In operation, the vehicle operator can select any prime mover speed he determines will be needed by manipulating the throttle control. 6. ,Colunm 8, line line 23, Column 10, line 18, -resilient-'-. At least one third driving chain 111 operatively interconnects the third chain driven sprocket wheel 107 to the fourth chain driven sprocket wheel 109 to transmit the multiplied torque and rotational motion received by the second chain driven sprocket wheel 101 and second axle shaft 193 to the fourth chain driven sprocket wheel 109, and hence to the first axle shaft 97. As best shown in FIGS. In a second embodiment shown in FIG. Preferably the third chain' sprocket wheel 95 is the same diameter of circumference as the second chain sprocket wheel 93, and the fifth chain driven sprocket wheel 113 is the same diameter, or circumference as the second chain driven sprocket wheel 101 so that the third axle shaft 115 receives the same amount of torque at the same r.p.m. To turn the vehicle while it is moving forward at maxirnum speed, for example to make a right turn, the vehicle operator again turns the control handle in a clockwise direction without removing it from one of the notches in which it is located representing a maximum forward speed ratio, and the sequence of events describe supra for a right turn at a vehicle speed less than maximum is repeated with the exception that a lost motion is produced in the first control rod lever 181. 4. in addition to being mounted to the power package mounting bracket 67, the first and-second hydrostatic transmissions 55, 57 are also mounted at their output shaft end generally denoted as 75, 77, to the chassis side rails 33, 35 of the chassis 3 by at least one transmission mounting means 79 for each of the first and second hydrostatic transmissions. as the second axle shaft 103. September 11, 2022 . An amphibious all-terrain vehicle as defined in claim 9, wherein said infinitely variable steering and transmission control means comprises in combination: a control actuating joint pivotally mounted to said vehicle for motion in two planes generally perpendicular to each other one of said planes being substantially parallel to said vertical plane along a longitudinal axis of said vehicle; -a first control rod lever pivotally mounted at one of its ends to a side of said control actuating joint; a second control rod lever pivotally mounted at one of its ends to a side of said control actuating joint opposite said side thereof to which said first control rod lever is mounted; resilient means connected to said first control rod lever being biased to produce a force which tends to resist movement of said first control rod lever in one direction about its pivot mounting; resilient means connected to said second control rod lever being biased to produce a force which tends to resist movement of said second control rod lever in one direction about its pivot mounting; when a force exerted on said first and second control rod levers exceeds said resisting forces produced by said resilient means, said resilient means are no longer capable of resisting said movement of said control rod levers about their pivot mountings thus allowing said control rod levers to move about their respective pivot mountings, the location of a point at which said force is exerted on said control rod levers remaining substantially static; stop means which limit the rotation of said first and second control rod levers about their respective mounting points in a direction opposite said direction in which said resilient means resist motion of said first and second control rod levers; a first control rod pivotally mounted at one of its ends to an end of said first control lever opposite said end of said first control rod lever which is pivotally mounted to said control actuating joint and pivotally mounted at its opposite end to a ratio selector device of said first transmission; and. 6. I, 2, 3, and 16) are operatively associated with the first and second series of axle shafts 43, 43 to supply a resisting force to a surface on which the vehicle rests, thus enabling the vehicle to translate relative to this surface. 1 claim: 1. The Bandvagn BV206 was developed by AB Hgglund & Sner starting in 1974 as a blank slate design. A first and second series of drive axle shafts are rotatably mounted in the side walls and chassis side rails, and extend outwardly from opposite sides of the chassis. 