USRE15312E - Transmission-controlling mechanism - Google Patents

Transmission-controlling mechanism Download PDF

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Publication number
USRE15312E
USRE15312E US15312DE USRE15312E US RE15312 E USRE15312 E US RE15312E US 15312D E US15312D E US 15312DE US RE15312 E USRE15312 E US RE15312E
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Prior art keywords
shaft
clutch
transmission
gear
lever
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16HGEARING
    • F16H63/00Control outputs from the control unit to change-speed- or reversing-gearings for conveying rotary motion or to other devices than the final output mechanism
    • F16H63/40Control outputs from the control unit to change-speed- or reversing-gearings for conveying rotary motion or to other devices than the final output mechanism comprising signals other than signals for actuating the final output mechanisms
    • F16H63/46Signals to a clutch outside the gearbox
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60WCONJOINT CONTROL OF VEHICLE SUB-UNITS OF DIFFERENT TYPE OR DIFFERENT FUNCTION; CONTROL SYSTEMS SPECIALLY ADAPTED FOR HYBRID VEHICLES; ROAD VEHICLE DRIVE CONTROL SYSTEMS FOR PURPOSES NOT RELATED TO THE CONTROL OF A PARTICULAR SUB-UNIT
    • B60W10/00Conjoint control of vehicle sub-units of different type or different function
    • B60W10/02Conjoint control of vehicle sub-units of different type or different function including control of driveline clutches
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60WCONJOINT CONTROL OF VEHICLE SUB-UNITS OF DIFFERENT TYPE OR DIFFERENT FUNCTION; CONTROL SYSTEMS SPECIALLY ADAPTED FOR HYBRID VEHICLES; ROAD VEHICLE DRIVE CONTROL SYSTEMS FOR PURPOSES NOT RELATED TO THE CONTROL OF A PARTICULAR SUB-UNIT
    • B60W10/00Conjoint control of vehicle sub-units of different type or different function
    • B60W10/10Conjoint control of vehicle sub-units of different type or different function including control of change-speed gearings
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60KARRANGEMENT OR MOUNTING OF PROPULSION UNITS OR OF TRANSMISSIONS IN VEHICLES; ARRANGEMENT OR MOUNTING OF PLURAL DIVERSE PRIME-MOVERS IN VEHICLES; AUXILIARY DRIVES FOR VEHICLES; INSTRUMENTATION OR DASHBOARDS FOR VEHICLES; ARRANGEMENTS IN CONNECTION WITH COOLING, AIR INTAKE, GAS EXHAUST OR FUEL SUPPLY OF PROPULSION UNITS IN VEHICLES
    • B60K2702/00Control devices wherein the control is combined with or essentially influenced by the engine or coupling, e.g. in an internal combustion engine, the control device is coupled with a carburettor control device or influenced by carburettor depression
    • B60K2702/08Semi-automatic or non-automatic transmission with toothed gearing
    • B60K2702/18Semi-automatic or non-automatic transmission with toothed gearing with a preselection system, e.g. semi-automatic
    • B60K2702/20Semi-automatic or non-automatic transmission with toothed gearing with a preselection system, e.g. semi-automatic using different control members for preselection and actuating, e.g. shift actuation is initiated by clutch pedal with elastic connection for energy accumulation
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T74/00Machine element or mechanism
    • Y10T74/19Gearing
    • Y10T74/19219Interchangeably locked
    • Y10T74/19242Combined gear and clutch
    • Y10T74/19247Preselector

Definitions

  • My invention relates to new and useful improicmcnts in power transmission mechanism for motor vehicles and means for controlling the same and the object of my invention is to improve the construction and increase the etliciency of the controlling mechanism for transmission gearing.
  • a further object of my invention is to provide means for changing the gears without the use of the ordinary change gear lever and H gate.
  • a further object of my invention is to provide a controlling mechanism which eliminates all possibility of changing the gearing without first releasing the clutch.
  • a still further object of my invention is to provide a controlling mechanism in which the gearings must be locked in operative relation to each other before the clutch is thrown in.
  • Figure l is a fragmentary elevation of a motor car with my transmission mechanism applied thereto, parts being broken away to better show my invention.
  • Figure 2 is a central longitudinal section through the casings enclosing the control mechanism proper and the transmission gearing.
  • Figure 3 is a section on the line 3- 3 of Figure 2.
  • Figure 4 is a fragmentary section on the line 44of Figure 2
  • Figure 5 is a longitudinal sectional view Application for reissue filed February 6, 1922.
  • Figure 6 is a top plan of the quadrant and quadrant lever by means of which the selection of the gearing is accomplished.
  • Figure 7 is a front elevation of the quad rant, the lever handle being shown in section to bring out the construction of its locking pawll
  • Figure 8 is a perspective of the tumbling shaft which is turned by the quadrant lever to select the desired gear.
  • 10 designates a conventional form of motor vehicle having an engine ill, crank shaft 12 provided with the usual fly wheel 13 and clutch 14:, 15 the drive shaft and i6 desig nates as a whole the casing of my differential and control mechanism which, as shown, is positioned at the juncture of the crank shaft .12 and drive shaft 15.
