Lawn mower and gardening tool

By designing the structure of the lawnmower's sensors, sensing unit, lever, and foot pedal, a convenient switching of the lawnmower's parking state was achieved, solving the problem of inconvenient operation and improving operational convenience and safety.

CN223666815UActive Publication Date: 2025-12-16GLOBE (JIANGSU) CO LTD
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Patent Information

Application Number
CN202423279506.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-12-16
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

Existing standing garden tools are inconvenient to operate when releasing and entering the parking state, and cannot meet the operational needs of operators.

Method used

Design a lawnmower comprising a frame, a walking mechanism, a sensor, a sensing unit, a lever, and a foot pedal. By changing the position of the foot pedal, the lever and the sensing unit move, thereby switching the sensor's state and facilitating entry and exit from the parking state.

Benefits of technology

The operation of switching the lawnmower to parking mode has been simplified, improving the convenience and safety of operation and ensuring that the lawnmower will not be accidentally deactivated in the event of bumps or accidental collisions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a mower and a gardening tool, and relates to the technical field of gardening tools. The mower comprises a rack, a walking mechanism, a first mounting part, a sensor, a sensing part, a pull rod and a pedal. The walking mechanism is arranged on the rack; the first mounting part and the rack are relatively fixed; the inductor is arranged on the first mounting part and has a first state, and the mower is in a parking state in the first state; the sensing part is rotationally connected with the first mounting part, the sensing part has a first position and a second position, and when the sensing part is located at the first position, the sensor is in a first state; the pull rod is rotationally connected with the sensing part to drive the sensing part to rotate relative to the first mounting part; the pedal is rotationally connected to the rack and movably connected with the end, away from the sensing part, of the pull rod. And the parking state of the mower can be entered and released by changing the position of the pedal plate, so that the parking state of the mower can be entered and released conveniently, and the operation convenience is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to garden tool technical field, concretely relates to a lawn mower and garden tool. BACKGROUND

[0002] The lawn is the whole green ground that is formed by the manual paving or the method of grass seed sowing, is the important component of the garden scenery, is also the activity place of rest, entertainment. The modern lawn has not limited to the garden, it is widely used in the factory, the football field, the golf course and so on the larger place, the pruning lawn needs to use the garden tool, such as lawn mower, grass beater etc.

[0003] The existing garden tool mainly includes hand-held type, saddle type, standing type etc., the existing standing type garden tool, the operation is inconvenient to remove and enter the parking state, cannot satisfy the operation need of the operator. UTILITY MODEL CONTENT

[0004] In view of the problems existing in the prior art, the utility model provides a lawn mower and garden tool to improve the problem that the existing garden tool is inconvenient to remove and enter the parking state.

[0005] To realize the above-mentioned purpose and other related purposes, the utility model provides a lawn mower in the first aspect, including frame, walking mechanism, first installation part, inductor, inductive part, pull rod and footboard. Walking mechanism is arranged on the frame, the first installation part is opposite fixed with the frame, inductor is arranged on the first installation part, the inductor has first state, when the first state, the lawn mower is the parking state, inductive part is rotatably connected with the first installation part, the inductive part has first position and second position, when the inductive part is in the first position, the inductor is the first state, pull rod is rotatably connected with the inductive part, to drive the inductive part and the first installation part relatively rotate, footboard is rotatably connected on the frame, the footboard is movably connected with the end of the pull rod away from the inductive part, to drive the pull rod to move when the footboard rotates.

[0006] In the utility model one exemplary embodiment, the lawn mower includes first elastic member, the first elastic member applies to the inductive part towards the force of the first position.

[0007] In the utility model one exemplary embodiment, the inductor is switch piece, when the inductive part presses the switch piece, the inductive part is the first position, when the inductive part is separated from the switch piece, the inductive part is the second position.

[0008] In the utility model one exemplary embodiment, the first installation part is close to the side of the inductive part and / or the inductive part is close to the side of the first installation part is provided with the buffer pad.

[0009] In an exemplary embodiment of the utility model, the footboard is provided with a connecting shaft; the pull rod is provided with a limiting slot, the connecting shaft is inserted into the limiting slot, the connecting shaft moves in the limiting slot, and the pull rod and the footboard can relatively rotate.

[0010] In an exemplary embodiment of the utility model, the inductive part comprises an inductive plate and a connecting part, the inductor induces the position of the inductive plate; the connecting part penetrates through the first mounting part and is rotationally connected with the pull rod.

