Electric circulating transfer trolley
The transfer assembly, which links hydraulic cylinders with components such as crossbeams and connecting rods, solves the problems of poor flexibility and insufficient material stability in traditional transfer equipment, enabling multi-angle transfer and tilting, and improving transfer efficiency and safety.
Patent Information
- Application Number
- CN202423188947.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-24
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2034-12-24
AI Technical Summary
Traditional transfer equipment lacks flexibility, cannot meet the needs of multi-angle transfer and dumping, and has insufficient material stability, which affects production efficiency and safety.
The transfer assembly uses hydraulic cylinders linked with components such as crossbeams and connecting rods to achieve multi-angle rotation and tilting of the transfer bucket. Combined with support components, it provides stable support, and the transfer bucket is fixed and buffered by bolts and nuts.
It improves the efficiency and convenience of material handling, ensures the stability and safety of materials, reduces the risk of spillage and damage, and supports precise angle adjustment and position replacement.
Smart Images

Figure CN223631604U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a transfer technology field, specifically relates to a kind of electric circulating transfer trolley. BACKGROUND
[0002] The trolley used for transferring electrolyte in aluminum plant is a specially designed transport equipment. Its main function is to safely and efficiently transport electrolyte from one storage location (such as an electrolyte storage tank near the electrolytic cell) to another place where electrolyte is needed (such as other electrolytic workshops or electrolyte processing areas). It can carry a certain amount of electrolyte and ensure the stability of the electrolyte during transportation to prevent leakage or contamination.
[0003] However, traditional transfer equipment often has the problems of single transfer mode, poor flexibility and inconvenient operation:
[0004] For example, some simple trolleys can only realize horizontal transportation of materials and cannot meet the needs of inclined dumping or precise transfer at different heights.
[0005] Moreover, for some work scenarios that require frequent adjustment of transfer angle and position, traditional transfer equipment lacks efficient adjustment mechanism, which not only reduces the efficiency of material transfer, but also increases labor cost and labor intensity.
[0006] In addition, some transfer devices are not stable in structure design, and the stability of the materials during transfer is not guaranteed, which may cause the materials to spill or damage, affecting the smooth progress of production and product quality.
[0007] Therefore, how to improve the stability during transfer and adjust the transfer angle according to the transfer needs, as well as facilitate the transportation and dumping of materials, is a problem worth exploring. SUMMARY
[0008] The utility model solves the technical problem to provide a kind of electric circulating transfer trolley, through the linkage of the hydraulic cylinder of transfer assembly and crossbeam, connecting rod one etc. component, it can flexibly realize the multi-angle rotation of transfer bucket, both can be loaded with the opening of transfer bucket upwards to facilitate material, it can also be opened towards oblique downward and quickly dump material, greatly improve the efficiency and convenience of material transfer.
[0009] An electric circulating transfer trolley, characterized by comprising a support portion fixed on a vehicle body, a transfer assembly connected to the support portion for transferring materials;
[0010] The transport assembly comprises a connecting rod I, a crossbeam, a transport bucket, a first connecting piece, a supporting rod, a fixing arm, a second connecting piece and a hydraulic cylinder, the upper end of the supporting part is rotationally connected to the middle part of the crossbeam, one end of the crossbeam is rotationally connected to the upper end of the connecting rod I, the lower end of the connecting rod I is rotationally connected to the bottom of the arc-shaped wall surface of the transport bucket, the two sides of the arc-shaped wall surface of the transport bucket are respectively rotationally connected to the fixing arms, and the fixing arms are fixed on the vehicle body.
[0011] The other end of the crossbeam is rotationally connected to the piston rod of the hydraulic cylinder, and the lower end of the shell of the hydraulic cylinder is rotationally connected to the vehicle body.
[0012] As a further limitation of the technical solution, the supporting part is also rotationally connected to the supporting rod, the other end of the supporting rod can be connected to the first connecting piece fixed at the eccentric position of the bottom of the transport bucket through a bolt and a nut, and the other end of the supporting rod can be connected to the second connecting piece fixed on the vehicle body through a pin.
[0013] As a further limitation of the technical solution, the upper part of the vehicle body is fixed with a storage groove, and the storage groove is a plurality of.
[0014] As a further limitation of the technical solution, one end of the vehicle body is provided with a handrail.
[0015] As a further limitation of the technical solution, the arc-shaped surface of the transport bucket is provided with a flow guide groove on the upper end of the side away from the first connecting piece, which is used for guiding the flow of materials when the materials in the transport bucket are poured.
[0016] As a further limitation of the technical solution, the fixing arm is connected to the transport bucket through a connecting assembly, the connecting assembly is rotationally connected to the transport bucket, and the connecting assembly is fixedly connected to the fixing arm.