  • crank shaft 12 designates the casing of the transmission mechanism proper and journaled in the front wall of this casing is the free end of the crank shaft 12 which is preferably provided with a socket 18 shaped to receive the reduced terminal 19 of the drive shaft 15 which shaft is journaled in the back wall of the casingin a bearing 21.
  • a spur gear 22 Keyed upon that portion of the crank shaft 12 within the casing is a spur gear 22 while mounted for rotation upon the drive shaft 15 are spur gears 23, 24 and 25. the opposing faces of the gears 22 and 23 and of the gears 24 and 25 being recessed for the reception of the clutch fingers 26 of clutches 27 and 28 which are slidably keyed upon the drive shaft.
  • a jack shaft 30 which extends in parallel spaced relation to the drive shaft and upon which are keyed spur gears 31, 32, 33 and 34, the gears 31, 32 and 33 meshing with the gears 22, 23 and 24, while the gear 34 meshes with a gear 35 carried by a stub shaft 36, said latter gear in turn meshing with the gear 25 of the drive shaft.
  • clutch operating rods 37 and 38 Slidably mounted in suitable bores formed in the front and back walls of the casing 17 areclutch operating rods 37 and 38, the former of which is provided with an arm 39 terminating in a fork 40 engaging the clutch 28, while the rod 38 is rovided with a similar arm 41 having a for 42 which enga es the clutch 27.
  • My present invention relates primarily to the mechanism by means of which the clutch operating rods 37 and 38 are reciprocated and the description of the mechanism above given has been introduced merely to render more clear the operation of my device.
  • the top of the transmission casin 17 is openand secured u on the top of tiiis casi is a casing 43 w ich incloses the contro ing mechanism proper.
  • a pair of spaced brackets 44 and 45 an centrally pivoted upon these brackets are cross bars 46 and 47.
  • Each of these cross bars is free to swing upon its pivotal point and they are connected to the rods 37 and 38 respectively in such a manner that such swinging will be communicated to the rods to reciprocate the same.
  • this shaft 59 is reduced as at 60 to pass through a suitable bearing formed in the casin and is provided upon its outer end with a evel gear 61 by means of which the shaft may be revolved as will be hereinafter explained.
  • the other end of the shaft is reduced to form a trunnion 62 which is journaled in a socket formed in the end of a bolt 63 which is threaded into a tapped bore formed in the opposite side of the casing.
  • the portions of. the shaft 59 beneath the push rods 55, 56,: and 58 are. noteliedas at 64, 65, 66and .67. As will besee iwhen one of these notches is directed upward, the corresponding push rod will tilt down'to seat in the notch and will therefore be supported at a lower levelthan the remaining push rods.
  • These notches are formedinthe shaft in staggered relation and in such a manner that in one position of the shaft all of the push rods will be supported in raised position. and in such a manner that but one push rod at a time can be lowered.
  • leaf springs 88, 69, and 71 which as shown bear upon the push rods intermediate their length and exert a constant downward pressure upon the same, the springs 68 and 69 being secured to the pivotal point of the cross bar 46, by one end and having their opposite ends bearing upon the push rods 55 and 56 while the springs 70and 71 are each secured by one end to the pivotalp'ojint of the cross bar 47 and have their freaiends bearing upon the push rods 57 and 58.
  • the free ends of these springs are enlarged and prov ded with downwardly extending spaced pins 72 which bear one upon each side of the push rods and so prevent disengage ment of the springs.
  • Extending longitudinally of the casing is a pair'of parallel, spaced guide rods 73 which are passed through sleeves 74 carried by the ends of a cross head 75 which is thus mounted for reciprocation longitudinally of the casing.
  • the upperface of this cross head is provided with transversely extending grooves 76, 77, 78 and 79 in which the push rods 55, 56, 57 and 58 rest and which serve to maintain said rods in proper spaced position so that they will seat in their respective notches of the tumbling shaft.
  • Each of the push rods is formed with a shoulder 80 extending downwardly from its lower face which is slidable through the groove of the cross head when the push rod is in normal position but which will engage with the cross head when the push rod is seated in its notch in the tumbling shaft 59, these shoulders being formed at a point between the cross head and the pivoted ends of the push rods.
  • Each push rod' is also provided upon the other side of the cross head with a transversely extending pin 81 the ends of which extend upon each side of the push.rod in position to engage against the cross head when the latter is drawn toward the front end of the casing.
  • this sleeve is provided with an upwardly directed, integrally formed arm 86 which is engaged by the lateral extension 87 of an upwardly directed arm 88 formed integrally with one end of a second sleeve 89 which is also carried by the shaft 82 and the other end of which is provided with an upwardly directed arm 90 to which is pivotally connected one end of the break rod 91.
  • This sleeve 89 is provided intermediate its length with an integrally formed foot edal 92 by means of which the sleeve may he turned to apply the brake and to simultaneously release the clutch 14.
  • Rotatably mounted about the sleeve 83 is asleeve 93 one end of which is provided with an upwardly directed arm 94 having a lateral extension 95 which also engages with the arm 86 of the sleeve 83.
  • the other end of this sleeve is provided with an integrally formed arm 96 to which is pivoted one end of a con necting rod 97 the other end of which is pivoted to the outer end of a rod 98 which is slidably mounted in a bearing formed in the front wall of the casing 43 and the other end of which is rigidly secured to the central portion of the cross head by a bolt 99.
