Distributing device of feeding bin of vibration forming machine
By designing a movable car silo and an adjustable angle laying plate, the problem of uneven fabric of the vibration forming machine feed silo is solved, and automated production is achieved, which improves work efficiency and reduces costs.
Patent Information
- Application Number
- CN202421937166.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-12
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-08-12
AI Technical Summary
The existing vibration forming machine feed silo fabric device cannot achieve uniform distribution of paste, resulting in time-consuming and labor-intensive manual operation and low working efficiency.
A fabric device including a feeding car support frame, a mold, a movable car silo and an adjustable angle laying plate is designed. The driving motor and a guide groove are used to realize the movement of the car silo and the angle adjustment of the laying plate, and realize automatic fabric.
The uniform distribution of paste is achieved, the work efficiency is improved, labor costs are reduced, and automated production is achieved.
Smart Images

Figure CN223085063U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of green anode forming, and particularly relates to a feeding bin cloth device for a vibration forming machine. Background Art
[0002] The feeding bin spreader is for the anode green block forming workshop. There are currently four forming machines. Due to the compact equipment layout and lack of something, when the paste material is discharged from the feeding bin to the forming die at each station, the paste material cannot be evenly distributed. After manually spreading the paste material with tools, the vibration forming is carried out. However, the method of manually spreading the paste material is time-consuming and laborious, and the work efficiency is low.
[0003] Therefore, based on the above technical problems, those skilled in the art urgently need to develop a feeding bin cloth device for a vibration forming machine. Summary of the Utility Model
[0004] The purpose of the utility model is to provide a feeding bin cloth device for a vibration forming machine, which realizes automatic production, replaces manual operation, improves work efficiency, and saves production costs.
[0005] In order to achieve the above purpose, the utility model provides the following technical solutions:
[0006] A feeding bin cloth device for a vibration forming machine of the utility model, the device includes:
[0007] A feeding trolley support frame, the interior of which forms a working space;
[0008] A mold located in the working space, the upper end of the mold being an open end, and the paste material entering the mold through the open end; and
[0009] A trolley bin movably connected to the feeding trolley support frame, the trolley bin being capable of moving horizontally;
[0010] The trolley bin has a bin door, and when the bin door is opened, the paste material in the trolley bin is discharged below the trolley bin into the mold;
[0011] A plurality of spreading plates are arranged below the trolley bin, and the spreading plates can be set at any angle below the trolley bin.
[0012] Further, a guiding groove is arranged at the upper part inside the feeding trolley support frame;
[0013] The trolley bin can move along the guiding groove to adjust the relative position with the mold.
[0014] Further, the guiding groove is divided into:
[0015] The lower guide groove fixedly connected to the inner wall of the support frame of the feeding trolley; and
[0016] The upper guide groove connected to the trolley bin;
[0017] The trolley bin includes:
[0018] The bin;
[0019] The bin side plate located on the side of the bin, and the upper guide groove is connected to the bin side plate; and
[0020] The driving motor integrated on the bin side plate, and the output end of the driving motor drives the guide wheel at the end of the universal shaft to rotate through the universal shaft;
[0021] The guide wheel rolls in the lower guide groove, and the driving motor drives the guide wheel to move along the lower guide groove to drive the trolley bin to move horizontally.
[0022] Further, each of the paving plates is installed below the trolley bin through a paving plate mounting bracket;
[0023] The paving plate mounting bracket includes:
[0024] The mounting seat fixed to the side of the trolley bin; and
[0025] The mounting rod fixedly connected to the mounting seat and extending in the vertical direction;
[0026] The paving plate is movably connected to the lower parts of two mounting rods in the same group, and the paving plate can rotate relative to the mounting rod to adjust the inclination angle.
[0027] Further, a connecting rod is arranged along the axis of the paving plate in its length direction;
[0028] Both ends of the connecting rod pass through the corresponding mounting rods and are rotatably connected to the mounting rods;
[0029] Fixing bolts are arranged on the mounting rods, and the fixing bolts are installed on the mounting rods along a direction perpendicular to the connecting rod, and the fixing bolts can abut against the outer wall of the connecting rod to maintain the inclination angle of the paving plate.
