Guide device for garbage compression equipment and garbage compression equipment
By designing the guide rail, guide seat, adjusting block, and slider assembly in the guiding device, and adjusting the feed amount of the slider assembly on the guide rail, the jamming problem caused by the large verticality tolerance of the guide column is solved, the smooth movement of the slider is realized, and the operational stability of the waste compression equipment is improved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2026-03-10
AI Technical Summary
The guide device of existing waste compression equipment has a large tolerance for verticality of the guide column due to manufacturing errors. This causes the slider to easily get stuck with the guide rail during sliding, affecting the smoothness of the slider's movement.
A guiding device is designed, including a guide rail, a guide seat, a guide seat cover, an adjusting block, and a slider assembly. By adjusting the vertical and horizontal movement of the adjusting block, in conjunction with the guide inclined surface, the feed amount of the slider assembly on the guide rail is adjusted to maintain a suitable gap and avoid jamming.
It effectively improves the smoothness of the slider assembly's movement, avoids jamming during the slider's sliding on the guide rail, and enhances the operational stability of the waste compression equipment.
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Figure CN223982208U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of garbage compression equipment, and particularly relates to a guide device for garbage compression equipment and garbage compression equipment. BACKGROUND
[0002] The guide device is an important component of the garbage compression equipment. In the guide device, the guide rail is arranged on the guide column. However, due to manufacturing errors, the verticality tolerance of the guide column installed vertically in the prior art guide device is large, and the verticality tolerance of the guide rail arranged on the guide column is also large. The above-mentioned situation can cause the sliding block to be easily stuck with the guide rail during sliding, so that the smoothness of the sliding block is reduced, and the lifting of the lifting seat of the garbage compression equipment is not facilitated. CONTENT OF THE UTILITY MODEL
[0003] The application aims to provide a guide device for garbage compression equipment and garbage compression equipment, which has the advantages of simple structure and facilitating the improvement of the smoothness of the sliding block assembly.
[0004] In order to achieve the above-mentioned purpose, the first aspect of the application provides a guide device for garbage compression equipment, which comprises:
[0005] A guide rail is arranged on the guide column of the garbage compression equipment in the vertical direction.
[0006] A guide seat is arranged on one side of the guide rail in the transverse direction and has a first guide slope inside, which faces the guide rail.
[0007] A guide seat cover plate is arranged above the guide seat in the horizontal direction. The guide seat cover plate, the guide seat and the guide rail jointly form a first space.
[0008] An adjusting block is arranged in the first space in the vertical direction and has a second guide slope on the adjusting block, which is matched with the first guide slope. The adjusting block and the guide rail form a second space.
[0009] A sliding block assembly is arranged in the second space in the transverse direction and is adjustable.
[0010] In the embodiment of the application, the adjusting block has an installation cavity inside. The guide device further comprises:
[0011] A first tightening assembly is arranged on the guide seat cover plate in the vertical direction and is used to apply a first tightening force to the top wall of the adjusting block.
[0012] A first nut is arranged in the installation cavity.
[0013] The first threaded connector has one end fixed to the top surface of the guide seat cover plate, and the other end passes through the top wall of the guide seat cover plate and the adjusting block and is threadedly connected to the first nut.
[0014] In embodiments of this application, the first clamping component includes:
[0015] The second nut is located above the guide seat cover plate;
[0016] The second threaded connector is vertically inserted into the guide seat cover plate and forms a threaded connection with the second nut. The threaded end of the second threaded connector passes through the second nut and the guide seat cover plate and abuts against the top wall of the adjusting block.
[0017] In the embodiments of this application, the side of the adjustment block near the guide rail is a vertical surface. The adjustment block includes a trapezoidal segment and a rectangular segment located above the trapezoidal segment. The second guide slope is formed on the side of the trapezoidal segment away from the guide rail. The vertical surface is formed by the trapezoidal segment and the rectangular segment near the guide rail.
[0018] In the embodiments of this application, the guide seat cover plate is detachably connected to the guide seat via a third threaded connector; the guide device also includes a longitudinal position adjustment unit disposed on the guide seat and used to adjust the longitudinal mounting position of the slider assembly.
