Fallen leaf recovery device for garden landscape

By designing a leaf recycling device containing multiple units, the problem of time-consuming and difficult leaf cleaning in garden landscapes has been solved, achieving uniform recycling and comprehensive cleaning of fallen leaves and reducing the intensity of manual labor.

CN223688856UActive Publication Date: 2025-12-19SHANGHAI SENYI LANDSCAPE DESIGN CO LTD
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Patent Information

Application Number
CN202520087345.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-14
Publication Date
2025-12-19
Estimated Expiration
2035-01-14

AI Technical Summary

Technical Problem

Existing technologies for cleaning fallen leaves in garden landscapes require a lot of manual time and increase the difficulty of cleaning, especially in narrow or densely planted areas where large equipment cannot be used.

Method used

Design a leaf recovery device comprising a main unit, a recovery unit, a guiding unit, a movable unit, a stabilizing unit, a transmission unit, and a drive unit. By cooperating with the guiding unit and the movable unit, the position and distance of the recovery unit can be adjusted to achieve uniform recovery of fallen leaves.

Benefits of technology

It improves the uniformity and comprehensiveness of leaf recovery, reduces the difficulty of cleaning, and enhances the practicality of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The fallen leaf recovery device comprises a main body unit, a recovery unit, a guide unit, a movable unit, a stabilizing unit, a transmission unit and a driving unit, and the inner side of the main body unit is divided into a mounting area and a recovery area; the recycling unit is arranged at the top end of the outer side of the body unit, the inlet end of the recycling unit is arranged on the outer side of the body unit, and the outlet end of the recycling unit is arranged in the recycling area of the body unit. The fallen leaf recycling device has the advantages that the position of the recycling unit can be adjusted through cooperative use of the guide unit, the movable unit, the transmission unit and the driving unit, fallen leaves in different angle areas are recycled, and the recycling uniformity is improved; the distance between the recycling unit and the ground can be adjusted through cooperative use of the movable unit and the stabilizing unit, the recycling effect is more comprehensive, the recycling unit is separated from the movable unit, the recycling unit is independently used, and the practicability of the device is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to garden facilities related technical field especially, a kind of fallen leaf recycling device for garden landscape. BACKGROUND

[0002] Garden facilities are facilities for maintaining public places to ensure normal traffic in public places. In garden landscape places, there are usually a large number of fallen leaves on the ground in autumn. If the fallen leaves on the ground are not cleaned, they can easily rot and become a source of bacterial infection.

[0003] In seasons with more fallen leaves, such as autumn, when the garden area is large, a large amount of manpower needs to be invested to clean up the fallen leaves. In particular, in areas with dense trees, workers need to spend a lot of time collecting fallen leaves, and different garden environments have different requirements for cleaning equipment. For example, in narrow garden paths or flower bed areas with dense plantings, large leaf sweeping vehicles cannot enter, and only small handheld tools can be used, which increases the difficulty and workload of cleaning.

[0004] Currently, there is no effective solution to the problem of manual cleaning taking a lot of time and increasing the difficulty of cleaning in related technologies. UTILITY MODEL CONTENT

[0005] The utility model aims at the deficiencies in the prior art and provides a fallen leaf recycling device for garden landscape to solve the problem of manual cleaning taking a lot of time and increasing the difficulty of cleaning in related technologies.

[0006] To achieve the above-mentioned purpose, the utility model adopts the technical scheme of:

[0007] A fallen leaf recycling device for garden landscape includes:

[0008] A main unit, the inside of the main unit is divided into an installation area and a recycling area;

[0009] A recycling unit is provided at the top of the outside of the main unit. The inlet end of the recycling unit is provided on the outside of the main unit, and the outlet end of the recycling unit is provided in the recycling area of the main unit for conveying fallen leaves to the recycling area of the main unit.

[0010] A guide unit is provided in the installation area of the main unit and connected to the main unit.

[0011] A movable unit is movably provided in the guide unit. The inside of the movable unit is sleeved with the inlet end of the recycling unit for reciprocating the inlet end of the recycling unit along the length direction of the guide unit.

[0012] a stable unit movably arranged on the movable unit and abutting against the inlet end of the recycling unit, for limiting the relative position between the inlet end of the recycling unit and the movable unit;

[0013] a transmission unit arranged on the mounting area of the main unit and rotatably connected with the movable unit, for driving the movable unit to reciprocate along the length direction of the guide unit;

[0014] a driving unit arranged on the mounting area of the main unit and connected with the main unit and the transmission unit respectively, for driving the transmission unit to rotate.

[0015] In some embodiments, the main unit comprises:

[0016] a main element, the inner side of the main element is divided into a mounting area and a recycling area, the mounting area of the main element is provided with the transmission unit and the driving unit, and the recycling area of the main element is provided with the outlet end of the recycling unit;

[0017] a plurality of moving elements, the plurality of moving elements are arranged on the bottom end of the outer side of the main element and connected with the main element respectively, for moving the main element;

[0018] a partition element, the partition element is arranged on the inner side of the main element and connected with the main element and the driving unit respectively, for dividing the inner side of the main element into the mounting area and the recycling area;

[0019] a first through slot element, the first through slot element is arranged on the outer side of the main element and communicates with the mounting area of the main element and is connected with the guide unit;

[0020] a first cover plate element, the first cover plate element is arranged on the top end of the mounting area of the main element, the top end of the first cover plate element is provided with the recycling unit and connected with the main element and the recycling unit respectively, for closing the mounting area of the main element;

[0021] a second cover plate element, the second cover plate element is arranged on the top end of the recycling area of the main element and detachably connected with the main element, for closing the recycling area of the main element;

[0022] a second through slot element, the second through slot element is arranged through the second cover plate element, for allowing the outlet end of the recycling unit to pass through the second cover plate element;

[0023] A pushing element is arranged outside the main body element and connected with the main body element, for pushing the main body element to move.

