GB1196720A

GB1196720A – Hydraulic Control System for Automatic Transmission
– Google Patents

GB1196720A – Hydraulic Control System for Automatic Transmission
– Google Patents
Hydraulic Control System for Automatic Transmission

Info

Publication number
GB1196720A

GB1196720A
GB59059/68A
GB5905968A
GB1196720A
GB 1196720 A
GB1196720 A
GB 1196720A
GB 59059/68 A
GB59059/68 A
GB 59059/68A
GB 5905968 A
GB5905968 A
GB 5905968A
GB 1196720 A
GB1196720 A
GB 1196720A
Authority
GB
United Kingdom
Prior art keywords
pressure
valve
line
reverse
speed
Prior art date
1967-12-19
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)

Expired

Application number
GB59059/68A
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)

Nissan Motor Co Ltd

Original Assignee
Nissan Motor Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
1967-12-19
Filing date
1968-12-12
Publication date
1970-07-01

1968-12-12
Application filed by Nissan Motor Co Ltd
filed
Critical
Nissan Motor Co Ltd

1970-07-01
Publication of GB1196720A
publication
Critical
patent/GB1196720A/en

Status
Expired
legal-status
Critical
Current

Links

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Global Dossier

Discuss

Classifications

F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING

F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL

F16H—GEARING

F16H61/00—Control functions within control units of change-speed- or reversing-gearings for conveying rotary motion ; Control of exclusively fluid gearing, friction gearing, gearings with endless flexible members or other particular types of gearing

F16H61/0021—Generation or control of line pressure

Abstract

1,196,720. Change-speed control. NISSAN JIDOSHA K.K. 12 Dec., 1968 [19 Dec., 1967], No. 59059/68. Heading E2D. In a fluid-pressure control of clutches and brakes in a planetary automatic transmission on a vehicle, servo pressure is reduced to a minimum value (2À5 kg./cm.2) for low speed and torque operation (e.g. at engine idle and vehicle stationary prior to entering forward or reverse ratios) by primary and secondary cutdown valves 114, 115, controlled respectively by governor and TV pressures 220, 207, to vary the loading of a main regulator valve 102 as detailed below). At higher speeds and torques there is a stepwise increase with speed followed by normal graduated TV responsive increase. Pressure augmentation in reverse is provided. Control function.-A manual ranging valve 104 has D setting, giving automatic shifts between all three forward ratios, first being oneway; 2-setting for an invariable second ratio; 1-setting for an invariable two-way first; R reverse and P, parklock. Automatic shifts respond to output speed and engine inletmanifold depression or throttle setting. Accelerator kickdown by solenoid valve 109 is provided in D range. Gear arrangement.-The gear, Fig. 1, not shown, is the conventional torque-converterdriven Simpson two-train planet gear giving direct-drive high, two reduced ratios and one reverse by selective input clutches 4, 5 brakes 6, 7 and a one-way brake (10) (Fig. 1, not shown). Clutches and brakes.-One input clutch 5 is engaged for all forward ratios, the other 4 for direct-drive and reverse only. Second ratio band-brake 6 is applied by pressure 212 supplied to its apply chamber 123 and released, for 2-3 upshift, by pressure 214 supplied also to a differential area release chamber 124, simultaneously with pressure supply 214 to the directdrive clutch 4, providing shift timing. Twoway-low and reverse brake 7 parallels a one-way brake (10). Fluid pressure supply, is by a single inputdriven pump 101 regulated by a regulator valve 102 subject to complex governor and TV pressure loading, as described below. Control pressures. Governor.-A two-stage output mounted governor-valve 112, 113 meters governor pressure 220 from a line 201 supplied with line pressure 200 through the manual valve 104 in settings D, 2 and 1 only. There is no governor pressure in reverse and other settings. TV pressure.-A TV valve 107 meters TV pressure 207 fromline pressure 200 under control of engine inlet-manifold depression 502 or engine throttle setting. Before being fed to act on automatic shift valves, TV pressure 207 is reduced by a TV modulator valve 108 at the left end of a 2-3 shift-valve 106. Shift valves.-Differentially-landed 1-2 and 2-3 automatic shift valves 105, 106 are loaded leftwards for upshift by governor pressure 220, and rightwards for downshift by spring and modulated TV pressure 208. A second-speed lock-up valve 116 is shifted rightwards in 2- setting of the manual valve 104 to send pressure 212 directly to the apply side 123 of the secondspeed brake 6 for fixed second ratio. Kickdown valve 109 is effective only in D setting and acts by solenoid 504 for 3-2 and 2-1 kickdown. Servo pressure control.-The differentiallylanded main regulator valve 102, loaded by a spring 311 regulates a leak-off from the pressure main 200, first to a torque-converter feed line 216, and second to exhaust. An aligned boostvalve 103 increases the rightward loading, and hence system-pressure 200, by TV pressure loading 207. Regulator loading is further modified as follows by the primary and secondary cut-down valves 114, 115 forming the subjectmatter of this invention. The primary cut-down valve 114 governs a line 222 supplying opposing leftward loading to the small right end face of the main regulator 102, thus tending to reduce system pressure. In the positions shown, corresponding to low vehicle speed and low torque demand (low TV) thus pressure-reducing load-line 222 receives full line pressure 200 through the secondary cutdown valve 115, line 221 and primary valve 114, producing maximum leftward loading and hence minimum system pressure 200 (2À5 kg./ cm.2). This provides soft clutch and brake engagement for low speed and torque operation such as on entering forward or reverse from neutral at engine idle and vehicle standstill. At a higher predetermined speed, governor pressure 220 shifts the primary valve 114 left, substituting TV pressure 207 for line pressure 221 in the opposing load line 222 of the regulator 102, where it is overcome by the rightward TV load 207 on the larger-diameter boost valve 103. Thus after an initial stepwise drop, line pressure 200 increases with TV pressure in the normal manner. At high torque, low speed, e.g. on starting, the secondary cut-down valve 115 is moved left by high TV pressure 107 to exhaust the line 221, which, in the low-speed position (shown) of the primary valve 114, communicates with the leftward load line 222 of the regulator 102. The rightward regulator loading, now unopposed by line 222, rises stepwise to give maximum line pressure 200 under TV pressure control through the boost valve 103. In this condition increase in vehicle speed shifts the primary vave 114 leftwards, so that TV pressure 207 is applied to both ends of the regulator 102, which causes a stepwise decrease in line-pressure 200 and subsequent variation under TV control. The secondary cut-down valve 115 may be arranged to provide a regulated pressure below a predetermined TV value. Reverse pressure augmentation is provided by a line 206 communicating line pressure 200 through the manual valve 104 with a differential loading chamber in the regulator valve. Three dimensional charts showing variation in line pressure with speed and TV pressure in forward and reverse are provided (Figs. 3, 4, not shown).