  • the sleeve 93 is provided intermediate its len th with an upwardly directed, integra ly formed footpedal 100 by means of which it may be rotated to simultaneously release the clutch 14 and to draw the cross head 75 toward the tumbling shaft 59.
  • a shaft 101 one end of which is journaled in a suitable housing 102 formed about the bevel gear 61 while the other end is journaled in a bearing 103 carried by the casing 104 of the steering column. That end of the shaft journaled in the housing 102 is provided with a bevel gear 105 which meshes with the bevel gear 61 of the tumbling shaft while the other end of the shaft 101 is provided with a gear 106 which meshes with a gear 107 carried by the lower end of a shaft 108 which end, is journaled in a bearing 109 also carried by the casing 104 of the steering column.
  • the free end of the shaft 108 extends through a suitable bore formed at the center part of a quadrant 109 which is secured in place by a clamping ring 110 which engages about the steering column immediately below the steering wheel 111.
  • a lever 112 Secured to the upper end of this shaft 108 is a lever 112 which swings over the quadrant and which is provided with a spring pressed pawl 113 having a trigger 120, said pawl being adapted to engage in any one of a plurality of notches 114, 115, 116, 117 and 118 formed at spaced intervals about the peripheral edge of the quadrant.
  • these notches with the exception of the notch 114 are so formed that the lever maybe moved from one to the other without manually disengaging the pawl by means of its trigger.
  • the notch 114 however is so formed that the pawl must be manually released before the lever can be'swung to the notch 118.
  • the quadrant is provided at each end with an upwardly directed lug 119 which
  • the pedal 100 is then released, throwing the clutch 14 and moving the cross head 75 toward the rear end of the casing.
  • the cross head engages against the sshouldcr 80 of the push rod 56 forcing said rod toward the rear of the casing and rotating the cross bar 46 to throw the transmission clutch 28 into en a ment with the gear 24 to give a low spee rive.
  • the clutch pedal 100 is then released to throw in the clutch 14 and to move the cross head toward the rear of the casing during which movement, it enga s with the shoulder of the push rod 58 which in the mean time has fal en into the notch 65 of the tumbling shaft, forcing the same rearwardly and turningrthe cross bar 47 to throw the transmission clutch 27 into engagement with the gear 23, thus giving in-' termediate speed.
  • the high gear can be thrown in by moving the lever 112 to the no(t1cl11 117 and again operating the clutch pe a If when the are were in neutral posi tion a reverse rive had been desired, the lever 112 would be swun to the notch 118 and the clutch pedal ac uated.
  • both the brake pedal 92 and the clu h pedal 100 throw the clutch 14 into inoperative position but the operation of the brake dal in no way effects the gearing of the ransmission mechamsm.
  • a certain set of gearing may be selected While the machine is running and another set of gearing is in position, this selection taking place prior to changing from one set to the other set of gearing and without affecting the caring in use. For instance, if the machine e traveling on a level road with the hi h gearing in use, and is approaching a hil or rou h stretch of road where it is desired to use t ie low gearing, the quadrant lever may be moved to the low osition at once to select such low gearing, ut the latter, of course, will not be thrown into 0 eration until the foot pedal is actuated.
  • the quadrant lever 112 may be moved to any position at any time without changing any gears in the transmission mechanism until the clutch 14 is released and then thrown in again.
  • w 'ch broadly speak-in ,consists of a control mechanism for a se ective gear transmission mechanism 0 erated and governed by a single lever an the clutch pedal.
  • the combination with reciprocallg mounted power transmimion elements, 0 pivotal] mounted crom bars connect' means be ween said cross bars and transmission elements, push'rods each canreciprocating nected at one end to one end of one of said cross bar's, means for lowenng any of'said push bars at selected'times and means for reciprocating said lowered push bar.
  • the combination with reciprocally mounted power transmission elemen of movably mounted bars means oper is by the movement of said bars for said transmission elements, pus ro'ds each movably connected at one end to one end of one of said bars, a cross head reciprocally mou'nted below said bars, means for said push rods an adapted to be opfratedto lower a selected one of said-pus rods upon the cross head, each rod having means for engaging the cross head when such is lowere and means for reciprocating the cross head to actuate the engaging rod.
  • fluaFMF nminntions extending relation with' placed in driving relation tpsush supporting the free on oflaterally from each p'ush rod, a transversel extendingshaft for an portin the free endh of said u'sh rods, sai shaft aving notches into which certain of the push rods fall when the shaft is in certain position, means 'for rotating the shaft through predetermined angles; a cross head positioned beneath the push rods in position to be engaged by the shoulder of a rod when the latter is lowered and the cross head moved in one direction sa d cross head engaging the pro tion 0 said lowered red when moved in he opposite direction and means for reciprocating the cross head.
  • a gear shifting device comprising a movably mounted fin er, pivotal1y mounted members supported and controlled thereby, and an ac ating lever cooperating with said mem- 8.
  • a gear shifting device a movably'afl mounted finder ivotal y hers apd an indicator operatively conwlth said finder for setting theme.