[0017] As a further limitation of the technical solution, the connecting assembly comprises a gasket, a bolt, a fixing nut and a connecting frame, the outer side of the fixing arm is provided with the gasket, the inner side of the fixing arm is provided with the connecting frame, the connecting frame is a square piece provided with a group of notches, the middle parts of the two sides of the transport bucket are respectively rotationally connected to protruding shafts, each protruding shaft penetrates the fixing arm, each protruding shaft is accommodated in the notch in the center of the connecting frame, each protruding shaft further penetrates the center of the corresponding gasket, the notches at the two ends of each connecting frame are respectively provided with the bolts, each bolt penetrates the fixing arm and the gasket, and each bolt is screwed with the fixing nut.
[0018] Compared with the prior art, the advantages and positive effects of the utility model are:
[0019] Through the linkage of the hydraulic cylinder of the transfer assembly and the cross beam, the connecting rod and other components, flexible multi-angle rotation of the transfer barrel can be realized, the opening of the transfer barrel can be upward to facilitate the loading of the material, and the opening of the transfer barrel can be downward to quickly pour the material, so that the efficiency and convenience of material transfer are greatly improved.
[0020] The cooperation of the support part, the fixed arm, the support rod and other components provides stable support for the transfer barrel in different working states, when the opening of the transfer barrel is upward, the support rod is connected with the first connecting piece through bolts and nuts, effectively preventing the transfer barrel from shaking or moving during the loading of the material, ensuring the safety and stability of the material transfer, and reducing the risk of material spilling and damage.
[0021] The transferred electrolyte adheres to the barrel wall, and the inner wall of the transfer barrel needs to be cleaned and polished, at this time, the transfer barrel will have certain vibration and stress, the support rod and the first connecting piece can buffer and withstand these vibration and stress to prevent damage to the hydraulic cylinder.
[0022] The vehicle body is a mobile trolley, cooperates with the handrail at one end, and the operator can easily push the device to move in the working site, realizing the quick replacement of the position of the transfer assembly. At the same time, the piston rod of the hydraulic cylinder can be controlled to extend or retract to realize the accurate adjustment of the angle of the transfer barrel.
[0023] The arc-shaped surface of the transfer barrel is provided with a flow guide groove on the side of the upper end away from the first connecting piece, which can play a good flow guiding role when the material is poured out, so that the material can be poured out more smoothly, avoiding the problem of incomplete pouring or spilling caused by accumulation or obstruction during pouring.
[0024] The plurality of storage grooves fixed on the upper part of the vehicle body provide additional tool storage space for the operator, which is convenient for the operator to take the required items at any time during the transfer process. BRIEF DESCRIPTION OF DRAWINGS
[0025] The drawings described herein are used to provide further understanding of the present application, constitute a part of the present application, the illustrative embodiments of the present application and the description thereof are used to explain the present application, and do not constitute improper limitation on the present application. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained from these drawings by those skilled in the art without creating labor. In the drawings:
[0026] Figure 1 is a schematic view of the three-dimensional structure of the present application Figure 1 ;
[0027] Figure 2 is a schematic view of the three-dimensional structure of the present application Figure 2 ;
[0028] Figure 3 is the utility model Figure 2 the local enlarged view of A in the middle;
[0029] Figure 4 is the front view of the utility model;
[0030] Figure 5 is the partial front view of the utility model Figure 1 ;
[0031] Figure 6 is the partial front view of the utility model Figure 2 .
[0032] In the figure: 1, support part; 2, transfer assembly; 201, connecting rod one; 202, crossbeam; 203, transfer bucket; 2031, protruding shaft; 204, first connecting piece; 205, support rod; 206, fixed arm; 207, second connecting piece; 208, hydraulic cylinder; 3, vehicle body; 301, handle; 4, storage groove; 5, baffle; 6, connecting assembly; 601, gasket; 602, bolt; 603, fixed nut; 604, connecting frame. Specific implementation
[0033] The utility model will be further described below in connection with the drawings and implementation.
[0034] An electric circulating transfer trolley, including support part 1, is fixed on the vehicle body 3, transfer assembly 2 is connected with the support part 1 connection, is used to carry out the transfer of material;
[0035] The transfer assembly 2 includes connecting rod one 201, crossbeam 202, transfer bucket 203, first connecting piece 204, support rod 205, fixed arm 206, second connecting piece 207 and hydraulic cylinder 208, the upper end of the support part 1 is rotatably connected with the middle part of the crossbeam 202, one end of the crossbeam 202 is rotatably connected with the upper end of the connecting rod one 201, the lower end of the connecting rod one 201 is rotatably connected with the arc wall bottom of the transfer bucket 203, the arc wall both sides of the transfer bucket 203 are rotatably connected with the fixed arm 206 respectively, and the fixed arm 206 is fixed on the vehicle body 3;
[0036] The other end of the crossbeam 202 is rotatably connected with the piston rod of the hydraulic cylinder 208, and the lower end of the shell of the hydraulic cylinder 208 is rotatably connected with the vehicle body 3.
