A telescopic flight structure assembly

The rotating and telescopic design of the telescopic scraper structure component solves the problem of garbage accumulation and falling in the garbage bin, achieving flexible garbage handling and sealing effects, and reducing the size requirements of the drive unit.

CN224529605UActive Publication Date: 2026-07-21SHANDONG RUINING ENVIRONMENTAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANDONG RUINING ENVIRONMENTAL TECH CO LTD
Filing Date
2025-07-07
Publication Date
2026-07-21

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Abstract

The utility model discloses a telescopic scraper structure subassembly, including driven scraper, driven scraper includes the scraper main part of rectangle and is located the side rail of two symmetry ends at scraper main part one side, be provided with the movable telescopic main body between two side rails, and the first telescopic ware of telescopic main body and driven scraper between is provided with along the length direction of side rail, and the moving plane of telescopic main body is flush with the plane where driven scraper is located, the end of telescopic main body is relative to the extension of driven scraper and is provided with contact main body, the front and back sides of contact main body in the rotating direction are provided with the let -by -be inclined plane and the guide inclined plane respectively. Distinguish in the conventional push -on plate structure, the device pushes garbage through the mode of rotation, and in this process, the telescopic main body can extend and can select the pushing mode more flexible, and the treatment of the box mouth garbage is completed in more flexible and various ways.
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Description

Technical Field

[0001] This utility model relates to the technical field of garbage bin scraper structure, specifically a telescopic scraper structure component. Background Technology

[0002] During the garbage disposal process, garbage tends to accumulate in easily accessible locations. Due to the variety of garbage types, it cannot be evenly distributed into the bin by its own weight. Therefore, the common method is to push the garbage into the bin by staff or an electric pusher. However, these electric pushers typically operate in a straight line and need to be positioned to avoid the disposal opening. Consequently, they cannot seal the bin, and garbage is prone to falling from the sides during the pushing process. Furthermore, their drive structure is limited by the push rod and cannot be miniaturized. Therefore, a larger drive unit needs to be installed at the disposal opening of the garbage bin, and the disposal direction must also avoid the position of the pusher. Utility Model Content

[0003] To address the numerous inconveniences associated with conventional electric actuator designs, this invention provides a telescopic scraper structure assembly.

[0004] The technical solution of this utility model is as follows:

[0005] A telescopic scraper structure assembly includes a driven scraper, the driven scraper including a rectangular scraper body and side rails located at two symmetrical ends on one side of the scraper body;

[0006] A movable telescopic body is provided between the two side rails, and a first telescopic device along the length of the side rail is provided between the telescopic body and the driven scraper, and the moving plane of the telescopic body is flush with the plane of the driven scraper.

[0007] The end of the telescopic body extends outward relative to the driven scraper and is provided with a contact body;

[0008] The contact body is provided with a clearance slope and a guide slope on the front and rear sides in the direction of rotation, respectively.

[0009] Unlike conventional pusher structures, this device pushes the waste by rotating. During this process, the telescopic body can extend to allow for more flexible selection of the pushing method and to complete the processing of waste at the container opening in a more flexible and diverse manner.

[0010] To avoid squeezing the waste, the end of the clearance slope away from the scraper body is inclined toward the guide slope.

[0011] To facilitate guiding the location of the falling waste, the end of the guide ramp near the scraper body is inclined toward the clearance ramp.

[0012] To increase the angle of the clearance ramp, an extension plane is provided between the clearance ramp and the telescopic body, and the extension plane is set parallel to the plane where the telescopic body is located.

[0013] To reduce the contact area, the relief slope and guide slope are provided with rectangular extension ends at the ends away from the telescopic body.

[0014] The aforementioned extension end is configured such that its length direction is parallel to the rotation axis of the driven scraper, and the extension end has one and only one pair of opposite sides with the same distance from the rotation axis of the driven scraper.

[0015] The specific structure of the telescopic body is as follows: the telescopic body includes multiple guide frames sleeved on the outside of the first telescopic device, and the guide frames are fixedly connected to the structural plate.

[0016] The driven scraper is rotated by means that a second telescopic device is fixedly installed on the outer side of the side rail at a position away from the rotation axis of the driven scraper.

[0017] As a preferred embodiment, the extension end does not extend beyond the front and rear sides in the rotation direction of the driven scraper.