[0024] In some embodiments, the recycling unit further comprises:

[0025] A recycling element is arranged at the top end outside the main body unit and connected with the main body unit;

[0026] A first pipe element, a first end of the first pipe element is in communication with the inlet end of the recycling element, a second end of the first pipe element is sleeved with the movable unit and abuts against the stable unit, for conveying fallen leaves under the action of the recycling element, reciprocating along the length direction of the guide unit under the action of the movable unit, and limiting the relative position of the first pipe element and the movable unit under the action of the stable unit;

[0027] A second pipe element, a first end of the second pipe element is in communication with the outlet end of the recycling element, a second end of the second pipe element is arranged in the recycling area of the main body unit, for conveying fallen leaves to the recycling area of the main body unit under the action of the recycling element.

[0028] In some embodiments, the guide unit comprises:

[0029] A guide element is arranged in the mounting area of the main body unit and connected with the main body unit;

[0030] A first sliding element is arranged at the end of the guide element and slidingly connected with the movable unit.

[0031] In some embodiments, the movable unit comprises:

[0032] A second sliding element is movably arranged in the guide unit and rotationally connected with the transmission unit, for reciprocating along the length direction of the guide unit under the action of the transmission unit;

[0033] A bracket element is arranged at the first end of the second sliding element and connected with the second sliding element, for reciprocating along the length direction of the guide unit under the action of the second sliding element;

[0034] A movable element is arranged at the end of the bracket element, an inner side of the movable element is sleeved with the inlet end of the recycling unit, for driving the inlet end of the recycling unit to reciprocate along the length direction of the guide unit under the action of the bracket element;

[0035] A connecting element is disposed on the movable element and rotatably connected to the stabilizing unit.

[0036] In some embodiments, the active unit further includes:

[0037] A first rotating element is disposed at the first end of the second sliding element and is rotatably connected to the transmission unit.

[0038] In some embodiments, the stabilizing unit includes:

[0039] A control element, wherein the control element is movably disposed in the active unit;

[0040] A stabilizing element is disposed at the end of the control element and abuts against the inlet end of the recovery unit. It is used to reciprocate horizontally under the action of the control element to limit the relative position between the inlet end of the recovery unit and the moving unit.

[0041] In some embodiments, the transmission unit includes:

[0042] A first transmission element is disposed in the mounting area of ​​the main body unit, and a first end of the first transmission element is connected to the drive unit for rotating in the vertical direction under the action of the drive unit.

[0043] The second transmission element has a first end disposed at the second end of the first transmission element, and the second end of the second transmission element is provided with the movable unit, which is rotatably connected to the first transmission element and the movable unit respectively, and is used to drive the movable unit to reciprocate along the length direction of the guide unit under the action of the first transmission element.

[0044] In some embodiments, the transmission unit further includes:

[0045] The second rotating element is disposed at the second end of the second transmission element and is rotatably connected to the movable unit.

[0046] In some embodiments, the driving unit includes:

[0047] A driving element is disposed in the mounting area of ​​the main body unit and connected to the main body unit and the transmission unit respectively, for driving the transmission unit to rotate.

[0048] The present invention adopts the above technical solution and has the following technical effects compared with the prior art:

[0049] The utility model discloses a kind of for garden landscape fallen leaf recovery device, using the cooperation of guiding unit, movable unit, transmission unit and driving unit can adjust the position of recovery unit, so that the fallen leaf of different angle area is recovered and handled, to increase recovery uniformity, reduce the difficulty of cleaning;Using the cooperation of movable unit and stable unit can adjust the distance of recovery unit on ground, so that recovery effect is more comprehensive, and recovery unit and movable unit are separated, so that recovery unit is used alone, to improve the practicability of device. BRIEF DESCRIPTION OF DRAWINGS

[0050] Figure 1 It is the three-dimensional structure schematic diagram of fallen leaf recovery device according to the utility model embodiment;

[0051] Figure 2 It is the exploded view of fallen leaf recovery device according to the utility model embodiment;

[0052] Figure 3 It is the exploded view of main body unit according to the utility model embodiment;

[0053] Figure 4 It is the three-dimensional structure schematic diagram of recovery unit according to the utility model embodiment;

[0054] Figure 5 It is the three-dimensional structure schematic diagram of guiding unit according to the utility model embodiment;

[0055] Figure 6 It is the three-dimensional structure schematic diagram of movable unit according to the utility model embodiment;

[0056] Figure 7 It is the three-dimensional structure schematic diagram of stable unit according to the utility model embodiment;

[0057] Figure 8 It is the three-dimensional structure schematic diagram of transmission unit according to the utility model embodiment;

[0058] Figure 9 It is the three-dimensional structure schematic diagram of driving unit according to the utility model embodiment.

[0059] Among them, reference signs are: 100, main body unit;101, main body element;102, moving element;103, separation element;104, first through slot element;105, first cover plate element;106, second cover plate element;107, second through slot element;108, pushing element;

[0060] 200, recovery unit;201, recovery element;202, first pipeline element;203, second pipeline element;

[0061] 300, guiding unit; 301, guiding element; 302, first sliding element;

[0062] 400, moving unit; 401, second sliding element; 402, support element; 403, moving element; 404, connecting element; 405, first rotating element;

[0063] 500, stabilizing unit; 501, operating element; 502, stabilizing element;

[0064] 600, transmission unit; 601, first transmission element; 602, second transmission element; 603, second rotating element;

[0065] 700, drive unit; 701, drive element. DETAILED DESCRIPTION

[0066] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0067] It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict.

