Material pouring mechanism for chemical barrel
By designing a material pouring mechanism including car plates, vertical plates, U-shaped lifting frames, sliders, screws and motors, the problem of raw materials spilling caused by shaking during the pouring of chemical barrels is solved, and structural stability is improved and safety risks are reduced.
Patent Information
- Application Number
- CN202421458591.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-25
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-06-25
AI Technical Summary
The existing chemical barrel feeding mechanism is prone to shake during the lifting and pouring of materials, resulting in the spilling of raw materials, which poses waste and safety hazards.
A material pouring mechanism including car plates, vertical plates, U-shaped lifting frames, sliders, screws and motors was designed. The sliders and U-shaped lifting frames were driven to rise through the screws to achieve stable lifting of the chemical barrels, and the shaft and bevel gear system were driven by the motor to achieve rapid flipping and pouring of the barrels.
It effectively improves the stability of the structure, reduces the shaking of chemical barrels during the lifting and pouring of materials, prevents raw materials from spilling out, and reduces waste and safety risks.
Smart Images

Figure CN222906961U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of pouring mechanisms, in particular to a chemical barrel pouring mechanism. Background Technique
[0002] With the continuous development of the economy and the deepening of the industrialization process, the chemical industry has achieved great development. In the process of chemical production, it is often necessary to transfer raw materials, so a chemical barrel pouring mechanism is needed to assist in pouring. In the prior art, a chemical barrel pouring mechanism with the authorized announcement number of CN219708480U is disclosed, which includes a U-shaped base. An inverted L-shaped support plate is fixedly connected to the inner side of the U-shaped base. A servo motor is installed on the top of the inverted L-shaped support plate. An adjustment groove is opened in the inner cavity of the inverted L-shaped support plate. A lead screw is rotatably connected between the upper and lower sides of the inner cavity of the adjustment groove. Through the settings of the U-shaped base, the inverted L-shaped support plate, the adjustment groove, the adjustment block, the lead screw, the servo motor, the mounting plate, the circular notch, the chemical barrel, the spring, the pressing plate and the vibration motor, by buckling the chemical barrel in the circular notch and then starting the servo motor to drive the lead screw to rotate, the chemical barrel can be automatically lifted to a certain height, so that there is no need to lift the chemical barrel manually when pouring, further making the pouring more labor-saving. And starting the vibration motor can drive the chemical barrel to vibrate, so that the raw materials adhered to the inner wall of the chemical barrel can be separated, thus avoiding waste caused by raw material adhesion.
[0003] However, it is found in use that the above design has limited structural stability and is prone to shaking problems during the lifting and pouring process of the chemical barrel, resulting in easy spilling of the raw materials in the chemical barrel, easy waste, and potential safety hazards. Content of the Utility Model
[0004] Aiming at the above problems, the purpose of the present utility model is to provide a chemical barrel pouring mechanism, which can effectively improve the structural stability, effectively reduce the shaking problem of the chemical barrel during the lifting and pouring process, effectively prevent the raw materials in the chemical barrel from spilling, reduce waste, and reduce the safety risk, so as to solve the problems put forward in the above background technique.
[0005] To achieve the above object, the technical solution adopted by the utility model is as follows: A chemical barrel pouring mechanism, including a vehicle plate, on the top of the vehicle plate, two vertical plates are fixedly installed. The same U-shaped lifting frame is slidably installed on the two vertical plates. A material barrel is arranged inside the U-shaped lifting frame. A rectangular through groove is penetrated through the vertical plate. A slider is slidably penetrated through the rectangular through groove. The slider is fixed on one side of the U-shaped lifting frame. A lead screw is threadedly penetrated through the slider. A rectangular through hole is penetrated through the vertical plate. The bottom end of the lead screw extends into the rectangular through hole and is provided with a first bevel gear. A rotating shaft is arranged on the top of the vehicle plate. The two ends of the rotating shaft respectively extend into the corresponding rectangular through holes and are provided with second bevel gears. The second bevel gear meshes with the first bevel gear. A third bevel gear is fixedly sleeved on the rotating shaft. A first motor is arranged on the vehicle plate. A fourth bevel gear is arranged on the output shaft of the first motor. The fourth bevel gear meshes with the third bevel gear.
[0006] In order to reduce the complexity of the structure:
[0007] As a further improvement of the above technical solution: The slider further includes a rotating rod. The rotating rod rotatably penetrates through the slider. One end of the rotating rod extends into the U-shaped lifting frame and is fixed on one side of the material barrel. A fifth bevel gear is arranged at one end of one of the rotating rods away from the material barrel. A second motor is arranged on one of the sliders. A sixth bevel gear is arranged on the output shaft of the second motor. The sixth bevel gear meshes with the fifth bevel gear.