[0011] In an exemplary embodiment of the utility model, the mower comprises a reset mechanism, the reset mechanism comprises a second mounting part and a reset member; the second mounting part is fixed with the rack; the reset member is arranged on the second mounting part, and the reset member applies a reset force to the footboard.

[0012] In an exemplary embodiment of the utility model, the second mounting part comprises a second mounting plate and a second mounting rack, the second mounting rack is arranged at one end of the second mounting plate away from the rotating shaft of the footboard; the bottom of the footboard is provided with a reinforcing plate, and the reinforcing plate is provided with an avoiding part adapted to the second mounting rack.

[0013] In an exemplary embodiment of the utility model, the second mounting plate is provided with a buffer part on the side close to the footboard; the reset mechanism comprises a guide rod, the reset member is a second elastic member, and the second elastic member is sleeved outside the guide rod.

[0014] The second aspect of the utility model provides a garden tool, which comprises a rack, a working part, a walking mechanism, a first mounting part, an inductor, an inductive part, a pull rod and a footboard.

[0015] In combination with the prior art, the utility model has the beneficial effects that:

[0016] The existing lawn mower enters the parking state and the contact parking state inconveniently. The lawn mower of the present application comprises a sensor, a sensing part, a pull rod and a foot pedal. When a person does not step on the foot pedal, the foot pedal is in the retracted position, the sensing part is in the first position, the sensor is in the first state, and the lawn mower is in the parking state. When the person stands on the foot pedal, the foot pedal moves from the retracted position to the working position, the pull rod is driven to move in the rotating process of the foot pedal, the sensing part is separated from the first position, the sensor is separated from the first state, and the lawn mower can be released from the parking state. The parking state entering and releasing of the lawn mower of the present application can be realized through the position transformation of the foot pedal, that is, when the person stands on the foot pedal, the lawn mower is released from the parking state, and when the foot pedal is reset to the retracted state, the lawn mower enters the parking state, so that the parking state entering and releasing of the lawn mower is convenient, and the operation convenience is improved. BRIEF DESCRIPTION OF DRAWINGS

[0017] In order to more clearly illustrate the technical scheme in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or the prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and those skilled in the art can also obtain other embodiments according to these drawings without any creative labor.

[0018] Figure 1 It is a three-dimensional structure schematic diagram of the lawn mower in an embodiment of the present application;

[0019] Figure 2 It is a structure schematic diagram of another angle in an embodiment of the lawn mower of the present application;

[0020] Figure 3 It is a partial structure schematic diagram of the foot pedal of the lawn mower in the working position;

[0021] Figure 4 It is a partial structure schematic diagram of another angle of the foot pedal of the lawn mower in the working position;

[0022] Figure 5 It is a partial structure schematic diagram of another angle of the foot pedal of the lawn mower in the working position;

[0023] Figure 6 It is a schematic diagram of the pull rod and the end of the limiting groove abutting in the lawn mower of the present application;

[0024] Figure 7 It is a schematic diagram of another angle of the pull rod and the end of the limiting groove abutting in the lawn mower of the present application;

[0025] Figure 8 It is a partial structure schematic diagram of the foot pedal of the lawn mower in the retracted position;

[0026] Figure 9 The mowing machine pedal folding position is a part structure another angle schematic view of the utility model;

[0027] Figure 10 The mowing machine pedal folding position is a part structure again angle schematic view of the utility model.

[0028] Element number explanation:

[0029] 100, rack;

[0030] 200, walking mechanism;

[0031] 300, first mounting portion;310, buffer pad;320, through area;330, first mounting base 330;

[0032] 400, inductor;

[0033] 500, sensing portion;510, sensing plate;520, connecting portion;

[0034] 600, pull rod;610, limiting slot;

[0035] 700, pedal;710, connecting shaft;720, reinforcing plate;721, avoiding portion;730, connecting support;740, through slot;

[0036] 800, first elastic member;

[0037] 900, reset mechanism;910, second mounting portion;911, second mounting plate;912, second mounting frame;913, buffer portion;920, reset member;921, guide rod. DETAILED DESCRIPTION

[0038] The implementation mode of the utility model is explained below through specific concrete examples, and other advantages and effects of the utility model can be easily understood by the person skilled in the art from the content disclosed in the specification. The utility model can also be implemented or applied through other different specific implementation modes, and each detail in the specification can be modified or changed based on different viewpoints and applications without departing from the spirit of the utility model. It should be noted that the following examples and features in the examples can be combined with each other without conflict. It should also be understood that the terms used in the utility model embodiments are for describing specific specific implementation schemes, not for limiting the protection scope of the utility model. The test method in the following examples is not specified, and is usually carried out according to conventional conditions or the conditions recommended by each manufacturer.