[0019] In embodiments of this application, the slider assembly includes a slider mounting member and a slider. The slider mounting member has a mounting groove with an opening facing the guide rail. The slider is disposed in the mounting groove and connected to the slider mounting member. The longitudinal position adjustment unit includes:
[0020] The second clamping assembly is longitudinally movably inserted into the longitudinal sidewall of the guide seat and is used to apply a second clamping force to the slider mounting component;
[0021] The third nut is set in the mounting groove and between the slider and the slider mounting component;
[0022] The fifth threaded connector has one end locked onto the longitudinal side wall of the guide seat, and the other end passes through the longitudinal side wall of the guide seat, the groove wall of the mounting groove near the second clamping component, and is threadedly connected to the third nut.
[0023] In embodiments of this application, the second clamping component includes:
[0024] The fourth nut is located on the longitudinal side of the guide seat;
[0025] The sixth threaded connector is inserted into the longitudinal side wall of the guide seat and forms a threaded connection with the fourth nut. The threaded end of the sixth threaded connector passes through the fourth nut and the longitudinal side wall and abuts against the longitudinal side wall of the slider on the side closer to the fourth nut.
[0026] In the embodiments of this application, the slider is detachably connected to the slider mounting member via a fourth threaded connector.
[0027] In the embodiments of this application, there are multiple sliders, which are distributed vertically at intervals in the mounting groove.
[0028] A second aspect of this application provides a waste compression device, which includes the aforementioned guide device for waste compression devices.
[0029] As can be seen from the above technical solution, the guiding device includes a guide rail, a guide seat, a guide seat cover, an adjusting block, and a slider assembly. The guide rail is vertically distributed and used to be mounted on the guide column of the waste compactor. The guide seats are horizontally spaced on one side of the guide rail and have a first guide slope forming inside, facing the guide rail. The guide seat cover is horizontally positioned above the guide seat, and a first space is formed between the guide seat cover, the guide seat, and the guide rail. The adjusting block is vertically movable and is positioned in the first space. A second guide slope is formed on the adjusting block to cooperate with the first guide slope, and a second space is formed between the adjusting block and the guide rail. The slider assembly is horizontally adjustable and positioned in the second space. If the verticality tolerance of the guide column is large due to manufacturing errors, the vertical position of the adjusting block can be adjusted. Under the interaction of the second guide slope and the first guide slope, the adjusting block moves horizontally while moving vertically, thereby adjusting the feed amount of the slider assembly in the horizontal direction. This ensures that a suitable gap is maintained between the slider assembly and the guide rail, preventing the slider assembly from jamming while sliding along the guide rail.
[0030] Other features and advantages of the embodiments of this application will be described in detail in the following detailed description section. Attached Figure Description
[0031] The accompanying drawings are provided to further illustrate the embodiments of this application and form part of the specification. They are used together with the following detailed description to explain the embodiments of this application, but do not constitute a limitation on the embodiments of this application. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without any inventive effort. In the drawings:
[0032] Figure 1 This is a vertical cross-sectional view of the guide device in an embodiment of this application (the adjusting block is in the first vertical position);
[0033] Figure 2 This is a horizontal cross-sectional view of the guide device in an embodiment of this application (the slider is in the longitudinal center position);
[0034] Figure 3This is a schematic diagram of the longitudinal position adjustment unit in an embodiment of this application;
[0035] Figure 4 This is a vertical cross-sectional schematic diagram of the guide device in an embodiment of this application (the adjusting block is in the second vertical position);
[0036] Figure 5 This is a horizontal cross-sectional view of the guide device in an embodiment of this application (the slider is in the first longitudinal position);
[0037] Figure 6 This is a vertical cross-sectional schematic diagram of the guide device in an embodiment of this application (the adjusting block is in the third vertical position);
[0038] Figure 7 This is a horizontal cross-sectional view of the guide device in an embodiment of this application (the slider is in the second longitudinal position);
[0039] Figure 8 This is a schematic diagram of the vertical cross-section of the slider assembly in an embodiment of this application;
[0040] Figure 9 This is a schematic diagram of the horizontal cross-section of the slider assembly in an embodiment of this application.