  • a movablymounted finder In a gear shiftinfi device, a movablymounted finder, l peivota y-mounted members normally suppo d thereby, said finder hav' mg a notch, an indicator operativel connected with said finder. for se e lat ter, and an actuating lever coopera ing with said pivotall mounted members.
  • a variable speed transmission gearing havmg a plurality of shiftable elements, means for shifting said elements embodying pivotedmembers movable with sai'cl.elements, a selective finder cooperating with and-su porting said pivoted members, and an in motor 'for cooperation with said finder.
  • variable speed transmission gearing having variable speed transmission gearing normally elevated ftpivoted members so a member movable to a plurality of shiftable elements combined with a foot pedal, and connections embody-' mg an EOhlflfililF lever, and a Elurality of pivoted vertica y-movable mem ers cooperating with said lever.
  • Gear-shifting mechanism comprising an actuating member, shifteble members, rods connected to the means associated with the actuating member for moving the rods in either direction to place said members in driving position and or first returning the rods to neutral tion before movin the latter to place said members in operative position.
  • a motor vehicle, -a, variable-s eed transmisslonfear having an element 'ftable in two irections, a'plurality of members connected thereto means operable indepeudentl of the osition of said element to selective y control the direction of its actuation and actuating the element in the selected direction.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Transportation (AREA)
  • Mechanical Operated Clutches (AREA)

Description

I. E. COFFEY. TRANSMISSION CONTROLLING MECHANISM.
APPLICATION FILED FEB- 6. I922.
4 SHEETS5SHEET Reissued Mar. 21, 1922.
' gwvewlio'c j. J aft/Ly 77 flftomuqm wirtmeooco I. E. COFFEY.
TRANSMISSION CONTROLLING MECHANISM.
APPLICATION FILED FEB. 5. 1922.
V 4 SHEETS-SHEET 2. -F -2- Reissued Mar. 21, 1922. 1 5,312.
6& 46
WMeom E. COFFEY. TRANSMISSION CONTROLLING MECHANISM.
APPLICATION FILED fE-B. 6| 1922.
4 SHEETS-SHEET 4.
EGG-E.
Reissued Mar. 21, 1922.
III
,, Ezq-E- Iwuemtoz g I (Brennan UNITED STATES IRVEN E. COFFEY, 0F
LAWTON, OKLAHOMA.
TRANSMISSION-CONTROLLING MECHANISM.
Specification of Reissued Letters Patent.
Reissued Mar. 21, 1922.
Original application filed April 1, 1912, Serial No. 687,633. Renewed July 17, 1920, Serial No. 397,152.
Original No. 1,402,839, dated January 10, 1922.
Serial No. 535,164.
T 0 all 'whmn it may concern Be it known that I. IuvnN E. CoFFnY, a citizen of the United States, residing at Lawton, in the county of Comanche, State of Oklahoma, have invented certain new and useful improvements in Transmissiou-ControllingMechanisms; and I do hereby declare the following to he a full, clear, and exact description of the invention. such as will enable others skilled in the art to which it appertains. to make and use the same.
My invention relates to new and useful improicmcnts in power transmission mechanism for motor vehicles and means for controlling the same and the object of my invention is to improve the construction and increase the etliciency of the controlling mechanism for transmission gearing.
A further object of my invention is to provide means for changing the gears without the use of the ordinary change gear lever and H gate.
A further object of my invention is to provide a controlling mechanism which eliminates all possibility of changing the gearing without first releasing the clutch.
And a still further object of my invention is to provide a controlling mechanism in which the gearings must be locked in operative relation to each other before the clutch is thrown in.
With these and other objects in view. my invention will be more fully described, illustrated in the accompanying drawings which show a preferred embodiment of my device and then specifically pointed out in the claims which are attached to and form a part of this specification.
In the drawings,
Figure l is a fragmentary elevation of a motor car with my transmission mechanism applied thereto, parts being broken away to better show my invention.
Figure 2 is a central longitudinal section through the casings enclosing the control mechanism proper and the transmission gearing.
Figure 3 is a section on the line 3- 3 of Figure 2.
Figure 4 is a fragmentary section on the line 44of Figure 2 Figure 5 is a longitudinal sectional view Application for reissue filed February 6, 1922.
showing the mechanism of the clutch and brake and the manner in which they operate in connection with the control mechanism.
Figure 6 is a top plan of the quadrant and quadrant lever by means of which the selection of the gearing is accomplished.
Figure 7 is a front elevation of the quad rant, the lever handle being shown in section to bring out the construction of its locking pawll Figure 8 is a perspective of the tumbling shaft which is turned by the quadrant lever to select the desired gear.
Referring more S]')8(lll(.'llly to the drawings, in which similar reference numerals designate corresponding parts throughout, 10 designates a conventional form of motor vehicle having an engine ill, crank shaft 12 provided with the usual fly wheel 13 and clutch 14:, 15 the drive shaft and i6 desig nates as a whole the casing of my differential and control mechanism which, as shown, is positioned at the juncture of the crank shaft .12 and drive shaft 15.
