Mechanical control device of skid steer loader
By designing a servo plunger pump and a limit mechanism on the skid loader to adjust the maximum vehicle speed, the problem of the maximum vehicle speed being unadjustable in the existing technology is solved, and the operational flexibility and safety are improved.
Patent Information
- Application Number
- CN202422687817.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-05
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-11-05
AI Technical Summary
The maximum speed of existing skid-steer loaders cannot be adjusted, which requires operators to adapt to different models of equipment, affecting operational flexibility and safety.
A mechanical operating device for a skid loader is designed, which includes a servo plunger pump, a multi-way valve and a limit mechanism. The maximum vehicle speed is adjusted by adjusting the position of the limit mechanism on the pull rod, and the automatic reset and feedback of the handle are achieved by combining with an elastic element.
The maximum vehicle speed can be adjusted according to the operator's habits and working conditions, which improves operational flexibility, comfort and safety.
Smart Images

Figure CN223398175U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of skid-steer loaders, in particular to a mechanical operating device for a skid-steer loader. Background Art
[0002] Existing skid steer loader control mechanisms are primarily divided into two-hand mechanical control, one-hand hydraulic pilot control, and one-hand electric control. Two-hand mechanical control is more suitable for operators. Depending on the machine model, the maximum forward and reverse speed varies, and this maximum speed is usually not adjustable, requiring operators to adapt to different machine models. Utility Model Content
[0003] In order to solve the defect in the prior art that the maximum vehicle speed cannot be adjusted, the utility model provides a mechanical control device for a skid loader.
[0004] A mechanical control device for a skid loader includes two handles;
[0005] A servo plunger pump, wherein the two handles are operated forward and backward to control the servo plunger pump and thus control the travel and steering of the skid loader;
[0006] A multi-way valve is in transmission connection with the two handles, and the two handles are operated left and right to control the multi-way valve and thus control the lifting and flipping of the bucket of the skid loader;
[0007] The servo plunger pump includes a reset mechanism, which includes a limit bracket, an elastic element and two pull rods respectively connected to the two handles. The two pull rods are slidably arranged on the limit bracket. The pull rod is provided with a limit mechanism for limiting its travel on the limit bracket. The elastic element is arranged between the pull rod and the limit bracket.
[0008] In one embodiment, the limiting bracket includes a mounting plate mounted on the servo plunger pump, a pair of oppositely arranged supports are fixedly provided on the mounting plate, the pull rod passes through the two supports and is slidably connected to the supports, and the limiting mechanism is provided at both ends of the pull rod.
[0009] In one embodiment, the limiting mechanism is a limiting nut, and the limiting nut is threadedly connected to the pull rod.
[0010] In one embodiment, the elastic element is a spring, the spring is sleeved on the pull rod, and the spring is located between the two supports.
[0011] In one embodiment, two springs are provided on each pull rod, an adjustment seat is provided between the two springs, the adjustment seat is threadedly connected to the pull rod, one end of the spring rests on the adjustment seat, and the other end rests on the support.
[0012] In one embodiment, it also includes an operating mechanism connected to the two handles respectively, and the operating mechanism includes a first connecting rod and a second connecting rod. The forward and backward operation of the handle can drive the first connecting rod to rise or fall, and the left and right operation of the handle can drive the second connecting rod to rise or fall. The first connecting rod is connected to the pull rod, and the second connecting rod is connected to the multi-way valve.
[0013] In one embodiment, the operating mechanism further includes a first operating rod perpendicular to the first connecting rod and a second operating rod perpendicular to the second connecting rod, both ends of the first operating rod and the second operating rod are rotatably mounted on a fixed frame; both ends of the first operating rod and the second operating rod are fixed with a swing arm;
[0014] A swing arm at one end of the first operating lever is connected to the first connecting rod via a joint bearing, and a swing arm at the other end is connected to the first control lever via a joint bearing. The first control lever is connected to one end of a rotating arm via a joint bearing, and the other end of the rotating arm is connected to the pull rod via a joint bearing. The rotating arm is rotatably arranged on the servo plunger pump;
[0015] One end of the second operating lever is connected to the second connecting rod through a joint bearing, and the other end of the second operating lever is connected to the second control rod through a joint bearing. The other end of the second control rod is connected to the multi-way valve.