[0039] When the embodiments give numerical ranges, it should be understood that unless the present application indicates otherwise, each numerical range's two endpoints and any number between the two endpoints can be selected. Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs, and any method, device, material similar or equivalent to the method, device, material used in the embodiments of the present application can be used to realize the present application.

[0040] It should be understood that the terms such as "upper", "lower", "left", "right", "middle" and "one" cited in the specification are only for the convenience of clear description, and are not used to limit the scope of the present application. The change or adjustment of the relative relationship is also considered as the scope of the present application without substantial change of the technical content.

[0041] Please refer to Figures 1 to 10The utility model provides a first aspect provides a mower, including frame 100, running gear 200, first installation department 300, inductor 400, inductive part 500, pull rod 600 and footboard 700. Running gear 200 is installed on the frame 100, and running gear 200 is used to drive the mower to walk. First installation department 300 is opposite fixed with the frame 100, and first installation department 300 is used to provide the installation position for inductor 400. Inductor 400 is set up on first installation department 300, and inductor 400 has first state, and when first state, the mower is parking state, and inductor 400 enters different state according to the position of inductive part 500. Inductive part 500 is rotatably connected with first installation department 300, and inductive part 500 has first position and second position, and when inductive part 500 is in first position, inductor 400 is first state, in other words, when inductive part 500 is in first position, the mower is parking state. Pull rod 600 is rotatably connected with inductive part 500 to drive inductive part 500 to rotate relative to first installation department 300, and pull rod 600 drives inductive part 500 to move between first position and second position, so that the state of inductor 400 is switched. Footboard 700 is rotatably connected on the frame 100, and footboard 700 is movably connected with the end of pull rod 600 away from inductive part 500 to drive pull rod 600 to move when the footboard rotates, and then drive inductive part 500 to move, so that the state of inductor 400 is changed, and the mower enters or releases parking state. The utility model discloses a mower, through the change of footboard 700 position, realize inductor 400 state change, and then complete the switching of mower parking state, for example, when footboard 700 is in the state of being retracted, inductive part 500 is in first position, and inductor 400 is first state, and the mower is parking state, when the operator stands on footboard 700, footboard 700 rotates to working position, and inductive part 500 is away from first position, and inductor 400 is not first state, and the mower releases parking state, and the switching of parking state is automatically completed when the operator moves to footboard 700 or is away from footboard 700, and the operator does not need to operate alone, simplifies the operation process, and it is convenient for the operator to operate the mower.

[0042] In an embodiment, the first installation department 300 can be directly fixed with the frame 100 by bolt connection, welding or other methods, or indirectly fixed with the frame 100 by other connecting parts. The first installation department 300 can also be directly part of the frame 100. Preferably, the first installation department 300 is fixed on the frame 100 by bolt connection.

[0043] In an embodiment, the first mounting portion 300 is arranged at the bottom of the frame 100 near the foot pedal 700 to shorten the length of the pull rod 600, so as to facilitate the control of the moving precision of the sensing portion 500, thereby more accurately completing the switching of the parking state. Further, the first mounting portion 300 is arranged at the middle of the frame 100 in the left-right direction.

[0044] In an embodiment, the first mounting portion 300 is a plate-shaped first mounting portion 300, so as to facilitate the mounting of the inductor 400 and other structures on the first mounting portion 300.

[0045] Please refer to Figure 4 , Figure 7 and Figure 9 In an embodiment, the inductor 400 is a switch, when the sensing portion 500 presses the switch, the sensing portion 500 is in the first position, the switch is pressed by the sensing portion 500, the circuit of the walking system is in the disconnected state, thereby realizing the parking function. When the sensing portion 500 is separated from the switch, the sensing portion 500 is in the second position, the switch is released, the circuit of the walking system is in the connected state, thereby releasing the parking state. In another embodiment, the release of the parking state also requires other components in the circuit of the walking system of the mower to meet the conditions, such as the control switch arranged on the control handle, when the control switch and the switch meet the requirements at the same time, the mower releases the parking state, so as to improve the safety of the mower.

[0046] In another embodiment, the inductor 400 is a switch, when the sensing portion 500 presses the switch, the sensing portion 500 is in the second position, when the sensing portion 500 is separated from the switch, the sensing portion 500 is in the first position. In other words, when the sensing portion 500 presses the switch, the circuit of the walking system is in the connected state, thereby being in the non-parking state, when the sensing portion 500 is separated from the switch, the circuit of the walking system is in the first state, thereby the mower is in the parking state.