[0037] The support part 1 is also rotatably connected with the support rod 205, and the other end of the support rod 205 can be connected with the first connecting piece 204 fixed to the eccentric position of the bottom of the transfer bucket 203 through a bolt and a nut, and the other end of the support rod 205 can be connected with the second connecting piece 207 fixed on the vehicle body 3 through a pin.
[0038] Further, through holes are arranged on the other end of the support rod 205, the first connecting piece 204 and the second connecting piece 207 respectively, the through hole on the other end of the support rod 205 is convenient for the bolt or the pin to pass through, the through hole on the first connecting piece 204 is convenient for the bolt to pass through, and the through hole on the second connecting piece 207 is convenient for the pin to pass through.
[0039] In the embodiment, the transport assembly 2 is arranged, the transport of the material is realized, the vehicle body 3 is an electric trolley, the vehicle body 3 can move, and the position of the transport assembly 2 is convenient to replace;
[0040] The piston rod of the hydraulic cylinder 208 can drive the cross beam 202 to swing, the cross beam 202 can drive the first connecting rod to swing, the first connecting rod drives the transport barrel 203 to swing, the transport barrel 203 rotates around the point of rotation connection with the fixed arm 206, when the transport barrel 203 needs to be upward when the transport assembly 2 performs the transport work, the piston rod of the hydraulic cylinder 208 is extended, the opening of the transport barrel 203 is upward, the support rod 205 is pulled to be arranged in the first connecting piece 204, the bolt is passed through the through holes on the support rod 205 and the first connecting piece 204, and then the bolt is locked by using the nut, the support effect of the transport barrel 203 is realized, when the material in the transport barrel 203 needs to be poured out, the opening of the transport barrel 203 needs to be inclined downward, at the moment, the first connecting piece 204 and the support rod 205 need to be separated, the end of the support rod 205 is connected through the pin and the second connecting piece 207, the piston rod of the hydraulic cylinder 208 is controlled to be retracted, the opening end of the transport barrel 203 is inclined downward, the material is poured out, and the transport of the material is completed.
[0041] Specifically, when the bolt and the nut are used to limit the support rod 205 and the first connecting piece 204, the pouring state of the transport barrel is fixed and maintained, at the moment, if the inner wall of the transport barrel 203 needs to be cleaned and polished, the transport barrel 203 will have certain vibration and stress, and the support rod 205 and the first connecting piece 204 can buffer and withstand the vibration and stress to prevent the hydraulic cylinder 208 from being damaged.
[0042] In some embodiments, the upper portion of the vehicle body 3 is fixed with a storage groove 4, and the storage groove 4 is a plurality of.
[0043] One end of the vehicle body 3 is provided with a handrail.
[0044] The arc-shaped surface of the transport barrel 203 is provided with a flow guide groove on the side upper end away from the first connecting piece 204, and the flow guide groove is used for guiding the material in the transport barrel 203 when the material is poured.
[0045] In some embodiments, the lower side of the vehicle body 3 is further provided with a baffle 5 corresponding to one end of the transport barrel 203, and the baffle 5 is used for preventing the material from splashing when the material is poured.
[0046] In some embodiments, the fixed arm 206 connects the transfer barrel 203 through a connecting assembly 6, the connecting assembly 6 rotatably connects the transfer barrel 203, and the connecting assembly 6 fixedly connects the fixed arm 206.
[0047] The connecting assembly 6 comprises a gasket 601, a bolt 602, a fixing nut 603, and a connecting frame 604, the outer side of the fixed arm 206 is provided with the gasket 601, the inner side of the fixed arm 206 is provided with the connecting frame 604, the connecting frame 604 is a square piece provided with a group of notches, the middle part of the two sides of the transfer barrel 203 is rotatably connected with a protruding shaft 2031, each protruding shaft 2031 penetrates the fixed arm 206, each protruding shaft 2031 is accommodated in the notch in the center of the connecting frame 604, and each protruding shaft 2031 further penetrates the center of the corresponding gasket 601, and the notches at the two ends of each connecting frame 604 are respectively provided with the bolt 602, each bolt 602 penetrates the fixed arm 206 and the gasket 601, and each bolt 602 is screwed with the fixing nut 603, and the fixing nut 603 and the bolt 602 are used for locking the connecting frame 604, the gasket 601, and the fixed arm 206.