[0016] Beneficial effects: The utility model can control the movement stroke of the pull rod through the limit mechanism. Since the pull rod is directly connected to the control servo plunger pump, the maximum stroke of the pull rod is directly related to the maximum vehicle speed. By adjusting the position of the limit mechanism on the pull rod, the maximum vehicle speed can be directly adjusted. The maximum vehicle speed can be adjusted according to the habits or working conditions of different operators, thereby improving operational flexibility, comfort and safety. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 Schematic diagram of the operating device;
[0018] Figure 2 This is a schematic diagram of the servo plunger pump control structure;
[0019] Figure 3 This is a schematic diagram of the multi-way valve operating structure;
[0020] Figure 4 It is a schematic diagram of the structure of the servo plunger pump and reset mechanism;
[0021] In the figure, 101. left handle, 102. right handle, 200. servo plunger pump, 300. multi-way valve, 11. first connecting rod, 12. first operating lever, 13. first control lever, 14. pull rod, 15. spring, 16. rotating arm, 17. mounting plate, 18. support, 19. limit nut, 191. adjustment seat, 21. second connecting rod, 22. second operating lever, 23. second control lever, 30. fixing bracket, 40. swing arm. DETAILED DESCRIPTION
[0022] The present application will be further described below in conjunction with specific embodiments. Obviously, the embodiments described are only a portion of the embodiments of the present application, rather than all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without making creative changes are within the scope of protection of the present application.
[0023] like Figure 1 、 2 As shown in FIG4 , a mechanical operating device for a skid steer loader includes two handles;
[0024] The servo plunger pump 200, the two handles are operated forward and backward to control the servo plunger pump 200 and thus control the travel and steering of the skid loader;
[0025] The multi-way valve 300 is in transmission connection with the two handles. The two handles are operated left and right to control the multi-way valve 300 and thus control the lifting and flipping of the bucket of the skid loader;
[0026] The servo plunger pump 200 includes a reset mechanism, which includes a limit bracket, an elastic element and two pull rods 14 respectively connected to the two handles. The two pull rods 14 are slidably arranged on the limit bracket. The pull rod 14 is provided with a limit mechanism for limiting its travel on the limit bracket. The elastic element is arranged between the pull rod 14 and the limit bracket.
[0027] The two handles are respectively a left handle 101 and a right handle 102. By using both of them, the forward, backward, turning and lifting and flipping of the bucket of the loader can be controlled. Manual mechanical operation is more in line with the operator's operating habits than using both hands and feet. It is simple to operate and not prone to operating errors. In addition, the utility model is also provided with a limit mechanism, which can control the stroke of the pull rod 14, that is, control the output flow of the servo plunger pump 200, and thus control the maximum speed of the vehicle. The maximum speed can be adjusted according to different operators or working conditions, which can improve driving comfort and safety. In addition, the elastic element can realize that the handle is automatically reset to the middle position when it is not operated. At the same time, a feedback rod is added when the handle is operated, that is, the operator will feel a reaction force when the handle is deflected back and forth, which can avoid operating errors and improve operating comfort.
[0028] like Figure 4 As shown, in one embodiment, the limit bracket includes a mounting plate 17 mounted on the servo plunger pump 200. A pair of oppositely disposed supports 18 are fixedly mounted on the mounting plate 17. The pull rod 14 passes through the two supports 18 and is slidably connected to the supports 18. The limit mechanism is provided at both ends of the pull rod 14. Specifically, a mounting hole can be provided in the supports 18, the pull rod 14 passes through the two supports 18, and the limit mechanism is provided on the pull rod 14 protruding from the two supports 18.
[0029] like Figure 4 Specifically, in one embodiment, the limiting mechanism is a limiting nut 19, which is threadedly connected to the pull rod 14. The threaded connection facilitates adjustment, and by adjusting the limiting nut 19, the travel of the pull rod 14 can be effectively controlled. Of course, other arrangements may be used in other embodiments, and the present invention is not limited thereto.
[0030] like Figure 4 As shown, specifically, in one embodiment, the elastic element is a spring 15, which is sleeved on the pull rod 14 and located between the two supports 18. In addition to the elastic element in the form of the spring 15, other forms of elastic elements may also be used, such as elastic rubber materials.
