Carbon powder conveying structure for double powder bins
By designing an impact device and vibration structure, the problem of toner adhesion was solved, enabling rapid cleaning without additional tools, reducing waste and operational difficulty.
Patent Information
- Application Number
- CN202422952722.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-02
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-02
AI Technical Summary
In existing toner conveying structures, toner tends to adhere to the inner wall after being poured, requiring the use of tools such as hammers to clean it, which is inconvenient and wasteful.
Design a toner conveying structure including an impact device. By pulling and pushing the rod, the weight moves along the inner wall of the impact groove, quickly impacting the inner wall to shake off the attached toner. The vibration generated by the metal ball and impact protrusions achieves cleaning without additional tools.
It enables rapid cleaning of toner residue, reduces waste, and improves ease of operation.
Smart Images

Figure CN223575540U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to carbon powder production technical field, concretely relates to a carbon powder conveying structure for double powder bin. BACKGROUND
[0002] The conveying structure is a kind of equipment that can load workpiece or material from one place, and cooperate with mobile machinery to convey workpiece or material from one place to another place, in the process of carbon powder production, carbon powder raw materials are often conveyed from raw material bin to processing bin to store, and are closer to processing equipment to facilitate later processing and transportation, at this time, carbon powder raw materials can be placed into conveying structure, and conveying structure is moved by moving device or manual handling, and after reaching processing bin position, carbon powder raw materials are poured into processing bin to complete conveying, effectively prevent carbon powder from leaking in conveying process, and single conveying capacity is large, effectively improve the conveying speed of carbon powder.
[0003] Although the above prior art can solve the corresponding technical problems, there are still some defects: after the existing conveying structure is conveyed to the target location, after pouring carbon powder, due to the fine particles of carbon powder, part of the carbon powder will adhere to the inner wall of the conveying structure, and hammer or other additional tools are needed to knock the conveying structure to shake off the carbon powder after each conveying, otherwise it is easy to cause waste, and hammer needs to be carried for knocking each time, which is not convenient to use. UTILITY MODEL CONTENTS
[0004] The utility model aims at the defects and deficiencies of prior art, and provides a carbon powder conveying structure for double powder bin, which is convenient to clean carbon powder residue and does not need additional tools.
[0005] To achieve the above object, the utility model adopts the following technical scheme: a carbon powder conveying structure for double powder bin, including conveying box and the connecting block that is fixedly arranged on the bottom surface of conveying box, the conveying box includes shell body and the impact groove that is arranged on the bottom surface of shell body, the bottom surface of shell body is also provided with impact device that is slidably connected with the inner wall of impact groove, after pouring carbon powder, pull impact device to make it impact impact groove, and shake off carbon powder adhered to the inner wall of shell body.
[0006] Further improvement is that: the side wall of conveying box is provided with reinforcing block, and the reinforcing block is provided with traction ring.
[0007] Further improvement is that: the top surface of conveying box is detachably provided with top cover, and the top surface of top cover is provided with pull handle.
[0008] Further improvement is that: the impact device includes heavy head that is slidably arranged on the inner wall of impact groove and push-pull rod that is arranged on the bottom surface of heavy head, and the impact device further includes limiting block that is fixedly installed on the bottom surface of shell body.
[0009] Further improvement is that the bottom end of the push-pull rod is provided with a lower pull ring.
[0010] Further improvement is that the side wall of the push-pull rod is provided with an elastic sheet fixedly connected with the inner wall of the limiting block.
[0011] Further improvement is that the bottom of the outer shell body is further provided with a transverse cavity, and a plurality of metal balls freely sliding are arranged in the transverse cavity.
[0012] Further improvement is that the side wall of the outer shell body is provided with a longitudinal cavity, and the bottom end of the longitudinal cavity is communicated with the end of the transverse cavity.
[0013] Further improvement is that the inner wall of the longitudinal cavity is provided with a plurality of semispherical impact protrusions.
[0014] After the above technical scheme is adopted, the beneficial effects of the present application are as follows: the impact device is arranged on the bottom surface of the outer shell body, after the carbon powder pouring is completed, the heavy head can be moved along the inner wall of the impact groove by pulling the push-pull rod, and the push-pull rod is pushed at high speed, so that the heavy head impacts the inner wall of the impact groove quickly, thereby the carbon powder attached to the inner wall of the outer shell body is shaken off by the vibration caused by the impact, and the carbon powder residue can be cleaned quickly without carrying additional tools, which is convenient and reduces waste. BRIEF DESCRIPTION OF DRAWINGS
[0015] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or prior art description, and obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor.
