SKID STEER LOADER
20230018044 ยท 2023-01-19
Assignee
Inventors
- Zeping TAN (Changsha, CN)
- Zhen LIU (Changsha, CN)
- Junyi LIU (Changsha, CN)
- Huiwen HU (Changsha, CN)
- Xianghua XIE (Changsha, CN)
- Zhengyu GAN (Changsha, CN)
Cpc classification
E02F3/3414
FIXED CONSTRUCTIONS
E02F3/42
FIXED CONSTRUCTIONS
E02F3/3405
FIXED CONSTRUCTIONS
E02F3/38
FIXED CONSTRUCTIONS
E02F9/166
FIXED CONSTRUCTIONS
E02F9/0866
FIXED CONSTRUCTIONS
International classification
E02F3/34
FIXED CONSTRUCTIONS
E02F3/38
FIXED CONSTRUCTIONS
E02F3/42
FIXED CONSTRUCTIONS
Abstract
A skid steer loader includes a chassis frame, a cab, a main beam, and a bucket. The chassis frame is assembled with a walking system to form a movable chassis of the skid steer loader, and a power system of the skid steer loader is assembled to a tail portion of the chassis frame. The cab is arranged on a front portion of the chassis frame in an. overturning manner, and the cab is horizontally placed on the chassis frame when a telescopic support rod is in a retracted state and overturns forward when the telescopic support rod is in an extended state. A tail end of the main beam is movably hinged to the tail portion of the chassis frame by a four-bar linkage mechanism, the bucket is assembled to a front end of the main beam.
Claims
1. A skid steer loader, comprising: a chassis frame, assembled with a walking system to form a movable chassis of the skid steer loader, wherein a power system of the skid steer loader is assembled to a tail portion of the chassis frame; a cab, arranged on a front portion of the chassis frame in an overturning manner, wherein one a first side of the bottom of the cab is fixedly hinged to the chassis frame, the other a second side of the bottom of the cab is supported and connected to the chassis frame at a position other than a hinged position by a telescopic support rod, and the cab is horizontally placed on the chassis frame when the telescopic support rod is in a retracted state and overturns forward when the telescopic support rod is in an extended state, to expand an inspection space between the cab and the power system; and a main beam and a bucket wherein a tail end of the main beam movably hinged to the tail portion of the chassis frame by a four-bar linkage mechanism, the bucket is assembled to a front end of the main beam, a loading and unloading oil cylinder for driving loading and unloading is assembled between the buck and the main beam, and a lifting oil cylinder for driving the main beam to swing up and down to lift and lower the bucket is assembled between the main beam and the chassis frame.
2. The skid steer loader according to claim 1, wherein two groups of main beams are arranged on two sides of the cab in parallel, the two groups of main beams are integrally connected by horizontal connectors located at front and rear positions of the cab, front ends of the two groups of main beams are connected to the bucket by two groups of synchronized loading and unloading oil cylinders, tail ends of the two groups of main beams are movably hinged to the chassis frame by four-bar linkage mechanisms, and two groups of synchronized lifting oil cylinders are arranged between the chassis frame and the two groups of main beams.
3. The skid steer loader according to claim 2, wherein a top of the bucket and the horizontal connector in front of the cab are respectively provided with pedals, and the pedals form an access passage of the cab.
4. The skid steer loader according to claim 1, wherein the four-bar linkage mechanism comprises a swing frame, a rear connecting rod, and a front connecting rod, the swing frame is fixed to the tail end of the main beam two hinge points arranged on the swing frame are respectively hinged to the rear connecting rod and the front connecting rod the rear connecting rod and the front connecting rod are respectively fixedly hinged to two hinge points on the chassis frame, the rear connecting rod is located behind the front connecting rod, a hinge point position of the rear connecting rod on the chassis frame is higher than a hinge point position of the front connecting rod on the chassis frame, and a length of the rear connecting rod is less than a length of the front connecting rod; and a first end of the lifting oil cylinder is fixedly hinged to the chassis frame, and a second end of the lifting oil cylinder is hinged to a third hinge point position on the swing frame.
