Mobile garden landscape artificial spraying equipment

The automatic laying and fixing of the soft belt is achieved through the linkage mechanism, which solves the problem of time-consuming and labor-intensive manual fixing of the ground needle in the prior art, improves the fixing and laying efficiency of the soft belt, and ensures the landscape effect.

CN120362065APending Publication Date: 2025-07-25济南市公园发展服务中心
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Patent Information

Application Number
CN202510678751.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-26
Publication Date
2025-07-25

AI Technical Summary

Technical Problem

The existing garden spray equipment requires manual single fixed ground needle when laying soft belts, which is time-consuming and labor-intensive, and the position of the soft belt is easy to change and affect the landscape effect.

Method used

A mobile artificial spraying equipment for landscape landscape is designed, and a linkage mechanism is used to drive the soft belt retraction and placement and fixed recycling and cleaning mechanism to realize the linkage laying and fixing of the soft belt. Through the positioning of the guide laying mechanism, the driving mechanism is used to intermittently drive the fixed recycling and cleaning mechanism to automatically fix and clean the soft belt.

Benefits of technology

It improves the fixing and laying efficiency of soft belts, reduces labor intensity, ensures accurate positioning of soft belts, high cleanliness, and reduces manual operation steps.

✦ Generated by Eureka AI based on patent content.

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    Figure CN120362065A_ABST
Patent Text Reader

Abstract

The invention relates to the technical field of spraying equipment, and discloses mobile garden landscape artificial spraying equipment which comprises a vehicle body with walking wheels, a pressurizing mechanism and a soft belt winding and unwinding mechanism are arranged on the vehicle body, a guide laying mechanism is arranged on the lower side of the vehicle body at the soft belt winding and unwinding mechanism, and a fixed recycling and cleaning mechanism is arranged on the side of the guide laying mechanism. The device further comprises a driving mechanism, the driving mechanism is in driving connection with the soft belt winding and unwinding mechanism and the fixed recycling cleaning mechanism through a linkage mechanism, and the fixed recycling cleaning mechanism communicates with the pressurizing mechanism through a water outlet pipe. The device has the beneficial effects that the fixed recycling and cleaning mechanism is used for fixing the soft belts at certain intervals in a linkage mode when the soft belts are laid, and the fixed recycling and cleaning mechanism is used for cleaning the soft belts and removing surface soil and internal residual water when the soft belts are recycled and then winding the soft belts, so that the laid soft belts can be fixed intermittently; manual fixing one by one is not needed, the labor intensity is reduced, and the soft belt fixing and laying efficiency is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of garden spray equipment, and specifically, to a mobile artificial spray equipment for garden landscapes. Background Art

[0002] In order to create an atmosphere in the lawn of a garden landscape, artificial spraying will be carried out at appropriate times, which requires the use of artificial spray equipment. Existing artificial spray equipment generally includes a pressurizing main unit for pressurizing water and then spraying through a flexible hose. When in use, it is necessary to lay the flexible hose. Then, when high-pressure water is introduced after the flexible hose is laid and under other interference conditions, the position of the flexible hose is likely to change, resulting in a poor landscape effect.

[0003] There are technical solutions in the prior art for fixing the flexible hose. For example, the patent document with the publication number: CN114453172B provides a mobile artificial spray equipment for garden landscapes, including a box body. It is characterized in that a partition board is sleeved in the inner cavity of the box body, a top board is installed on the top of the box body, a liquid inlet pipe is sleeved on the top of the top board, moving wheels are arranged on the front and rear sides of the box body, one side of the top of the partition board is connected by a hinge with a flip cover, an opening and closing groove is formed on the side of the flip cover, a pipeline assembly is arranged on one side of the partition board, and a storage assembly located on one side of the pipeline assembly is connected to the rear side of the inner cavity of the box body. When in use, side strips, movable seats and ground-piercing needles are arranged on the side of the flexible water pipe. When the flexible water pipe is arranged at the garden landscape, after the flexible water pipe is placed in a specified shape, the ground-piercing needles are bent outwards so that the ground-piercing needles are vertically distributed with respect to the flexible water pipe, and the ground-piercing needles are inserted into the soil to fix the flexible water pipe. However, this fixing method requires manual insertion of the ground-piercing needles into the soil one by one, and the operation is still time-consuming and laborious. Summary of the Invention

[0004] The main inventive concept of the present application is as follows: When pushing the vehicle body to lay the flexible hose, it is not necessary to manually fix the ground-piercing needles one by one. When laying the flexible hose, it is fixed synchronously with the laying in a linked manner, that is, the laying and fixing of the flexible hose are carried out simultaneously, improving the fixing efficiency of the flexible hose and reducing the labor intensity.