[0030] Further, the length of the paving plate is not less than the width of the discharge port of the trolley bin.
[0031] In the above technical solution, a feeding bin cloth device of a vibration molding machine provided by the present utility model has the following beneficial effects:
[0032] The fabric device of the present utility model is processed using the existing spare parts and materials in the workshop. The movable trolley bin can be moved above the mold and return to its original position after laying the material, without affecting the continuous operation of other action mechanisms of the molding machine. Multiple laying plates with adjustable angles are used to assist in the uniform arrangement of materials, replacing the problems of high manual laying cost and low efficiency, and realizing automated production. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments recorded in the present utility model, and those of ordinary skill in the art can also obtain other drawings based on these drawings.
[0034] Figure 1 FIG. is a schematic structural diagram of a feeding bin fabric device for a vibration molding machine disclosed in an embodiment of the present application;
[0035] Figure 2 FIG. is a schematic front structural diagram of a feeding bin fabric device for a vibration molding machine disclosed in an embodiment of the present application;
[0036] Figure 3 FIG. is a schematic structural diagram of a laying plate mounting bracket and a laying plate of a feeding bin fabric device for a vibration molding machine disclosed in an embodiment of the present application.
[0037] DESCRIPTION OF THE REFERENCE NUMERALS:
[0038] 1. Feeding trolley support frame; 2. Trolley bin; 3. Laying plate; 4. Mold; 5. Laying plate mounting bracket;
[0039] 101. Guide groove;
[0040] 201. Bin door; 202. Driving motor; 203. Universal shaft; 204. Guide wheel;
[0041] 301. Connecting rod; 302. Fixing bolt;
[0042] 501. Mounting seat; 502. Mounting rod. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0043] In order to enable those skilled in the art to better understand the technical solutions of the present utility model, the following will further introduce the present utility model in detail in conjunction with the drawings.
[0044] See Figures 1 to 3 as shown;
[0045] This embodiment discloses a feeding bin fabric device for a vibration molding machine, and the device includes:
[0046] The feeding trolley support frame 1, and a working space is formed inside the feeding trolley support frame 1;
[0047] A mold 4 located inside the working space, with an open end at the upper end of the mold 4, and the paste material enters the mold 4 through the open end; and
[0048] A trolley bin 2 movably connected to the feeding trolley support frame 1, and the trolley bin 2 can move horizontally;
[0049] The trolley bin 2 has a bin door 201. When the bin door 201 is opened, the paste material inside the trolley bin 2 is discharged from below the trolley bin 2 into the mold 4;
[0050] A plurality of spreading plates 3 are arranged below the trolley bin 4, and the spreading plates 3 can be adjusted to be set at any angle below the trolley bin 4.
[0051] Specifically, this embodiment discloses a cloth feeding device for the feeding bin of a vibration molding machine. The cloth feeding device of this embodiment is of a mobile structure, and a spreading plate 3 capable of independently adjusting the inclination angle is designed at its lower end; with the mobile structure, it can be horizontally moved above the mold 4 for feeding, and can also move away from the mold 4 and return to the original position, without affecting the work of other action mechanisms of the molding machine; in addition, the spreading plate 3 with an adjustable angle is used to assist in the feeding of the paste material, realizing automated production, and solving the problems of low efficiency and high cost caused by manual cloth feeding. The device of this embodiment includes a feeding trolley support frame 1 and a trolley bin 2 capable of moving relative to the feeding trolley support frame 1. A plurality of side-by-side and angle-adjustable spreading plates 3 are arranged at the lower part of the trolley bin 2 of this embodiment. The spreading plates 3 are arranged directly below the trolley bin 2, and can cooperate with the trolley bin 2 to discharge materials when the bin door 201 is opened and realize uniform spreading of the paste material. Each of the spreading plates 3 of this embodiment can independently adjust the inclination angle, so as to meet the spreading requirements of different process requirements.
