IP Library Granted Patent US 8,145,384
Granted Patent B2
US 8,145,384 · App. 12/615,545 · Granted Mar 27, 2012

Lubricating oil cooling device for traveling speed reduction gear

Assignee: Hitachi Construction Machinery Co., Ltd.
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Quick Facts
Patent No.
US 8,145,384
App. No.
12/615,545
Granted
Mar 27, 2012
Kind
B2
Abstract

The present invention provides a traveling speed reduction gear lubricating oil cooling device that enables optimal temperature control for lubricating oil delivered via a lubricating oil pump that can be started up with a relatively small motor without running the risk of damage to an oil cooler in a cold work environment even when a temperature sensor that detects the temperature of the lubricating oil is installed outside a wheel mounting sleeve. During a startup operation, provided that the detected temperature at a traveling motor is higher than the reference temperature, the lubricating oil pump is driven at a speed in a lower speed range relative to the normal operation speed range. In addition, during the startup operation, the rotation speed of the drive motor for the lubricating oil pump is increased in correspondence to a rise in the temperature detected by a lubricating oil temperature detection sensor.

Claims (48)

1. A traveling speed reduction gear lubricating oil cooling device in a work vehicle, including:

a tubular wheel mounting sleeve that rotates as one with wheels of said work vehicle;

a traveling motor used to drive said wheel mounting sleeve;

a reduction gear unit housed inside said wheel mounting sleeve and constituted with a gear mechanism that slows rotation of said traveling motor and transmits the slowed rotation to said wheel mounting sleeve; and

a circulation path and a lubricating oil pump disposed outside said wheel mounting sleeve, via which reduction gear lubricating oil drawn out of said wheel mounting sleeve is cooled at an oil cooler and then made to travel back into said wheel mounting sleeve:

characterized in that said traveling speed reduction gear lubricating oil cooling device comprises:

a first temperature sensor that detects the temperature of said traveling motor;

a second temperature sensor disposed in said circulation path outside said wheel mounting sleeve, which detects the temperature of the lubricating oil;

a traveling motor reference temperature setting means for setting in advance a reference temperature for said traveling motor;

a motor temperature comparison means for comparing the temperature detected by said first temperature sensor with said reference temperature set for said traveling motor; and

a startup operation control means for increasing the rotation speed of a drive motor for the lubricating pump in correspondence to a rise in the temperature detected by said second temperature sensor within a speed range lower than a normal operating speed upon determining that the temperature detected by said first temperature sensor is equal to or higher than said reference temperature set for said traveling motor.

2. A traveling speed reduction gear lubricating oil cooling device according to claim 1 , further comprising:

a startup operation lubricating oil reference temperature setting means for setting a single startup operation lubricating oil reference temperature or a plurality of startup operation lubricating oil reference temperatures for startup operation, lower than a reference temperature at which said lubricating oil is cooled during normal operation; and

a startup operation lubricating oil temperature comparison means for comparing the temperature detected by said second temperature sensor with a startup operation lubricating oil reference temperature, wherein:

said startup operation control means increases the rotation speed of said drive motor for said lubricating oil pump in steps once the temperature detected by said second temperature sensor becomes equal to or higher than said startup operation lubricating oil reference temperature.

3. A traveling speed reduction gear lubricating oil cooling device according to claim 2 , further comprising:

a bypass valve constituted with a check valve installed in an outlet-side piping located on an outlet side of said lubricating oil pump via which oil having been output is redirected toward an intake side when said lubricating oil pump outputs said lubricating oil with an excessive pressure;

a pressure sensor that detects said lubricating oil pressure at said outlet-side piping; and

a reference output pressure setting means for setting a reference output pressure slightly lower than a cracking pressure at which said bypass valve cracks, wherein:

said startup operation control means has a function of temporarily stopping said drive motor for said lubricating oil pump when the output pressure at said bypass valve in said outlet-side piping becomes equal to or greater than said reference output pressure.