[0005] Therefore, the present application provides a mobile artificial spray equipment for garden landscapes, including a vehicle body with walking wheels, a pressurizing mechanism and a flexible hose winding and unwinding mechanism are arranged on the vehicle body, a guiding and laying mechanism is arranged on the lower side of the vehicle body at the flexible hose winding and unwinding mechanism, a fixing, recycling and cleaning mechanism is arranged on the side of the guiding and laying mechanism, and a driving mechanism is further included. The driving mechanism drives and connects the flexible hose winding and unwinding mechanism and the fixing, recycling and cleaning mechanism through a linkage mechanism, and the fixing, recycling and cleaning mechanism is communicated with the pressurizing mechanism through a water outlet pipe.

[0006] By adopting the above technical solution: with walking wheels, the whole equipment can be driven to move by pushing the vehicle body, which is convenient for laying soft belts. The soft belts are provided with a number of fine spray holes for fogging. The soft belts can be retracted and released by the soft belt retracting and releasing mechanism. The guide laying mechanism is convenient for roughly positioning the soft belts, and the laying position is more accurate. The set fixed recovery and cleaning mechanism can, on the one hand, fix the soft belts at a certain distance when laying the soft belts, and on the other hand, clean the soft belts when recycling the soft belts, remove the surface dirt, and then reel them up. When the soft belt reeling mechanism is driven to release the soft belt, the fixed recovery and cleaning mechanism can be intermittently driven to move, and the laid soft belts can be fixed without manual fixation one by one, which reduces the labor intensity and improves the soft belt fixing and laying efficiency.

[0007] As a further refinement of the present application, the pressurizing mechanism includes a box body arranged on the vehicle body, a pressurizing pump is provided inside the box body, an injection port and a water outlet pipe are provided on the box body, an interface pipe connected to a soft belt is provided on the water outlet pipe, and the end of the water outlet pipe is connected to a fixed recovery and cleaning mechanism.

[0008] By adopting the above technical solution: by injecting water into the interior of the box, the water can be pressurized by a pressure pump, and then sent to the interface pipe and the fixed recovery and cleaning mechanism at the end of the water outlet pipe through the water outlet pipe. The interface pipe is used to connect with the soft belt, and a spray can be formed through the soft belt. The end of the water outlet pipe can supply water to the fixed recovery and cleaning mechanism, which is convenient for cleaning the soft belt when recovering it and removing surface dirt.

[0009] As a further refinement of the present application, the soft belt retracting mechanism includes a support frame connected to the box body and the vehicle body, and a retracting roller is rotatably connected to the support frame, and the retracting roller is connected to the driving mechanism through a linkage mechanism.

[0010] By adopting the above technical solution: the support frame is used to rotatably connect the take-up and unwinding drum, and the driving mechanism can drive the take-up and unwinding drum to rotate through the linkage mechanism, thereby realizing the winding and unwinding of the soft belt.

[0011] As a further refinement of the present application, the driving mechanism includes a driving motor disposed on a supporting frame.

[0012] By adopting the above technical solution, the driving motor can rotate forward and reverse, and the linkage mechanism can drive the reel to rotate forward and reverse, so as to realize the reeling and unreeling of the soft belt.

[0013] As a further refinement of the present application, the linkage mechanism includes a driving component connected to the output shaft of the driving motor for driving the retractable drum to rotate, and a linkage component arranged on the output shaft for driving the fixed recovery and cleaning mechanism to operate.

[0014] By adopting the above technical solution: the driving component can drive the winding and unwinding drum to rotate, and the linkage component can drive the fixed recycling and cleaning mechanism to intermittently act to fix the laid soft belt.

[0015] As a further refinement of the present application, the fixed recycling and cleaning mechanism includes a fixing component for fixing the soft belt and a cleaning component for cleaning the soft belt when recycling the soft belt. The linkage component is in contact connection with the fixing component.

[0016] By adopting the above technical solution: the fixing component can act at regular intervals under the drive of the linkage mechanism to fix the soft belt. When the soft belt is recycled, the cleaning component can first remove the soil on the surface of the soft belt and then clean it, improving the cleanliness of the surface of the soft belt.

[0017] As a further refinement of the present application, the fixing component includes a mounting frame body arranged on the vehicle body. The mounting frame body includes vertical beams arranged on both sides of the vehicle body. A cross beam is provided at the top of the two vertical beams. A hammering member is slidably connected between the two vertical beams. A pushing spring is provided between the top of the hammering member and the cross beam. The linkage component is intermittently in contact connection with the hammering member. A rectangular groove is provided on the vehicle body, and a nail feeding component is provided on the vehicle body below the rectangular groove.