[0047] In another embodiment, the sensor 400 is a sensor, which can be a pressure sensor or the like, and the sensor 400 changes its state by identifying whether the sensing portion 500 is pressed against the sensing portion 500; the sensor can also be an infrared sensor or the like, and the sensor 400 changes its state by identifying the position between the sensing portion 500 and the sensor 400. The sensor can also be other sensors that can directly or indirectly identify the position change between the sensing portion 500 and the sensor 400. The first state of the sensor 400 can be that the sensing portion 500 is pressed against the sensor 400 or that the sensing portion 500 is separated from the sensor 400, and the sensor 400 is in the first state when the footrest 700 is in the stowed state. When the first state of the sensor 400 is that the sensing portion 500 is separated from the sensor 400, the footrest 700 is rotated from the stowed state to the working state, and the pull rod 600 drives the sensing portion 500 to be separated from the sensor 400.

[0048] Referring to Figure 3 In an embodiment, the first mounting portion 300 is provided with a through hole, and the sensor 400 is mounted in the through hole. The through hole accommodates the cable of the sensor 400 to pass through, thereby facilitating the connection of the sensor 400 with the circuit of the walking system. The sensor 400 can be fixed on the first mounting portion 300 by screw connection, gluing or the like.

[0049] In another embodiment, the through hole can accommodate the pressing or sensing structure of the sensor 400 to pass through, so as to mount the sensor 400 on the side of the first mounting portion 300 away from the sensing portion 500, thereby facilitating the installation of the sensor 400.

[0050] Referring to Figure 4 In an embodiment, the sensing portion 500 includes a sensing plate 510 and a connecting portion 520. The sensor 400 senses the position of the sensing plate 510. For example, when the sensor 400 is a switch, the sensing plate 510 is pressed against the switch to make the switch in the first state, and the sensing plate 510 is separated from the switch to make the switch in a state other than the first state.

[0051] In an embodiment, in order to protect the sensor 400, the sensor 400 is mounted on the side of the first mounting portion 300 away from the footrest 700, thereby avoiding damage to the sensor 400 when the footrest 700 is rotated or an operator stands on the footrest 700. The first mounting portion 300 is provided with a through region 320, and the connecting portion 520 is rotatably connected with the pull rod 600 after penetrating through the first mounting portion 300. The connecting portion 520 penetrates through the first mounting portion 300 through the through region 320, thereby realizing the connection of the footrest 700 with the connecting portion 520 through the pull rod 600.

[0052] Referring to Figure 3 and Figure 6In an embodiment, when the foot pedal 700 is in the stowed position, the connecting portion 520 is abutted against the wall of the through portion 320, and the through portion 320 limits the rotation of the connecting portion 520 to prevent the inductive plate 510 from being excessively rotated by the connecting portion 520 to cause the inductor 400 to be damaged.

[0053] In another embodiment, the connecting portion 520 is connected to the pull rod 600 after the pull rod 600 passes through the first mounting portion 300, so that the foot pedal 700 is connected to the connecting portion 520 through the pull rod 600.

[0054] Please refer to Figure 5 In an embodiment, the mower comprises a first elastic member 800, which applies a force to the inductive portion 500 towards the first position, so that the inductive portion 500 is located at the first position, that is, when the inductive portion 500 is subjected to an external force smaller than the force applied by the first elastic member 800, the inductive portion 500 will remain at the first position. By providing the first elastic member 800, the inductive portion 500 is kept at the first position, thereby reducing the occurrence of the inductive portion 500 deviating from the first position under conditions such as jolting, accidental contact, etc., reducing the occurrence of the mower being mistakenly removed from the parking state, and improving the safety of the mower.

[0055] Please refer to Figure 5 In an embodiment, the first mounting portion 300 is provided with a first mounting base 330, and a first pin shaft is rotatably connected to the first mounting base 330. The inductive portion 500 is rotatably connected to the first mounting portion 300 by the first pin shaft passing through the inductive plate 510 or the connecting portion 520.

[0056] Further, the side of the inductive plate 510 away from the first mounting portion 300 is provided with a second mounting base, and the second mounting base is provided with a through hole, and the first pin shaft passes through the through hole to rotatably connect the inductive plate 510 to the first mounting portion 300.