[0068] The present application will be further described below in combination with the drawings and specific embodiments, but is not limited by the present application.

[0069] An illustrative embodiment of the present application is as follows: Figure 1 , Figure 2As shown, a fallen leaf recycling device for garden landscape includes a main unit 100, a recycling unit 200, a guide unit 300, a movable unit 400, a stabilizing unit 500, a transmission unit 600 and a driving unit 700. The inner side of the main unit 100 is divided into an installation area and a recycling area; the recycling unit 200 is arranged at the top of the outer side of the main unit 100, the inlet end of the recycling unit 200 is arranged at the outer side of the main unit 100, and the outlet end of the recycling unit 200 is arranged at the recycling area of the main unit 100, for conveying fallen leaves to the recycling area of the main unit 100; the guide unit 300 is arranged in the installation area of the main unit 100 and connected with the main unit 100; the movable unit 400 is movably arranged in the guide unit 300, the inner side of the movable unit 400 is sleeved with the inlet end of the recycling unit 200, for driving the inlet end of the recycling unit 200 to reciprocate along the length direction of the guide unit 300; the stabilizing unit 500 is movably arranged in the movable unit 400 and abuts against the inlet end of the recycling unit 200, for limiting the relative position of the inlet end of the recycling unit 200 and the movable unit 400; the transmission unit 600 is arranged in the installation area of the main unit 100 and rotationally connected with the movable unit 400, for driving the movable unit 400 to reciprocate along the length direction of the guide unit 300; and the driving unit 700 is arranged in the installation area of the main unit 100 and connected with the main unit 100 and the transmission unit 600 respectively, for driving the transmission unit 600 to rotate.

[0070] As Figure 3As shown, the main unit 100 comprises a main element 101, a plurality of moving elements 102, a partition element 103, a first through-slot element 104, a first cover plate element 105, a second cover plate element 106, a second through-slot element 107, and a pushing element 108. Among them, the inner side of the main element 101 is divided into an installation area and a recycling area, the installation area of the main element 101 is provided with a transmission unit 600 and a driving unit 700, and the recycling area of the main element 101 is provided with an outlet end of a recycling unit 200; the plurality of moving elements 102 are distributed and arranged at the bottom end of the outer side of the main element 101 and are respectively connected with the main element 101 for moving the main element 101; the partition element 103 is arranged at the inner side of the main element 101 and is respectively connected with the main element 101 and the driving unit 700 for dividing the inner side of the main element 101 into the installation area and the recycling area; the first through-slot element 104 is arranged at the outer side of the main element 101 and is in communication with the installation area of the main element 101 and is connected with a guide unit 300; the first cover plate element 105 is arranged at the top end of the installation area of the main element 101, the top end of the first cover plate element 105 is provided with the recycling unit 200 and is respectively connected with the main element 101 and the recycling unit 200 for closing the installation area of the main element 101; the second cover plate element 106 is arranged at the top end of the recycling area of the main element 101 and is detachably connected with the main element 101 for closing the recycling area of the main element 101; the second through-slot element 107 is arranged through the second cover plate element 106 for the outlet end of the recycling unit 200 to pass through the second cover plate element 106; and the pushing element 108 is arranged at the outer side of the main element 101 and is connected with the main element 101 for pushing the main element 101 to move.

[0071] The main element 101 has a structure of open top end and closed bottom end.

[0072] In some embodiments, the main element 101 is made of stainless steel.

[0073] In some embodiments, the main element 101 is a main frame.

[0074] The plurality of moving elements 102 are distributed and arranged at the four corners of the main element 101.

[0075] In some embodiments, the moving element 102 is four.

[0076] In some embodiments, the moving element 102 is fixedly connected with the main element 101, including but not limited to bolt connection.

[0077] In some embodiments, the moving element 102 is a universal wheel.

[0078] The cross section of the partition element 103 is rectangular.

[0079] The size of the partition element 103 matches the size of the main body element 101. Generally, the length of the partition element 103 is equal to the inner width of the main body element 101, the width of the partition element 103 is less than the inner length of the main body element 101, and the height of the partition element 103 is equal to the inner height of the main body element 101.

[0080] In some embodiments, the partition element 103 is fixedly connected to the main body element 101, including but not limited to bolt connection.

[0081] In some embodiments, the partition element 103 is made of stainless steel.

[0082] In some embodiments, the partition element 103 is a partition plate.

[0083] The cross section of the first through slot element 104 is rectangular.

[0084] The size of the first through slot element 104 matches the size of the main body element 101. Generally, the length of the first through slot element 104 is less than the inner width of the main body element 101, the width of the first through slot element 104 is equal to the inner wall thickness of the main body element 101, and the height of the first through slot element 104 is less than the inner height of the main body element 101.

[0085] In some embodiments, the first through slot element 104 is a first through slot.

[0086] The cross section of the first cover plate element 105 is rectangular.

[0087] The size of the first cover plate element 105 matches the size of the main body element 101. Generally, the length of the first cover plate element 105 is equal to the outer width of the main body element 101, the width of the first cover plate element 105 is less than the outer length of the main body element 101, and the height of the first cover plate element 105 is less than the outer height of the main body element 101.