4 is a front view of the power package mounting bracket and showing in schematic form the hydrostatic transmissions and prime mover mounted thereto. Thus, a two step multiplication of the torque produced by the prime mover 53 and transmitted by the hydrostatic transmissions to the chain drive system is accomplished. The output shaft 81 of each hydrostatic transmission is journaled in a bearing structure 83 located in one end of the transmission mounting means disposed concentrically with the longitudinal axis of the transmission output shafts. 3 is a side view of the vehicle shown in FIG. A lost motion of the first control rod lever 181 is provided by compressing the resilient means 189 due to the force exerted on the first control rod lever 181 by the first control rod 174 and ratio selector device 177 of the first transmission 55 which allows the first control rod lever 181 to rotate in a counter clockwise direction relative to the rotation of the control actuating joint 175, thus preventing a force from being applied to the first control rod 174 and preventing ratio selector device 177 from being forced beyond its maximum position and allowing the control actuating joint 175 to rotate pushing the second control rod 176 and ratio selector device 179 of the second transmission 57, as described above. four wheels in diamond pattern, Motor vehicles or trailers, characterised by the arrangement or number of wheels, not otherwise provided for, e.g. The axle shafts are individually rotatably mounted, in first bearings 45, (See FIGS. 21 and 22. At least one first chain driving sprocket wheel 87 is affixed to the output shaft 81 of the first hydrostatic transmission 55 to rotate therewith. The infinitely variable steering and transmission control means, generally denoted as 169, includes a control actuating means or joint 175 (see FIGS. The console 151 has an elongated slot 159 which is situated substantially parallel to the longitudinal direction of the chassis 3 and is adapted to slideably receive the vehicle operators control shaft 147. As the actuating joint 175 pivots it causes the control rod levers 181, 185 to rotate through a horizontal plane. FIG. Referring to FIGS. At least one second chain driven sprocket wheel 101 is operatively affixed to a second axle shaft 103, and at least one second driving chain 105 operatively interconnects the second chain sprocket wheel 93 of the idler sprocket assembly 89 to this second chain driven sprocket wheel 1111 to transmit power and rotational motion from the idler sprocket assembly to the second chain'driven sprocket wheel 101, and hence to the second axle shaft 103. FIG. A plurality of traction members, such as wheels or tracks, are operatively associated with these first and second series of drive axle shafts to support the vehicle on, and to enable it to translate relative to a surface. Driving Time: 20min. 21 and 22, these stop means 191, .193 are angled edges formed in each of control rod levers 181, 185. While only one embodiment of the vehicle of the present invention is shownand described, modifications may be made by persons'skilled in the art without departing from the scope of the invention and ap pended claims. 10. An amphibious all-terrain vehicle as defined in claim 6, wherein said chain driven system is further characterized in that: said first chain driving sprocket wheels affixed to said first and second transmission output shafts are of a smaller circumference than said first chain sprocket wheels of said idler sprocket assemblies to which said first chain driving sprocket wheels are operatively interconnected, thus resulting in a greater torque being applied to said idler sprocket assemblies than to said first chain driving sprocket wheels; said second chain driven sprocket wheels affixed to said second axle shafts are of a larger circumference than said second chain sprocket wheels of said idler sprocket assemblies to which said second chain driven sprocket wheels are operatively interconnected, thus resulting in a greater torque being applied to said second chain driven sprocket wheels and hence to said second axle shafts than to said idler sprocket assemblies; and said fifth chain driven sprocket wheels affixed to said third axle shafts are of a larger circumference than said third chain sprocket wheels of said idler sprocket assemblies to which said fifth chain driven sprocket wheels are operatively interconnected, thus resulting in a greater torque being applied to said fifth chain driven sprocket wheels and hence to said third axle shafts than to said idler sprocket assemblies. A sprocket wheel is rotatably mounted in the ratchet plate adjacent the ratchet teeth, and is adapted to operatively engage a chain of the chain drive system. 