[0018] To ensure that the width of the telescopic body is large enough, the side rails are set close to the edge of the scraper body.

[0019] The beneficial effects of this utility model are as follows: This utility model is a telescopic scraper structure component, which is different from the conventional pusher structure that moves in a straight line. This device can push the garbage by rotating. In this process, the pushing range can be changed by simply adjusting the position of the telescopic body according to the needs. In addition, with the arc-shaped base, it can avoid the phenomenon of missing garbage during the pushing process. In the rotation return process, by retracting the above-mentioned telescopic body, it can avoid bringing the garbage back and avoid new piled garbage as much as possible to prevent it from being pushed out of the box. Attached Figure Description

[0020] The advantages and solutions of this application will become clear to those skilled in the art upon reading the following detailed description of preferred embodiments. The accompanying drawings are for illustrative purposes only and are not intended to limit the scope of this invention.

[0021] In the attached diagram:

[0022] Figure 1 This is a schematic diagram of the structure of this utility model;

[0023] Figure 2 This is a side view of the structure of this utility model;

[0024] Figure 3 This is a cross-sectional structural diagram of the present invention;

[0025] Figure 4 This is a cross-sectional structural diagram of the present invention (and...). Figure 3 (Different states);

[0026] The components represented by the various reference numerals in the diagram are:

[0027] 1. Driven scraper; 11. Scraper body; 12. Side rail; 2. Telescopic body; 21. Guide frame; 22. Structural plate; 3. First telescopic device; 4. Contact body; 41. Extension plane; 42. Yielding slope; 43. Guide slope; 44. Extension end; 5. Second telescopic device. Detailed Implementation

[0028] Example

[0029] like Figure 1-4 The telescopic scraper structure assembly shown includes a driven scraper 1, which is driven to rotate by a drive structure. Specifically, the driven scraper 1 includes a rectangular scraper body 11 and side rails 12 located at two symmetrical ends on one side of the scraper body 11. The scraper body 11 can push the waste, while the side rails 12 can be used as guide rails to achieve the required telescopic function.

[0030] Subsequently, a movable telescopic body 2 is provided between the two side rails 12. The telescopic body 2 can move along the side rails 12, and can extend to cooperate with the scraper body 11 to push the waste. A first telescopic device 3 is provided between the telescopic body 2 and the driven scraper 1 along the length of the side rail 12. The first telescopic device 3 can be used to push the telescopic body 2 to extend or retract. The moving plane of the telescopic body 2 is flush with the plane of the driven scraper 1 to ensure that the pushing plane is as flat as possible, rather than a bent structure. In the above structure, if... Figure 2 As shown, the method of driving the driven scraper 1 to rotate is as follows: a second telescopic device 5 is fixedly installed on the outer side of the side rail 12 at a position away from the rotation axis of the driven scraper 1. Moreover, it is only necessary to fix the end of the driven scraper 1. By extending and retracting the second telescopic device 5, the driven scraper 1 can be driven to complete the rotation action. During this process, the length can also be changed in conjunction with the first telescopic device 3.

[0031] Subsequently, based on the above structure, the end of the telescopic body 2 extends outward relative to the driven scraper 1 and is provided with a contact body 4. The contact body 4 can replace the telescopic body 2 for contact, and the contact body 4 can be set as a detachable structure. By setting it in this way, it can be easily replaced, and the structure and installation method of the contact body 4 can be changed according to the changes in the actual application scenario.

[0032] Furthermore, regarding the device's function of pushing waste, the contact body 4 is provided with a clearance slope 42 and a guide slope 43 on its front and rear sides in the direction of rotation, respectively.

[0033] Specifically, the purpose is twofold: First, to avoid compressing the waste, the end of the clearance slope 42 away from the scraper body 11 is inclined towards the guide slope 43. In other words, by setting the clearance slope 42, it is possible to avoid the entire large surface area contacting the waste, and the clearance slope can also guide the waste and push it away from the contact position. Simultaneously, to facilitate guiding the waste's drop position, the end of the guide slope 43 near the scraper body 11 is inclined towards the clearance slope 42. This method also prevents waste from being carried back during the return journey.