[0041] Explanation of reference numerals in the attached figures
[0042] 1. Guide rail 2. Guide post
[0043] 3. Guide seat 301 First guide slope
[0044] 4. Guide seat cover plate; 5. First space
[0045] 6 Adjustment block 601 Second guide slope
[0046] 602 Installation cavity 7 Second space
[0047] 8. Slider assembly 801 Slider mounting part
[0048] 802 slider, 803 mounting slot
[0049] 9 First tightening assembly 901 Second nut
[0050] 902 Second threaded connector 10 First nut
[0051] 11 First threaded connector 12 Third threaded connector
[0052] 13 Fourth threaded connector 14 Longitudinal position adjustment unit
[0053] 1401 Second clamping assembly; 1402 Third nut
[0054] 1403 Fifth threaded connector; 1404 Fourth nut
[0055] 1405 Sixth Threaded Connector Detailed Implementation
[0056] The specific embodiments of this application will be described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are for illustration and explanation only and are not intended to limit this application.
[0057] Embodiments of this application provide a guiding device for a waste compaction device, such as... Figures 1-7 As shown, the guiding device includes:
[0058] Guide rail 1, distributed vertically and used to be installed on guide column 2 of waste compression equipment;
[0059] The guide seat 3 is arranged laterally at intervals on one side of the guide rail 1 and has a first guide slope 301 facing the guide rail 1 inside;
[0060] The guide seat cover plate 4 is horizontally positioned above the guide seat 3, and the guide seat cover plate 4, the guide seat 3, and the guide rail 1 together form a first space 5;
[0061] Adjustment block 6 is vertically movable and disposed in first space 5. Adjustment block 6 has a second guide slope 601 for cooperating with first guide slope 301. Second space 7 is formed between adjustment block 6 and guide rail 1.
[0062] The slider assembly 8 is laterally adjustable in the second space 7.
[0063] The waste compression device in this embodiment can be a buried lifting waste compression device and includes a pit and guide columns 2. The guide columns 2 are set in the pit and distributed vertically. The guide seat 3 is set in the pit and can move vertically. When the guide seat 3 moves vertically, it can drive the slider assembly 8 to move along the axial direction of the guide rail 1. The cross-section of the guide rail 1 is U-shaped and has a guide groove. The opening of the guide groove faces the slider assembly 8, and part of the slider assembly 8 extends into the guide groove of the guide rail 1. The guide seat 3 includes a first longitudinal side plate, a second longitudinal side plate, a connecting plate, a bottom plate, and an inclined plate. The first and second longitudinal side plates are both distributed vertically and spaced apart in the longitudinal direction. The connecting plate is distributed vertically and its two longitudinal sides are respectively connected to the first and second longitudinal side plates. The bottom plate is located at the bottom of the first longitudinal side plate, the second longitudinal side plate, and the connecting plate. The inclined plate is inclinedly located in the accommodating space enclosed by the first longitudinal side plate, the second longitudinal side plate, the connecting plate, and the bottom plate. The first guide inclined surface 301 is formed on the side of the inclined plate close to the guide rail 1. The second guide inclined surface 601 is formed on the side of the adjusting block 6 away from the guide rail 1. The slider assembly 8 is located in the second space 7 and between the guide seat cover plate 4 and the bottom plate. The slider assembly 8 is restricted vertically between the guide seat cover plate 4 and the bottom plate, and the slider assembly 8 is restricted laterally between the guide rail 1 and the adjusting block 6. The side of the adjustment block 6 near the guide rail 1 is a vertical surface. This vertical surface can act on the slider assembly 8 to make the slider assembly 8 move in the direction of the guide rail 1. Furthermore, in this embodiment, the adjustment block 6 includes a trapezoidal segment and a rectangular segment located above the trapezoidal segment. The second guide slope 601 is formed on the side of the trapezoidal segment away from the guide rail 1. The vertical surface is formed by the trapezoidal segment and the rectangular segment near the guide rail 1.
[0064] If the verticality tolerance of the guide post 2 is large due to manufacturing errors, the vertical position of the adjusting block 6 can be adjusted. If the adjusting block 6 moves downward, it will move laterally while moving downward under the interaction of the second guide slope 601 and the first guide slope 301, reducing the lateral distance between the vertical surface and the guide rail 1. The adjusting block 6 will push the slider assembly 8 towards the direction of the guide rail 1, thereby increasing the lateral feed of the slider assembly 8. If the adjusting block 6 moves upward, it will move laterally while moving upward under the interaction of the second guide slope 601 and the first guide slope 301, increasing the lateral distance between the vertical surface and the guide rail 1. This helps the slider assembly 8 to reduce the lateral feed under the action of external force. In this way, a suitable gap can be maintained between the slider assembly 8 and the guide rail 1, preventing the slider assembly 8 from getting stuck while sliding along the guide rail 1.