[0008] The beneficial effect of this improvement is that by setting like this, it is convenient to quickly turn over the material barrel, effectively reducing the complexity of the structure and facilitating maintenance.
[0009] In order to facilitate the limit of the lead screw:
[0010] As a further improvement of the above technical solution: A circular groove is opened on the inner wall of the top of the rectangular through groove. The top end of the lead screw is rotatably installed in the circular groove.
[0011] The beneficial effect of this improvement is that by setting the circular groove, it is convenient to limit the lead screw.
[0012] In order to facilitate the lead screw to drive the slider to lift:
[0013] As a further improvement of the above technical solution: A threaded through hole is penetrated through the slider. The lead screw is threadedly penetrated through the threaded through hole.
[0014] The beneficial effect of this improvement is that by setting the threaded through hole, it is convenient for the lead screw to drive the slider to lift.
[0015] In order to facilitate the support and limit of the lead screw:
[0016] As a further improvement of the above technical solution: a first through hole penetrates between the rectangular through groove and the rectangular through hole, and the lead screw rotates through the first through hole.
[0017] The beneficial effect of this improvement is that by providing the first through hole, it is convenient to support and limit the lead screw.
[0018] To facilitate the support and limit of the rotating shaft:
[0019] As a further improvement of the above technical solution: two clamping plates are fixedly installed on the top of the vehicle plate, the rotating shaft rotates through the two clamping plates, an installation hole penetrates through the vehicle plate, and the first motor is fixedly installed in the installation hole.
[0020] The beneficial effect of this improvement is that by providing the clamping plates, it is convenient to support and limit the rotating shaft.
[0021] To make the rotating rod rotate more stably:
[0022] As a further improvement of the above technical solution: a limiting plate is fixedly installed on one side of the slider, the limiting plate is slidably connected to the corresponding vertical plate, a second through hole penetrates through the slider, third through holes penetrate through both inner walls of the U-shaped lifting frame, and the rotating rod rotates through the corresponding second through hole and third through hole.
[0023] The beneficial effect of this improvement is that by providing the second through hole and the third through hole, it is convenient to support and limit the rotating rod, making the rotating rod rotate more stably.
[0024] To facilitate the installation and fixation of the second motor:
[0025] As a further improvement of the above technical solution: a bracket is provided on one side of one of the sliders, and the second motor is fixedly installed on the top of the bracket.
[0026] The beneficial effect of this improvement is that by providing the bracket, it is convenient to install and fix the second motor.
[0027] The beneficial effect of the present utility model is that through a simple lifting and pouring structure, the stability of the structure can be effectively improved, the problem of shaking of the chemical barrel during lifting and pouring can be effectively reduced, and further, the raw materials in the chemical barrel can be effectively prevented from spilling out, thereby reducing waste and lowering the safety risk. Brief Description of the Drawings
[0028] Figure 1 It is a first front sectional view structural diagram of the present utility model;
[0029] Figure 2 It is a second front sectional view structural diagram of the present utility model;
[0030] Figure 3 The enlarged structural schematic diagram of part A in the present utility model Figure 1 ;
[0031] Figure 4 The enlarged structural schematic diagram of part B in the present utility model Figure 1 ;
[0032] Figure 5 The three-dimensional structural schematic diagram of the U-shaped lifting frame in the present utility model
[0033] Figure 6 The three-dimensional structural schematic diagram of the slider in the present utility model
[0034] Figure 7 The enlarged structural schematic diagram of part C in the present utility model Figure 2 ;
[0035] In the figure: 1, vehicle board; 2, vertical board; 3, U-shaped lifting frame; 4, material bucket; 5, rectangular through groove; 6, slider; 7, lead screw; 8, rectangular through hole; 9, first bevel gear; 10, rotating shaft; 11, second bevel gear; 12, third bevel gear; 13, first motor; 14, fourth bevel gear; 15, rotating rod; 16, fifth bevel gear; 17, second motor; 18, sixth bevel gear. Specific embodiments
[0036] In order to enable those skilled in the art to better understand the technical solution of the present utility model, the present utility model will be described in detail below with reference to the accompanying drawings. The description of this part is only exemplary and explanatory, and should not have any restrictive effect on the protection scope of the present utility model.