[0018] By adopting the above technical solution: the mounting frame body is composed of two vertical beams and a top cross beam, forming a portal frame body. Under the intermittent drive of the linkage component, the pushing spring is reciprocally compressed. When the pushing spring contracts, it stores energy. Then the linkage component releases the compression of the pushing spring, and the pushing spring pops out to push the hammering member downward, driving the groove nails inside the nail feeding component into the soil. Due to the guiding effect of the guiding laying mechanism, at this time, the soft belt is inside the groove nails, so the soft belt can be fixed by the groove nails. The rectangular groove on the vehicle body facilitates the row installation of groove nails.

[0019] As a further refinement of the present application, the hammering member includes a square frame slidably connected between the two vertical beams. A pushing spring is provided between the upper end of the square frame and the cross beam. A hammering plate is provided at the lower end of the square frame.

[0020] By adopting the above technical solution: the provided square frame has a cavity in the middle, which is convenient for the soft belt to pass through the cavity and be wound around the winding and unwinding drum when winding the soft belt. Under the push of the pushing spring, the square frame can be quickly driven downward, thereby driving the hammering plate downward to drive the groove nails into the soil to complete the fixing of the soft belt.

[0021] As a further refinement of the present application, the nail feeding component includes a nail storage box arranged below the rectangular groove. A pushing nail spring is provided in the nail storage box. One end of the pushing nail spring is fixed on the end wall of the nail storage box, and the other end is connected with a pushing nail plate. A number of groove nails are arranged between the pushing nail plate and the other side wall of the nail storage box.

[0022] By adopting the above technical solution: The nail storage box is used to place the grooved nails in a row. Through the abutting action of the nail pushing spring and the nail pushing plate, the grooved nails are always directly below the hammering plate. The thickness of the hammering plate is less than the width of the grooved nails. Thus, each time the hammering plate strikes, one grooved nail is driven into the soil, forming spaced fixation for the soft belt.

[0023] As a further refinement of the present application, the driving assembly includes a driving grooved pulley arranged on the output shaft and a driven grooved pulley arranged on the winding and unwinding drum. A synchronous belt is provided between the driving grooved pulley and the driven grooved pulley; the linkage assembly includes a trigger disc arranged on the output shaft. An adjustment groove is provided on the trigger disc, and an adjustment screw is arranged in the adjustment groove. The adjustment screw is fixedly connected to the trigger disc through a nut. It also includes a driven rod arranged on the square frame, and the driven rod is perpendicular to the adjustment screw.

[0024] By adopting the above technical solution: When the output shaft rotates, for example, rotates clockwise, the driving grooved pulley drives the driven grooved pulley to rotate through the synchronous belt, thereby causing the winding and unwinding drum to rotate and unwind the soft belt. At this time, the trigger disc rotates following the output shaft. When the adjustment screw contacts the driven rod during rotation, it drives the driven rod to move upward, thereby driving the square frame to move upward and compress the pushing spring. When the trigger disc continues to rotate such that the adjustment screw no longer contacts the driven rod, under the ejection of the pushing spring, the direction block is pushed downward, so that the hammering plate can drive the grooved nails into the soil to form fixation for the soft belt. Repeating this process can achieve spaced fixation of the soft belt, eliminating the manual operation steps of fixing one by one and improving the fixation effect.

[0025] As a further refinement of the present application, the cleaning assembly includes a U-shaped cavity fixed to the vehicle body. The U-shaped cavity communicates with the end of the water outlet pipe. A plurality of spray heads are provided on both the upper and lower sides inside the U-shaped cavity. Valves are provided at both the end of the water outlet pipe and the interface pipe. An elastic clamp is provided at the outer end of the U-shaped cavity.

[0026] By adopting the above technical solution: The middle part of the U-shaped cavity has a through cavity, which is convenient for the soft belt to pass through when being recycled. Spray heads are embedded on both the upper and lower sides of the through cavity. The water outlet pipe can introduce high-pressure water into the interior of the U-shaped cavity through the valve. The soft belt can be cleaned through the spray heads. The soft belt can be clamped by the elastic clamp, and after removing the soil on the surface of the soft belt, it is cleaned again, improving the cleaning effect.

[0027] As a further refinement of the present application, the guiding and laying mechanism includes a strip-shaped groove opened on the vehicle body. A frustum-shaped guiding cavity is provided at the lower part of the vehicle body. The large-diameter end of the frustum-shaped guiding cavity faces the strip-shaped groove, and the small-diameter end faces the nail storage box.

[0028] By adopting the above technical solution: When laying the soft belt, after the soft belt passes through the strip-shaped groove and then through the frustum-shaped guiding cavity, it is located in the middle position of the groove nail, which is convenient for the groove nail to fix the soft belt.

[0029] As a further refinement of this application, a push handle is also provided on one side of the vehicle body.

[0030] By adopting the above technical solution: By setting the push handle, it is convenient to push the entire vehicle body.