[0065] In one embodiment of this application, the adjusting block 6 has an internal mounting cavity 602, and the guiding device further includes:
[0066] The first clamping component 9 is vertically movable and inserted into the guide seat cover plate 4 and is used to apply a first clamping force to the top wall of the adjusting block 6;
[0067] The first nut 10 is disposed in the mounting cavity 602;
[0068] The first threaded connector 11 has one end locked on the top surface of the guide seat cover plate 4, and the other end passes through the top wall of the guide seat cover plate 4 and the adjusting block 6 and is threadedly connected to the first nut 10.
[0069] Specifically, in this embodiment, the direction of the first tightening force is vertically downward, and the first nut 10 can apply an upward supporting force to the top wall of the adjusting block 6. That is, the first tightening component 9 and the first nut 10 work together to restrict the vertical movement of the top wall of the adjusting block 6, thereby restricting the vertical movement of the adjusting block 6. Figure 1 , Figure 4 and Figure 6 As shown, if the position of the adjusting block 6 needs to be adjusted downwards, the operator first tightens the first threaded connector 11 (in this embodiment, the first threaded connector 11 can be a bolt) to make the first threaded connector 11 move upwards relative to the guide seat cover plate 4. During this process, the adjusting block 6 moves downwards. After the adjusting block 6 is adjusted downwards, the vertical position of the first clamping component 9 is adjusted so that the first clamping component 9 clamps the top wall of the adjusting block 6. If the position of the adjusting block 6 needs to be adjusted upwards, the operator first adjusts the vertical position of the first clamping component 9 to leave enough space for the subsequent upward movement of the adjusting block 6. Then, the operator tightens the first threaded connector 11 to make the first threaded connector 11 move downwards relative to the guide seat cover plate 4. During this process, the adjusting block 6 moves upwards. After the adjusting block 6 is adjusted upwards, the vertical position of the first clamping component 9 can be further adjusted so that the first clamping component 9 clamps the top wall of the adjusting block 6.
[0070] In one embodiment of this application, the first clamping component 9 includes:
[0071] The second nut 901 is located above the guide seat cover plate 4;
[0072] The second threaded connector 902 is vertically inserted into the guide seat cover plate 4 and forms a threaded connection with the second nut 901. The threaded end of the second threaded connector 902 passes through the second nut 901 and the guide seat cover plate 4 and abuts against the top wall of the adjusting block 6.
[0073] Specifically, in this embodiment, the second threaded connector 902 can be selected as a bolt. The first tightening assembly 9, in the form of the second nut 901 and the second threaded connector 902, has a simple structure and is readily available. The operator can achieve relative movement between the second threaded connector 902 and the guide seat cover plate 4 by turning the second threaded connector 902, thereby achieving tightening of the top wall of the adjusting block 6 according to actual needs. Furthermore, in this embodiment, the number of first tightening assemblies 9 can be multiple, and the multiple first tightening assemblies 9 can be divided into two groups. The two groups of first tightening assemblies 9 can be respectively arranged on both sides of the first threaded connector 11 in the lateral direction, so that the force on the adjusting block 6 in the lateral direction is more uniform.
[0074] In one embodiment of this application, the guide seat cover 4 is detachably connected to the guide seat 3 via a third threaded connector 12. This arrangement allows the operator to disassemble the guide seat cover 4 and the guide seat 3, facilitating repair or replacement when the guide seat cover 4, the guide seat 3, or the internal components of the guide seat 3 are damaged. This allows the operator to disassemble and install the guide seat cover 4 and the guide seat 3 according to actual needs, and helps to extend the overall service life of the guiding device.
[0075] In one embodiment of this application, the guiding device further includes a longitudinal position adjusting unit 14 disposed on the guide seat 3 and used to adjust the longitudinal mounting position of the slider assembly 8, wherein, as Figures 8-9 As shown, the slider assembly 8 includes a slider mounting member 801 and a slider 802. The slider mounting member 801 has a mounting groove 803 with an opening facing the guide rail 1. The slider 802 is disposed in the mounting groove 803 and connected to the slider mounting member 801. The longitudinal position adjustment unit 14 includes:
[0076] The second clamping assembly 1401 is longitudinally movable and inserted into the longitudinal side wall of the guide seat 3 and is used to apply a second clamping force to the slider mounting 801.