[0057] Please refer to Figure 5 In an embodiment, the first elastic member 800 is a torsion spring, which is sleeved on the first pin shaft to apply a force to the inductive plate 510 to rotate towards the first position, so that the inductive plate 510 is kept at the first position, such as being kept abutted against the inductor 400.

[0058] Further, the side of the first mounting base 330 away from the first mounting portion 300 is provided with an abutment portion, and the two arms of the torsion spring are respectively abutted against the abutment portion and the inductive plate 510, thereby applying a force to the inductive plate 510 to rotate towards the first position, so that the inductive plate 510 is abutted against the inductor 400, thereby keeping the mower in the parking state.

[0059] In an embodiment, the first mounting portion 300 is provided with a buffer pad 310 near one side of the sensing portion 500, and when the sensing portion 500 is in the first position, the sensing portion 500 is pressed against the buffer pad 310. When the footrest 700 is rotated to the stowed position, the sensing portion 500 is rotated to the sensor 400 under the action of the first elastic member 800, and the buffer pad 310 can reduce the impact on the sensor 400, thereby prolonging the service life of the sensor 400. At the same time, the buffer pad 310 can also limit the position of the sensing portion 500, reduce the over-pressing of the sensing portion 500 on the sensor 400, and prevent the sensor 400 from being damaged. The buffer pad 310 can be a rubber part, a silica gel part, a plastic part, etc., or a spring or other elastic part to reduce the impact on the sensor 400 and limit the position of the sensing portion 500.

[0060] Please refer to Figure 4 In another embodiment, the buffer pad 310 is arranged on the side of the sensing portion 500 close to the first mounting portion 300 to provide buffering for the sensing portion 500 and the first mounting portion 300.

[0061] In an embodiment, the side of the sensing portion 500 close to the first mounting portion 300 and the side of the first mounting portion 300 close to the sensing portion 500 are both provided with a buffer pad 310 to provide buffering for the sensing portion 500.

[0062] Please refer to Figure 4 、 Figure 7 In an embodiment, the pull rod 600 is rotationally connected with the sensing portion 500, and the pull rod 600 is rotationally connected with the sensing portion 500 through a second pin shaft. Preferably, the pull rod 600 is rotationally connected with the connecting portion 520 through the second pin shaft. In another embodiment, the second pin shaft is fixed with the sensing portion 500, and the second pin shaft is rotationally connected with the pull rod 600 after penetrating through the pull rod 600. In other embodiments, the second pin shaft is fixed with the pull rod 600, and the second pin shaft is rotationally connected with the sensing portion 500 after penetrating through the sensing portion 500. The pull rod 600 and the sensing portion 500 can also be rotationally connected through other existing ways, which will not be described herein.

[0063] Please refer to Figure 4 、 Figure 7 and Figure 9In an embodiment, the foot pedal 700 is provided with a connecting shaft 710, the pull rod 600 is provided with a limiting slot 610, the connecting shaft 710 is inserted into the limiting slot 610, the connecting shaft 710 moves in the limiting slot 610, and the pull rod 600 and the foot pedal 700 can rotate relative to each other. When the foot pedal 700 is in the stowed state, the connecting shaft 710 does not abut against the end of the limiting slot 610, in other words, the connecting shaft 710 is away from the end of the limiting slot 610 away from the sensing portion 500 by a certain distance. When the foot pedal 700 rotates, the connecting shaft 710 moves along the limiting slot 610, and when the connecting shaft 710 moves to the end of the limiting slot 610 away from the sensing portion 500, the foot pedal 700 continues to rotate, and the connecting shaft 710 abuts against the end of the limiting slot 610 to drive the pull rod 600 to move. The rotation axis of the pull rod 600 and the sensing portion 500 is a first rotation axis, the rotation axis of the sensing portion 500 and the first mounting portion 300 is a second rotation axis, the first rotation axis and the second rotation axis are not collinear, and when the connecting shaft 710 drives the pull rod 600 to move, the pull rod 600 drives the sensing portion 500 to rotate relative to the first mounting portion 300 around the second rotation axis, so that the sensing portion 500 is disengaged from the first position, the sensor 400 is in a non-first state, and the parking state is released. By providing the limiting slot 610, a buffer amount is provided for the rotation of the foot pedal 700, so that the sensing portion 500 is not disengaged from the first position due to slight rotation of the foot pedal 700, thereby reducing the occurrence of the parking state being released due to bumps, accidental touches, and the like.