5. The skid steer loader according to claim 4, wherein the lifting oil cylinder is perpendicular to the main bear when the bucket lowered to a lowest position, and a ratio of a distance between the two hinge points of the swing frame with the rear connecting rod and the front connecting rod to a distance between hinge points on two ends of the rear connecting rod to a distance between the two hinge points of the chassis frame with the rear connecting rod and the front connecting rod to a distance between hinge points on two ends of the front connecting rod is 12:11:18:16.
6. The skid steer loader according to claim 1, wherein a cab safety rod is arranged on the telescopic support rod, the cab safety rod is a hollow sleeve rod and is freely sleeved on the telescopic support rod, the cab safety rod and a small diameter end of the telescopic support rod are hinged and assembled to a same hinge point, and an axial length of the cab safety rod does not exceed a length of a small diameter rod of the telescopic support rod.
7. The skid steer loader according to claim 6, wherein a main beam safety rod is arranged on the main beam, one end of the main beam safety rod is hinged to a hinge point of the main beam and the lifting oil cylinder and a safety rod fixing plate for detachably fixing the main beam safety rod is arranged at a position is close to the front end of the main beam; and the main beam safety rod is provided with a through groove for accommodating a piston rod of the lifting oil cylinder, a length of the through groove corresponds to an extending length of the piston rod of the lifting oil cylinder, and when the main beam controls the bucket to be in a lifted state, the main beam safety rod swings to cover the piston rod of the lifting oil cylinder, and an end portion of the main beam safety rod abuts against an end portion of a cylinder barrel of the lifting oil cylinder to prevent the piston rod of the lifting oil cylinder from retracting into the cylinder barrel.
8. The skid steer loader according to claim 1, wherein the tail portion of the chassis frame is divided into a left frame and a right frame, and concave spaces are respectively formed inside the left frame and the right frame-for fixedly embedding a hydraulic oil tank module and a fuel tank module of the power system.
9. The skid steer loader according to claim 8, wherein the power system on the chassis frame is integrated and assembled between the left frame-and the right frame, the left frame and the right frame are connected by a left and right frame connector, an air filter element is fixedly arranged on the left and right frame connector, an air inlet of the air filter element is connected to an air inlet connecting pipe arranged on a frame on a first side by an air inlet guide pipe, and an air outlet of the air filter element is connected to an air inlet unit of the power system by a pipe; and an exhaust port of the power system is connected to an exhaust tail pipe by an exhaust flange pipe, and the exhaust tail pipe is fixed by a tail pipe support on a frame on a second side and extends out of a top middle cover.
10. The skid steer loader according to claim 9, wherein a heat dissipation water tank of the power system is assembled between the left frame and the right frame, a first side of the heat dissipation water tank is hinged to a tail portion of the frame on the first side, a water tank lock pin arranged on a second side of the heat dissipation water tank is inserted into a bolt limiting block on the frame on the second side, to lock and assemble the heat dissipation water tank, engagement of the water tank lock pin with the bolt limiting block is released, and the heat dissipation water tank is opened outward to expose the power system inside the dissipation water tank; an air guide cover covering an entire cross section of the heat dissipation water tank is arranged on an inner side of the heat dissipation water tank, and the air guide cover is engaged with an air outlet of a heat dissipation fan of the power system when the heat dissipation water tank is in a locked state; and a cooling water channel and a hydraulic oil channel are provided inside the heat dissipation water tank, an engine upper water pipe and an engine lower water pipe of the power system are respectively engaged with two ends of the cooling water channel, and hydraulic oil in a hydraulic return pipe of the power system flows back into a hydraulic oil tank through the hydraulic oil channel.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0037]
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[0039]
[0040]
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[0042]
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[0044]
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[0050]
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REFERENCE NUMERALS
[0055] 1. Chassis frame, 11. Left frame, 111-Concave space for mounting a hydraulic oil tank, 12. Right frame, 121. Concave space for mounting a fuel tank, 122. Fuel tank fixing plate, 13, Tail gate, 131, Tail baffle plate, and 132. Tail reinforcing plate;
[0056] 2. Cab, 21. First pedal, 22. Second pedal, 23. Fixed base in front of a cab, 24.