[0031] The working principle and beneficial effects of this application are as follows: 1. This application has walking wheels. By pushing the vehicle body, the entire device can be driven to move, which is convenient for laying the soft belt. The soft belt is provided with several small spray holes for fogging. The soft belt can be retracted and released through the soft belt retracting and releasing mechanism. The guiding and laying mechanism is convenient for roughly positioning the soft belt, and the laying position is more accurate. The set fixing, recycling and cleaning mechanism can, firstly, fix the soft belt at a certain interval in a linkage manner when laying the soft belt, and secondly, can clean the soft belt when recycling the soft belt to remove the soil on the surface and then wind it up. Through the setting of the driving mechanism and the linkage mechanism, when driving the soft belt retracting and releasing mechanism to release the soft belt, it can intermittently drive the fixing, recycling and cleaning mechanism to act and fix the laid soft belt, eliminating the need for manual fixing one by one, reducing the labor intensity and improving the soft belt fixing and laying efficiency.

[0032] 2. The mounting frame body is composed of two vertical beams and a top cross beam, forming a portal frame body. Driven intermittently by the linkage component, the pushing spring is reciprocally compressed. When the pushing spring contracts, it stores energy. Then the linkage component releases the compression of the pushing spring, and the pushing spring pops out to push the hammering part downward, driving the groove nail inside the nail feeding component into the soil. Due to the guiding effect of the guiding and laying mechanism, at this time, the soft belt is inside the groove nail, so the soft belt can be fixed by the groove nail. The rectangular groove on the vehicle body is convenient for installing the groove nails in rows.

[0033] 3. The set square frame has a cavity in the middle, which is convenient for the soft belt to pass through the cavity and be wound around the retracting and releasing roller when winding up the soft belt. Through the pushing of the pushing spring, the square frame can be quickly driven downward, thereby driving the hammering plate downward to drive the groove nail into the soil to complete the fixing of the soft belt.

[0034] 4. The nail storage box is used for placing the groove nails in rows. Through the butting action of the nail pushing spring and the nail pushing plate, the groove nail is always directly below the hammering plate. The thickness of the hammering plate is less than the width of the groove nail. Therefore, each time the hammering plate hammers, one groove nail is driven into the soil to form an interval fixing for the soft belt.

[0035] 5. When the output shaft rotates, for example, rotates clockwise, the driving sprocket drives the driven sprocket to rotate through the synchronous belt, so that the winding and unwinding drum rotates to unwind the soft belt. At this time, the touch disk rotates with the output shaft. When the adjusting screw contacts the driven rod during rotation, it drives the driven rod to move upward, thereby driving the square frame to move upward and compress the pushing spring. When the touch disk continues to rotate so that the adjusting screw and the driven rod are no longer in contact, under the ejection of the pushing spring, the direction block is pushed downward, so that the hammer plate can drive the groove nail into the soil to fix the soft belt. In this way, the intermittent fixation of the soft belt can be realized, eliminating the manual operation steps of fixing one by one and improving the fixation effect.

[0036] 6. When laying the soft belt, after the soft belt passes through the strip groove and then through the frustum-shaped guiding cavity, it is located in the middle of the groove nail, which is convenient for the groove nail to fix the soft belt. BRIEF DESCRIPTION OF THE DRAWINGS

[0037] The present application will be further described in detail below with reference to the drawings and specific embodiments.

[0038] Figure 1 It is a schematic side structure diagram of the whole of the application embodiment; Figure 2 It is a schematic top view structure diagram of the application embodiment; Figure 3 It is a schematic structure diagram of the fixing component of the application embodiment; Figure 4 It is a schematic cooperation structure diagram of the fixing component and the groove nail of the application embodiment; Figure 5 For the application embodiment Figure 1 The enlarged structure diagram at A in; Figure 6 It is a schematic front structure diagram at the touch disk of the application embodiment; Figure 7 For the application embodiment Figure 2 The enlarged structure diagram at B in; Figure 8 It is a schematic front structure diagram of the loop cavity of the application embodiment; Figure 9 It is a schematic structure diagram of the frustum-shaped guiding cavity of the application embodiment.

[0039] The marks of each feature in the drawings are as follows: 100, vehicle body; 110, running wheels; 120, rectangular groove; 130, push handle; 200, pressurizing mechanism; 210, box body; 220, injection port; 300, soft belt retracting and deploying mechanism; 310, support frame body; 320, retracting and deploying roller; 400, guiding and laying mechanism; 410, strip-shaped groove; 420, frustum-shaped guiding cavity; 500, fixing, recycling and cleaning mechanism; 510, mounting frame body; 511, vertical beam; 512, cross beam; 520, pushing spring; 530, square frame; 531, connecting rod; 540, hammering plate; 550, nail storage box; 551, nail pushing spring; 552, nail pushing plate; 553, grooved nail; 560, loop-shaped cavity; 561, nozzle; 562, elastic clip; 563, passing cavity; 600, driving mechanism; 610, output shaft; 700, linkage mechanism; 710, driving sprocket; 720, driven sprocket; 730, synchronous belt; 740, touch plate; 750, adjusting groove; 760, adjusting screw; 770, nut; 780, driven rod; 800, water outlet pipe; 810, connecting pipe. Detailed implementation manners

[0040] Next, in combination with the embodiments of the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts fall within the scope of protection of the present invention.