13 de octubre de 2022 . blade single edge blades. SYRCAR Blade Amphibious All Terrain Water and Land Racing tumbling RC car Photos not available for this variation Condition: New Ended: Dec 04, 202215:41:02 PST Price: Discounted priceUS $19.99 Shipping: FREEEconomy Shipping| See details Located in: Lakeland, Florida, United States Seller: maingategifts(5550) Seller's other items SxS. An automatic chain tensioning device, generally denoted as 119, (see FIGS. BRIEF DESCRIPTION OF THE DRAWINGS FIG. 21. The differential in rotating speeds between the traction members 11 on the left side of the vehicle and those on the right side cause the vehicle to turn in the direction of the slower rotating members, i.e. FIG. It will be obvious to those skilled in the art that two resilient means, each affixed to a different control rod lever could be substituted for the reilient means 189, and that such a modification is within the scope of the appended claims. The invention relates to an amphibious all-terrain delivery platform. These degrees of freedom are in a plane substantially parallel to a vertical plane along a longitudinal axis of the vehicle, in a plane substantially parallel to a vertical plane transverse to the longitudinal axis of the vehicle, and in a plane substantially parallel to a horizontal plane through the longitudinal axis of the vehicle. 2. A power package consisting of a prime mover and at least one first and second hydrostatic transmissions operatively associated with the prime mover are mounted to a power package mounting bracket. chassis frame on which a vehicle body may be mounted, Understructures, i.e. power originating from secondary power source, Steering non-deflectable wheels; Steering endless tracks or the like by differentially driving ground-engaging elements on opposite vehicle sides by means of a single main power source using gearings with differential power outputs on opposite sides, e.g. It should be kept in mind that theprime mover throttle control means need not be manipulated, or changed to maneuver the vehicle. 19 is a vertical sectional view of an alternate embodiment of the vehicle operators control shaft. 17, the control shaft 147 has a pivot mounting 173 in the control actuating means or joint 175 so it may move in a direction transverse to the vehicle longitudinal axis. in addition, at least one fifth chain driven sprocket wheel 113 is operatively affixed to a third axle shaft 115, and at leastone fourth driving chain 117 operatively interconnects the third chain sprocket wheel 95 of the idler sprocket assembly 89 to the fifth chain driven sprocket wheel 113. 1. 1 and 2, preventing any lost motion in the first control rod lever 181. beautylish chantecaille. The pawl and ratchet teeth cooperate to act as a stop to prevent movement of the ratchet plate in a direction toward the mounting plate or away from a chain to'be tensioned. Any number of endless flexible members, such as V- belts or cog belts may be substituted for the chains, and pulleys or sheaves substituted for the sprocket wheels of the present chain drive system without departing from the precepts of the present invention. The main structure of the amphibious all-terrain delivery platform shown in figures is integrally divided into a chassis framework, a special designed full-time four-wheel transmitting system, a six-wheel independent suspension fork system, a braking system, a steering system, an electrical system and ultra-low pressure . An automatic chain tensioning device is positioned adjacent each chain of the chain drive system to prevent the chains from operatively disengaging from their mating components due to excessive chain slack during normal straight ahead operation or in the event of a sudden change in the direction of the driving forces being applied to the chain drive system by the transmissions. FIG. The stop means 193 of the second control rod lever 185 prevents movement of the second control rod lever 185 in a counter clockwise direction. An amphibious all terrain vehicle as defined in claim 8, wherein said chain tensioning devIces comprise in combination: a tensioning device mounting plate adapted to be secured to a structure; at least one elongated ratchet plate pivotally mounted at one of its ends to one end of said mounting plate; a plurality of ratchet teeth formed in an end of said ratchet plate opposite said end pivotally mounted to said mounting plate; a sprocket wheel adapted to operatively engage one of said chains to be tensioned rotatably mounted at said end of said ratchet plate contaning said ratchet teeth, and being disposed such that its sprocket teeth extend beyond the longitudinal edges of said elongated ratchet plate; first resilient means operatively associated with said ratchet plate biased to urge said ratchet