[0037] Such as Figures 1-7As shown in the figure, a chemical barrel pouring mechanism includes a vehicle plate 1. At the top of the vehicle plate 1, two vertical plates 2 are fixedly installed. The same U-shaped lifting frame 3 is slidably installed on the two vertical plates 2. A material barrel 4 is arranged inside the U-shaped lifting frame 3. A rectangular through groove 5 penetrates through the vertical plate 2. A slider 6 is slidably penetrated through the rectangular through groove 5. The slider 6 is fixed on one side of the U-shaped lifting frame 3. A lead screw 7 is threadedly penetrated through the slider 6. A rectangular through hole 8 penetrates through the vertical plate 2. The bottom end of the lead screw 7 extends into the rectangular through hole 8 and is provided with a first bevel gear 9. A rotating shaft 10 is arranged at the top of the vehicle plate 1. The two ends of the rotating shaft 10 respectively extend into the corresponding rectangular through holes 8 and are provided with second bevel gears 11. The second bevel gear 11 meshes with the first bevel gear 9. A third bevel gear 12 is fixedly sleeved on the rotating shaft 10. A first motor 13 is arranged on the vehicle plate 1. A fourth bevel gear 14 is arranged on the output shaft of the first motor 13. The fourth bevel gear 14 meshes with the third bevel gear 12. Through a simple lifting and pouring structure, the structural stability can be effectively improved, the problem of shaking of the chemical barrel during lifting and pouring can be effectively reduced, and further, the raw materials in the chemical barrel can be effectively prevented from spilling out, thereby reducing waste and lowering the safety risk. The slider 6 further includes a rotating rod 15. The rotating rod 15 rotatably penetrates through the slider 6. One end of the rotating rod 15 extends into the U-shaped lifting frame 3 and is fixed on one side of the material barrel 4. A fifth bevel gear 16 is arranged at one end of the rotating rod 15 far away from the material barrel 4. A second motor 17 is arranged on one of the sliders 6. A sixth bevel gear 18 is arranged on the output shaft of the second motor 17. The sixth bevel gear 18 meshes with the fifth bevel gear 16. By setting like this, it is convenient to quickly turn over the material barrel 4, effectively reducing the structural complexity and facilitating maintenance. A circular groove is opened on the top inner wall of the rectangular through groove 5. The top end of the lead screw 7 is rotatably installed in the circular groove. By setting the circular groove, it is convenient to limit the lead screw 7. A threaded through hole penetrates through the slider 6. The lead screw 7 is threadedly penetrated through the threaded through hole. By setting the threaded through hole, it is convenient for the lead screw 7 to drive the slider 6 to lift. A first through hole penetrates between the rectangular through groove 5 and the rectangular through hole 8. The lead screw 7 rotatably penetrates through the first through hole. By setting the first through hole, it is convenient to support and limit the lead screw 7. Two clamping plates are fixedly installed at the top of the vehicle plate 1. The rotating shaft 10 rotatably penetrates through the two clamping plates. An installation hole penetrates through the vehicle plate 1. The first motor 13 is fixed in the installation hole. By setting the clamping plates, it is convenient to support and limit the rotating shaft 10. A limiting plate is fixedly installed on one side of the slider 6. The limiting plate is slidably connected with the corresponding vertical plate 2. A second through hole penetrates through the slider 6. Third through holes penetrate through the inner walls on both sides of the U-shaped lifting frame 3. The rotating rod 15 rotatably penetrates through the corresponding second through hole and third through hole. By setting the second through hole and the third through hole, it is convenient to support and limit the rotating rod 15 and make the rotation of the rotating rod 15 more stable.One side of one of the sliders 6 is provided with a bracket, and the second motor 17 is fixed on the top of the bracket. By providing the bracket, it is convenient to install and fix the second motor 17.
[0038] The working principle of the present utility model is as follows: When in use, first place the raw materials in the material bucket 4, and then start the first motor 13. The output shaft of the first motor 13 drives the fourth bevel gear 14 to rotate. The fourth bevel gear 14 drives the third bevel gear 12 to rotate. The third bevel gear 12 drives the rotating shaft 10 to rotate. The rotating shaft 10 drives the two second bevel gears 11 to rotate. The second bevel gear 11 drives the corresponding first bevel gear 9 to rotate. The first bevel gear 9 drives the lead screw 7 to rotate. The lead screw 7 drives the slider 6 to slide and rise in the corresponding rectangular through groove 5, so that the U-shaped lifting frame 3 is driven by the two sliders 6 to slide and rise on the two vertical plates 2, and the material bucket 4 is driven to rise to an appropriate height. By such a setting, the structural stability can be effectively improved, the problem of shaking of the chemical bucket during the lifting and pouring process can be effectively reduced, and further the raw materials in the chemical bucket can be effectively prevented from spilling out, thereby reducing waste and lowering the safety risk. Then start the second motor 17. The output shaft of the second motor 17 drives the sixth bevel gear 18 to rotate. The sixth bevel gear 18 drives the fifth bevel gear 16 to rotate. The fifth bevel gear 16 drives the corresponding rotating rod 15 to rotate on the slider 6. The rotating rod 15 drives the material bucket 4 to rotate. The material bucket 4 drives the other rotating rod 15 to rotate on the corresponding slider 6, and the raw materials in the material bucket 4 are poured out. By such a setting, it is convenient to quickly turn over the material bucket 4, and further convenient to quickly pour the materials, effectively reducing the complexity of the structure and facilitating maintenance.