[0041] In the present application, the following specific embodiments are given, and the main inventive concept is as follows: When pushing the vehicle body to lay the soft belt, it is not necessary to manually fix the ground nails one by one. When laying the soft belt, it is fixed synchronously with the laying in a linked manner, that is, the laying and fixing of the soft belt are carried out simultaneously, improving the fixing efficiency of the soft belt and reducing the labor intensity.

[0042] Referring to Figures 1-9 , based on the above inventive concept, this embodiment provides a mobile artificial spray device for garden landscapes, including a vehicle body 100 having running wheels 110. The running wheels 110 are arranged at the four corners of the vehicle body 100 to facilitate pushing the vehicle body 100 to move. Among them, a pressurizing mechanism 200 for pressurizing water is provided on the vehicle body 100, and a soft belt retracting and deploying mechanism 300 for retracting and deploying the soft belt is also provided. A guiding and laying mechanism 400 for positioning and laying the soft belt is provided on the lower side of the vehicle body 100 at the soft belt retracting and deploying mechanism 300. A fixing, recycling and cleaning mechanism 500 is provided on the side of the guiding and laying mechanism 400. It also includes a driving mechanism 600. The driving mechanism 600 is drivingly connected to the soft belt retracting and deploying mechanism 300 and the fixing, recycling and cleaning mechanism 500 through a linkage mechanism 700. The fixing, recycling and cleaning mechanism 500 is communicated with the pressurizing mechanism 200 through a water outlet pipe 800.

[0043] Basic principle of this embodiment: It has traveling wheels 110. By pushing the vehicle body 100, the entire device can be driven to move, facilitating the laying of the soft belt. The soft belt is provided with a number of small spray holes for fogging. The soft belt winding and unwinding mechanism 300 can wind and unwind the soft belt. The guiding and laying mechanism facilitates the general positioning of the soft belt, making the laying position more accurate. The fixed recovery and cleaning mechanism 500 set is, firstly, to fix the soft belt at a certain interval in a linkage manner when laying the soft belt, and secondly, to clean the soft belt when recovering the soft belt, removing the soil on the surface, and then winding it up. Through the setting of the driving mechanism 600 and the linkage mechanism 700, when driving the soft belt winding mechanism to unwind the soft belt, it can intermittently drive the fixed recovery and cleaning mechanism 500 to act, fixing the laid soft belt, eliminating the need for manual fixing one by one, reducing the labor intensity, and improving the soft belt fixing and laying efficiency.

[0044] Refer to Figure 1 and Figure 2 In order to pressurize the water and facilitate the formation of spray in the later stage, the pressurizing mechanism 200 in this embodiment includes a box body 210 provided on the vehicle body 100. A pressurizing pump is provided inside the box body 210. Of course, a partition can be provided inside the box body 210 to seal and separate the box body 210. One side is for storing water, and the other side is for installing the pressurizing pump (not shown in the figure). The box body 210 is provided with a water injection port 220 and a water outlet pipe 800. An interface pipe 810 for connecting with the soft belt is provided on the water outlet pipe 800. The end of the water outlet pipe 800 is communicated with the fixed recovery and cleaning mechanism 500. By injecting water into the box body 210, the water can be pressurized by the pressurizing pump, and then sent to the interface pipe 810 and the fixed recovery and cleaning mechanism 500 at the end of the water outlet pipe 800 through the water outlet pipe 800. The interface pipe 810 is used to communicate with the soft belt, and spray can be formed through the soft belt. The end of the water outlet pipe 800 can supply water to the fixed recovery and cleaning mechanism 500, facilitating the cleaning of the soft belt when recovering the soft belt and removing the soil on the surface.

[0045] Refer to Figure 1 and Figure 2 In actual use, the soft belt may have a relatively long length. In order to facilitate the winding and unwinding of the soft belt, the soft belt winding and unwinding mechanism 300 in this embodiment includes a support frame body 310 connected to the box body 210 and the vehicle body 100. A winding and unwinding drum 320 is rotatably connected to the support frame body 310. The winding and unwinding drum 320 is connected to the driving mechanism 600 through the linkage mechanism 700. The support frame body 310 is used to rotatably connect the winding and unwinding drum 320. The driving mechanism 600 can drive the winding and unwinding drum 320 to rotate through the linkage mechanism 700, thereby realizing the winding and unwinding of the soft belt.