[0088] In some embodiments, the first cover plate element 105 is fixedly connected to the main body element 101, including but not limited to bolt connection.

[0089] In some embodiments, the first cover plate element 105 is made of stainless steel.

[0090] In some embodiments, the first cover plate element 105 is a first cover plate.

[0091] The cross section of the second cover plate element 106 is rectangular.

[0092] The second cover plate element 106 has a size matching that of the main body element 101. Generally, the length of the second cover plate element 106 is less than the outer length of the main body element 101, the width of the second cover plate element 106 is equal to the outer width of the main body element 101, and the height of the second cover plate element 106 is less than the outer height of the main body element 101.

[0093] The second cover plate element 106 has a size matching that of the first cover plate element 105. Generally, the length of the second cover plate element 106 is greater than the width of the first cover plate element 105, the width of the second cover plate element 106 is equal to the length of the first cover plate element 105, and the height of the second cover plate element 106 is equal to the height of the first cover plate element 105.

[0094] In some embodiments, the second cover plate element 106 is detachably connected to the main body element 101. For example, the second cover plate element 106 is snap-connected to the main body element 101.

[0095] In some embodiments, the second cover plate element 106 is made of stainless steel.

[0096] In some embodiments, the second cover plate element 106 is a second cover plate.

[0097] The second through slot element 107 has a circular arc cross section.

[0098] The second through slot element 107 has a size matching that of the second cover plate element 106. Generally, the radial dimension of the second through slot element 107 is less than the length and width of the second cover plate element 106, and the axial dimension of the second through slot element 107 is equal to the height of the second cover plate element 106.

[0099] In some embodiments, the second through slot element 107 is a second through slot.

[0100] The pushing element 108 has a circular cross section.

[0101] The pushing element 108 has a size matching that of the main body element 101. Generally, the radial dimension of the pushing element 108 is less than the outer width and height of the main body element 101.

[0102] In some embodiments, the pushing element 108 is fixedly connected to the main body element 101, including but not limited to bolt connection.

[0103] In some embodiments, the pushing element 108 is made of stainless steel.

[0104] In some embodiments, the pushing element 108 is a pushing rod.

[0105] AsFigure 4 As shown, the recovery unit 200 comprises a recovery element 201, a first pipe element 202 and a second pipe element 203. The recovery element 201 is arranged at the top end of the outer side of the main unit 100 and connected with the main unit 100. The first end of the first pipe element 202 is in communication with the inlet end of the recovery element 201, and the second end of the first pipe element 202 is sleeved with the movable unit 400 and abuts against the stable unit 500, for conveying fallen leaves under the action of the recovery element 201, reciprocating along the length direction of the guide unit 300 under the action of the movable unit 400, and limiting the relative position of the first pipe element 202 and the movable unit 400 under the action of the stable unit 500. The first end of the second pipe element 203 is in communication with the outlet end of the recovery element 201, and the second end of the second pipe element 203 is arranged in the recovery area of the main unit 100, for conveying fallen leaves to the recovery area of the main unit 100 under the action of the recovery element 201.

[0106] Specifically, the recovery element 201 is arranged at the top end of the first cover plate element 105 and connected with the first cover plate element 105. The second end of the second pipe element 203 passes through the second cover plate element 106 through the second through slot element 107.

[0107] In some embodiments, the recovery element 201 is fixedly connected with the first cover plate element 105, including but not limited to bolt connection.

[0108] In some embodiments, the recovery element 201 is a centrifugal fan.

[0109] The first pipe element 202 is a hollow structure.

[0110] In some embodiments, the first pipe element 202 is fixedly connected with the recovery element 201, including but not limited to hoop connection.

[0111] In some embodiments, the first pipe element 202 is made of polyethylene material.

[0112] In some embodiments, the first pipe element 202 is a first hose.

[0113] The second pipe element 203 is a hollow structure.

[0114] The size of the second pipe element 203 matches the size of the second through slot element 107. Generally, the radial dimension of the outer edge surface of the second pipe element 203 is not greater than the radial dimension of the second through slot element 107.

[0115] The size of the second pipe element 203 matches the size of the first pipe element 202. Generally, the radial size of the second pipe element 203 is equal to the radial size of the first pipe element 202, and the axial size of the second pipe element 203 is smaller than the axial size of the first pipe element 202.

[0116] In some embodiments, the second pipe element 203 is fixedly connected with the recovery element 201, including but not limited to a clamp connection.

[0117] In some embodiments, the second pipe element 203 is made of polyethylene.

[0118] In some embodiments, the second pipe element 203 is a second hose.

[0119] As shown in Figure 5 The guide unit 300 includes a guide element 301 and a first sliding element 302. The guide element 301 is arranged on the mounting area of the main body unit 100 and is connected with the main body unit 100. The first sliding element 302 is arranged on the end of the guide element 301 and is slidingly connected with the movable unit 400.

[0120] Specifically, the guide element 301 is arranged on the first through slot element 104 and is connected with the main body element 101.

[0121] The cross section of the guide element 301 is rectangular.

[0122] The size of the guide element 301 matches the size of the first through slot element 104. Generally, the length of the guide element 301 is equal to the length of the first through slot element 104, the width of the guide element 301 is equal to the width of the first through slot element 104, and the height of the guide element 301 is equal to the height of the first through slot element 104.

[0123] In some embodiments, the guide element 301 is fixedly connected with the main body element 101, including but not limited to a bolt connection.

[0124] In some embodiments, the guide element 301 is made of stainless steel.

[0125] In some embodiments, the guide element 301 is a guide plate.