[0039] It should be noted that in this article, the terms "include", "comprise" or any other variant thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such a process, method, article or device.
[0040] In this article, specific examples are used to elaborate on the principle and implementation manner of the present utility model. The description of the above examples is only used to help understand the method and its core idea of the present utility model. The above is only the preferred implementation manner of the present utility model. It should be pointed out that due to the limited nature of literal expression, objectively there are infinite specific structures. For those of ordinary skill in the art in this technical field, without departing from the principle of the present utility model, several improvements, modifications or changes can also be made, or the above technical features can be combined in an appropriate manner; these improvements, modifications, changes or combinations, or directly applying the concept and technical solution of the utility model to other occasions without improvement, should all be regarded as the protection scope of the present utility model.
Claims
1. A chemical barrel unloading mechanism, comprising a vehicle plate (1), characterized in that: Two vertical plates (2) are fixedly installed on the top of the vehicle plate (1), and the same U-shaped lifting frame (3) is slidably installed on the two vertical plates (2). A material barrel (4) is arranged in the U-shaped lifting frame (3). A rectangular through groove (5) is passed through the vertical plate (2), and a slider (6) is slidably passed through the rectangular through groove (5). The slider (6) is fixed on one side of the U-shaped lifting frame (3). A screw rod (7) is threadedly passed through the slider (6). A rectangular through hole (8) is passed through the vertical plate (2), and the bottom end of the screw rod (7) extends to the rectangular through hole (8). A first bevel gear (9) is provided inside the vehicle plate (1); a rotating shaft (10) is provided at the top of the vehicle plate (1); two ends of the rotating shaft (10) respectively extend into corresponding rectangular through holes (8) and are provided with second bevel gears (11); the second bevel gear (11) is meshed with the first bevel gear (9); a third bevel gear (12) is fixedly sleeved on the rotating shaft (10); a first motor (13) is provided on the vehicle plate (1); a fourth bevel gear (14) is provided on the output shaft of the first motor (13); the fourth bevel gear (14) is meshed with the third bevel gear (12).
2. A chemical barrel dumping mechanism according to claim 1, characterized in that: The slider (6) further comprises a rotating rod (15), wherein the rotating rod (15) rotates and penetrates the slider (6), one end of the rotating rod (15) extends into the U-shaped lifting frame (3) and is fixed to one side of the barrel (4), a fifth bevel gear (16) is provided at one end of the rotating rod (15) away from the barrel (4), a second motor (17) is provided on one of the sliders (6), a sixth bevel gear (18) is provided on the output shaft of the second motor (17), and the sixth bevel gear (18) is meshed with the fifth bevel gear (16).
3. A chemical barrel dumping mechanism according to claim 1, characterized in that: A circular groove is provided on the top inner wall of the rectangular through groove (5), and the top end of the screw rod (7) is rotatably mounted in the circular groove.
4. A chemical barrel dumping mechanism according to claim 1, characterized in that: The slider (6) is penetrated by a threaded through hole, and the screw rod (7) is threadedly penetrated by the threaded through hole.
5. A chemical barrel dumping mechanism according to claim 1, characterized in that: A first through hole is formed between the rectangular through groove (5) and the rectangular through hole (8), and the screw rod (7) rotates and passes through the first through hole.
6. A chemical barrel dumping mechanism according to claim 1, characterized in that: Two clamping plates are fixedly mounted on the top of the vehicle plate (1); the rotating shaft (10) rotates through the two clamping plates; a mounting hole is penetrated through the vehicle plate (1); and the first motor (13) is fixedly mounted in the mounting hole.
7. A chemical barrel dumping mechanism according to claim 2, characterized in that: A limit plate is fixedly mounted on one side of the slider (6), the limit plate is slidably connected to the corresponding vertical plate (2), a second through hole is penetrated on the slider (6), third through holes are penetrated on both side inner walls of the U-shaped lifting frame (3), and the rotating rod (15) rotates to penetrate the corresponding second through hole and third through hole.
8. A chemical barrel dumping mechanism according to claim 2, characterized in that: A bracket is provided on one side of one of the sliding blocks (6), and the second motor (17) is fixed on the top of the bracket.
Citation Information
Patent Citations
Material pouring mechanism for chemical barrel
CN219708480U