[0057] Overturn pin shaft, 25. Cab safety rod, 26. Telescopic support rod, 27. Upper support base, 28. Lower support base, and 29. Handle;
[0058] 3. Main beam, 31. Four-bar linkage mechanism, 311. Swing frame, 312. Rear connecting rod, 313. Front connecting rod, 32. Rear horizontal connector, 33. Front horizontal connector, 34. Main beam safety rod, 35. Safety rod fixing plate, and 351. Safety rod fixing pin;
[0059] 4. Bucket, 41. Front reinforcing plate, 42. Side reinforcing plate, 43. Upper reinforcing plate, and 44. Rear reinforcing plate;
[0060] 51. Loading and unloading oil cylinder, and 52. Lifting oil cylinder;
[0061] 61. Hydraulic oil tank module, 611. Hydraulic oil tank fixing plate, and 62. Fuel tank module;
[0062] 71. Air inlet connecting pipe, 72. Air inlet guide pipe, 73. Air filter element, 74. Left and right frame connector, 75. Exhaust flange pipe, 76. Exhaust tail pipe, 77. Tail pipe support, and 78. Middle cover;
[0063] 81. Heat dissipation water tank, 82. Water tank mounting hinge, 83. Water tank lock pin, 84. Bolt limiting block, 85. Air guide cover, 86. Heat dissipation fan, and 87, Protection cover; and
[0064] 91. Engine upper water pipe, 92. Engine lower water pipe, 93. Oil inlet pipe, and 94. Oil return pipe.
DETAILED DESCRIPTION OF THE EMBODIMENTS
Embodiment 1
[0065] Referring to
[0066] For the wheeled walking system and power system in this embodiment, reference may be made to the existing skid steer loader. Details are not described in this embodiment again.
[0067] Referring to
[0068] The telescopic support rod 26 is a pneumatic telescopic support rod and includes an air cylinder barrel with a relatively large diameter and a support rod with a relatively small diameter. The cab is supported by using compressed air inside the air cylinder barrel. To improve reliability of the overturned state of the cab 2, in this embodiment, the telescopic support rod 26 below the cab 2 is provided with a cab safety rod 25. With reference to
[0069] As shown in
[0070] Referring to
[0071] Referring to
[0072] Specifically, as shown in
[0073] In this embodiment, an access door is arranged on a front side surface of the cab 2, A first pedal 21 is arranged on the top of the bucket 4, and a second pedal 22 is arranged on the front horizontal connector 33 in front of the cab 2. The arrangement of the pedals requires no interference with the cab during swing of the main beam. The pedals adopt pattern steel plate or saw-tooth-shaped steel plate structures. When the bucket 4 is lowered to a lowest position, two stages of pedals form an access passage of the cab 2, and a driver may enter and exit the cab from the front side surface of the cab 2 through the access passage.
[0074] Referring to
[0075] In the four-bar linkage mechanism of this embodiment, the rear connecting rod 312 is located behind the front connecting rod 313. A hinge point position of the rear connecting rod 312 on the chassis frame 1 is higher than a hinge point position of the front connecting rod on the chassis frame, and a length of the rear connecting rod is less than that of the front connecting rod. The front connecting rod 313 is a hollow connecting rod with a through groove. The lifting oil cylinder 52 passes through the through groove of the front connecting rod 313. In this way, all the hinge points at which the rear connecting rod 312, the front connecting rod 313, and the lifting oil cylinder 52 are respectively hinged to the main beam 3 and the chassis frame are located on a same plane. Extending and retracting of the lifting oil cylinder 52 are controlled, the main beam 3 may be lifted under the impact of the four-bar linkage mechanism 31, the bucket 4 at the front end of the main beam 3 may obtain an approximately vertical lifting path compared with a general circular-arc lifting path, to lift materials and perform carrying.
