Hydraulic fluid storage for a powertrain
First Claim
1. Oil storage structure in a power transmission comprising:
- a transmission housing;
a primary storage reservoir for continuously storing hydraulic fluid for use in the power transmission, said hydraulic fluid having a desired operating range including a first temperature and a second temperature;
a secondary storage reservoir comprising a cooling structure remote from said transmission housing for storing and cooling hydraulic transmission fluid when the temperature is at or above said second temperature; and
a valve mechanism including a flow directing element, a thermally responsive spring, and a bias spring, said bias spring maintaining said flow directing element in a first position to prevent fluid flow to said secondary reservoir when said fluid is at or below said first temperature and simultaneously permit fluid in said secondary reservoir to return to said primary reservoir, said thermally responsive spring moving said flow directing element to a second position to direct fluid to said secondary reservoir and from said secondary reservoir to a lube circuit and prevent direct flow from said secondary reservoir to said primary reservoir.
1 Assignment
0 Petitions
Accused Products
Abstract
A powertrain includes a multi-speed transmission having a primary storage reservoir which has sufficient volume to contain the transmission fluid when the temperature thereof is at or below a predetermined temperature. At higher temperatures, a portion of the hydraulic fluid is directed to a cooling device which also provides secondary storage. A valve mechanism is provided to control the hydraulic fluid flow such that below the predetermined temperature, hydraulic fluid is not directed to the cooling device which is drained by the valve mechanism to the primary storage. The valve mechanism is temperature-responsive whereby at temperatures above the predetermined temperature a portion of the hydraulic fluid must fill and pass through the cooling device before being directed to a lubrication circuit and returned to the primary storage, thereby increasing the storage volume available to the system.
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Citations
3 Claims
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1. Oil storage structure in a power transmission comprising:
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a transmission housing; a primary storage reservoir for continuously storing hydraulic fluid for use in the power transmission, said hydraulic fluid having a desired operating range including a first temperature and a second temperature; a secondary storage reservoir comprising a cooling structure remote from said transmission housing for storing and cooling hydraulic transmission fluid when the temperature is at or above said second temperature; and a valve mechanism including a flow directing element, a thermally responsive spring, and a bias spring, said bias spring maintaining said flow directing element in a first position to prevent fluid flow to said secondary reservoir when said fluid is at or below said first temperature and simultaneously permit fluid in said secondary reservoir to return to said primary reservoir, said thermally responsive spring moving said flow directing element to a second position to direct fluid to said secondary reservoir and from said secondary reservoir to a lube circuit and prevent direct flow from said secondary reservoir to said primary reservoir. - View Dependent Claims (2)
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3. Oil storage structure in a power transmission comprising:
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a transmission housing; a primary storage reservoir formed within said transmission housing for continuously storing hydraulic fluid for use in the power transmission, said hydraulic fluid having a desired operating range including a first temperature and a second temperature; a secondary storage reservoir comprising a cooling structure remote from said transmission housing for storing and cooling hydraulic transmission fluid when the temperature is at or above said second temperature; and a valve mechanism including a flow directing element, a thermally responsive spring, and a bias spring, said bias spring maintaining said flow directing element in a first position to prevent fluid flow to said secondary reservoir when said fluid is at or below said first temperature and simultaneously permit fluid in said secondary reservoir to return to said primary reservoir, said thermally responsive spring moving said flow directing element to a second position to direct fluid to said secondary reservoir and from said secondary reservoir to a lube circuit and prevent direct flow from said secondary reservoir to said primary reservoir.
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Specification