The Bandvagn BV206 was developed by AB Hgglund & Sner starting in 1974 as a blank slate design. FIG. Some examples of 8x8 AATVs include the BvS 10, the TERREX 8x8, and the Argo 8x8. A power package generally denoted as 53 (see FIGS. 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. This configuration constitutes a trunnion-type mounting which not only allows the transmission output shafts 81 to rotate about their longitudinal axis, but also allows the transmission mounting means 79 to pivot about the transmission output shafts. 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. This resilient means is biased to urge the ratchet plate to pivot about its pivot mounting in a direction generally toward the chain 131 to be tensioned, i.e. As is best shown in FIG. To break the vehicle 1, the operator places the control shaft l47 in one of the notches 161 which corresponds to the neutral transmission drive ratio. Our new address is 10501 Winnetka Ave N, Brooklyn Park, Mn 55445. The opposite occurs when a command for a left run is executed. blade amphibious all terrain instructions cascade complete powder dishwasher detergent, fresh scent, 75 oz reef high seas flip flops nursing and health sciences bristol queen low profile storage murphy bed with mattress blade amphibious all terrain instructions blade amphibious all terrain instructions arduino robot car project The effect is to prevent the vibrations produced in the chassis by any undulating terrain over which the vehicle travels from being transmitted to the prime mover 53 and hydrostatic transmissions 55, 57, and also to prevent prime mover vibrations from being transmitted to the chassis. As the control shaft 147 moves forward, the control actuating joint 175 also moves forward in a similar plane. Well-Equipped All-Terrain Vehicle. 7. line l, "vehoiel" should read h a I v vehicle Signed and. In the second embodiment of the vehicle operators control means 145 shown in FIG. Home blade amphibious all terrain instructions. Because the control actuating means or joint 175 is itself pivotally mounted for movement in two planes and the control shaft 147 is pivotally mounted for movement in the control actuating means or joint 175, the control shaft 147 has three degrees of freedom. Learn More. An amphibious all-terrain vehicle as defined in claim 4, further characterized in having: means defining a generally concave recess in said floor pan of said chassis relative to the exterior of said floor pan, said recess being disposed between said side walls of said chassis and extending longitudinally essentially the entire length of said floor pan. An amphibious all-terrain vehicle as defined in claim 1, further characterized in having: resilient means disposed between said power package mounting bracket and said chassis to absorb forces generated in said chassis by said surface over which said vehicle translates to isolate said forces in said chassis. At least one third chain driven sprocket wheel 107 is also operatively affixed to the second axle shaft 1113 to rotate therewith, and a fourth chain'driven sprocket wheel 109 is operatively affixed to the first axle shaft 9'7. 5. 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. The end of each transmission mounting means opposite the end in which the bearings 83 is located is affixed, for example, to the chassis side rails 33, 35. dog playpen with waterproof bottom . 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 resilient means 189 force the stop means 191 of the first control rod lever 181 against the actuating joint 175 and prevents the control rod lever 181 from rotating in a counter clockwise direction, as viewed in FIGS. 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. A plurality of ratchet teeth 127 are formed in the end of the ratchet plate opposite the end thereof at which it is pivotally mounted to the mounting plate. 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. An amphibious all-terrain vehicle, which comprises in combination: a chassis having a floor pan,a front wall disposed at one end of said floor pan and situated transversely thereto, a rear wall disposed at the opposite end of said floor pan and disposed transversely thereto, two spaced apart side walls disposed along opposite longitudinal sides of said floor pan, said floor pan being structurally associated with said front wall, rear wall and side walls to form a unitized. 8, illustrates the use of two resilient means 69, 71 disposed between the power package mounting bracket 67 and the chassis side rails 33, 35 of the chassis 3. The power package 51 is mounted to a power package mounting bracket 67 (see FIGS. 12. 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 a second control rod pivotally mounted at one of its ends to an enD of said second control lever opposite said end of said second lever which is pivotally mounted to said control actuating joint and pivotally mounted at its opposite end to a ratio selector device of said second transmission. in addition, a plurality of access openings 36 are located in each chassis side rail 33, 35 adjacent each axle shaft of the first and second series of drive axle shafts 41, 43 to provide access to that portion of the chain drive system which is located interior to the box beams 37, 39. Description of Prior Art The prior art amphibious all-terrain vehicles experience a number of drive system problems such as short chain drive system life due to a lack of lubrication, drive chains disengaging from their mating drive system components upon a sudden change in direction of the driving forces applied to the drive system by the transmissions, inadequate driving torque due to low, or no multiplication of the engine torque as it is transmitted to the drive system from the transmissions, and failure of the engine and transmissions due to rigidly mounting them to the vehicle, thus subjecting them to the forces exerted on the vehicle as it translates over undulating terrain. 2-(diethylamino)ethyl 2-acetyloxybenzoate, LAND VEHICLES FOR TRAVELLING OTHERWISE THAN ON RAILS, Steering non-deflectable wheels; Steering endless tracks or the like, Steering non-deflectable wheels; Steering endless tracks or the like by differentially driving ground-engaging elements on opposite vehicle sides, Steering non-deflectable wheels; Steering endless tracks or the like by differentially driving ground-engaging elements on opposite vehicle sides by means of separate power sources, VEHICLES FOR USE BOTH ON RAIL AND ON ROAD; AMPHIBIOUS OR LIKE VEHICLES; CONVERTIBLE VEHICLES, Amphibious vehicles, i.e. Preferably, the second chain driven sprocket wheel 101 is of a larger diameter of circumference than the second chain sprocket wheel 93 of the idler sprocket assembly 89 to accomplish a multiplication of the torque received by the second chain driven sprocket wheel 101 from the idler sprocket assembly 89. An automatic chain tensioning device, generally denoted as 119, (see FIGS. Packs the off-road ability of. change "calim" to claim August 197 USCOMM-DC 60376-P6Q N PRINTING omc: use o-aisqal. 5. Has electric start, hydraulic brakes, and skid steering. in addition, the prior art vehicles are difficult to operate because of a plurality of operators control means which must be syncronously manipulated, requiring the vehicle operator to use both hands. The resilient means 189 prevents the control rod levers 181, 185 from pivoting about their respective pivot mountings 183, 187 in directions generally toward each other, thus the control rod levers 181, 185 pull the control rods 174, 1176 forward. Chain tensioning device, generally denoted as 119, ( see FIGS has electric start, hydraulic brakes, skid! A left run is executed denoted as 119, ( see FIGS a slate... Actuating joint 175 also moves forward in a similar plane command for a left run is executed our address! 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