[0076] In this embodiment, a geometric relationship of the four-bar linkage mechanism 31 is specifically optimized, and a ratio of a distance between the hinge points of the swing frame 311 with the rear connecting rod 312 and the front connecting rod 313 to a distance between hinge points on two ends of the rear connecting rod 312 to a distance between the hinge points of the chassis frame 1 with the -a connecting rod 312 and the front connecting rod 313 to a distance between hinge points on two ends of the front connecting rod 313 is set to 12:11:18:16.
[0077] With reference to
[0078] Referring to
[0079] A concave space 121 for mounting a fuel tank is formed inside the right frame 12 and is configured to fixedly embed a fuel tank module 62. Fuel tank fixing plates 122 are welded to an outer side wall of the right frame 12. A size of the concave space 121 for mounting a fuel tank matches an overall size of an entire fuel tank. The fuel tank module 62 is embedded into the concave space 121 for mounting a fuel tank of the right frame 12, and the fuel tank module 62 and the fuel tank fixing plates 122 are fastened and mounted in the right frame 12 by using bolts. The space of the chassis frame 1 is fully used to arrange the two groups of oil tanks, thereby saving a mounting space of the power system.
[0080] Referring to
[0081] A silencer exhaust port of the engine is connected to an exhaust tail pipe 76 by an exhaust flange pipe 75. The exhaust tail pipe 76 is fixed by a tail pipe support 77 on the right frame 12 and extends out of a top middle cover 78, so that the exhaust tail pipe 76 is separated from the interior of a mounting cabin of the engine. Exhaust gas discharged from the engine is sequentially discharged from the inside of the engine to the outside through the exhaust flange pipe 75 and the exhaust tail pipe 76, to complete an entire exhaust process.
[0082] Referring to
[0083] In this embodiment, the heat dissipation water tank can cool the cooling liquid of the engine and the hydraulic oil of the hydraulic system simultaneously. A cooling water channel and a hydraulic oil channel are provided inside the heat dissipation water tank 81. An engine upper water pipe 91 and an engine lower water pipe 92 of the power system are respectively connected to two ends of the cooling water channel. An oil inlet pipe 93 and an oil return pipe 94 are arranged on two ends of the hydraulic oil channel in an extending manner, and oil in an oil return pipe of the hydraulic system flows back into a hydraulic oil tank through the oil inlet pipe 93 and the oil return pipe 94.
[0084] The heat dissipation water tank 81 is located at the tail portion of the chassis frame 1. A tail gate 13 is arranged at an outermost side of the heat dissipation water tank 81. A tail baffle plate 131 is welded on a lower portion of the tail gate 13, and the tail baffle plate slightly extends out of the tail gate 13. A tail reinforcing plate 132 is welded on the tail baffle plate 131, to effectively prevent the loader from striking the tail gate 13 due to reversing when the loader is in a working state, thereby protecting the internal heat dissipation water tank from being damaged.
[0085] Implementations of the Present Invention
Embodiment 2
[0086] Referring to
[0087] The above descriptions are merely exemplary embodiments of the present invention, but are not to limit the present invention in any form. Although the present invention has disclosed the exemplary embodiments as above, the exemplary embodiments are not used to limit the present invention. A person skilled in the art can make, without departing from the scope of the technical solutions of the present invention, many possible variations and modifications to the technical solutions of the present invention by using the technical content disclosed above, or revise the technical solutions of the present invention to equivalent embodiments with equivalent changes. Therefore, any simple alterations, equivalent changes, and modifications that are made to the foregoing embodiments according to the technical essence of the present invention without departing from the content of the technical solutions of present invention all fall within the protection scope of the technical solutions of the present invention.