[0046] Refer to Figure 1 and Figure 2, in order to synchronously drive the soft belt winding and unwinding mechanism 300 and the fixed recycling and cleaning mechanism 500, the driving mechanism 600 in this embodiment includes a driving motor arranged on the support frame 310. The driving motor can rotate forward and backward, and can drive the winding and unwinding drum to rotate forward and backward through the linkage mechanism 700, so as to realize the winding and unwinding of the soft belt.

[0047] Refer to Figure 1 and Figure 2 , as described above, in order to make the soft belt winding and unwinding mechanism 300 and the fixed recycling and cleaning mechanism 500 act synchronously, the linkage mechanism 700 in this embodiment includes a driving component connected to the output shaft 610 of the driving motor to drive the winding and unwinding drum 320 to rotate, and a linkage component arranged on the output shaft 610 to drive the fixed recycling and cleaning mechanism 500 to act. The driving component can drive the winding and unwinding drum 320 to rotate, and the linkage component can drive the fixed recycling and cleaning mechanism 500 to intermittently act to fix the laid soft belt.

[0048] Refer to Figures 2-4 , the fixed recycling and cleaning mechanism 500 in this embodiment includes a fixing component for fixing the soft belt and a cleaning component for cleaning the soft belt when recycling the soft belt. The linkage component is in contact connection with the fixing component. The fixing component can act once every certain distance under the drive of the linkage mechanism 700 to fix the soft belt. The cleaning component can first remove the soil on the surface of the soft belt and then clean it when recycling the soft belt, improving the cleanliness of the soft belt surface.

[0049] Refer to Figures 2-4 , the fixing component therein includes a mounting frame 510 arranged on the vehicle body 100. The mounting frame 510 includes vertical beams 511 arranged on both sides of the vehicle body 100. A cross beam 512 is provided at the top of the two vertical beams 511. A hammering member is slidably connected between the two vertical beams 511. A pushing spring 520 is provided between the top of the hammering member and the cross beam 512. The linkage component is intermittently in contact connection with the hammering member. A rectangular groove 120 is provided on the vehicle body 100. A nail feeding component is provided on the vehicle body 100 below the rectangular groove 120. The mounting frame 510 is composed of two vertical beams 511 and a top cross beam 512 to form a portal frame. Under the intermittent drive of the linkage component, the pushing spring 520 is reciprocally compressed. When the pushing spring 520 contracts, it stores energy. Then the linkage component releases the compression of the pushing spring 520, and the pushing spring 520 pops out to push the hammering member downward, driving the groove nail 553 inside the nail feeding component into the soil. Due to the guiding effect of the guiding laying mechanism, at this time, the soft belt is inside the groove nail 553, so that the soft belt can be fixed by the groove nail 553. The rectangular groove 120 on the vehicle body 100 is convenient for installing the groove nails 553 in rows.

[0050] Refer to Figure 3 and Figure 4, wherein the hammering member includes a square frame 530 slidably connected between two vertical beams 511. Two sides of the square frame 530 are slidably connected to the vertical beams 511 through connecting rods 531. Chute grooves may be provided on the vertical beams 511, and the ends of the connecting rods 531 are located inside the chute grooves. A pushing spring 520 is provided between the upper end of the square frame 530 and the cross beam 512. A hammering plate 540 is provided at the lower end of the square frame 530. The middle part of the provided square frame 530 has a cavity, which is convenient for the soft belt to pass through the cavity and be wound around the winding and unwinding drum 320 when the soft belt is wound. Through the pushing of the pushing spring 520, the square frame 530 can be quickly driven to move downward, thereby driving the hammering plate 540 to move downward and driving the groove nail 553 into the soil, as Figure 4 shown by the arrow direction, to complete the fixation of the soft belt.

[0051] Referring to Figure 1 and Figure 5 , wherein the nail feeding assembly includes a nail storage box 550 provided on the lower side of the rectangular groove 120. A pushing nail spring 551 is provided in the nail storage box 550. One end of the pushing nail spring 551 is fixed on the end wall of the nail storage box 550, and the other end is connected to a pushing nail plate 552. A plurality of groove nails 553 are arranged between the pushing nail plate 552 and the other side wall of the nail storage box 550. The nail storage box 550 is used for arranging the groove nails 553 in a row. A gap for one groove nail 553 to pass through is provided on the side close to the hammering plate 540. Through the abutting action of the pushing nail spring 551 and the pushing nail plate 552, the groove nail 553 is always directly below the hammering plate 540. The thickness of the hammering plate 540 is less than the width of the groove nail 553, so that each time the hammering plate 540 hammers, one groove nail 553 is driven into the soil to form an intermittent fixation for the soft belt.