[0016] Fig. 1 is a structural schematic view of a front view of the conveying structure of the present application;
[0017] Fig. 2 is a structural schematic view of a front view section of the conveying box of the present application;
[0018] Fig. 3 is a structural schematic view of a front view section of the impact device of the present application. DETAILED DESCRIPTION
[0019] The present application will be further described in combination with the drawings and specific embodiments.
[0020] Referring to Figs. 1-3As shown, the technical solution adopted in this specific embodiment is: a toner conveying structure for a dual-toner hopper, including a conveying box 1 and a connecting block 3 fixedly disposed on the bottom surface of the conveying box 1. The conveying box 1 includes an outer shell 11 and an impact groove 13 disposed on the bottom surface of the outer shell 11. An impact device 12 is also installed on the bottom surface of the outer shell 11, with its top slidably connected to the inner wall of the impact groove 13. The impact device 12 includes a weight 121 slidably disposed on the inner wall of the impact groove 13 and a push-pull rod 122 disposed on the bottom surface of the weight 121. The impact device 12 also includes a limiting block 124 fixedly installed on the bottom surface of the outer shell 11. After the toner is poured out, the impact device 12 is pulled to impact the impact groove 13, shaking off the toner adhering to the inner wall of the outer shell 11. In use, the conveying box 1 is moved through the bottom... The connecting clip 3 is connected to the external moving plate, and then the toner can be fed into the outer shell 11 of the conveyor box 1. Then, the conveyor box 1 is pushed, and the conveyor box moves under the action of the external moving plate. After reaching the destination, the connecting clip 3 can be removed from the external moving plate, and then the conveyor box 1 is tilted to pour out the toner inside the outer shell 11. After the tilting is completed, the push-pull rod 122 of the impact device 12 can be pulled to move the head 121 along the inner wall of the impact groove 13. Pushing the push-pull rod 122 at high speed can make the head 121 quickly hit the inner wall of the impact groove 13, thereby shaking off the toner adhering to the inner wall of the outer shell 11 by the vibration generated by the impact. Thus, the toner residue can be quickly cleaned without carrying additional tools, which is convenient and reduces waste.
[0021] The side wall of the conveyor box 1 is provided with a reinforcing block 4, and the reinforcing block 4 is provided with a traction ring 5. This helps to improve the strength of the side wall of the conveyor box 1 through the reinforcing block 4, and can be mechanically pulled through the traction ring 5, making the movement of the conveyor box 1 more labor-saving.
[0022] The top surface of the conveyor box 1 is detachably provided with a top cover 2. The top surface of the top cover 2 is provided with a lifting handle 6, which is conducive to sealing the top of the conveyor box 1 and to better install and remove the top cover 2 by lifting the handle 6, and to prevent carbon powder leakage during the conveying process.
[0023] The bottom end of the push-pull rod 122 is provided with a pull-down ring 123, which makes it easier and less strenuous to push and pull the push-pull rod 122 upwards and downwards.
[0024] The push-pull rod 122 has an elastic piece 125 fixedly connected to the inner wall of the limiting block 124 on its side wall. This is beneficial for generating elastic force through the deformation of the elastic piece 125 when the push-pull rod 122 is pulled down, thereby increasing the upward pushing force, making the impact of the heavy head 121 stronger, and thus obtaining stronger vibration and better cleaning effect of carbon powder.
[0025] The bottom of the outer shell 11 is also provided with a transverse cavity 14, and a plurality of freely-slidable metal balls 15 are arranged in the transverse cavity 14, which are beneficial to move along the transverse cavity 14 when the outer shell 11 is poured, and then impact the inner wall of the transverse cavity 14, so as to generate additional vibration output to the outer shell 11, thereby reducing the toner residue when pouring;
[0026] The side wall of the outer shell 11 is provided with a longitudinal cavity 16, and the bottom end of the longitudinal cavity 16 is communicated with the end of the transverse cavity 14, which is beneficial to expand the moving range of the metal balls 15, and then more times and higher intensity vibration can be obtained, thereby further reducing the toner residue when pouring;
[0027] The inner wall of the longitudinal cavity 16 is provided with a plurality of semispherical impact protrusions 17, which are beneficial to make the metal balls 15 contact the impact protrusions 17 multiple times after entering the longitudinal cavity 16, and then more frequent and multiple vibrations can be obtained, thereby further reducing the toner residue when pouring.