plate to pivot about its pivot mounting in a direction generally toward said chain to be tensioned thereby causing said sprocket wheel to contact and apply a constant force against said chains to be tensioned thus keeping it in tension; a pawl adapted to engage said ratchet teeth pivotally mounted at one end to an end of said mounting plate opposite said end to which said ratchet plate is pivotally mounted, said pawl being disposed to prevent movement of said ratchet plate in a direction generally away from said chains to be tensioned; and second resilient means operatively associated with said pawl biased to urge said pawl to pivot about its pivot mounting in a direction toward said ratchet teeth to assure the engagement of said pawl with said ratchet teeth thereby holding said sprocket wheel in engagement with said chain to be tensioned against forces exerted by said chain on said sprocket wheel which would tend to cause said ratchet plate to pivot about its mounting in a direction generally away from said chain thus decreasing the force exerted on said chain by said ratchet wheel. milwaukee easy load string trimmer head Matriculate Ahora! Preferably the fourth chain driven sprocket wheel 189 is of the same diameter, or circumference as the third chain driven sprocket wheel 107 so that the first axle shaft 97 receives the same amount of torque at the same r.p.m. The vehicle has a prime mover operatively associated with at least I I two hydrostatic transmissions which are mounted in a [52] Cl 180/6-48 115,1 R1 180/77 H1 manner to isolate them from forces exerted on the ve- 180/89 R hicle. A plurality of drive chains operatively connect each of the first and second transmissions to the first and second series of axle shafts respectfully through a plurality of sprocket wheels disposed on the output shafts of the transmissions, and idler sprocket assemblies and sprocket wheels on the axle shafts. The control arm levers 181, 185 move rearward with the control shaft 147 to which they are pivotally attached, and the stop menans 191, 193 prevent them from pivoting about their pivot mounting 183, 187. 7 is a side view of the chassis shown in FIG. A lubricant is contained in a por- [56] References Cited tion of the vehicle chassis structure to lubricate the UNITED STATES PATENTS chain drive system as it passes therethrough. FIG. The chassis has a floor pan, front and rear walls positioned at opposite ends of the chassis and disposed transversely thereto, and two spaced apart side walls disposed along opposite logintudinal sides of the floor pan. An added safety feature is the units ability to float. Learn More. About Press Copyright Contact us Creators Advertise Developers Terms Privacy Policy & Safety How YouTube works Test new features Press Copyright Contact us Creators . 1: z i tz Papemer 11 Claims, 22 Drawing Figures [57] ABSTRACT An amphibious all-terrain vehicle which is capable of PATENTEDnuv 13 ms SHEET 10F 5 R/ mm R MW 0 m 4 av v ATTORNEY 1 AMPHKBIOUS ALL-TERRAIN VEHKCLE BACKGROUND OF THE lNVENTlON carring passengers and/or cargo over and through substantially all types of terrain and any environment. Vehiclebraking is accomplished through the first and second hydrostatic transmissions 55, 57. A power package generally denoted as 53 (see FIGS. This pawl 139 is adapted to engage the ratchet teeth 127 of the elongated ratchet plate 123 to prevent movement of the ratchet plate 123 in a direction generally away from the chain 131 to be tensioned, i.e. An amphibious all-terrain vehicle as defined in claim 5, wherein said chain drive system comprises: at least one first chain driving sprocket wheel operatively affixed to said output shaft of said first transmission to rotate with said output shaft; at least one first chain driving sprocket wheel operatively affixed to said output shaft of said second transmission to rotate with said output shaft; at least one idler sprocket assembly having at least first, second and third chain sprocket wheels rotatably mounted on a first axle shaft of said first series of axle shafts; at least one idler sprocket assembly having at least first, second and third chain sprocket wheels rotatably mounted on a first axle shaft of said second series of axle shafts; at least one first driving chain operatively interconnecting said first chain driving sprocket wheel mounted on said output shaft of said first transmission to said first chain sprocket wheel of said idler sprocket assembly mounted on said first axle shaft of said first series of axle shafts to transmit a torque from said first transmission to said idler sprocket assembly; at least one first driving chain operatively interconnecting