4. A traveling speed reduction gear lubricating oil cooling device according to claim 2 , further comprising:

a bypass valve constituted with a check valve installed in an outlet-side piping located on an outlet side of said lubricating oil pump via which oil having been output is redirected toward an intake side when said lubricating oil pump outputs said lubricating oil with an excessive pressure;

a pressure sensor that detects said lubricating oil pressure at said outlet-side piping; and

a reference output pressure setting means for setting a reference output pressure slightly lower than a cracking pressure at which said bypass valve cracks, wherein:

said startup operation control means has a function of temporarily slowing said drive motor for said lubricating oil pump when the output pressure at said bypass valve in said outlet-side piping becomes equal to or greater than said reference output pressure.

5. A traveling speed reduction gear lubricating oil cooling device according to claim 1 , further comprising:

a motor speed calculation means for calculating through arithmetic operation a speed of said drive motor for said lubricating oil pump in correspondence to the temperature detected by said second temperature sensor, wherein:

said startup operation control means increases the rotation speed of said drive motor for said lubricating oil pump in correspondence to a rise in the temperature detected by said second temperature sensor based upon calculation results provided by said motor speed calculation means.

6. A traveling speed reduction gear lubricating oil cooling device according to claim 5 , further comprising:

a bypass valve constituted with a check valve installed in an outlet-side piping located on an outlet side of said lubricating oil pump via which oil having been output is redirected toward an intake side when said lubricating oil pump outputs said lubricating oil with an excessive pressure;

a pressure sensor that detects said lubricating oil pressure at said outlet-side piping; and

a reference output pressure setting means for setting a reference output pressure slightly lower than a cracking pressure at which said bypass valve cracks, wherein:

said startup operation control means has a function of temporarily stopping said drive motor for said lubricating oil pump when the output pressure at said bypass valve in said outlet-side piping becomes equal to or greater than said reference output pressure.

7. A traveling speed reduction gear lubricating oil cooling device according to claim 5 , further comprising:

a bypass valve constituted with a check valve installed in an outlet-side piping located on an outlet side of said lubricating oil pump via which oil having been output is redirected toward an intake side when said lubricating oil pump outputs said lubricating oil with an excessive pressure;

a pressure sensor that detects said lubricating oil pressure at said outlet-side piping; and

a reference output pressure setting means for setting a reference output pressure slightly lower than a cracking pressure at which said bypass valve cracks, wherein:

said startup operation control means has a function of temporarily slowing said drive motor for said lubricating oil pump when the output pressure at said bypass valve in said outlet-side piping becomes equal to or greater than said reference output pressure.

8. A traveling speed reduction gear lubricating oil cooling device according to claim 1 , further comprising:

a bypass valve constituted with a check valve installed in an outlet-side piping located on an outlet side of said lubricating oil pump via which oil having been output is redirected toward an intake side when said lubricating oil pump outputs said lubricating oil with an excessive pressure;

a pressure sensor that detects said lubricating oil pressure at said outlet-side piping; and

a reference output pressure setting means for setting a reference output pressure slightly lower than a cracking pressure at which said bypass valve cracks, wherein:

said startup operation control means has a function of temporarily stopping said drive motor for said lubricating oil pump when the output pressure at said bypass valve in said outlet-side piping becomes equal to or greater than said reference output pressure.

9. A traveling speed reduction gear lubricating oil cooling device according to claim 1 , further comprising:

a bypass valve constituted with a check valve installed in an outlet-side piping located on an outlet side of said lubricating oil pump via which oil having been output is redirected toward an intake side when said lubricating oil pump outputs said lubricating oil with an excessive pressure;

a pressure sensor that detects said lubricating oil pressure at said outlet-side piping; and

a reference output pressure setting means for setting a reference output pressure slightly lower than a cracking pressure at which said bypass valve cracks, wherein:

said startup operation control means has a function of temporarily slowing said drive motor for said lubricating oil pump when the output pressure at said bypass valve in said outlet-side piping becomes equal to or greater than said reference output pressure.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 10, 2009
From: MURAHASHI, TAKAYOSHI; MURAKAMI, OSAMU; ITOH, KENJI
To: HITACHI CONSTRUCTION MACHINERY CO., LTD.
Reel/Frame 023495/0729 →
Priority Claims (1)
JP 2009-016241 · Jan 28, 2009 · national
Continuity (1)
Related Publication 20100187043A1 · Jul 29, 2010