Referring more specifically to the transmission mechanism, 17 designates the casing of the transmission mechanism proper and journaled in the front wall of this casing is the free end of the crank shaft 12 which is preferably provided with a socket 18 shaped to receive the reduced terminal 19 of the drive shaft 15 which shaft is journaled in the back wall of the casingin a bearing 21. Keyed upon that portion of the crank shaft 12 within the casing is a spur gear 22 while mounted for rotation upon the drive shaft 15 are spur gears 23, 24 and 25. the opposing faces of the gears 22 and 23 and of the gears 24 and 25 being recessed for the reception of the clutch fingers 26 of clutches 27 and 28 which are slidably keyed upon the drive shaft.
Journaled in aligned bearings 29 formed in the casing 17 is a jack shaft 30 which extends in parallel spaced relation to the drive shaft and upon which are keyed spur gears 31, 32, 33 and 34, the gears 31, 32 and 33 meshing with the gears 22, 23 and 24, while the gear 34 meshes with a gear 35 carried by a stub shaft 36, said latter gear in turn meshing with the gear 25 of the drive shaft.
Slidably mounted in suitable bores formed in the front and back walls of the casing 17 areclutch operating rods 37 and 38, the former of which is provided with an arm 39 terminating in a fork 40 engaging the clutch 28, while the rod 38 is rovided with a similar arm 41 having a for 42 which enga es the clutch 27.
s will be seen by referring to the drawings if the rod 37 is moved forwardly the clutch 28 will be moved into engagement with the car 24 locking the same upon the drive sha t, when the vehicle will be driven throu h the gears 22, 31, 33 and 24 forming t e low caring of the transmission mechanism. the clutch 28 is then released and the rod 38 moved rearwardly to bring the clutch 27 into engagement with the gear 23 the drive will be through the gears 22, 31, 32 and 23 form ng the intermediate earing of the transmission mechanism. 1% then the clutch 27 is moved out of engagement with the gear 23 and the rod 38 moved to bring the clutch 27 into engagement with the gear 22, the shafts 12 and 15 will be locked to ther and the drive will be direct from t e crank shaft or on the high gearing of the transmission mechanism. If the rod 37 is moved rearwardly to bring the clutch 28 into engagement with the gear 25 the drive will be through the gears 22, 31, 34, 35 and 25 which is the reverse drive.
My present invention relates primarily to the mechanism by means of which the clutch operating rods 37 and 38 are reciprocated and the description of the mechanism above given has been introduced merely to render more clear the operation of my device.
As shown in the drawings the top of the transmission casin 17 is openand secured u on the top of tiiis casi is a casing 43 w ich incloses the contro ing mechanism proper. Secured to the upper portion of the inner face of the rear wall of this casi is, a pair of spaced brackets 44 and 45 an centrally pivoted upon these brackets are cross bars 46 and 47. Each of these cross bars is free to swing upon its pivotal point and they are connected to the rods 37 and 38 respectively in such a manner that such swinging will be communicated to the rods to reciprocate the same. I have illustrated in the drawings two separate and dlstinct means for connecting these bars to their respective rods, one means being shown in the connection between the bars 46 and the rod 37 while the other means is shown in the connection between the bar 47 and the rod 38. Bolted or otherwise secured to the cross bar 46 by one arm is a Z-shaped lever 48 the free arm of which is bifurcated to form a fork 49 which engages in the groove 5Q of a block 51 carried by the rod 37. Pivotally secured by one end to one end of the cross bar 47 is a link 52 the other end of which is pivoted upon a trunnion 53 formed upon a block 54 carried by the rod 38. As will be seen the turning of the cross bar 46 will act, through the lever 48, to reciprocate the rod 37 while the turning of the cross bar 47 will act, through the link 52 to reciprocate the rod 38, the direction of movement of the rod in either case depending upon the direction in which the cross bar is swun Pivotably secured by their ends to the ends of the cross bar 46 are push bars 55 and 56 while pivotably secured by their ends to the ends of the cross bar 47 are push rods 57 and 58, these rods all extendmg longitudinally of the casing and in parallel relation to each other, being supported adjacent their free ends by a transversely extending shaft 59. Qne end of this shaft 59 is reduced as at 60 to pass through a suitable bearing formed in the casin and is provided upon its outer end with a evel gear 61 by means of which the shaft may be revolved as will be hereinafter explained. The other end of the shaft is reduced to form a trunnion 62 which is journaled in a socket formed in the end of a bolt 63 which is threaded into a tapped bore formed in the opposite side of the casing.
The portions of. the shaft 59 beneath the push rods 55, 56,: and 58 are. noteliedas at 64, 65, 66and .67. As will besee iwhen one of these notches is directed upward, the corresponding push rod will tilt down'to seat in the notch and will therefore be supported at a lower levelthan the remaining push rods. These notches are formedinthe shaft in staggered relation and in such a manner that in one position of the shaft all of the push rods will be supported in raised position. and in such a manner that but one push rod at a time can be lowered. In order to insure the proper seating of the ush rods in the notches of the tumbling s aft 59 I have provided leaf springs 88, 69, and 71 which as shown bear upon the push rods intermediate their length and exert a constant downward pressure upon the same, the springs 68 and 69 being secured to the pivotal point of the cross bar 46, by one end and having their opposite ends bearing upon the push rods 55 and 56 while the springs 70and 71 are each secured by one end to the pivotalp'ojint of the cross bar 47 and have their freaiends bearing upon the push rods 57 and 58. As shown the free ends of these springs are enlarged and prov ded with downwardly extending spaced pins 72 which bear one upon each side of the push rods and so prevent disengage ment of the springs.
