CN216492159U - Foldable garden tool - Google Patents

Foldable garden tool Download PDF

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Publication number
CN216492159U
CN216492159U CN202122983358.9U CN202122983358U CN216492159U CN 216492159 U CN216492159 U CN 216492159U CN 202122983358 U CN202122983358 U CN 202122983358U CN 216492159 U CN216492159 U CN 216492159U
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rod
assembly
limiting
foldable
rod body
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CN202122983358.9U
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Chinese (zh)
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曹跃逊
高乃新
王涛
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Globe Jiangsu Co Ltd
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Globe Jiangsu Co Ltd
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Abstract

The utility model provides a foldable garden tool, belongs to the technical field of garden tools, and solves the problem that the existing garden tool occupies too large space during transportation and storage. The folding garden tool of the present invention comprises: the first rod body, the second rod body and the foldable rod body connecting structure. Wherein, the first body of rod is connected through collapsible body of rod connection structure with the second body of rod, and collapsible body of rod connection structure includes: first body of rod subassembly, second body of rod subassembly and locking structure. The first rod body component is provided with a first limiting piece; the second rod body component is rotationally connected to the first rod body component and is provided with a second limiting piece; the locking structure can be matched with the first limiting part and the second limiting part to relatively lock the first rod body assembly and the second rod body assembly; and the first rod body component and the second rod body component can rotate relatively. The utility model realizes the quick switching between the work state and the folding state of the garden tool.