[0064] Please refer to Figure 9 In an embodiment, when the foot pedal 700 is in the stowed state, the connecting shaft 710 does not abut against the end of the limiting slot 610 close to the sensing portion 500. On the one hand, the weight of the pull rod 600 can be reduced, and on the other hand, the sensing portion 500 is prevented from being easily over-rotated when the foot pedal 700 is in the stowed state due to machining precision and the like, so that the sensor 400 is damaged.

[0065] In another embodiment, when the foot pedal 700 is in the stowed state, the connecting shaft 710 abuts against the end of the limiting slot 610 close to the sensing portion 500. The stowed position of the foot pedal 700 is limited by the limiting slot 610 and the connecting shaft 710, so that the foot pedal 700 is prevented from continuously rotating away from the working position from the stowed position. At this time, the stowed position of the foot pedal 700 and the first position of the sensing portion 500 can be limited by the connecting portion 520 abutting against the through wall.

[0066] In an embodiment, the pull rod 600 is relatively rotatable with the foot pedal 700 to ensure that the foot pedal 700 and the pull rod 600 can relatively rotate. In another embodiment, the pull rod 600 is a cylindrical rod which can rotate in the limiting groove 610 to realize the relative rotation of the pull rod 600 and the foot pedal 700. The cylindrical rod can be relatively rotatable with the foot pedal 700 or relatively fixed with the foot pedal 700, which is selected according to actual needs.

[0067] Referring to Figure 6 In an embodiment, the foot pedal 700 is provided with a connecting bracket 730 on a side close to the pull rod 600, the connecting bracket 730 is fixed with the foot pedal 700, and the fixing mode includes but is not limited to integral molding, welding, and bolt connection. The connecting shaft 710 is arranged at an end of the connecting bracket 730 away from the foot pedal 700, and the connecting bracket 730 increases the distance between the pull rod 600 and the foot pedal 700 to enable the pull rod 600 and the foot pedal 700 to rotate and move.

[0068] Referring to Figure 6 In an embodiment, the foot pedal 700 is provided with a through groove 740 arranged on a path of relative movement of the pull rod 600 and the foot pedal 700 to enable the pull rod 600 to pass through the foot pedal 700 when the pull rod 600 and the foot pedal 700 relatively move, thereby avoiding the case that the pull rod 600 is pressed against the foot pedal 700 to limit the relative movement of the pull rod 600 and the foot pedal 700, and effectively ensuring that the pull rod 600 and the foot pedal 700 can relatively move. It should be noted that the relative movement of the pull rod 600 and the foot pedal 700 includes relative movement and relative rotation.

[0069] Referring to Figure 7 In an embodiment, the mower includes a reset mechanism 900 which applies a force to the foot pedal 700 to rotate to the stowed position to enable the foot pedal 700 to rotate to the stowed position when the operator is away from the foot pedal 700, and then enable the sensing part 500 to move to the first position and the mower to enter the parking state.

[0070] Referring to Figure 7 The reset mechanism 900 includes a second mounting part 910 and a reset part 920, the second mounting part 910 is fixed with the frame 100, and the reset part 920 is arranged on the second mounting part 910. The reset part 920 applies a reset force to the foot pedal 700 to enable the foot pedal 700 to rotate to the stowed position when the operator is away from the foot pedal 700 or the foot pedal 700 is subjected to an external force to reduce the force, and then enable the mower to enter the parking state. For example, when the operator falls off the mower, the mower immediately enters the parking state to ensure driving safety.

[0071] Referring toFigure 2 And 4 In an embodiment, the second mounting portion 910 comprises a second mounting plate 911 and a second mounting bracket 912, the second mounting bracket 912 is arranged at one end of the second mounting plate 911 away from the rotating shaft of the foot pedal 700, the second mounting bracket 912 can improve the bearing capacity of the second mounting plate 911, and the second mounting bracket 912 can also bear the foot pedal 700, thereby limiting and bearing the foot pedal 700.

[0072] Please refer to Figure 10 In an embodiment, the bottom of the foot pedal 700 is provided with a reinforcing plate 720, which improves the bearing strength of the foot pedal 700 and ensures the safety of the operator stepping on the foot pedal 700.

[0073] Please refer to Figure 10 Further, the reinforcing plate 720 is in a frame shape, and the reinforcing plate 720 is arranged perpendicularly to the foot pedal 700 to increase the bearing capacity of the reinforcing plate 720 to the foot pedal 700.

[0074] Please refer to Figure 10 In an embodiment, the reinforcing plate 720 is provided with a avoiding portion 721 adapted to the second mounting bracket 912, so as to increase the contact area of the reinforcing plate 720 and the second mounting bracket 912 and reduce the wear of the reinforcing plate 720 and the second mounting bracket 912. Further, the second mounting bracket 912 is in a tubular structure, and the avoiding portion 721 is in an arc structure adapted to the outer wall of the tubular structure.