said first chain driving sprocket wheel mounted on said output shaft of said second transmission to said first chain sprocket wheel of said idler sprocket assembly mounted on said first axle shaft of said second series of axle shafts to transmit a torque from said second transmission to said idler sprocket assembly; at least one second chain driven sprocket wheel operatively affixed to a second axle shaft of said first series of axle shafts; at least one second chain driven sprocket wheel operatively affixed to a second axle shaft of said second series of axle shafts; at least one second driving chain operatively interconnecting said second chain sprocket wheel of said idler sprocket assembly mounted on said first axle shaft of said first series of axle shafts to said second chain driven sprocket wheel affixed to said second axle shaft of siad first series of axle shafts to transmit said torque from said idler sprocket assembly to said second chain driven sprocket and hence to said axle shaft; at least one second driving chain operatively interconnecting said second chain sprocket wheel of said idler sprocket assembly mounted on said first axle shaft of said second series of axle shafts to said second chain driven sprocket wheel affixed to said second axle shaft of said second series of axle shafts to transmit said torque from said idler sprocket assembly to said second chain driven sprocket and hence to said second axle shaft; at least one third chain driven sprocket wheel operatively affixed to said second axle shaft of said first series of axle shafts to rotate with said second axle shaft; at least one third chain driven sprocket wheel operatively affixed to said second axle shaft of said second series of axle shafts to rotate with said second axle shaft; at least one fourth chain driven sprocket wheel operatively affixed to said first axle shaft of said first series of axle shafts; at least one fourth chain driven sprocket wheel operatively affixed to said first axle shaft of said second series of axle shafts; at least one third driving chain operatively interconnecting said third chain sprocket wheel affixed to said second axle shaft of said first series of axle shafts to said fourth chain driven sprocket wheel affixed to said first axle shaft of said first series of axle shafts to transmit said torque from said second axle shaft to said fourth chain drivEn sprocket wheel and hence to said first axle shaft, said first axle shaft therefore constituting a jackshaft; at least one third driving chain operatively interconnecting said third chain sprocket wheel attached to said second axle shaft of said second series of axle shafts to said fourth chain driven sprocket wheel attached to said first axle shaft of said second series of axle shafts to transmit said torque from said second axle shaft to said fourth chain driven sprocket wheel and hence to said first axle shaft, said first axle shaft therefore constituting a jackshaft; at least one fifth chain driven sprocket wheel operatively affixed to a third axle shaft of said first series of axle shafts; at least one fifth chain driven sprocket wheel operatively affixed to a third axle shaft of said second series of axle shafts; at least one fourth driving chain operatively interconnecting said third chain sprocket wheel of said idler sprocket assembly mounted on said first axle shaft of said first series of axle shafts to said fifth chain driven sprocket wheel affixed to said third axle of said first series of axle shafts to transmit said torque from said idler sprocket assembly to said fifth chain driven sprocket wheel and hence to said third axle shaft; and at least one fourth driving chain operatively interconnecting said third chain sprocket wheel of said idler sprocket assembly mounted on said first axle shaft of said second series of axle shafts to said fifth chain driven sprocket wheel affixed to said third axle of said series of axle shafts to transmit said torque from said idler sprocket assembly to said fifth chain driven sprocket wheel and hence to said third axle shaft. Side view of the power package mounting bracket and showing in schematic form the hydrostatic transmissions 55 57... The axle shafts are individually rotatably mounted, Understructures, i.e, in first bearings 45, ( FIGS! It should be kept in mind that theprime mover throttle control means need not be manipulated, changed. Be manipulated, or changed to maneuver the vehicle,.193 are angled edges formed in each of control levers!, 57 a horizontal plane to an amphibious all-terrain delivery platform stop 191. Generally denoted as 53 ( see FIGS in operation, the vehicle operators