[0126] In some embodiments, the first sliding element 302 comprises a first sliding groove, a second sliding groove and a third sliding groove. The first sliding groove is arranged at the front end of the guide element 301 and is in sliding connection with the movable unit 400. The second sliding groove is arranged inside the guide element 301 and is in communication with the first sliding groove and in sliding connection with the movable unit 400. The third sliding groove is arranged at the rear end of the guide element 301 and is in communication with the second sliding groove and in sliding connection with the movable unit 400.

[0127] The size of the first sliding groove matches the size of the guide element 301. Generally, the length of the first sliding groove is less than the length of the guide element 301, the width of the first sliding groove is less than the width of the guide element 301, and the height of the first sliding groove is less than the height of the guide element 301.

[0128] The size of the second sliding groove matches the size of the guide element 301. Generally, the length of the second sliding groove is less than the length of the guide element 301, the width of the second sliding groove is less than the width of the guide element 301, and the height of the second sliding groove is less than the height of the guide element 301.

[0129] The size of the second sliding groove matches the size of the first sliding groove. Generally, the length of the second sliding groove is equal to the length of the first sliding groove, the width of the second sliding groove is greater than the width of the first sliding groove, and the height of the second sliding groove is greater than the height of the first sliding groove.

[0130] The size of the third sliding groove matches the size of the guide element 301. Generally, the length of the third sliding groove is less than the length of the guide element 301, the width of the third sliding groove is less than the width of the guide element 301, and the height of the third sliding groove is less than the height of the guide element 301.

[0131] The size of the third sliding groove matches the size of the second sliding groove. Generally, the length of the third sliding groove is equal to the length of the second sliding groove, the width of the third sliding groove is less than the width of the second sliding groove, and the height of the third sliding groove is less than the height of the second sliding groove.

[0132] The size of the third sliding groove matches the size of the first sliding groove. Generally, the length of the third sliding groove is equal to the length of the first sliding groove, the width of the third sliding groove is equal to the width of the first sliding groove, and the height of the third sliding groove is equal to the height of the first sliding groove.

[0133] As Figure 6As shown, the moving unit 400 comprises a second sliding element 401, a bracket element 402, a moving element 403 and a connecting element 404. Among them, the second sliding element 401 is movably arranged on the guide unit 300 and rotatably connected with the transmission unit 600, for reciprocating movement along the length direction of the guide unit 300 under the action of the transmission unit 600; the bracket element 402 is arranged at the first end of the second sliding element 401 and connected with the second sliding element 401, for reciprocating movement along the length direction of the guide unit 300 under the action of the second sliding element 401; the moving element 403 is arranged at the end of the bracket element 402, and the inner side of the moving element 403 is sleeved with the inlet end of the recycling unit 200, for driving the inlet end of the recycling unit 200 to reciprocate along the length direction of the guide unit 300 under the action of the bracket element 402; the connecting element 404 is arranged on the moving element 403 and rotatably connected with the stabilizing unit 500.

[0134] Specifically, the second sliding element 401 is slidingly connected with the first sliding element 302; the bracket element 402 is slidingly connected with the first sliding element 302; the inner side of the moving element 403 is sleeved with the first pipeline element 202.

[0135] More specifically, the second sliding element 401 is slidingly connected with the second sliding groove and the third sliding groove respectively; the bracket element 402 is slidingly connected with the first sliding groove.

[0136] The cross section of the second sliding element 401 is convex. Specifically, the second sliding element 401 comprises a first sliding block and a second sliding block. Among them, the first end of the first sliding block is provided with the bracket element 402 and slidingly connected with the second sliding groove; the second sliding block is arranged at the second end of the first sliding block, and the second end of the second sliding block is provided with the first rotating element 405 and slidingly connected with the third sliding groove.

[0137] The size of the first sliding block matches the size of the first sliding element 302. Generally, the length of the first sliding block is less than the length of the second sliding groove, the width of the first sliding block is equal to the width of the second sliding groove, and the height of the first sliding block is equal to the height of the second sliding groove.

[0138] The size of the second sliding block matches the size of the first sliding element 302. Generally, the length of the second sliding block is less than the length of the third sliding groove, the width of the second sliding block is equal to the width of the third sliding groove, and the height of the second sliding block is equal to the height of the third sliding groove.

[0139] The size of the second sliding block matches the size of the first sliding block. Generally, the length of the second sliding block is equal to the length of the first sliding block, the width of the second sliding block is less than the width of the first sliding block, and the height of the second sliding block is less than the height of the first sliding block.

[0140] In some embodiments, the second sliding element 401 is made of stainless steel.

[0141] The cross section of the bracket element 402 is circular.

[0142] The size of the bracket element 402 matches the size of the second sliding element 401. Generally, the radial dimension of the bracket element 402 is smaller than the length and height of the first sliding block, and the axial dimension of the bracket element 402 is larger than the width of the first sliding block.

[0143] The size of the bracket element 402 matches the size of the first sliding element 302. Generally, the radial dimension of the bracket element 402 is equal to the height of the first sliding groove, the radial dimension of the bracket element 402 is smaller than the length of the first sliding groove, and the axial dimension of the bracket element 402 is larger than the width of the first sliding groove.

[0144] In some embodiments, the bracket element 402 is fixedly connected to the second sliding element 401, including but not limited to bolt connection.

[0145] In some embodiments, the bracket element 402 is made of stainless steel.

[0146] In some embodiments, the bracket element 402 is a bracket rod.

[0147] The movable element 403 has a hollow structure.