GB59059/68A
1967-12-19
1968-12-12
Hydraulic Control System for Automatic Transmission

Expired

GB1196720A
(en)

Applications Claiming Priority (1)

Application Number
Priority Date
Filing Date
Title

JP8097867

1967-12-19

Publications (1)

Publication Number
Publication Date

GB1196720A
true

GB1196720A
(en)

1970-07-01

Family
ID=13733579
Family Applications (1)

Application Number
Title
Priority Date
Filing Date

GB59059/68A
Expired

GB1196720A
(en)

1967-12-19
1968-12-12
Hydraulic Control System for Automatic Transmission

Country Status (3)

Country
Link

US
(1)

US3561296A
(en)

FR
(1)

FR1599272A
(en)

GB
(1)

GB1196720A
(en)

Cited By (3)

* Cited by examiner, † Cited by third party

Publication number
Priority date
Publication date
Assignee
Title

FR2172697A5
(en)

*

1972-02-15
1973-09-28
Nissan Motor

FR2217178A1
(en)

*

1972-10-28
1974-09-06
Nissan Motor

DE2934921A1
(en)

*

1978-08-30
1980-03-13
Nissan Motor

SWITCH-PRESSURE REDUCING DEVICE

Families Citing this family (12)

* Cited by examiner, † Cited by third party

Publication number
Priority date
Publication date
Assignee
Title

US3683721A
(en)

*

1969-09-09
1972-08-15
Toyota Motor Co Ltd
Hydraulic control system for automatic transmissions

JPS4842130B1
(en)

*

1970-03-18
1973-12-11

JPS4922482B1
(en)

*

1970-05-29
1974-06-08

JPS4838574B1
(en)

*

1970-11-21
1973-11-19

US4020718A
(en)

*

1972-02-15
1977-05-03
Nissan Motor Co., Ltd.
Hydraulic system for an automatic power transmission

JPS5623060B2
(en)

*

1973-09-17
1981-05-28

JPS5169752A
(en)

*

1974-12-13
1976-06-16
Toyota Motor Co Ltd
Jidohensokukino yuatsuseigyosochi

US4005620A
(en)

*

1975-04-23
1977-02-01
Zahnradfabrik Friedrichshafen Ag
Hydraulic gear-shift control for automotive transmission systems

IT1072036B
(en)

*

1976-11-24
1985-04-10
Sira

TWO-GAIT CONTROL CIRCZIT FOR AUTOMATIC VARIATORS WITH TRAPEZOIDAL BELT, PARTICULARLY FOR MOTOR VEHICLES

JPS58109752A
(en)

*

1981-12-23
1983-06-30
Mitsubishi Motors Corp
Creep preventor of automatic transmission for vehicle

JPS58137650A
(en)

*

1982-02-10
1983-08-16
Nissan Motor Co Ltd
Operation controlling apparatus for automatic transmission

JPS5913157A
(en)

*

1982-07-14
1984-01-23
Mitsubishi Motors Corp
Creep preventive device of automatic speed changer for vehicle

1968

1968-11-29
US
US779927A
patent/US3561296A/en
not_active
Expired – Lifetime

1968-12-12
GB
GB59059/68A
patent/GB1196720A/en
not_active
Expired

1968-12-16
FR
FR1599272D
patent/FR1599272A/fr
not_active
Expired

Cited By (3)

* Cited by examiner, † Cited by third party

Publication number
Priority date
Publication date
Assignee
Title

FR2172697A5
(en)

*

1972-02-15
1973-09-28
Nissan Motor

FR2217178A1
(en)

*

1972-10-28
1974-09-06
Nissan Motor

DE2934921A1
(en)

*

1978-08-30
1980-03-13
Nissan Motor

SWITCH-PRESSURE REDUCING DEVICE

Also Published As

Publication number
Publication date

DE1816524B2
(en)

1975-05-28

FR1599272A
(en)

1970-07-15

DE1816524A1
(en)

1970-07-23

US3561296A
(en)

1971-02-09

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Legal Events

Date
Code
Title
Description

1970-11-11
PS
Patent sealed [section 19, patents act 1949]

1986-07-30
PCNP
Patent ceased through non-payment of renewal fee

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