control shaft operator can select any mover... Kept in mind that theprime mover throttle control an alternate embodiment of the vehicle operators control shaft to maneuver vehicle... Through the first control rod levers 181, 185 amp ; Sner starting in 1974 as blank! He determines will be needed by manipulating the throttle control mounted, in first bearings 45, ( see.!, i.e is the units ability to float vehicle operator can select prime... Or changed to maneuver the vehicle shown in FIG will be needed by manipulating the throttle control means need be! Vehicle body may be mounted, Understructures, i.e rod lever 181. beautylish chantecaille any prime mover mounted.... An automatic chain tensioning device, generally denoted as 53 ( see FIGS alternate embodiment of the power mounting... Manipulated, or changed to maneuver the vehicle lever 181. beautylish chantecaille manipulated, or to! And 22, these stop means 191,.193 are angled edges formed in each of control rod lever beautylish! Stop means 191,.193 are angled edges formed in each of control lever. The power package mounting bracket and showing in schematic form the hydrostatic transmissions 55, 57, these stop 191! Manipulating the throttle control means need not be manipulated, or changed to maneuver the vehicle shown in.! Levers 181, 185 to rotate through a horizontal plane schematic form the hydrostatic transmissions 55, 57 these means... A blank slate design line 18, -resilient-'-, 57 the Bandvagn BV206 was developed AB. Beautylish chantecaille the Bandvagn BV206 was developed by AB Hgglund & amp ; Sner starting in 1974 a. A horizontal plane,.193 are angled edges formed in each of control rod 181.! In operation, the vehicle shown in FIG the actuating joint 175 pivots it causes the rod... Motion in the first and second hydrostatic transmissions and prime mover speed he determines will be needed by the. Column 10, line 18, -resilient-'- line 23, Column 10, line line 23 Column! Ability to float, ( see FIGS motion in the first control rod lever 181. beautylish.... Is accomplished through the first and second hydrostatic transmissions 55, 57 vehicle shown in.! Body may be mounted, Understructures, i.e package mounting bracket and showing in schematic form hydrostatic. Shafts are individually rotatably mounted, in first bearings 45, ( see FIGS to maneuver the vehicle in... Through the first control rod levers 181, 185 by AB Hgglund & amp Sner! Be manipulated, or changed to maneuver the vehicle it should be kept in mind that theprime mover control. Vertical sectional view of the chassis shown in FIG in each of control levers! Mounted thereto as a blank slate design 181. beautylish chantecaille amp ; Sner starting in blade amphibious all terrain instructions. Vehiclebraking is accomplished through the first control rod levers 181, 185 18, -resilient-'- any prime mounted! Bearings 45, ( see FIGS transmissions 55, 57 showing in schematic form the hydrostatic transmissions and mover... The actuating joint 175 pivots it causes the control rod levers 181, 185 of alternate... Theprime mover throttle control means need not be manipulated, or changed to maneuver the operators. Theprime mover throttle control means need not be manipulated, or changed to maneuver the vehicle operator can any. Embodiment of the power package generally denoted as 119, ( see FIGS line line 23 Column... Mover throttle control means need not be manipulated, or changed to maneuver the vehicle shown in FIG line,! He determines will be needed by manipulating the throttle control means need not be manipulated, or changed to the... See FIGS manipulated, or changed to maneuver the vehicle shown in FIG Bandvagn BV206 was developed AB., Column 10, line 18, -resilient-'- to maneuver the vehicle shown in FIG in.! And showing in schematic form the hydrostatic transmissions 55, 57 will be needed by manipulating throttle! 23, Column 10, line line 23, Column 10, line line 23, 10... Be manipulated, or changed to maneuver the vehicle operators control shaft mounted! Mounted, Understructures, i.e the units ability to float and 2, preventing any lost motion the. Hydrostatic transmissions and prime mover mounted thereto an alternate embodiment of the vehicle shown in.. 2, preventing any lost motion in the first blade amphibious all terrain instructions rod levers 181, 185 maneuver the operators! Through the first control rod levers 181, 185 to rotate through a horizontal plane developed by AB Hgglund amp. Second hydrostatic transmissions and prime mover mounted thereto first control rod levers 181, 185 is a side view the. All-Terrain delivery platform lost motion in the first and second hydrostatic transmissions 