Extending longitudinally of the casing is a pair'of parallel, spaced guide rods 73 which are passed through sleeves 74 carried by the ends of a cross head 75 which is thus mounted for reciprocation longitudinally of the casing. The upperface of this cross head is provided with transversely extending grooves 76, 77, 78 and 79 in which the push rods 55, 56, 57 and 58 rest and which serve to maintain said rods in proper spaced position so that they will seat in their respective notches of the tumbling shaft. Each of the push rods is formed with a shoulder 80 extending downwardly from its lower face which is slidable through the groove of the cross head when the push rod is in normal position but which will engage with the cross head when the push rod is seated in its notch in the tumbling shaft 59, these shoulders being formed at a point between the cross head and the pivoted ends of the push rods. Each push rod'is also provided upon the other side of the cross head with a transversely extending pin 81 the ends of which extend upon each side of the push.rod in position to engage against the cross head when the latter is drawn toward the front end of the casing.
Having thus described the cdntrolling mechanism proper I will now describe the means by which said mechanism is operated by the driver. Extending transversely of the vehicle and journaled in suitable bearings carried by the frame is a shaft 82 which carries a sleeve 83 provided at one end with a downwardly extending, integrally formed arm 84 terminating in a fork 85 which engages the clutch 14 of the crank shaft. The other end of this sleeve is provided with an upwardly directed, integrally formed arm 86 which is engaged by the lateral extension 87 of an upwardly directed arm 88 formed integrally with one end of a second sleeve 89 which is also carried by the shaft 82 and the other end of which is provided with an upwardly directed arm 90 to which is pivotally connected one end of the break rod 91. This sleeve 89 is provided intermediate its length with an integrally formed foot edal 92 by means of which the sleeve may he turned to apply the brake and to simultaneously release the clutch 14. Rotatably mounted about the sleeve 83 is asleeve 93 one end of which is provided with an upwardly directed arm 94 having a lateral extension 95 which also engages with the arm 86 of the sleeve 83. The other end of this sleeve is provided with an integrally formed arm 96 to which is pivoted one end of a con necting rod 97 the other end of which is pivoted to the outer end of a rod 98 which is slidably mounted in a bearing formed in the front wall of the casing 43 and the other end of which is rigidly secured to the central portion of the cross head by a bolt 99. The sleeve 93 is provided intermediate its len th with an upwardly directed, integra ly formed footpedal 100 by means of which it may be rotated to simultaneously release the clutch 14 and to draw the cross head 75 toward the tumbling shaft 59.
As a means for rotating the tumbling shaft 59 I have provided a shaft 101 one end of which is journaled in a suitable housing 102 formed about the bevel gear 61 while the other end is journaled in a bearing 103 carried by the casing 104 of the steering column. That end of the shaft journaled in the housing 102 is provided with a bevel gear 105 which meshes with the bevel gear 61 of the tumbling shaft while the other end of the shaft 101 is provided with a gear 106 which meshes with a gear 107 carried by the lower end of a shaft 108 which end, is journaled in a bearing 109 also carried by the casing 104 of the steering column. The free end of the shaft 108 extends through a suitable bore formed at the center part of a quadrant 109 which is secured in place by a clamping ring 110 which engages about the steering column immediately below the steering wheel 111. Secured to the upper end of this shaft 108 is a lever 112 which swings over the quadrant and which is provided with a spring pressed pawl 113 having a trigger 120, said pawl being adapted to engage in any one of a plurality of notches 114, 115, 116, 117 and 118 formed at spaced intervals about the peripheral edge of the quadrant. As shown these notches with the exception of the notch 114 are so formed that the lever maybe moved from one to the other without manually disengaging the pawl by means of its trigger. The notch 114 however is so formed that the pawl must be manually released before the lever can be'swung to the notch 118. The quadrant is provided at each end with an upwardly directed lug 119 which serves to prevent excessive movement of the lever.
In an operation suppose the gearing to be in neutral position with the quadrant lever 112 at the notch 114, with the engine running, and with the clutch 14 thrown in. In this position the push rods are all supported bythe tumbling shaft 59 in their raised position and both of the transmis sion clutches 27 and 28' are in inoperative position, no power therefore being transferred to the drive shaft. The lever 112 is then swung to the notch 115 which indicates low speed and which actuates the tumbling shaft 59 to bring its notch 66 uppermost. The pedal 100 is then actuated which releases the clutch 14 and simultaneously draws the cross head 75 forward beyond the shoulders 80 of the push rods allowing the push rod 56 to drop into the notch 64 of the tumblingshaft. The pedal 100 is then released, throwing the clutch 14 and moving the cross head 75 toward the rear end of the casing. As the cross head moves it engages against the sshouldcr 80 of the push rod 56 forcing said rod toward the rear of the casing and rotating the cross bar 46 to throw the transmission clutch 28 into en a ment with the gear 24 to give a low spee rive.