[0034] Subsequently, based on the above structure, in order to increase the area of ​​the clearance slope 42, an extension plane 41 is provided between the clearance slope 42 and the telescopic body 2, and the extension plane 41 is set parallel to the plane where the telescopic body 2 is located. In this way, the angle of the clearance slope 42 can be made larger, thereby avoiding adhesion with garbage and making the cleaning process complicated. The slope setting can minimize the adhesion of garbage.

[0035] Furthermore, it should be noted that in the above structure, in order to reduce the contact area, the ends of the clearance slope 42 and the guide slope 43 away from the telescopic body 2 are provided with rectangular extension ends 44, which contact the plane where the garbage needs to be scraped off through the extension ends 44. And as... Figure 3 As shown, the extension end 44 is configured such that its length direction is parallel to the rotation axis of the driven scraper 1, and the extension end 44 has only one pair of opposite sides with the same distance from the rotation axis of the driven scraper 1. In other words, this method ensures that when the extension end 44 contacts the contact plane, only one side of the extension end 44 can contact the contact plane. By reducing the contact plane area, movement can be prevented from being obstructed, and the phenomenon of liquid splashing caused by squeezing garbage and other problems can be avoided, making the extension and retraction process smoother.

[0036] Finally, the specific design of the extension end 44 is that the extension end 44 does not extend outward to the front and rear sides of the driven scraper 1 in the direction of rotation, so as to avoid installation obstruction and inconvenience of cleaning due to outward protrusion.

[0037] The above structure can achieve the following: Unlike conventional push plate structures, this device pushes the garbage by rotating. During this process, the telescopic body 2 can be extended to more flexibly select the pushing method and complete the processing of garbage at the bin opening in a more flexible and diverse manner, including by changing the length and changing the contact method.

[0038] As a preferred embodiment, the specific structure of the telescopic body 2 is as follows: the telescopic body 2 includes a plurality of guide frames 21 sleeved on the outside of the first telescopic device 3, and the guide frames 21 are fixedly connected to the structural plate 22.

[0039] Finally, to ensure that the width of the telescopic body 2 is large enough, the side rail 12 is set close to the edge of the scraper body 11.

Claims

1. A telescopic scraper structure assembly, characterized in that, Includes a driven scraper, the driven scraper comprising a rectangular scraper body and side rails located at two symmetrical ends on one side of the scraper body; A movable telescopic body is provided between the two side rails, and a first telescopic device along the length of the side rail is provided between the telescopic body and the driven scraper, and the moving plane of the telescopic body is flush with the plane of the driven scraper. The end of the telescopic body extends outward relative to the driven scraper and is provided with a contact body; The contact body is provided with a clearance slope and a guide slope on the front and rear sides in the direction of rotation, respectively.

2. The telescopic scraper structure assembly according to claim 1, characterized in that, The end of the clearance slope away from the scraper body is inclined toward the guide slope.

3. The telescopic scraper structure assembly according to claim 1, characterized in that, The guide ramp is inclined toward the clearance ramp at the end near the scraper body.

4. The telescopic scraper structure assembly according to claim 1, characterized in that, An extension plane is provided between the yielding slope and the telescopic body, and the extension plane is set parallel to the plane where the telescopic body is located.

5. A telescopic scraper structure assembly according to claim 1, characterized in that, The end of the yielding slope and the guide slope away from the telescopic body is provided with a rectangular extension end.

6. A telescopic scraper structure assembly according to claim 5, characterized in that, The length direction of the extension end is parallel to the rotation axis of the driven scraper, and there is one and only one pair of opposite sides in the length direction of the extension end that are at the same distance from the rotation axis of the driven scraper.

7. A telescopic scraper structure assembly according to claim 1, characterized in that, The telescopic body includes multiple guide frames sleeved on the outside of the first telescopic device, and the guide frames are fixedly connected to the structural plate.

8. A telescopic scraper structure assembly according to claim 1, characterized in that, A second expansion joint is fixedly installed on the outer side of the side rail at a position away from the rotation axis of the driven scraper.

9. A telescopic scraper structure assembly according to claim 5, characterized in that, The extension end does not extend beyond the front and rear sides in the rotation direction of the driven scraper.

10. A telescopic scraper structure assembly according to claim 1, characterized in that, The side rail is set close to the edge of the scraper body.