[0075] Please refer to Figure 2 And Figure 7 In an embodiment, the second mounting plate 911 is provided with a buffer portion 913 on the side close to the foot pedal 700, so as to provide a buffer for the foot pedal 700 when the foot pedal 700 rotates to the working position, thereby reducing the impact force on the limiting structure of the foot pedal 700, such as the impact force between the second mounting bracket 912 and the foot pedal 700 or the impact force on the limiting structure at the rotating shaft of the foot pedal 700. The buffer portion 913 can be a rubber buffer portion 913, a plastic buffer portion 913, etc. In an embodiment, the buffer portion 913 is an annular buffer portion 913, and the axis of the annular buffer portion 913 is parallel to the foot pedal 700, so as to provide a buffer for the foot pedal 700 through the extrusion deformation of the annular buffer portion 913.

[0076] In an embodiment, the buffer portion 913 is a damper, which provides a movement resistance and consumes movement energy, thereby reducing the impact of the foot pedal 700 and controlling the vibration of the foot pedal 700, and improving the comfort of the operator stepping on the foot pedal 700.

[0077] Please refer to Figure 7In an embodiment, the reset mechanism 900 comprises a guide rod 921 fixed on the second mounting plate 911, the reset member 920 is a second elastic member, such as a spring, the second elastic member is sleeved outside the guide rod 921, the guide rod 921 provides a limit for the second elastic member, limits the compression and stretching direction of the second elastic member, and ensures the realization of the action of the reset mechanism 900 on the foot pedal 700.

[0078] The mower also comprises a mowing part, a power source and other components, please refer to the existing mower, which will not be described here.

[0079] In an embodiment, the foot pedal 700 of the mower has a stowed position and a working position, when in the stowed position, as shown in Figures 8 to 10 , the foot pedal 700 is stowed, the sensing part 500 is in the first position, the sensing part 500 abuts against the inductor 400, the inductor 400 is in the first state, and the mower is in the parking state; when the operator moves towards the foot pedal 700, the foot pedal 700 rotates, the connecting shaft 710 moves along the limiting groove 610, and in the movement process of the connecting shaft 710, the pull rod 600 can rotate with the movement of the connecting shaft 710 or can not rotate with the movement of the connecting shaft 710, whether the pull rod 600 rotates or not is determined by the position of the rotating shaft of the pull rod 600 and the sensing part 500, the position of the connecting shaft 710 and the position and shape of the limiting groove 610. Before the foot pedal 700 moves to the position shown in Figure 7 , that is, before the pull rod 600 abuts against the end of the limiting groove 610 away from the sensing part 500, the pull rod 600 does not move linearly relative to the sensing part 500, in other words, the position of the rotating shaft of the pull rod 600 and the sensing part 500 does not change, the sensing part 500 is always in the first position, and the mower is in the parking state. By setting the limiting groove 610, on the one hand, it can prevent the mower from being in the unparking state due to the slight rotation of the foot pedal 700 caused by bumps and the like, and on the other hand, when the foot pedal 700 is not rotated to the appropriate angle, the mower is always in the parking state, thereby effectively ensuring the safety of the operator and reducing the occurrence of the situation that the mower is in the unparking state due to the operator stepping unsteadily. When the foot pedal 700 continues to rotate, the connecting shaft 710 abuts against the end wall of the limiting groove 610 away from the sensing part 500, causing the pull rod 600 to move, and then the pull rod 600 drives the sensing part 500 to rotate, until the foot pedal 700 is rotated to the working position, as shown in Figure 4 and Figure 5 , the sensing part 500 is moved from the first position to the second position, the inductor 400 is in a state other than the first state, and the mower is in the unparking state.

[0080] The lawn mower of the application realizes the entering and releasing of the parking state through the rotation of the footboard 700, effectively improves the convenience of the operator operation, and improves the safety of the lawn mower driving.

[0081] The second aspect of the utility model provides a garden tool, including frame, work part, walking mechanism, first installation part, inductor, inductive part, pull rod and footboard. The work part is arranged on the frame; the walking mechanism is arranged on the frame; the first installation part is fixedly connected with the frame; the inductor is arranged on the first installation part, and the inductor has a first state, and the garden tool is in the parking state when the inductor is in the first state; the inductive part is rotationally connected with the first installation part, and the inductive part has a first position and a second position, and the inductive part is in the first position, and the inductor is in the first state; the pull rod is rotationally connected with the inductive part to drive the inductive part to rotate relative to the first installation part; the footboard is rotationally connected with the frame, and the footboard is movably connected with one end of the pull rod away from the inductive part to drive the pull rod to move when the footboard rotates. The garden tool further comprises other components, please refer to the existing garden tool, and the application will not be repeated here.