[0052] Preferably, a guiding groove 101 is arranged at the upper part inside the feeding trolley support frame 1 of this embodiment;
[0053] The trolley bin 2 can move along the guiding groove 101 to adjust the relative position with the mold 4.
[0054] Among them, the guiding groove 101 of this embodiment is divided into:
[0055] A lower guiding groove fixedly connected to the inner wall of the feeding trolley support frame 1; and
[0056] An upper guiding groove connected to the trolley bin 2;
[0057] The trolley bin 2 includes:
[0058] A bin;
[0059] The side plate of the silo located on the side of the silo bin is connected to the upper guide groove; and
[0060] The drive motor 202 integrated on the side plate of the silo bin, the output end of the drive motor 202 drives the guide wheel 204 at the end of the universal shaft 203 to rotate through the universal shaft 203;
[0061] The guide wheel 204 rolls on the lower guide groove, and the drive motor 202 drives the guide wheel 204 to move along the lower guide groove to drive the trolley silo 2 to move horizontally.
[0062] This embodiment further defines the structure of the guide groove 101 and the moving structure of the trolley silo 2. A side plate of the silo bin is provided on the side of the trolley silo 1. The side plate of the silo bin is connected with an upper guide groove, and the lower guide groove is connected to the inner wall of the feeding trolley support frame 1. It is combined with the upper guide groove to form a channel capable of accommodating the guide wheel 204. The upper guide groove of this embodiment moves together with the trolley silo 2, and only relies on the guide wheel 204 and the lower guide groove as the components for the movement and guidance of the trolley silo 2.
[0063] In addition, the guide groove 101 of this embodiment can also be designed as a structure conventionally fixed to the inner wall of the feeding trolley support frame 1, and the drive motor 202 is integrated inside the trolley silo 2, and the guide wheel 204 rolls inside the guide groove 101.
[0064] It should be noted that since the drive motor 202 is arranged inside the silo bin, a through hole that allows the universal shaft 203 to pass through needs to be machined on the side wall of the silo bin so that the universal shaft 203 can extend to the outside of the silo bin.
[0065] Preferably, each spreading plate 3 of this embodiment is installed below the trolley silo 2 through the spreading plate mounting bracket 5;
[0066] The spreading plate mounting bracket 5 includes:
[0067] A mounting seat 501 fixed to the side of the trolley silo 2; and
[0068] A mounting rod 502 fixedly connected to the mounting seat 501 and extending in the vertical direction;
[0069] The spreading plate 3 is movably connected to the lower parts of two mounting rods 502 in the same group, and the spreading plate 3 can rotate relative to the mounting rod 502 to adjust the inclination angle.
[0070] Secondly, this embodiment further defines the mounting structure of the spreading plate 3. The spreading plate 3 is respectively mounted on the lower part of the trolley silo 2 through the spreading plate mounting brackets 5 on both sides of the trolley silo 2, and the spreading plate 3 of this embodiment can adjust the inclination angle relative to the spreading plate mounting bracket 5, so as to meet different spreading requirements.
[0071] More preferably, a connecting rod 301 is arranged along the axis of the laying plate 3 in the length direction thereof;
[0072] Both ends of the connecting rod 301 pass through the corresponding mounting rods 502 and are rotatably connected to the mounting rods 502;
[0073] A fixing bolt 302 is arranged on the mounting rod 502. The fixing bolt 302 is mounted on the mounting rod 502 along a direction perpendicular to the connecting rod 301, and the fixing bolt 302 can abut against the outer wall of the connecting rod 301 to maintain the inclination angle of the laying plate 3.
[0074] The laying plate 3 of this embodiment is mainly rotatably connected to the mounting rod 502 through the connecting rod 301. After the above-mentioned fixing bolt 302 is screwed into the mounting rod 502, the connecting rod 301 is constrained in a tightening manner to keep a certain inclination angle.