[0077] The third nut 1402 is provided in the mounting groove 803 and between the slider 802 and the slider mounting part 801;
[0078] The fifth threaded connector 1403 has one end locked on the longitudinal side wall of the guide seat 3, and the other end passes through the longitudinal side wall of the guide seat 3, the groove wall of the mounting groove 803 near the second clamping component 1401, and is threadedly connected to the third nut 1402.
[0079] Specifically, such as Figure 2 , Figure 3 , Figure 5 and Figure 7As shown, the cross-section of the slider mounting 801 is U-shaped. The direction of the first clamping force is longitudinally toward the slider assembly 8. The third nut 1402 can apply a lateral supporting force to the side wall of the slider mounting 801 near the second clamping component 1401 (i.e., the groove wall of the mounting groove 803 near the second clamping component 1401). That is, the second clamping component 1401 and the third nut 1402 work together to restrict the longitudinal movement of the slider mounting 801, thereby restricting the longitudinal movement of the slider assembly 8. If it is necessary to adjust the longitudinal position of the slider assembly 8, the operator can tighten the fifth threaded connector 1403 (in this embodiment, the fifth threaded connector 1403 can be a bolt) and the second clamping component 1401 to make the fifth threaded connector 1403 move longitudinally relative to the second clamping component 1401. After the longitudinal position of the slider assembly 8 is adjusted, the vertical position of the second clamping component 1401 can be further adjusted so that the second clamping component 1401 can clamp the side wall of the slider mounting part 801 near the second clamping component 1401, thus preventing the slider assembly 8 from shaking longitudinally.
[0080] In one embodiment of this application, the second clamping component 1401 includes:
[0081] The fourth nut 1404 is located on one longitudinal side of the guide seat 3;
[0082] The sixth threaded connector 1405 is inserted into the longitudinal side wall of the guide seat 3 and forms a threaded connection with the fourth nut 1404. The threaded end of the sixth threaded connector 1405 passes through the fourth nut 1404 and the longitudinal side wall and abuts against the longitudinal side wall of the slider 802 on the side close to the fourth nut 1404.
[0083] Specifically, in this embodiment, the sixth threaded connector 1405 can be selected as a bolt. The second tightening assembly 1401 in the form of the fourth nut 1404 and the sixth threaded connector 1405 has a simple structure and is easy to obtain. The operator can realize the relative movement between the sixth threaded connector 1405 and the guide seat 3 by turning the sixth threaded connector 1405. In this way, the side wall of the slider mounting part 801 near the second tightening assembly 1401 can be tightened according to actual needs, thus ensuring the ease of adjustment of the longitudinal position adjustment unit 14.
[0084] In one embodiment of this application, the slider 802 is detachably connected to the slider mounting part 801 via the fourth threaded connector 13. This arrangement allows the operator to disassemble the slider 802 and the slider mounting part 801, making it convenient to replace the slider 802 when it is damaged. This facilitates the operator to disassemble and install the slider 802 and the slider mounting part 801 according to actual needs, and helps to further extend the overall service life of the slider assembly 8 and the guide device.
[0085] In one embodiment of this application, there are multiple sliders 802, which are distributed vertically at intervals in the mounting groove 803. This arrangement can increase the contact area between the sliders 802 and the guide rail 1, which is beneficial to further enhance the working stability of the slider assembly 8 and further improve the smoothness of the movement of the slider assembly 8.
[0086] Another embodiment of this application provides a novel waste compression device, which includes the guide device for waste compression devices described in the above embodiments.
[0087] In the description of this application, it should be understood that the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this application, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.
[0088] In this application, unless otherwise expressly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection, an electrical connection, or a connection that allows communication between components; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components, unless otherwise expressly limited. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0089] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., refer to specific features, structures, materials, or characteristics described in connection with that embodiment or example, which are included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.
[0090] Although embodiments of this application have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting this application. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of this application.