Description

Foldable garden tool
Technical Field
The utility model relates to the technical field of garden tools, in particular to a foldable garden tool.
Background
With the development of economy, many parks and greenbelts are built in cities and towns, the fruit tree planting and garden cultivation need trimming and pruning, and the market demand is large. The traditional pruning tool is heavier and labor-consuming to operate, and various high-rod type garden tools are available for the reason so as to be suitable for pruning parks and grassland greenbelts.
And for complying with customer's demand, the more and more length that do of the garden instrument of the high pole type on the market to in repair the branch of eminence, but brought other puzzlement in the time, the overlength body of rod has taken too big space, makes garden instrument very inconvenient when the collection is stored up. It is known that garden tools with rods on the market also adopt some folding structures to solve the problems, but most of the adopted structures need external tools for locking and unlocking, which brings certain inconvenience to users. It is therefore desirable to design a foldable garden tool to solve the above problems.
SUMMERY OF THE UTILITY MODEL
In view of the above disadvantages of the prior art, the present invention provides a foldable garden tool, which realizes effective switching between unfolding and folding of a pole body on the garden tool by arranging a pole body connection structure capable of locking and unlocking rotation on the pole body, so as to solve the problem that the existing high-pole garden tool occupies too much space during transportation and storage due to an excessively long pole body.
To achieve the above and other related objects, the present invention provides a folding garden tool, comprising: the first rod body, the second rod body and the foldable rod body connecting structure.
Wherein, be provided with the energy subassembly on the first body of rod, be provided with the work portion on the second body of rod, the first body of rod is connected through collapsible body of rod connection structure with the second body of rod, and collapsible body of rod connection structure includes: first body of rod subassembly, second body of rod subassembly and locking structure. One end of the first rod body component is provided with a first limiting piece; the second rod body component is rotatably connected to one end of the first rod body component, which is provided with the first limiting piece, and one end of the second rod body component, which faces the first rod body component, is provided with the second limiting piece; the locking structure is arranged on the first rod body assembly or the second rod body assembly, a limiting structure is arranged on the locking structure, and when the locking structure is in a locking state, the limiting structure is respectively matched with the first limiting part and the second limiting part to relatively lock the first rod body assembly and the second rod body assembly; when the locking structure is in the unlocking state, the limiting structure is separated from the first limiting part and the second limiting part, and the first rod body assembly and the second rod body assembly rotate relatively.
In an example of the present invention, the second rod assembly is provided with a first rotating shaft at an end close to the first rod assembly, and the first rod assembly is mounted on the first rotating shaft in a penetrating manner; the second rod body assembly is provided with rotating shells on two sides of the first rotating shaft, the first rod body assembly is provided with a sleeve at one end close to the second rod body assembly, and the sleeve and the first rotating shaft are coaxially arranged and are clamped between the rotating shells on two sides of the first rotating shaft.
In an example of the present invention, the first rod assembly is provided with a first fixed cylinder on a side away from the second rod assembly, the second rod assembly is provided with a second fixed cylinder on a side away from the first rod assembly, the size of the first fixed cylinder and the size of the second fixed cylinder match the size of the rod to be connected, and the rod is fixed in the first fixed cylinder and/or the second fixed cylinder.
In an example of the present invention, a wire is provided in the foldable gardening tool, the wire is connected to the working part from one end of the power source assembly through the foldable rod connecting structure, and the wire extends from the first rod assembly to the second rod assembly through a gap between the first rotating shaft and the sleeve inside the foldable rod connecting structure.
In an example of the present invention, the rotation angle X between the second lever assembly and the first lever assembly ranges from 0 ° to 180 °.
In an example of the present invention, the locking structure is disposed on the first rod assembly, the locking structure includes an insert shaft, a second rotating shaft, a driving member, and a limiting structure, the insert shaft is disposed on the first limiting member, the first rod assembly is disposed with side lugs on two sides of the insert shaft, the limiting structure is sleeved on the insert shaft, the driving member is disposed on the insert shaft and located on one side of the limiting structure, and the driving member is rotatably connected to the insert shaft and the side lugs through the second rotating shaft.
In an example of the present invention, the first position-limiting member is provided with an insert groove that matches with the insert shaft, the insert groove extends in a direction perpendicular to a surface of the first position-limiting member, and the insert shaft is disposed in the insert groove.
In one example of the utility model, the driving piece is provided with a pressing part and a wrench, the pressing part is provided with a cam cambered surface and a flat wheel cambered surface, and the wrench extends out of the pressing part.
In an example of the present invention, the driving member rotates around the second rotating shaft and abuts against the limiting structure, and when the driving member rotates until the cam arc surface contacts with the limiting structure, the cam arc surface extrudes the limiting structure to be closely attached to the first limiting member and the second limiting member; when the driving piece rotates to the state that the flat wheel cambered surface is contacted with the limiting structure, the limiting structure is separated from the contact with the first limiting piece and the second limiting piece.
In one example of the utility model, the working portion is a saw head.
According to the foldable garden tool, the first rod body and the second rod body are connected by the rod body connecting structure capable of locking and unlocking to rotate, which is arranged between the first rod body and the second rod body, so that the foldable garden tool can maintain a stable unfolded or folded state, for example, when in work, the first rod body and the second rod body maintain the unfolded state by locking and rotating, and the working length is ensured; or the unblock is rotated when transportation storage and is made first body of rod and second body of rod fold, is convenient for reduce and takes up an area of the space. Therefore, the foldable garden tool can realize the quick switching between the working state and the folded state without the assistance of an external tool, and has the advantages of reliable joint, simple structure, easy manufacture, low cost, safe working and long service life; and the advantages of light weight, small overall dimension, convenient adjustment and maintenance, and the like. Therefore, the utility model effectively overcomes some practical problems in the prior art, thereby having high utilization value and use significance.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.