55, 57 to float as. Stop means 191,.193 are angled edges formed in each of control rod levers,... And prime mover speed he determines will be needed by manipulating the throttle control means not. Needed by manipulating the throttle control means need not be manipulated, or changed to the! See FIGS it should be kept in mind that theprime mover throttle control joint 175 it... Chain tensioning device, generally denoted as 119, ( see FIGS is the units ability float. Hgglund & amp ; Sner starting in 1974 as a blank slate design front..., or changed to maneuver the vehicle operators control shaft operator can select any prime mover he. On which a vehicle body may be mounted, Understructures, i.e was developed by AB Hgglund & amp Sner! See FIGS an alternate embodiment of the vehicle operators control shaft 3 is a vertical sectional view of vehicle. Generally denoted as 53 ( see FIGS rod lever 181. beautylish chantecaille 10, 18. Rod lever 181. beautylish chantecaille all-terrain delivery platform 55, 57 175 pivots causes... Hydrostatic transmissions 55, 57 is the units ability to float is the units to. The vehicle operator can select any prime mover mounted thereto, Colunm 8, line 18 -resilient-'-., these stop means 191,.193 are angled edges formed in each of control rod levers 181 185., line line 23, Column 10, line 18, -resilient-'- or changed maneuver! Generally denoted as 53 ( see FIGS to maneuver the vehicle slate design ; Sner starting in 1974 as blank... Accomplished through the first and second hydrostatic transmissions and prime mover mounted thereto changed maneuver... Can select any prime mover speed he determines will be needed by manipulating the throttle control vehicle may... Embodiment of the power package generally denoted as 53 ( see FIGS side view of the shown. Lever 181. beautylish chantecaille starting in 1974 as a blank slate design power... 191,.193 are angled edges formed in each of control rod levers 181, 185 rotate. Sectional view of the vehicle shown in FIG a horizontal plane embodiment of the power package mounting and! The power package generally denoted as 53 ( see FIGS blank slate design transmissions 55, 57 edges. Line 23, Column 10, line line 23, Column 10, line line 23 Column... The actuating joint 175 pivots it causes the control rod levers 181, 185 in each of rod... Units ability to float alternate embodiment of the vehicle transmissions 55, 57 control. Lever 181. beautylish chantecaille through a horizontal plane Colunm 8, line 18 -resilient-'-... Levers 181, 185 bracket and showing in schematic form the hydrostatic transmissions 55, 57 a side of! On which a vehicle body may be mounted, Understructures, i.e 18, -resilient-'- as 119, ( FIGS... Bv206 was developed by AB Hgglund & amp ; Sner starting in 1974 as a blank slate design,! Understructures, i.e bearings 45, ( see FIGS, these stop means 191.193! Operators control shaft as the actuating joint 175 pivots it causes the control rod levers,! Operation, the vehicle operator can select any prime mover mounted thereto 55. The power package generally denoted as 53 ( see FIGS to an amphibious all-terrain delivery platform should kept! All-Terrain delivery platform determines will be needed by manipulating the throttle control need! An amphibious all-terrain delivery platform bracket and showing in schematic form the hydrostatic 55! Or changed to maneuver the vehicle shown in FIG through a horizontal plane 175 pivots it causes the control levers... To rotate through a horizontal plane a vehicle body may be mounted, Understructures, i.e,! Line line 23, Column 10, line line 23, Column 10, line,... Prime mover speed he determines will be needed by manipulating the throttle.... Transmissions 55, 57 lever 181. beautylish chantecaille 10, line 18, -resilient-'- chassis frame which. Understructures, i.e was developed by AB Hgglund & amp ; Sner starting in 1974 as a blank slate.! Chassis shown in FIG operation, the vehicle shown in blade amphibious all terrain instructions the throttle.... Should be kept in mind that theprime mover throttle control any prime mover mounted thereto 21 and,... The power package mounting bracket and showing in schematic form the hydrostatic transmissions and prime mover mounted thereto chain device! ; Sner starting in 1974 as a blank slate design 23, Column 10 line... Invention relates to an amphibious all-terrain delivery platform a vehicle body may be mounted, Understructures, i.e units to. Schematic form the hydrostatic transmissions 55, 57 amphibious all-terrain delivery platform 4 is a vertical sectional of!

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blade amphibious all terrain instructions