Claims
1. A guide device for a waste compression apparatus, characterized in that, The guide device comprises: a guide rail (1) vertically distributed and arranged on a guide column (2) of the garbage compression device; a guide seat (3) horizontally spaced apart on one side of the guide rail (1) and internally formed with a first guide slope (301) facing the guide rail (1); a guide seat cover plate (4) horizontally arranged above the guide seat (3), the guide seat cover plate (4), the guide seat (3) and the guide rail (1) together forming a first space (5); an adjusting block (6) vertically movably arranged in the first space (5), the adjusting block (6) being formed with a second guide slope (601) for cooperating with the first guide slope (301), and the adjusting block (6) and the guide rail (1) forming a second space (7); a slider assembly (8) horizontally positionally adjustably arranged in the second space (7).
2. The guide for a waste compacting apparatus according to claim 1, characterized in that, The inside of the adjusting block (6) is formed with a mounting cavity (602), and the guide device further comprises: a first tightening assembly (9) vertically movably inserted on the guide seat cover plate (4) and used for applying a first tightening force to the top wall of the adjusting block (6); a first nut (10) arranged in the mounting cavity (602); a first threaded connecting piece (11), one end of the first threaded connecting piece (11) is clamped on the top surface of the guide seat cover plate (4), and the other end of the first threaded connecting piece (11) passes through the top wall of the adjusting block (6) and the guide seat cover plate (4) and is threadedly connected with the first nut (10).
3. The guide for a waste compacting apparatus according to claim 2, characterized in that, The first tightening assembly (9) comprises: a second nut (901) arranged above the guide seat cover plate (4); a second threaded connecting piece (902) vertically inserted on the guide seat cover plate (4) and threadedly connected with the second nut (901), the threaded connecting end of the second threaded connecting piece (902) passing through the second nut (901) and the guide seat cover plate (4) and abutting against the top wall of the adjusting block (6).
4. The guide for a waste compacting apparatus according to claim 1, characterized in that, The side surface of the adjusting block (6) close to the guide rail (1) is a vertical surface, the adjusting block (6) comprises a trapezoidal section and a rectangular section above the trapezoidal section, the second guide slope (601) is formed on the side of the trapezoidal section away from the guide rail (1), and the vertical surface is jointly formed by the side of the trapezoidal section and the side of the rectangular section close to the guide rail (1).
5. The guide for a waste compacting apparatus according to claim 1, characterized in that, The guide seat cover plate (4) is detachably connected with the guide seat (3) through a third threaded connecting piece (12), and the guide device further comprises a longitudinal position adjusting unit (14) arranged on the guide seat (3) and used for adjusting the longitudinal mounting position of the slider assembly (8).
6. The guide for a waste compacting apparatus according to claim 5, wherein The slider assembly (8) comprises a slider mounting piece (801) and a slider (802), the slider mounting piece (801) is formed with a mounting groove (803) with an opening facing the guide rail (1), and the slider (802) is arranged in the mounting groove (803) and connected with the slider mounting piece (801), and the longitudinal position adjusting unit (14) comprises: A second tightening assembly (1401) is movably inserted on the longitudinal side wall of the guide seat (3) and used to apply a second tightening force to the slider mounting member (801); A third nut (1402) is arranged in the mounting groove (803) and between the slider (802) and the slider mounting member (801); A fifth threaded connecting member (1403) is clamped on one end of the longitudinal side wall of the guide seat (3), and threaded on the other end of the fifth threaded connecting member (1403) through the longitudinal side wall of the guide seat (3), the groove wall of the mounting groove (803) close to the second tightening assembly (1401) side and threaded with the third nut (1402).
7. The guide for a waste compacting apparatus according to claim 6, characterized in that The second tightening assembly (1401) comprises: A fourth nut (1404) is arranged on one longitudinal side of the guide seat (3); A sixth threaded connecting member (1405) is inserted on the longitudinal side wall of the guide seat (3) and threaded with the fourth nut (1404), and the threaded end of the sixth threaded connecting member (1405) passes through the fourth nut (1404), the longitudinal side wall and abuts against the longitudinal side wall of the slider (802) close to the fourth nut (1404) side.
8. The guide for a waste compacting apparatus according to claim 6, characterized in that, The slider (802) is detachably connected with the slider mounting member (801) through the fourth threaded connecting member (13).
9. The guide for a waste compacting apparatus according to claim 6, wherein The number of the sliders (802) is multiple, and the multiple sliders (802) are vertically spaced in the mounting groove (803).
10. A waste compacting apparatus, characterised in that, The waste compression equipment comprises the guide device for waste compression equipment according to any one of claims 1-9.