Garbage compression transfer equipment and material pushing device thereof
By installing a front-pushing component and a protective plate on the waste compression and transfer equipment, and sliding closed stacking chamber, the problem of waste residue during the waste compression process is solved, achieving efficient waste compression and transportation.
Patent Information
- Application Number
- CN202520550340.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-27
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2035-03-27
AI Technical Summary
In existing waste compression transfer equipment, the stacking chamber is prone to opening during the compression process, causing waste to be pushed out or left behind, which affects the compression efficiency.
The design employs a front-pushing assembly and protective plate, which, through sliding closed stacking chamber and combined with guide rail limiting, ensures that waste is pushed into the chamber and prevents waste residue during the compression process.
This effectively prevents waste from being pushed out or remaining in the stacking chamber during the compression process, improving compression efficiency, saving space, and ensuring that waste completely enters the compression assembly.
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Figure CN223804230U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to a material pushing device, in particular to a garbage compression transfer equipment and a material pushing device thereof. BACKGROUND
[0002] The garbage compression equipment is generally used for compressing garbage, and the compressed garbage is convenient to transport. However, in the compression process, if the stacking cavity is opened, garbage is also easy to enter the other side of the compression device, resulting in garbage residues. CONTENT OF THE UTILITY MODEL
[0003] The garbage compression transfer equipment and the material pushing device thereof are provided in the application to solve the problems in the related art, and the technical scheme is as follows.
[0004] In a first aspect, the application provides a material pushing device configured on a garbage compression transfer equipment, the garbage compression transfer equipment having a stacking cavity and a cavity body in communication with the stacking cavity, and the material pushing device comprising:
[0005] A front material pushing assembly is arranged on the transfer equipment and located in the stacking cavity, and is used for pushing the garbage in the stacking cavity into the cavity body;
[0006] At least two protective plates are arranged on the transfer equipment in a stacked manner, and adjacent protective plates are arranged in a sliding manner, and when the front material pushing assembly moves, the at least two protective plates slide with the front material pushing assembly to close the stacking cavity.
[0007] A guide rail is arranged on the compression transfer equipment and limits the movement track of the protective plate.
[0008] In an embodiment, the material pushing device further comprises:
[0009] A rear material pushing assembly is arranged on the transfer equipment and located in the stacking cavity, and the rear material pushing assembly is arranged opposite to the front material pushing assembly.
[0010] A compression assembly is arranged in the cavity body and used for compressing the garbage in the cavity body.
[0011] In an embodiment,
[0012] The front material pushing assembly and the rear material pushing assembly have the same structure.
[0013] In an embodiment,
[0014] The front pushing component comprises:
[0015] An oil cylinder, one end of which is arranged on the transfer device;
[0016] A pushing shovel head, arranged on the other end of the oil cylinder away from the transfer device, the oil cylinder pushing the pushing shovel head to move along the transfer device, one end of the outer protective plate being connected with the pushing shovel head.
[0017] In an embodiment,
[0018] The width of the pushing shovel head is adapted to the width of the stacking cavity.
[0019] In an embodiment,
[0020] The compression component comprises:
[0021] A compression shovel, arranged in the cavity;
[0022] A cylinder, one end of which is arranged in the cavity and the other end of which is arranged on the compression shovel to push the compression shovel to move in the cavity.
[0023] In an embodiment,
[0024] The width of the compression shovel is adapted to the size of the cavity.
[0025] In a second aspect, the embodiments of the present application provide a garbage compression transfer device, comprising:
[0026] The material pushing device according to any one of the above embodiments; and
[0027] A shell, the shell being provided with a cavity and a stacking cavity, and the front pushing component being arranged above the shell.
[0028] In an embodiment, further comprising:
[0029] A stacking cavity protective cover, arranged above the shell.
[0030] In an embodiment,
[0031] The stacking cavity protective cover is connected with the stacking cavity.