[0075] In order to fully assist in the laying of the paste material, the length of the laying plate 3 of this embodiment is not less than the width of the discharge port of the trolley bin 2.
[0076] In the above technical solution, a feeding bin cloth laying device of a vibration molding machine provided by the present invention has the following beneficial effects:
[0077] The cloth laying device of the present invention is processed by using existing spare parts materials in the workshop. The movable trolley bin 2 can be moved above the mold 4 and return to its original position after laying, without affecting the continuous operation of other action mechanisms of the molding machine; and multiple laying plates 3 with adjustable angles are used to assist in the uniform arrangement of materials, replacing the problems of high cost and low efficiency of manual laying, and realizing automated production.
[0078] Only some exemplary embodiments of the present invention have been described by way of illustration above. Undoubtedly, for those of ordinary skill in the art, the described embodiments can be modified in various different ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the protection scope of the claims of the present invention.
Claims
1. The feeding bin cloth-feeding device of a vibration molding machine, characterized in that The device includes: A feeding trolley support frame (1), and a working space is formed inside the feeding trolley support frame (1); A mold (4) located inside the working space, with an open end at the upper end of the mold (4), and the paste material enters the mold (4) through the open end; and A trolley bin (2) movably connected to the feeding trolley support frame (1), and the trolley bin (2) can move horizontally; The trolley bin (2) has a bin door (201), and when the bin door (201) is opened, the paste material in the trolley bin (2) is discharged from below the trolley bin (2) into the mold (4); A plurality of spreading plates (3) are arranged below the trolley bin (2), and the spreading plates (3) can be set at any angle below the trolley bin (2).
2. The feeding bin cloth device of the vibration molding machine according to claim 1, wherein A guiding groove (101) is provided at the upper part inside the feeding trolley support frame (1); The trolley bin (2) can move along the guiding groove (101) to adjust its relative position to the mold (4).
3. The feeding bin cloth device of the vibration molding machine according to claim 2, characterized in that, The guiding groove (101) is divided into: A lower guiding groove fixedly connected to the inner wall of the feeding trolley support frame (1); and An upper guiding groove connected to the trolley bin (2); The trolley bin (2) includes: A bin; Bin side plates located on the side of the bin, and the upper guiding groove is connected to the bin side plates; and A driving motor (202) integrated in the bin, and the output end of the driving motor (202) drives a guiding wheel (204) at the end of the universal shaft (203) to rotate through the universal shaft (203); The guiding wheel (204) rolls in the lower guiding groove, and the driving motor (202) drives the guiding wheel (204) to move along the lower guiding groove to drive the trolley bin (2) to move horizontally.
4. The feeding bin cloth device of the vibration molding machine according to claim 3, characterized in that Each spreading plate (3) is installed below the trolley bin (2) through a spreading plate mounting bracket (5); The spreading plate mounting bracket (5) includes: A mounting seat (501) fixed to the side of the trolley bin (2); and A mounting rod (502) fixedly connected to the mounting seat (501) and extending in the vertical direction; The spreading plate (3) is movably connected to the lower parts of two mounting rods (502) in the same group, and the spreading plate (3) can rotate relative to the mounting rods (502) to adjust the inclination angle.
5. The feeding bin cloth-feeding device of the vibration molding machine according to claim 4, characterized in that, A connecting rod (301) is arranged along the axis in the length direction of the spreading plate (3); Both ends of the connecting rod (301) pass through the corresponding mounting rods (502) and are rotatably connected to the mounting rods (502); A fixing bolt (302) is arranged on the mounting rod (502), and the fixing bolt (302) is installed on the mounting rod (502) along a direction perpendicular to the connecting rod (301), and the fixing bolt (302) can abut against the outer wall of the connecting rod (301) to maintain the inclination angle of the spreading plate (3).
6. The material distribution device for the feeding bin of the vibration molding machine according to claim 4 or 5, characterized in that The length of the spreading plate (3) is not less than the width of the discharge port of the trolley bin (2).