[0148] The size of the movable element 403 matches the size of the bracket element 402. Generally, the radial dimension and axial dimension of the outer edge surface of the movable element 403 are larger than the radial dimension of the bracket element 402, and the radial dimension of the outer edge surface of the movable element 403 is smaller than the axial dimension of the bracket element 402.

[0149] The size of the movable element 403 matches the size of the first pipe element 202. Generally, the radial dimension of the inner edge surface of the movable element 403 is not smaller than the radial dimension of the outer edge surface of the first pipe element 202, and the axial dimension of the movable element 403 is smaller than the axial dimension of the first pipe element 202.

[0150] In some embodiments, the movable element 403 is fixedly connected to the bracket element 402, including but not limited to bolt connection.

[0151] In some embodiments, the movable element 403 is made of stainless steel.

[0152] In some embodiments, the movable element 403 is a movable ring.

[0153] The cross section of the connecting element 404 is circular.

[0154] The size of the connecting element 404 matches the size of the movable element 403. Generally, the radial size of the connecting element 404 is smaller than the radial size of the outer edge surface of the movable element 403, the axial size of the connecting element 404 is equal to the thickness of the movable element 403 (the distance between the outer edge surface and the inner edge surface of the movable element 403).

[0155] In some embodiments, the connecting element 404 is a threaded hole.

[0156] The cross section of the first rotating element 405 is circular.

[0157] The size of the first rotating element 405 matches the size of the second sliding element 401. Generally, the radial size of the first rotating element 405 is smaller than the length and height of the second sliding element, and the axial size of the first rotating element 405 is smaller than the width of the second sliding element.

[0158] In some embodiments, the first rotating element 405 is a rotating hole.

[0159] As shown in Figure 7 The stable unit 500 includes a control element 501 and a stable element 502. The control element 501 is movably arranged in the movable unit 400; the stable element 502 is arranged at the end of the control element 501 and abuts against the inlet end of the recycling unit 200, and is used to reciprocate along the horizontal direction under the action of the control element 501 to limit the relative position of the inlet end of the recycling unit 200 and the movable unit 400.

[0160] Specifically, the control element 501 is rotationally connected with the connecting element 404; the stable element 502 is arranged on the inner side of the movable element 403 and abuts against the first pipe element 202.

[0161] In some embodiments, the control element 501 includes a screw rod and a rotating disc. The first end of the screw rod is provided with the stable element 502 and is rotationally connected with the stable element 502 and the connecting element 404 respectively; the rotating disc is arranged at the second end of the screw rod and is connected with the screw rod, and is used to drive the screw rod to rotate along the circumference of the connecting element 404.

[0162] The size of the screw rod matches the size of the connecting element 404. Generally, the radial size of the screw rod is equal to the radial size of the connecting element 404, and the axial size of the screw rod is greater than the axial size of the connecting element 404.

[0163] The size of the rotating disc matches the size of the screw rod. Generally, the radial size of the rotating disc is greater than the radial size of the screw rod, and the axial size of the rotating disc is smaller than the axial size of the screw rod.

[0164] The dimensions of the rotating disk are matched with the dimensions of the movable element 403. Generally, the radial dimension of the rotating disk is smaller than the radial dimension and axial dimension of the outer edge surface of the movable element 403.

[0165] In some of these embodiments, the control element 501 is made of stainless steel.

[0166] The cross-section of the stabilizing element 502 is arc-shaped.

[0167] The dimensions of the stabilizing element 502 are matched with the dimensions of the controlling element 501. Generally, the radial and axial dimensions of the outer edge of the stabilizing element 502 are larger than the radial dimension of the screw.

[0168] The dimensions of the stabilizing element 502 are matched with the dimensions of the movable element 403. Generally, the radial dimension of the outer edge surface of the stabilizing element 502 is smaller than the radial dimension of the inner edge surface of the movable element 403, and the axial dimension of the stabilizing element 502 is not smaller than the axial dimension of the movable element 403.

[0169] In some embodiments, the stabilizing element 502 and the controlling element 501 are rotatably connected without separation. For example, the stabilizing element 502 and the controlling element 501 are connected via a bearing housing.

[0170] In some of these embodiments, the stabilizing element 502 is made of stainless steel.

[0171] In some of these embodiments, the stabilizing element 502 is a stabilizing disc.

[0172] like Figure 8 As shown, the transmission unit 600 includes a first transmission element 601 and a second transmission element 602. The first transmission element 601 is disposed in the mounting area of ​​the main body unit 100, and its first end is connected to the drive unit 700 for rotation in the vertical direction under the action of the drive unit 700. The first end of the second transmission element 602 is disposed at the second end of the first transmission element 601, and its second end is provided with a movable unit 400, which is rotatably connected to both the first transmission element 601 and the movable unit 400, for reciprocating motion along the length direction of the guide unit 300 under the action of the first transmission element 601.

[0173] Specifically, the first transmission element 601 is disposed in the mounting area of ​​the main body element 101; the second transmission element 602 is disposed in the mounting area of ​​the main body element 101.

[0174] The cross-section of the first transmission element 601 is rectangular.

[0175] The size of the first transmission element 601 matches the size of the main body element 101. Generally, the length of the first transmission element 601 is less than the inner width and the inner height of the main body element 101, the width of the first transmission element 601 is less than the inner width and the inner height of the main body element 101, and the thickness of the first transmission element 601 is less than the inner length of the main body element 101.

[0176] In some embodiments, the first transmission element 601 is made of stainless steel.

[0177] In some embodiments, the first transmission element 601 is a first transmission plate.