[0032] The above technical solutions have at least the following advantages or beneficial effects:
[0033] Through the setting of the front pushing assembly and the guard plate, the garbage residues on the compression transfer equipment are avoided, the front pushing assembly is retracted when not in use, space is saved, and when the compression assembly is compressed, the stacking cavity is closed through the setting of the front pushing assembly and the guard plate, the garbage is prevented from being pushed out through the stacking cavity when the garbage is compressed, the compression efficiency is ensured, and garbage is also prevented from entering the side of the compression assembly away from the compression end, so that garbage residues are avoided.
[0034] The above summary is intended to illustrate only and is not intended to limit the application in any way. Further aspects, embodiments and features of the present application will be readily apparent from the following detailed description, taken in conjunction with the drawings and the appended claims. BRIEF DESCRIPTION OF DRAWINGS
[0035] In the drawings, like numerals refer to like elements throughout the various drawings. The drawings are not necessarily to scale, the emphasis instead being placed on the relation between various elements. It should be understood that the drawings only depict some embodiments in accordance with the disclosure and should not be considered limiting.
[0036] Figure 1 Structure schematic diagram for initial state;
[0037] Figure 2 Structure schematic diagram for pushing garbage;
[0038] Figure 3 Progressive structure schematic diagram when pushing garbage;
[0039] Figure 4 Structure schematic diagram when the compression assembly is compressed;
[0040] In the drawings:
[0041] 100, material pushing device;
[0042] 110, front pushing assembly; 111, oil cylinder; 112, pushing shovel head; 113, guard plate;
[0043] 120, rear pushing assembly;
[0044] 130, compression assembly; 131, compression pushing shovel; 132, air cylinder;
[0045] 200, transfer equipment;
[0046] 201, shell; 202, stacking cavity guard cover; 203, stacking cavity; 204, cavity. DETAILED DESCRIPTION
[0047] In the following, only certain exemplary embodiments are simply described. As those skilled in the art can recognize, the described embodiments can be modified in various different ways without departing from the spirit or scope of the present application. Therefore, the drawings and the description are considered to be exemplary in nature rather than limiting.
[0048] Figures 1-4 A structural diagram of a material pushing device 100 according to an embodiment of the present application is shown. As shown, the material pushing device 100 is configured on a garbage compression transfer device 200, the garbage compression transfer device 200 has a stacking cavity 203 and a cavity 204 in communication with the stacking cavity 203, comprising: Figures 1-4
[0049] A front pushing assembly 110 is arranged on the transfer device 200, the front pushing assembly 110 is located in the stacking cavity 203, and is used to push the garbage in the stacking cavity 203 into the cavity 204;
[0050] At least two protective plates 113 are arranged in a stacked manner on the transfer device 200, and adjacent protective plates 113 are arranged in a sliding manner. When the front pushing assembly 110 moves, the at least two protective plates 113 slide with the front pushing assembly 110 to close the stacking cavity 203.
[0051] A guide rail is arranged on the compression transfer device 200, and the guide rail limits the movement track of the protective plate 113.
[0052] In this embodiment, in the initial state, the front pushing assembly 110 and the protective plate 113 are located at the initial position;
[0053] When the material enters the transfer device 200, the front pushing assembly 110 is actuated to drive the at least two protective plates 113 to slide, and the at least two protective plates 113 slide to close the stacking cavity 203;
[0054] The at least two protective plates 113 are arranged in a stacked and sliding manner, the bottommost protective plate 113 is connected with the front pushing assembly 110, and when the front pushing assembly 110 moves, each protective plate 113 slides with each other, and when the front pushing assembly 110 moves to the maximum value, one end of the protective plate 113 abuts against the other end of the adjacent protective plate 113.
[0055] Specifically, the protective plate 113 is provided with a corresponding guide rail to avoid the protective plate 113 from derailing due to the excessive movement distance of the pushing shovel head 112.