When sufiicient head way has been obtained the gear is thrown into intermediate speed by moving the lever 112 to the notch 116 to raise the push rod 56 and to lower the push rod 58. The edal 100 is again actuated, throwing out he clutch 14, and drawing the cross head forward, the cross head durin this forward movement en aging the in 81 of the push rod 56 to raw said ro back to normal osition and thus throw the transmission cllltch 28 into inoperative position. The clutch pedal 100 is then released to throw in the clutch 14 and to move the cross head toward the rear of the casing during which movement, it enga s with the shoulder of the push rod 58 which in the mean time has fal en into the notch 65 of the tumbling shaft, forcing the same rearwardly and turningrthe cross bar 47 to throw the transmission clutch 27 into engagement with the gear 23, thus giving in-' termediate speed.
When desired, the high gear can be thrown in by moving the lever 112 to the no(t1cl11 117 and again operating the clutch pe a If when the are were in neutral posi tion a reverse rive had been desired, the lever 112 would be swun to the notch 118 and the clutch pedal ac uated.
As will be readil seen both the brake pedal 92 and the clu h pedal 100 throw the clutch 14 into inoperative position but the operation of the brake dal in no way effects the gearing of the ransmission mechamsm.
It is to be noted that when the clutch pedal is actuated to throw in the main clutch, the cross head will be actuated and through the mechanism hereinbefore describe will place a selected set of the transmission gearin in position for operation. When the clutc pedal, however, is o erated to throw out the main clutch it wil move the cross head in the opposite direction and return such selected set of transmission gearing and the connections therefor to neutral position, and this returning of such parts to neutral position is accomplished irrespective of the position of the selector mechanism at such times, that is to say the selector mechanism me be in selective sition for any other of t e sets of transmission gearmg at the time a selected set is going to neutral posltion without interfering with or preventing the return of such selected set to such neutral position.
Further it wil be noted that when the cross head F5 is drawn toward the front of the casing it will, by co tact with the pins 81 move to neutral posit enemy of the push rods which may happen to be out of such neutral position.
Another advantageous feature incident to my invention is that a certain set of gearing may be selected While the machine is running and another set of gearing is in position, this selection taking place prior to changing from one set to the other set of gearing and without affecting the caring in use. For instance, if the machine e traveling on a level road with the hi h gearing in use, and is approaching a hil or rou h stretch of road where it is desired to use t ie low gearing, the quadrant lever may be moved to the low osition at once to select such low gearing, ut the latter, of course, will not be thrown into 0 eration until the foot pedal is actuated. hen the hill is reached it is only necessary for the operator to actuate the foot pedal as before described, to make the change from high gearing to low gearin If however, upon reaching the hill the driver decides to continue on the high gearing he may do so by failing to o crate the foot pedal, as the mere fact that c has selected the low gear b actuating the quadrant lever does not e ect the operation of the transmission mechanism unless the pedal itself be actuated. Thus it will be seen that a desired set of gearing may be selected prior to changin to the same and while running upon anot er set of gearing and without afi'ectin the latter.
It wil be apparent from the foregoing descrigition-that I have provided a simple and e cient controlling mechanism of the progressive type adapted and arranged to operate a transmission mechanism of the selective gear type without the aid of the ordinary change gear lever and H ate, the operating mechanism consisting w olly of the clutch pedal and the quadrant lever which latter, is so positioned that it may be operated without removing the hands from the steerin wheel.
It will urther be seen that the quadrant lever 112 may be moved to any position at any time without changing any gears in the transmission mechanism until the clutch 14 is released and then thrown in again.
It will also be seen that the clutch is always released before any of the transmission gears are shifted and t at the gears are always in position before the clutch is again thrown in.
It will of course be understood that minor changes in the details of construction may be made if desired, without in the slightest degree de arting from the spirit of my invention, w 'ch, broadly speak-in ,consists of a control mechanism for a se ective gear transmission mechanism 0 erated and governed by a single lever an the clutch pedal.
What I claim is 2-- L The combination with a shaft and variable s eed transmission mechanism therefor, mclu mg a pluralit of sets of power transmission elements 0 selector mechanism for selecting each of the sets of transmission elements to be placed in driving the shaft, and means for acing any selected set of transmission e ements in drivmg relation with the shaft, said means bein also operable to return said selected set 0 transmission elements to neutral position while the selector mechanism is in selective position for any other of the sets. of transmlssion'elements.
2; The combination with a shaft, a clutch therefor, and a pedal for operatinlg the clutch of ton mechanism inc uding' sets of power transmission elements, selector mechanism for selecting each of the sets of elements to be with the shaft, and means 0 arable from the pedal for lacing any selec (I set of trans m ssion e cments in driving enuglzgement with the shaft, said means being ope! able to return said selected set of transmission-elements to neutral position while the selector is in selective position 5n a oter of the sets of traon emen 8. In a controlling mechanism for transmission gearing, the combination with reciprocallg mounted power transmimion elements, 0 pivotal] mounted crom bars, connect' means be ween said cross bars and transmission elements, push'rods each canreciprocating nected at one end to one end of one of said cross bar's, means for lowenng any of'said push bars at selected'times and means for reciprocating said lowered push bar.
4. In a controlling mechanism for transmission gearing, the combination with reciprocally mounted power transmission elemen of movably mounted bars, means oper is by the movement of said bars for said transmission elements, pus ro'ds each movably connected at one end to one end of one of said bars, a cross head reciprocally mou'nted below said bars, means for said push rods an adapted to be opfratedto lower a selected one of said-pus rods upon the cross head, each rod having means for engaging the cross head when such is lowere and means for reciprocating the cross head to actuate the engaging rod.