[0052] Referring to Figure 2 , Figure 6 and Figure 7 , wherein the driving assembly includes a driving grooved pulley 710 provided on the output shaft 610 and a driven grooved pulley 720 provided on the winding and unwinding drum 320. A synchronous belt 730 is provided between the driving grooved pulley 710 and the driven grooved pulley 720; the linkage assembly includes a touch disk 740 provided on the output shaft 610. An adjustment groove 750 is provided on the touch disk 740. An adjustment screw 760 is provided in the adjustment groove 750. The adjustment screw 760 is fixedly connected to the touch disk 740 through a nut 770. A driven rod 780 provided on the square frame 530 is also included, and the driven rod 780 is perpendicular to the adjustment screw 760.

[0053] The basic principle is as follows: When the output shaft 610 rotates, for example, rotates clockwise, the driving sprocket 710 drives the driven sprocket 720 to rotate through the synchronous belt 730, so that the winding and unwinding drum 320 rotates to unwind the soft belt. At this time, the touch disk 740 rotates with the output shaft 610. When the adjusting screw 760 contacts the driven rod 780 during rotation, it drives the driven rod 780 to move upward, thereby driving the square frame 530 to move upward and compress the pushing spring 520. When the touch disk 740 continues to rotate and the adjusting screw 760 is no longer in contact with the driven rod 780, under the ejection of the pushing spring 520, the direction block is pushed downward, so that the hammering plate 540 can drive the groove nail 553 into the soil to fix the soft belt. Repeating this process can achieve the interval fixation of the soft belt, eliminating the manual operation steps of fixing one by one and improving the fixation effect.

[0054] Refer to Figure 1 and Figure 8 Among them, the cleaning component includes a U-shaped cavity 560 fixed on the vehicle body 100. The U-shaped cavity 560 is communicated with the end of the water outlet pipe 800. A plurality of spray nozzles 561 are provided on both the upper and lower sides inside the U-shaped cavity 560. Valves are provided at the end of the water outlet pipe 800 and at the interface pipe 810. An elastic clip 562 is provided at the outer end of the U-shaped cavity 560. A through cavity 563 is provided in the middle of the U-shaped cavity 560 to facilitate the soft belt to pass through when being recycled. The spray nozzles 561 are embedded on both the upper and lower sides of the through cavity 563. High-pressure water can be introduced into the U-shaped cavity 560 through the water outlet pipe 800 by the valve. The soft belt can be cleaned through the spray nozzles 561. The soft belt can be clamped by the elastic clip 562, and after removing the soil on the surface of the soft belt, it is cleaned again, improving the cleaning effect. When recycling the soft belt, the end of the soft belt passes through the elastic clip 562 and the through cavity 563 and is fixed on the winding and unwinding reel. The soft belt can be pulled to move through the winding and unwinding reel, and the remaining water in the soft belt can be squeezed out and the surface soil can be removed through the elastic clip 562.

[0055] Refer to 1 and Figure 9 In order to facilitate the positioning and laying of the soft belt, the guiding and laying mechanism 400 in this embodiment includes a strip-shaped groove 410 opened on the vehicle body 100. A frustum-shaped guiding cavity 420 is provided below the vehicle body 100. The large-diameter end of the frustum-shaped guiding cavity 420 faces the strip-shaped groove 410, and the small-diameter end faces the nail storage box 550. When laying the soft belt, after the soft belt passes through the strip-shaped groove 410 and then through the frustum-shaped guiding cavity 420, it is in the middle position of the groove nail 553, which is convenient for the groove nail 553 to fix the soft belt.

[0056] In order to facilitate the pushing of the vehicle body 100, a push handle 130 is further provided on one side of the vehicle body 100 in this embodiment. By setting the push handle 130, it is convenient to push the entire vehicle body 100.

[0057] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention shall be included within the protection scope of the present invention.

Claims

1. A mobile artificial spray device for garden landscapes, comprising a vehicle body (100) with traveling wheels (110), characterized in that, A pressurizing mechanism (200) and a soft belt winding and unwinding mechanism (300) are provided on the vehicle body (100). A guiding and laying mechanism (400) is provided on the lower side of the vehicle body (100) at the soft belt winding and unwinding mechanism (300). A fixing, recycling and cleaning mechanism (500) is provided on the side of the guiding and laying mechanism (400). A driving mechanism (600) is further included. The driving mechanism (600) is drivingly connected to the soft belt winding and unwinding mechanism (300) and the fixing, recycling and cleaning mechanism (500) through a linkage mechanism (700). The fixing, recycling and cleaning mechanism (500) is communicated with the pressurizing mechanism (200) through a water outlet pipe (800).