[0056] Through the arrangement of the front pushing assembly 110 and the protective plate 113, the garbage residues on the compression transfer device 200 are avoided, the front pushing assembly 110 is retracted when not in use, and space is saved. When the compression assembly 130 is compressed, the arrangement of the front pushing assembly 110 and the protective plate 113 facilitates the closure of the stacking cavity 203, avoids the garbage being pushed out through the stacking cavity 203 when the garbage is compressed, ensures the compression efficiency, and avoids the garbage entering the side of the compression assembly 130 away from the compression end, thereby causing garbage residues.
[0057] As shown in the drawings, Figures 1-4 in an embodiment,
[0058] The rear pushing assembly 120 is arranged on the transfer device 200, and the rear pushing assembly 120 is arranged in the stacking cavity 203 opposite to the front pushing assembly 110.
[0059] The compression assembly 130 is arranged in the cavity 204, and is used for compressing the garbage in the cavity 204.
[0060] In the embodiment, when the compression assembly 130 moves, the rear pushing assembly 120 closes the feeding port below the stacking cavity 203, so that the cavity 204 is closed, and the material is prevented from leaking out of the cavity 204 when the compression assembly 130 moves.
[0061] As shown in the drawings, Figures 1-4 in an embodiment,
[0062] The front pushing assembly 110 and the rear pushing assembly 120 have the same structure.
[0063] As shown in the drawings, Figures 2-4 in an embodiment,
[0064] The front pushing assembly 110 comprises:
[0065] The oil cylinder 111 is arranged at one end of the transfer device 200.
[0066] The pushing shovel head 112 is arranged at the end of the oil cylinder 111 away from the transfer device 200, and the oil cylinder 111 drives the pushing shovel head 112 to move along the transfer device 200.
[0067] In the embodiment, the oil cylinder 111 drives the pushing shovel head 112 to move above the stacking cavity 203, pushes the garbage entering the stacking cavity protective cover 202, and makes the garbage enter the cavity 204 of the shell 201 through the stacking cavity 203.
[0068] At least two protective plates 113 are stacked and slidably arranged, the bottommost protective plate 113 is connected with the pushing shovel head 112, when the pushing shovel head 112 moves, each protective plate 113 slides with each other, when the pushing shovel head 112 moves to the maximum, one end of the protective plate 113 abuts with the other end of the adjacent protective plate 113.
[0069] As shown in the drawings, Figures 1-4 in an embodiment,
[0070] The width of the pushing shovel head 112 is matched with the width of the stacking cavity 203.
[0071] In the embodiment, the width of the pushing shovel head 112 is matched with the width of the stacking cavity 203, which ensures that the garbage is completely cleaned and avoids that the garbage is left in the gap between the pushing shovel head 112 and the stacking cavity protective cover 202.
[0072] As shown in the drawings, Figures 1-4 in an embodiment,
[0073] The compression assembly 130 comprises:
[0074] The compression shovel 131 is arranged in the cavity 204;
[0075] The cylinder 132 is arranged at one end in the cavity 204 and at the other end on the compression shovel 131 to push the compression shovel 131 to move in the cavity 204.
[0076] In the embodiment, the front pushing material assembly 110 and the rear pushing material assembly 120 act simultaneously, after the stacking cavity 203 is closed, the cylinder 132 pushes the compression shovel 131 to compress the garbage in the cavity 204.
[0077] As shown in the drawings, Figures 1-4 in an embodiment,
[0078] The width of the compression shovel 131 is matched with the size of the cavity 204.
[0079] In the embodiment, the width of the compression shovel 131 is matched with the size of the cavity 204, which avoids that the garbage is left in the gap between the compression shovel 131 and the cavity 204.
[0080] Figures 1-4 A structural block diagram of a garbage compression transfer equipment 200 according to an embodiment of the present application is shown. As shown in the drawings, Figures 1-4 The transfer equipment 200 can comprise:
[0081] A material pushing device 100 according to any one of the above embodiments; and
[0082] The shell 201 is provided with a cavity 204 and a stacking cavity 203, and the front pushing assembly 110 and the rear pushing assembly 120 are arranged above the shell 201.