[0178] The cross section of the second transmission element 602 is rectangular.

[0179] The size of the second transmission element 602 matches the size of the first transmission element 601. Generally, the length of the second transmission element 602 is greater than the length of the first transmission element 601, the width of the second transmission element 602 is equal to the width of the first transmission element 601, and the thickness of the second transmission element 602 is equal to the thickness of the first transmission element 601.

[0180] The size of the second transmission element 602 matches the size of the main body element 101. Generally, the length of the second transmission element 602 is less than the inner width and the inner height of the main body element 101, the width of the second transmission element 602 is less than the inner width and the inner height of the main body element 101, and the thickness of the second transmission element 602 is less than the inner length of the main body element 101.

[0181] In some embodiments, the second transmission element 602 is rotatably connected with the first transmission element 601 without separation. For example, the second transmission element 602 is connected with the first transmission element 601 through a bearing seat.

[0182] In some embodiments, the second transmission element 602 is made of stainless steel.

[0183] In some embodiments, the second transmission element 602 is a second transmission plate.

[0184] Further, the transmission unit 600 also includes a second rotation element 603. The second rotation element 603 is arranged at the second end of the second transmission element 602 and is rotatably connected with the activity unit 400.

[0185] Specifically, the second rotation element 603 is rotatably connected with the first rotation element 405.

[0186] The cross section of the second rotation element 603 is circular.

[0187] The second rotating element 603 has a size matching that of the second transmission element 602. Generally, the radial dimension of the second rotating element 603 is smaller than the length or width of the second transmission element 602, and the axial dimension of the second rotating element 603 is smaller than the thickness of the second transmission element 602.

[0188] The second rotating element 603 has a size matching that of the first rotating element 405. Generally, the radial dimension of the second rotating element 603 is equal to that of the first rotating element 405, and the axial dimension of the second rotating element 603 is equal to that of the first rotating element 405.

[0189] In some embodiments, the second rotating element 603 is connected to the second transmission element 602 in a high degree, including but not limited to a bolt connection.

[0190] In some embodiments, the second rotating element 603 is connected to the first rotating element 405 in a non-detachable manner. For example, the second rotating element 603 is connected to the first rotating element 405 through a bearing seat.

[0191] In some embodiments, the second rotating element 603 is made of stainless steel.

[0192] In some embodiments, the second rotating element 603 is a rotating shaft.

[0193] As shown in Figure 9 The driving unit 700 includes a driving element 701. The driving element 701 is arranged in the mounting area of the main body unit 100 and is connected to the main body unit 100 and the transmission unit 600, respectively, for driving the transmission unit 600 to rotate.

[0194] Specifically, the driving element 701 is arranged in the mounting area of the main body element 101 and is connected to the partition element 103 and the first transmission element 601.

[0195] In some embodiments, the driving element 701 is fixedly connected to the partition element 103 and the first transmission element 601, including but not limited to a bolt connection.

[0196] In some embodiments, the driving element 701 is a driving motor.

[0197] The use method of the utility model is as follows:

[0198] (I) Preparation operation

[0199] The first pipe element 202 is passed through the movable element 403, and according to the needs, a section of the twisting control element 501 is twisted to drive the stable element 502 to gradually approach the first pipe element 202 in the horizontal direction until they abut.

[0200] (II) Recycling operation

[0201] Start the recycling element 201, so that it will fall leaves through the first pipe element 202, the second pipe element 203 recycling to the main body element 101 recycling area.

[0202] (III) Adjustment operation

[0203] Start the drive element 701, so that it will drive the first transmission element 601 along the vertical direction corresponding rotation, the first transmission element 601 through the second transmission element 602 drive the second sliding element 401 along the length of the first sliding element 302 repeatedly movement;

[0204] The second sliding element 401 through the bracket element 402 drive the movable element 403 corresponding movement, through the movable element 403 drive the first pipe element 202 corresponding movement, so as to adjust.

[0205] The utility model discloses the advantage lies in, utilizes the cooperation and use of guiding unit, movable unit, transmission unit and drive unit can adjust the position of recycling unit, makes the fallen leaves of different angle area carry out recycling processing, to increase the uniformity of recycling, reduces the difficulty of cleaning, utilizes the cooperation and use of movable unit and stable unit can adjust the distance of recycling unit on the ground, makes the recycling effect more comprehensive, and separates recycling unit and movable unit, makes recycling unit use alone, to improve the practicability of device.

[0206] The above only is the preferred embodiment of the utility model, and does not therefore limit the implementation and protection scope of the utility model, and for the person skilled in the art, should be able to realize that the scheme obtained from the equivalent replacement and obvious change of the utility model specification and drawing content, should include in the protection scope of the utility model.

Claims

1. A fallen leaf recycling device for a garden landscape, characterized by, The utility model relates to a leaf collecting device, including: A main unit (100), the inside of main unit (100) is divided into installation area and recovery area; A recovery unit (200), the top of the outside of main unit (100) is provided with recovery unit (200), the import end of recovery unit (200) is provided with the outside of main unit (100), and the outlet end of recovery unit (200) is provided with the recovery area of main unit (100) for conveying fallen leaves to the recovery area of main unit (100); A guide unit (300), the guide unit (300) is provided in the installation area of main unit (100) and is connected with main unit (100); A movable unit (400), the movable unit (400) is movably provided in the guide unit (300), the inside of movable unit (400) is sleeved with the import end of recovery unit (200), and the import end of recovery unit (200) is driven to reciprocate along the length direction of guide unit (300); A stable unit (500), the stable unit (500) is movably provided in the movable unit (400) and is in abutment with the import end of recovery unit (200), and the relative position of the import end of recovery unit (200) and movable unit (400) is limited; A transmission unit (600), the transmission unit (600) is provided in the installation area of main unit (100) and is rotatably connected with movable unit (400), and movable unit (400) is driven to reciprocate along the length direction of guide unit (300); A drive unit (700), the drive unit (700) is provided in the installation area of main unit (100) and is connected with main unit (100) and transmission unit (600) respectively, and is used to drive transmission unit (600) to rotate.