5. In a controlling mechamsm for trans- .mission gearing, the combination with reciprocall mounted power transmission elements 0- cross bars ivotally mounted intermediate their lengt for swmgmg movement, means operab e by swinging of said cross bars for reciprocatin said transmission elements push rods eac pivoted at one end to one end of one of said cross bars, each cross bar having a shoulder formed at the an. em. fluaFMF nminntions extending relation with' placed in driving relation tpsush supporting the free on oflaterally from each p'ush rod, a transversel extendingshaft for an portin the free endh of said u'sh rods, sai shaft aving notches into which certain of the push rods fall when the shaft is in certain position, means 'for rotating the shaft through predetermined angles; a cross head positioned beneath the push rods in position to be engaged by the shoulder of a rod when the latter is lowered and the cross head moved in one direction sa d cross head engaging the pro tion 0 said lowered red when moved in he opposite direction and means for reciprocating the cross head.
6. In a devtiice of the class describedi) a gear evice com risin a move. I mounted fin er and 'pivota lly m unted mom bers supported and controlled thereby.
7. In a device ofthe class descr bed a gear shifting device comprising a movably mounted fin er, pivotal1y mounted members supported and controlled thereby, and an ac ating lever cooperating with said mem- 8. In a gear shifting device, a movably'afl mounted finder ivotal y hers apd an indicator operatively conwlth said finder for setting theme.
9. In a gear shiftinfi device, a movablymounted finder, l peivota y-mounted members normally suppo d thereby, said finder hav' mg a notch, an indicator operativel connected with said finder. for se e lat ter, and an actuating lever coopera ing with said pivotall mounted members.
lthbiu a eZvii e of the class a vana e s ansmission av ng a plurality of shiftable elemmi s l m eans for shifting said elements embed ivoted members movable with said e emen and a predeterminedly selective finder cooperating with and supporting said pivoted members. 11. In a device of. the class a variable speed transmission gearing havmg a plurality of shiftable elements, means for shifting said elements embodying pivotedmembers movable with sai'cl.elements, a selective finder cooperating with and-su porting said pivoted members, and an in motor 'for cooperation with said finder.
in a device o f the class described, a
variable speed transmission gearing having variable speed transmission gearing normally elevated ftpivoted members so a member movable to a plurality of shiftable elements combined with a foot pedal, and connections embody-' mg an EOhlflfililF lever, and a Elurality of pivoted vertica y-movable mem ers cooperating with said lever.
14..In a de'viceof the class described, a-
havm a. lurality of shiftable elements combine wi h a foot pedal, and connections embodyingan actuatinglever, a lamb of pivoted members cooperating wi b said ever, and-a movably mounted finder for-supportmg the coogera't'qn with 581d members.
a'devitce of the class described, a vari e speed ransmi'sslon 11 am shiftable elements, in 'combifiiox i with a5 indicator and a selective device embodying cooperating with the shi able elements.
16. In a derjee of the described, a gear actuatingielement, its corresponding actuating member, a finder an indicator and movably-mounted members supported and controlled by said finder.
17. The combination with a transmission mechanism com rising shiftable elements, of means for shi difi'erent drivin connections, selecting means for said 'e ements comprising a movable arm accessible to the operator and a difl'erent positions to select the diflerent shiftin means, and means between the said elemen and the movable arm to efi'ect the ap lication of the shifting means to the sol element.
ing said elements to secure,
a 18. Gear-shifting mechanism comprising an actuating member, shifteble members, rods connected to the means associated with the actuating member for moving the rods in either direction to place said members in driving position and or first returning the rods to neutral tion before movin the latter to place said members in operative position. o
19. I n a motor vehicle, -a, variable-s eed transmisslonfear having an element 'ftable in two irections, a'plurality of members connected thereto means operable indepeudentl of the osition of said element to selective y control the direction of its actuation and actuating the element in the selected direction. l
20. The combination with a clutch mechanism and a controlling member therefor, of a variable-speed transmission mechanism" means comprising said members for shiftable members,
posi- I having shiftable e1ements,. means operable.
while the mechanism is speed ratio'for selecting an element to .be mechanically connected said controlled member for securing any desired speed ratio, and means for mechanically connecting the selected element to said controlling member.
In testimony; whereof, I- aflix my signature, in presence of two witnesses.
IRVEN E. GOFFEi'.
operating at one Witnesses:
M. Ronmlnn, j CHAs. L.
Certificate of Correction.
It is hereby certified that in Reissue Letters Patent No. 15,312, granted March 21, 1922, upon the application of lrven E. Coffey, of Lawton, Oklahoma, for an improvement in Transmlesion-Controlling Mechanisms," errors appear in the printed specification requiring correction as follows: Page (5, line 12, claim 14, for
the article the read and; same page, line 60, claim 20, for the word controlled read controlling; and that the said Letters Patent should be read with these corrections therein that the same may conform to the record of the case in the'Patent Oflice.
Signed and sealed this 25th day of April, A. D., 1922.
[SEAL] KARL FENNING,
Acting Commissioner of Patents.
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