[0048] Specifically, the connecting frame 604, the gasket 601, and the fixed arm 206 are penetrated by the bolt 602, the bolt 602 is screwed with the fixing nut 603, the connecting frame 604, the gasket 601, and the fixed arm 206 are convenient to disassemble and assemble, the transfer barrel 203 is convenient to disassemble from the fixed arm 206, the transfer barrel 203 is convenient to assemble, and the rotation connection between the connecting frame 604 and the transfer barrel 203 does not hinder the swing of the transfer barrel 203.
[0049] In the specific use process, the device is moved by pushing the handrails, the opening angle of the transfer barrel 203 is adjusted by controlling the hydraulic cylinder 208, the transfer barrel 203 is convenient to transfer when the opening is upward, the transfer barrel 203 is convenient to pour out the materials when the opening is obliquely downward, the transfer barrel 203 is limited by the cooperation of the supporting rod 205, the bolt and the nut, and the first connecting piece 204 when the opening of the transfer barrel 203 is upward, the transfer is convenient to smoothly proceed, and the transfer barrel 203 can be disassembled by separating the connecting assembly 6 and the fixed arm 206.
[0050] The above disclosure is only a specific embodiment of the utility model, but the utility model is not limited to this, and any change that can be thought of by any person skilled in the art should fall within the protection scope of the utility model.
Claims
1. An electrically powered circulating trolley, characterized in that, The utility model relates to a material transfer device, which comprises a support part (1) fixed on a vehicle body (3), a transfer assembly (2) connected with the support part (1) for transferring materials. The transfer assembly (2) comprises a connecting rod (201), a crossbeam (202), a transfer bucket (203), a first connecting piece (204), a supporting rod (205), a fixed arm (206), a second connecting piece (207) and a hydraulic cylinder (208), the upper end of the support part (1) is rotatably connected with the middle part of the crossbeam (202), one end of the crossbeam (202) is rotatably connected with the upper end of the connecting rod (201), the lower end of the connecting rod (201) is rotatably connected with the bottom of the arc-shaped wall of the transfer bucket (203), the arc-shaped wall of the transfer bucket (203) is rotatably connected with the fixed arm (206) on both sides, and the fixed arm (206) is fixed on the vehicle body (3). The other end of the crossbeam (202) is rotatably connected with the piston rod of the hydraulic cylinder (208), and the lower end of the shell of the hydraulic cylinder (208) is rotatably connected with the vehicle body (3).
2. The electrically powered circulating transport vehicle of claim 1, wherein, The support part (1) is also rotatably connected with the supporting rod (205), the other end of the supporting rod (205) can be connected with the first connecting piece (204) fixed on the eccentric position of the bottom of the transfer bucket (203) through a bolt and a nut, and the other end of the supporting rod (205) can be connected with the second connecting piece (207) fixed on the vehicle body (3) through a pin.
3. The electrically powered circulating transport vehicle of claim 2, wherein, The upper part of the vehicle body (3) is fixed with a storage tank (4), and the storage tank (4) is a plurality of.
4. The electrically powered circulating transport vehicle of claim 3, wherein, One end of the vehicle body (3) is provided with a handrail.
5. The electrically powered circulating transport vehicle of claim 4, wherein, The arc-shaped surface of the transfer bucket (203) is provided with a flow guide groove on the upper end of the side away from the first connecting piece (204), which is used for guiding the flow of materials when the materials in the transfer bucket (203) are poured.
6. The electrically powered circulating transport vehicle of claim 5, wherein, The fixed arm (206) is connected with the transfer bucket (203) through a connecting assembly (6), the connecting assembly (6) is rotatably connected with the transfer bucket (203), and the connecting assembly (6) is fixedly connected with the fixed arm (206).
7. The electrically powered circulating transport vehicle of claim 6, wherein, The connecting assembly (6) comprises a gasket (601), a bolt (602), a fixing nut (603) and a connecting frame (604), the outer side of the fixing arm (206) is provided with the gasket (601), the inner side of the fixing arm (206) is provided with the connecting frame (604), the connecting frame (604) is a square piece provided with a group of notches, the middle part of the two sides of the transfer barrel (203) is respectively rotationally connected with an extension shaft (2031), each extension shaft (2031) penetrates the fixing arm (206) respectively, each extension shaft (2031) is accommodated in the notch in the center of the connecting frame (604) respectively, and each extension shaft (2031) also penetrates the center of the corresponding gasket (601). The two end notches of each connecting frame (604) are respectively provided with the bolt (602), each bolt (602) penetrates the fixing arm (206) and the gasket (601) respectively, and each bolt (602) is screwed with the fixing nut (603) respectively, so that the connecting frame (604), the gasket (601) and the fixing arm (206) are locked.