[0028] The working principle of the utility model is: when the utility model is used, the conveying box 1 is connected to the external moving plate through the bottom connecting clamping block 3, then the toner is sent into the outer shell 11 of the conveying box 1, then the conveying box 1 is pushed to move under the action of the external moving plate, after reaching the destination, the connecting clamping block 3 is removed from the external moving plate, then the conveying box 1 is poured, and the toner in the outer shell 11 is poured out, after pouring, the heavy head 121 is moved along the inner wall of the impact groove 13 by pulling the push-pull rod 122 of the impact device 12, the push-pull rod 122 is pushed at high speed, the heavy head 121 is quickly impacted on the inner wall of the impact groove 13, so that the toner attached to the inner wall of the outer shell 11 is shaken off by the vibration generated by the impact, thereby the toner residue can be quickly cleaned without carrying additional tools, the cleaning is convenient, and the waste is reduced.
[0029] The utility model wants to protect the structure of the product, the model of each element is not the content protected by the utility model, and is a known technology, as long as the elements on the market can realize the above functions of the utility model, they can be applied as a selection. Therefore, the model and other parameters of the element are not described in detail in the utility model. The contribution of the utility model lies in the scientific combination of each element.
[0030] The basic principle and main features of the utility model and its advantages are shown and described above, and the person skilled in the art should understand that the utility model is not limited by the above examples, and the above examples and the description in the description are only to illustrate the principle of the utility model, and various changes and improvements can be made to the utility model without departing from the spirit and scope of the utility model, and these changes and improvements all fall within the scope of the utility model claimed, and the scope of protection of the utility model is defined by the appended claims and their equivalents. The utility model is not described in detail, which is the known technology of the person skilled in the art.
Claims
1. A toner conveying structure for a dual-toner hopper, comprising a conveying box (1) and a connecting block (3) fixedly disposed on the bottom surface of the conveying box (1), characterized in that: The conveying box (1) includes an outer shell (11) and an impact groove (13) disposed on the bottom surface of the outer shell (11). The bottom surface of the outer shell (11) is also equipped with an impact device (12) whose top is slidably connected to the inner wall of the impact groove (13). After the toner is poured, the impact device (12) is pulled to impact the impact groove (13) and shake off the toner adhering to the inner wall of the outer shell (11).
2. The toner conveying structure for a dual-toner silo according to claim 1, characterized in that: The side wall of the conveyor box (1) is provided with a reinforcing block (4), and a traction ring (5) is provided on the reinforcing block (4).
3. The toner conveying structure for a dual-toner silo according to claim 1, characterized in that: The top surface of the conveyor box (1) is detachably provided with a top cover (2), and the top surface of the top cover (2) is provided with a lifting handle (6).
4. The toner conveying structure for a dual-toner silo according to claim 1, characterized in that: The impact device (12) includes a weight (121) that is slidably disposed on the inner wall of the impact groove (13) and a push-pull rod (122) disposed on the bottom surface of the weight (121). The impact device (12) also includes a limiting block (124) that is fixedly installed on the bottom surface of the outer shell (11).
5. A toner conveying structure for a dual-toner silo according to claim 4, characterized in that: The bottom end of the push-pull rod (122) is provided with a pull-down ring (123).
6. A toner conveying structure for a dual-toner silo according to claim 4, characterized in that: The push-pull rod (122) has an elastic piece (125) on its side wall that is fixedly connected to the inner wall of the limiting block (124).
7. The toner conveying structure for a dual-toner silo according to claim 1, characterized in that: The bottom of the outer shell (11) is also provided with a transverse cavity (14), and a number of freely sliding metal balls (15) are provided in the transverse cavity (14).
8. A toner conveying structure for a dual-toner silo according to claim 7, characterized in that: The outer shell (11) has a longitudinal cavity (16) inside its side wall, and the bottom end of the longitudinal cavity (16) is connected to the end of the transverse cavity (14).
9. A toner conveying structure for a dual-toner silo according to claim 8, characterized in that: The inner wall of the longitudinal cavity (16) is provided with several hemispherical impact protrusions (17).