2. The leaf collection device of claim 1, wherein, The main unit (100) includes: A main element (101), the inside of main element (101) is divided into installation area and recovery area, the installation area of main element (101) is provided with transmission unit (600) and drive unit (700), and the recovery area of main element (101) is provided with the outlet end of recovery unit (200); Several moving elements (102), several moving elements (102) are distributed and provided at the bottom of the outside of main element (101) and are connected with main element (101) respectively, and are used to move main element (101); A separation element (103), the separation element (103) is provided in the inside of main element (101) and is connected with main element (101) and drive unit (700) respectively, and is used to divide the inside of main element (101) into installation area and recovery area. A first through-slot element (104) is arranged outside the main body element (101) and communicates with the mounting area of the main body element (101) and is connected with the guide unit (300); A first cover plate element (105) is arranged at the top end of the mounting area of the main body element (101), the top end of the first cover plate element (105) is provided with the recycling unit (200), and the first cover plate element (105) is connected with the main body element (101) and the recycling unit (200) respectively, for closing the mounting area of the main body element (101); A second cover plate element (106) is arranged at the top end of the recycling area of the main body element (101) and is detachably connected with the main body element (101), for closing the recycling area of the main body element (101); A second through-slot element (107) is arranged through the second cover plate element (106) for the outlet end of the recycling unit (200) to pass through the second cover plate element (106); A pushing element (108) is arranged outside the main body element (101) and is connected with the main body element (101) for pushing the main body element (101) to move.

3. The leaf collection device of claim 1, wherein, The recycling unit (200) comprises: A recycling element (201) is arranged at the top end outside the main body unit (100) and is connected with the main body unit (100); A first pipe element (202) has a first end communicating with the inlet end of the recycling element (201), a second end of the first pipe element (202) is sleeved with the movable unit (400) and abuts against the stabilizing unit (500), for conveying fallen leaves under the action of the recycling element (201), reciprocating along the length direction of the guide unit (300) under the action of the movable unit (400), and limiting the relative position of the first pipe element (202) and the movable unit (400) under the action of the stabilizing unit (500); A second pipe element (203) has a first end communicating with the outlet end of the recycling element (201), and a second end of the second pipe element (203) is arranged in the recycling area of the main body unit (100), for conveying fallen leaves to the recycling area of the main body unit (100) under the action of the recycling element (201).

4. The leaf collection device of claim 1, wherein, The guide unit (300) comprises: A guide element (301) is arranged in the mounting area of the main body unit (100) and is connected with the main body unit (100); A first sliding element (302) is arranged at the end of the guide element (301) and is slidingly connected with the movable unit (400).

5. The leaf collection device of claim 1, wherein, The activity unit (400) comprises: A second sliding element (401) movably arranged on the guide unit (300) and rotatably connected with the transmission unit (600), for reciprocating along the length direction of the guide unit (300) under the action of the transmission unit (600); A support element (402) arranged on the first end of the second sliding element (401) and connected with the second sliding element (401), for reciprocating along the length direction of the guide unit (300) under the action of the second sliding element (401); An activity element (403) arranged on the end of the support element (402), the inner side of the activity element (403) is sleeved with the inlet end of the recycling unit (200), for driving the inlet end of the recycling unit (200) to reciprocate along the length direction of the guide unit (300) under the action of the support element (402); A connecting element (404) arranged on the activity element (403) and rotatably connected with the stabilizing unit (500).

6. The leaf collection device of claim 5, wherein, The activity unit (400) further comprises: A first rotating element (405) arranged on the second end of the second sliding element (401) and rotatably connected with the transmission unit (600).

7. The leaf collection device of claim 1, wherein, The stabilizing unit (500) comprises: A control element (501) movably arranged on the activity unit (400); A stabilizing element (502) arranged on the end of the control element (501) and abutting against the inlet end of the recycling unit (200), for reciprocating along the horizontal direction under the action of the control element (501) to limit the relative position between the inlet end of the recycling unit (200) and the activity unit (400).

8. The leaf collection device of claim 1, wherein, The transmission unit (600) comprises: A first transmission element (601) arranged on the mounting area of the main body unit (100), the first end of the first transmission element (601) is connected with the driving unit (700), for rotating along the vertical direction under the action of the driving unit (700); A second transmission element (602) with the first end arranged on the second end of the first transmission element (601), the second end of the second transmission element (602) is arranged with the activity unit (400) and rotatably connected with the first transmission element (601) and the activity unit (400) respectively, for driving the activity unit (400) to reciprocate along the length direction of the guide unit (300) under the action of the first transmission element (601).

9. The leaf collection device of claim 8, wherein, The transmission unit (600) further comprises: A second rotating element (603) is arranged at the second end of the second transmission element (602) and is rotationally connected with the movable unit (400).

10. The leaf collection device of claim 1, wherein, The driving unit (700) comprises: A driving element (701) is arranged at the mounting area of the main body unit (100) and is connected with the main body unit (100) and the transmission unit (600) respectively, and is used for driving the transmission unit (600) to rotate.