[0083] In the embodiment, the garbage is concentrated into the cavity 204 by the front pushing assembly 110 and the rear pushing assembly 120.
[0084] Further, the utility model also comprises:
[0085] The stacking cavity protection cover 202 is arranged above the shell 201, and facilitates garbage into the shell 201.
[0086] Specifically, the stacking cavity protection cover 202 is communicated with the stacking cavity 203, the garbage enters the stacking cavity 203 through the stacking cavity protection cover 202, the stacking cavity protection cover 202 avoids the garbage from falling outside the compression transfer equipment 200 in the transfer process, the garbage is concentrated by the front pushing assembly 110 and the rear pushing assembly 120 and is transported into the cavity 204 for compression, and the compression efficiency is improved.
[0087] The functions of the modules in the devices in the embodiments of the utility model can be referred to the corresponding description in the above method, and will not be repeated here.
[0088] In the description of the present specification, the description of the terms "one embodiment", "some embodiments", "example", "specific example" or "some examples" means that the specific features, structures, materials or characteristics described in combination with the embodiment or example are included in at least one embodiment or example of the present application. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, the person skilled in the art can combine and combine the different embodiments or examples described in the specification and the features of the different embodiments or examples without contradiction.
[0089] In addition, the terms "first", "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one feature. In the description of the present application, the meaning of "multiple" is two or more than two, unless otherwise specifically limited.
[0090] The above is only a specific embodiment of the present application, but the protection scope of the present application is not limited thereto, and any person skilled in the art can easily think of various changes or replacements within the technical range disclosed by the present application, which should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A material pushing device configured on a garbage compression transfer device, the garbage compression transfer device having a stacking cavity and a cavity body connected with the stacking cavity, characterized in that, The utility model relates to a material pushing device, which comprises: a front pushing assembly arranged on a transfer device, the front pushing assembly being arranged in a stacking cavity and used to push garbage in the stacking cavity into a cavity; at least two protective plates, the at least two protective plates being arranged in a stacked manner on the transfer device, and adjacent protective plates being arranged in a sliding manner, the at least two protective plates sliding with the front pushing assembly when the front pushing assembly moves to seal the stacking cavity; a guide rail arranged on the compression transfer device and used to limit the movement track of the protective plates.
2. A material pushing device according to claim 1, characterized in that The utility model further comprises: a rear pushing assembly arranged on the transfer device, the rear pushing assembly being arranged in the stacking cavity and being arranged opposite to the front pushing assembly; a compression assembly arranged in the cavity and used to compress garbage in the cavity.
3. The material pushing device according to claim 2, wherein: the front pushing assembly and the rear pushing assembly have the same structure.
4. The material pushing device according to claim 3, wherein: the front pushing assembly comprises: a hydraulic cylinder, one end of the hydraulic cylinder being arranged on the transfer device; a pushing shovel head arranged on the end of the hydraulic cylinder away from the transfer device, the hydraulic cylinder pushing the pushing shovel head to move along the transfer device, and one end of the protective plate on the outer side being connected to the pushing shovel head.
5. The material pushing device according to claim 3, wherein: the width of the pushing shovel head is matched with the width of the stacking cavity.
6. The material pushing device according to claim 3, wherein: the compression assembly comprises: a compression pushing shovel arranged in the cavity; a pneumatic cylinder, one end of the pneumatic cylinder being arranged in the cavity and the other end being arranged on the compression pushing shovel to push the compression pushing shovel to move in the cavity.
7. The material pushing device according to claim 6, wherein: the width of the compression pushing shovel is matched with the size of the cavity.
8. A waste compression transfer apparatus, characterized by, The utility model relates to a material pushing device, which comprises: the material pushing device according to any one of claims 1-7; and a shell, the shell being provided with the cavity and the stacking cavity, and the front pushing assembly being arranged above the shell. The utility model further comprises:
9. A material pushing device according to claim 8, characterized in that a stacking cavity protective cover arranged above the shell.
10. The material pushing device according to claim 9, wherein: the stacking cavity protective cover is connected to the stacking cavity.