belt transmission mechanism to the sun gear of the rear planetary gear mechanism to achieve synchronous rotation; a metal belt transmission mode is provided between the input assembly and the output assembly by adjusting the transmission ratio of the metal belt transmission mechanism and controlling engagement of the second clutch and the third clutch. 6. The gear-hydraulic-metal belt integrated multi-mode hydro-mechanical hybrid transmission device according to claim 5 , wherein: a hydraulic-gear hybrid transmission mode is provided between the input assembly and the output assembly by adjusting the displacement ratio of the hydraulic transmission mechanism and controlling engagement of the first clutch, the fourth clutch and the fifth clutch; a gear-metal belt hybrid transmission mode is provided between the input assembly and the output assembly by adjusting the transmission ratio of the metal belt transmission mechanism and controlling engagement of the second clutch and the fourth clutch; and a hydraulic-metal belt hybrid transmission mode is provided between the input assembly and the output assembly by adjusting the displacement ratio of the hydraulic transmission mechanism, adjusting the transmission ratio of the metal belt transmission mechanism, and controlling engagement of the first clutch, the second clutch and the fifth clutch.
CVT using endless flexible members · CPC title
the mechanical gearing being of the type with members having orbital motion · CPC title
with switching means, e.g. to change ranges · CPC title
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