[0082] The utility model provides a lawn mower and garden work, inductive part keeps in first position, inductor is in first state, machine is in parking state, when the operator stands on the footboard, the footboard is rotated to working position from the retracted position, drives inductive part to separate from first position, inductor separates from first state, machine releases parking state, the operation of entering and releasing parking state is more convenient, and it is convenient for the operator to operate, through reset mechanism, when the operator separates from the footboard, the footboard can rotate to the retracted position, and then the machine enters the parking state, effectively improve the driving safety.

[0083] The above embodiments only exemplarily illustrate the principles and effects of the present application, and are not used to limit the present application. Any person skilled in the art can modify or change the above embodiments without departing from the spirit and scope of the present application. Therefore, all equivalent modifications or changes completed by those skilled in the art without departing from the spirit and technical thought disclosed by the present application should be covered by the claims of the present application.

Claims

1. A lawnmower characterised in that, The lawn mower comprises a frame, a walking mechanism arranged on the frame, a first mounting portion fixed relative to the frame, a sensor arranged on the first mounting portion, the sensor having a first state, the first state being a parking state of the lawn mower, a sensing portion rotatably connected to the first mounting portion, the sensing portion having a first position and a second position, the sensing portion being in the first position when the sensor is in the first state, a pull rod rotatably connected to the sensing portion to drive the sensing portion to rotate relative to the first mounting portion, and a foot pedal rotatably connected to the frame, the foot pedal being movably connected to an end of the pull rod away from the sensing portion to drive the pull rod to move when the foot pedal rotates. The first elastic member applies a force to the sensing portion towards the first position. The sensor is a switch, the sensing portion is in the first position when the sensing portion presses the switch, and the sensing portion is in the second position when the sensing portion is separated from the switch. The first mounting portion and / or the sensing portion close to the first mounting portion is provided with a buffer pad. The foot pedal is provided with a connecting shaft, the pull rod is provided with a limiting groove, the connecting shaft is inserted into the limiting groove, the connecting shaft moves in the limiting groove, and the pull rod and the foot pedal can rotate relative to each other. The sensing portion comprises a sensing plate and a connecting portion, the sensor senses the position of the sensing plate, and the connecting portion is rotatably connected to the pull rod after penetrating through the first mounting portion. The reset mechanism comprises a second mounting portion fixed to the frame and a reset member arranged on the second mounting portion, the reset member applying a force to reset the foot pedal. The second mounting portion comprises a second mounting plate and a second mounting frame arranged at an end of the second mounting plate away from the rotation shaft of the foot pedal.

2. The lawnmower as claimed in claim 1, characterized in that The bottom of the foot pedal is provided with a reinforcing plate, and the reinforcing plate is provided with an avoiding portion adapted to the second mounting frame. The second mounting plate close to the foot pedal is provided with a buffer portion.

3. The lawnmower as claimed in claim 1, characterized in that The reset mechanism comprises a guide rod, and the reset member is a second elastic member, the second elastic member being sleeved outside the guide rod.

4. The lawnmower as claimed in claim 3, characterized in that The lawn tool comprises a frame, a working portion arranged on the frame, a walking mechanism arranged on the frame, a first mounting portion fixed relative to the frame, a sensor arranged on the first mounting portion, the sensor having a first state, the first state being a parking state of the lawn tool, a sensing portion rotatably connected to the first mounting portion, the sensing portion having a first position and a second position, the sensing portion being in the first position when the sensor is in the first state, a pull rod rotatably connected to the sensing portion to drive the sensing portion to rotate relative to the first mounting portion, and a foot pedal rotatably connected to the frame, the foot pedal being movably connected to an end of the pull rod away from the sensing portion to drive the pull rod to move when the foot pedal rotates.

5. The mower of claim 1, wherein, ​ 6. The mower of claim 1, wherein, ​ 7. The mower of claim 1, wherein, ​ ​ ​ 8. The lawnmower of claim 7, wherein, ​ ​ 9. The lawnmower of claim 8, wherein, ​ ​ 10. A garden tool, characterized in that ​ ​ ​ ​ ​ ​ ​ ​ ​