[0031] like Figure 4 As shown, in one embodiment, each pull rod 14 is provided with two springs 15, with an adjustment seat 191 disposed between the two springs 15. The adjustment seat 191 is threadedly connected to the pull rod 14. One end of the spring 15 rests on the adjustment seat 191, and the other end rests on the support 18. Adjusting the adjustment seat 191 can adjust the force required when operating the handle forward and backward, so that the operator can obtain a more comfortable driving experience.
[0032] like Figures 1 to 3 As shown, in one embodiment, to achieve transmission connection between the handle and the servo plunger pump 200 and the multi-way valve 300, the operating device further includes an operating mechanism connected to the two handles, respectively. The operating mechanism includes a first connecting rod 11 and a second connecting rod 21. Forward and backward operation of the handle can drive the first connecting rod 11 to rise or fall, and left and right operation of the handle can drive the second connecting rod 21 to rise or fall. The first connecting rod 11 is transmission-connected to the pull rod 14, and the second connecting rod 21 is transmission-connected to the multi-way valve 300. The ability of the handle to achieve both forward and backward operation and left and right operation is a common technical means in the art and will not be described in detail in this application.
[0033] like Figures 1 to 3As shown, specifically, the operating mechanism further includes a first operating rod 12 perpendicular to the first connecting rod 11 and a second operating rod 22 perpendicular to the second connecting rod 21. Both ends of the first operating rod 12 and the second operating rod 22 are rotatably mounted on a fixing frame 30. Both ends of the first operating rod 12 and the second operating rod 22 are fixed with a swing arm 40.
[0034] A swing arm 40 at one end of the first operating lever 12 is connected to the first connecting rod 11 via a joint bearing, and the swing arm 40 at the other end is connected to the first control rod 13 via a joint bearing. The first control rod 13 is connected to one end of a rotating arm 16 via a joint bearing, and the other end of the rotating arm 16 is connected to the pull rod 14 via a joint bearing. The rotating arm 16 is rotatably mounted on the servo plunger pump 200.
[0035] The swing arm 40 at one end of the second operating lever 22 is connected to the second connecting rod 21 through a joint bearing, and the swing arm 40 at the other end is connected to the second control rod 23 through a joint bearing. The other end of the second control rod 23 is connected to the multi-way valve 300.
[0036] In order to reduce wear, bushings may be provided between the fixing bracket 30 and the first operating rod 12 and the second operating rod 22 .
[0037] In order to achieve automatic and operational feedback when the handle moves left and right, a return spring 15 can be provided between the second operating rod 22 and the fixing bracket 30 .
[0038] The specific transmission method is that the front and rear deflection of the operating handle can drive the first connecting rod 11 to rise and fall. When the first connecting rod 11 rises and falls, it drives the swing arm 40 fixed to one end of the first operating rod 12 to rotate. The rotation of the swing arm 40 can drive the first operating rod 12 to rotate, and then the swing arm 40 at the other end of the first operating rod 12 also rotates, thereby driving the first control rod 13 to drive the rotating arm 16 to rotate. The rotating arm 16 drives the pull rod 14 to slide back and forth on the support 18. Finally, the pull rod 14 controls the output flow of the servo plunger pump 200. The greater the stroke of the pull rod 14, the greater the output flow, and the faster the corresponding operation speed of the loader. Release the handle, and the pull rod 14 can be reset under the action of the elastic element, and the handle is in the middle position at the same time. The combined operation of the front, rear, and middle positions of the left handle 101 and the right handle 102 can realize the forward, backward and steering operations of the loader. The specific combination and the operation mode of the loader are shown in Table 1 below:
[0039] Table 1
[0040]
[0041] Similarly, left and right deflection of the operating handle drives the second connecting rod 21 up and down. As the second connecting rod 21 rises and falls, it rotates the swing arm 40 fixed to one end of the second operating rod 22. The rotation of the swing arm 40 drives the second operating rod 22 to rotate, which in turn rotates the swing arm 40 at the other end of the second operating rod 22, thereby driving the movement of the second control rod 23. The second control rod 23 controls the valve core of the multi-way valve 300, thereby controlling the movement of the bucket. The loader bucket can be raised, lowered, or tilted by combining the left, right, and center positions of the left handle 101 and the right handle 102. The specific combinations and the Zhuangzi Aji's operating methods are shown in Table 2 below:
[0042] Table 2
[0043]
[0044] Although the present disclosure is disclosed as above, the protection scope of the present disclosure is not limited thereto. Those skilled in the art can make various changes and modifications without departing from the spirit and scope of the present disclosure, and these changes and modifications will fall within the protection scope of this application.