2. The mobile artificial spray device for garden landscape according to claim 1, wherein The pressurizing mechanism (200) includes a box body (210) provided on the vehicle body (100). A pressurizing pump is provided inside the box body (210). A filling port (220) and a water outlet pipe (800) are provided on the box body (210). An interface pipe (810) connected to the soft belt is provided on the water outlet pipe (800). The end of the water outlet pipe (800) is communicated with the fixing, recycling and cleaning mechanism (500).

3. The mobile artificial spray device for garden landscape according to claim 1, characterized in that, The soft belt winding and unwinding mechanism (300) includes a support frame body (310) connected to the box body (210) and the vehicle body (100). A winding and unwinding drum (320) is rotatably connected to the support frame body (310). The winding and unwinding drum (320) is connected to the driving mechanism (600) through a linkage mechanism (700).

4. The mobile artificial spray device for garden landscape according to claim 3, characterized in that, The driving mechanism (600) includes a driving motor provided on the support frame body (310).

5. A mobile artificial spray device for garden landscapes according to claim 3, characterized in that, The linkage mechanism (700) includes a driving component connected to the output shaft (610) of the driving motor to drive the winding and unwinding drum (320) to rotate, and a linkage component provided on the output shaft (610) to drive the fixing, recycling and cleaning mechanism (500) to actuate.

6. The mobile artificial spray device for garden landscape according to claim 5, characterized in that, The fixing, recycling and cleaning mechanism (500) includes a fixing component for fixing the soft belt and a cleaning component for cleaning the soft belt when recycling the soft belt. The linkage component is in contact connection with the fixing component.

7. A mobile artificial spray device for garden landscapes according to claim 6, wherein The fixing component includes a mounting frame body (510) provided on the vehicle body (100). The mounting frame body (510) includes vertical beams (511) provided on both sides of the vehicle body (100). A cross beam (512) is provided at the top of the two vertical beams (511). A hammering member is slidably connected between the two vertical beams (511). A pushing spring (520) is provided between the top of the hammering member and the cross beam (512). The linkage component is intermittently in contact connection with the hammering member. A rectangular groove (120) is provided on the vehicle body (100). A nail feeding component is provided on the vehicle body (100) below the rectangular groove (120).

8. A mobile artificial spray device for garden landscapes according to claim 7, characterized in that The hammering member includes a square frame (530) slidably connected between the two vertical beams (511). A pushing spring (520) is provided between the upper end of the square frame (530) and the cross beam (512). A hammering plate (540) is provided at the lower end of the square frame (530).

9. The mobile artificial spray device for garden landscape according to claim 8, characterized in that, The nail feeding assembly includes a nail storage box (550) arranged on the lower side of the rectangular groove (120). A nail pushing spring (551) is arranged in the nail storage box (550). One end of the nail pushing spring (551) is fixed on the end wall of the nail storage box (550), and the other end is connected with a nail pushing plate (552). A plurality of grooved nails (553) are arranged between the nail pushing plate (552) and the other side wall of the nail storage box (550).

10. A mobile artificial spray device for garden landscapes according to claim 8, characterized in that, The driving assembly includes a driving grooved pulley (710) arranged on the output shaft (610) and a driven grooved pulley (720) arranged on the winding and unwinding drum (320). A synchronous belt (730) is arranged between the driving grooved pulley (710) and the driven grooved pulley (720); The linkage assembly includes a touch disk (740) arranged on the output shaft (610). An adjustment groove (750) is arranged on the touch disk (740). An adjustment screw (760) is arranged in the adjustment groove (750). The adjustment screw (760) is fixedly connected with the touch disk (740) through a nut (770). It also includes a driven rod (780) arranged on the square frame (530). The driven rod (780) is perpendicular to the adjustment screw (760).

11. A mobile artificial spray device for garden landscape according to claim 8, characterized in that, The cleaning assembly includes a U-shaped cavity (560) fixed on the vehicle body (100). The U-shaped cavity (560) is communicated with the end of the water outlet pipe (800). A plurality of spray nozzles (561) are arranged on both the upper and lower sides in the U-shaped cavity (560). Valves are arranged at the end of the water outlet pipe (800) and at the interface pipe (810). An elastic clip (562) is arranged at the outer end of the U-shaped cavity (560).

12. A mobile artificial spray device for garden landscapes according to claim 8, characterized in that, The guiding and laying mechanism (400) includes a strip-shaped groove (410) opened on the vehicle body (100). A frustum-shaped guiding cavity (420) is arranged at the lower part of the vehicle body (100). The large-diameter end of the frustum-shaped guiding cavity (420) faces the strip-shaped groove (410), and the small-diameter end faces the nail storage box (550).

13. A mobile artificial spray device for garden landscapes according to any one of claims 1-12, characterized in that, A push handle (130) is also arranged on one side of the vehicle body (100).

Citation Information

Patent Citations

  • A mobile garden landscape artificial spraying equipment

    CN114453172B