Claims
1. A mechanical operating device for a skid steer loader, characterized in that: Includes two handles; A servo plunger pump (200), wherein the two handles are operated forward and backward to control the servo plunger pump (200) and thus control the travel and steering of the skid loader; A multi-way valve (300) is in transmission connection with the two handles, and the two handles are operated left and right to control the multi-way valve (300) and thus control the lifting and flipping of the bucket of the skid loader; The servo plunger pump (200) includes a reset mechanism, which includes a limit bracket, an elastic element and two pull rods (14) respectively connected to the two handles in a transmission manner. The two pull rods (14) are slidably arranged on the limit bracket, and a limit mechanism is provided on the pull rod (14) to limit its travel on the limit bracket. The elastic element is arranged between the pull rod (14) and the limit bracket.
2. The mechanical operating device for a skid steer loader according to claim 1, wherein: The limiting bracket includes a mounting plate (17) mounted on the servo plunger pump (200), a pair of oppositely arranged supports (18) are fixedly arranged on the mounting plate (17), the pull rod (14) passes through the two supports (18) and is slidably connected to the supports (18), and the limiting mechanism is provided at both ends of the pull rod (14).
3. The mechanical operating device for a skid steer loader according to claim 1 or 2, characterized in that: The limiting mechanism is a limiting nut (19), and the limiting nut (19) is threadedly connected to the pull rod (14).
4. The mechanical operating device for a skid steer loader according to claim 2, wherein: The elastic element is a spring (15), the spring (15) is sleeved on the pull rod (14), and the spring (15) is located between the two supports (18).
5. The mechanical operating device for a skid steer loader according to claim 4, characterized in that: Two springs (15) are provided on each pull rod (14), an adjustment seat (191) is provided between the two springs (15), the adjustment seat (191) is threadedly connected to the pull rod (14), one end of the spring (15) rests on the adjustment seat (191), and the other end rests on the support (18).
6. The mechanical operating device for a skid steer loader according to claim 1, wherein: The invention also includes an operating mechanism connected to the two handles respectively, wherein the operating mechanism includes a first connecting rod (11) and a second connecting rod (21). The handles can be operated forward and backward to drive the first connecting rod (11) to rise or fall, and the handles can be operated left and right to drive the second connecting rod (21) to rise or fall. The first connecting rod (11) is in transmission connection with the pull rod (14), and the second connecting rod (21) is in transmission connection with the multi-way valve (300).
7. The mechanical operating device for a skid steer loader according to claim 6, wherein: The operating mechanism further comprises a first operating rod (12) perpendicular to the first connecting rod (11) and a second operating rod (22) perpendicular to the second connecting rod (21), both ends of the first operating rod (12) and the second operating rod (22) being rotatably mounted on a fixed frame (30); and both ends of the first operating rod (12) and the second operating rod (22) are fixed with swing arms (40); A swing arm (40) at one end of the first operating lever (12) is connected to the first connecting rod (11) via a joint bearing, and the swing arm (40) at the other end is connected to the first control lever (13) via a joint bearing, and the first control lever (13) is connected to one end of a rotating arm (16) via a joint bearing, and the other end of the rotating arm (16) is connected to the pull rod (14) via a joint bearing, and the rotating arm (16) is rotatably arranged on the servo plunger pump (200); A swing arm (40) at one end of the second operating lever (22) is connected to the second connecting rod (21) via a joint bearing, and the swing arm (40) at the other end is connected to the second control rod (23) via a joint bearing, and the other end of the second control rod (23) is connected to the multi-way valve (300).
Citation Information
Cited By
Mechanical control device of skid steer loader
CN119145495A