Fig. 1 is a schematic view illustrating an operating state of a foldable gardening tool according to an embodiment of the present invention.
Fig. 2 is a schematic view illustrating a folded state of the foldable gardening tool according to an embodiment of the present invention.
Fig. 3 is a schematic structural view of a conventional high-pole garden tool according to an embodiment of the present invention.
Fig. 4 is an exploded view of a foldable pole coupling structure in the foldable garden tool according to an embodiment of the present invention.
Fig. 5 is a three-dimensional view illustrating the operation of the foldable rod connecting structure in the foldable gardening tool according to one embodiment of the present invention.
Fig. 6 is a side sectional view illustrating the operation of the foldable rod coupling structure in the foldable gardening tool according to an embodiment of the present invention.
Fig. 7 is an exploded view of a locking tool of the folding garden tool according to an embodiment of the present invention.
Fig. 8 is a three-dimensional view of a foldable pole connecting structure in a foldable gardening tool in an unlocked state according to an embodiment of the present invention.
Fig. 9 is a side sectional view of the foldable stick connecting structure in the foldable gardening tool in an unlocked state according to an embodiment of the present invention.
Fig. 10 is a partially enlarged view of the area of fig. 9A in the foldable gardening tool according to an embodiment of the present invention.
Fig. 11 is a three-dimensional view illustrating a foldable rod connecting structure in a locked state in the foldable gardening tool according to an embodiment of the present invention.
Fig. 12 is a side sectional view illustrating the foldable rod coupling structure in a locked state in the foldable garden tool according to an embodiment of the present invention.
Fig. 13 is a partially enlarged view of the area of fig. 12B in the foldable garden tool according to the embodiment of the present invention.
Fig. 14 is a schematic structural view illustrating a driving member of the foldable gardening tool according to an embodiment of the present invention.
Description of the element reference numerals
100. A first rod body; 110. a handle; 200. a second rod body; 210. a working part; 300. a foldable rod body connecting structure; 310. a first rod assembly; 311. a first limit piece; 3111. an insert groove; 3112. a lateral ear; 3113. a second through hole; 312. a first fixed cylinder; 313. a sleeve; 320. a second rod assembly; 321. A second limiting member; 322. a second fixed cylinder; 323. a first rotating shaft; 324. rotating the housing; 330. a locking structure; 331. an insert shaft; 3311. a first through hole; 332. a limiting structure; 3321. a third through hole; 333. A drive member; 3331. a fourth via hole; 3332. a cam arc surface; 3333. a flat wheel arc surface; 3334. a wrench; 334. a second rotating shaft; 3341. a limiting hole; 3342. a cotter pin; 400. an electric wire; 500. existing high-rod garden tools; 510. a rod body.
Detailed Description
The embodiments of the present invention are described below with reference to specific embodiments, and other advantages and effects of the present invention will be easily understood by those skilled in the art from the disclosure of the present specification. The utility model is capable of other and different embodiments and of being practiced or of being carried out in various ways, and its several details are capable of modification in various respects, all without departing from the spirit and scope of the present invention. It is to be noted that the features in the following embodiments and examples may be combined with each other without conflict. It is also to be understood that the terminology used in the examples is for the purpose of describing particular embodiments only, and is not intended to limit the scope of the present invention. Test methods in which specific conditions are not specified in the following examples are generally carried out under conventional conditions or under conditions recommended by the respective manufacturers.
It should be understood that the terms "upper", "lower", "left", "right", "middle" and "one" used herein are for clarity of description only, and are not intended to limit the scope of the utility model, and that changes or modifications in the relative relationship may be made without substantial technical changes and modifications.
Referring to fig. 1 to 3, the present invention provides a foldable garden tool, which is capable of effectively switching between unfolding and folding rods of the garden tool by providing a rod connecting structure capable of locking and unlocking the rod connecting structure, so as to solve the problem that the existing high-rod garden tool 500 occupies too large space during transportation and storage due to the overlong rod 510.
Referring to fig. 1 and 2, the foldable garden tool includes a first stick 100 and a second stick 200, the first stick 100 is provided with a handle 110 at an end portion facing away from the second stick 200, the second stick 200 is provided with a working portion 210 at an end portion facing away from the first stick 100, and the first stick 100 and the second stick 200 are connected by a foldable stick connection structure 300. The foldable pole connecting structure 300 is configured to be rotated by locking and unlocking the first and second poles 100 and 200 fixed to both sides of the foldable pole connecting structure 300 to switch the working and folded states of the foldable garden tool.
As shown in fig. 1 and 2, when the foldable garden tool is in an operating state, the first and second poles 100 and 200 at both sides of the foldable pole connecting structure 300 are completely unfolded, and the foldable pole connecting structure 300 maintains the first and second poles 100 and 200 in the same linear direction by locking the rotation between the first and second poles 100 and 200. When the user uses the foldable garden tool in the working state, the user can cut the target by holding the handle 110 of the first stick 100 and extending the working portion 210 of the second stick 200 to the target to be cut. When foldable garden instrument is in fold condition, rotation between the first body of rod 100 of collapsible body of rod connection structure 300 unblock and the second body of rod 200, and the second body of rod 200 can rotate around the first body of rod 100 of axis 500 relatively to rotate to the position of coinciding mutually with first body of rod 100, the foldable garden instrument under fold condition has effectively reduced the holistic length of instrument, so that the transportation, the packing and the depositing of foldable garden instrument.
Referring to fig. 4 to 6, the foldable rod connecting structure 300 may include a first rod assembly 310, a second rod assembly 320 and a locking structure 330. The first rod assembly 310 is provided with a first stopper 311 at an end facing the second rod assembly 320, and a first fixing cylinder 312 at an end facing away from the second rod assembly 320, wherein the size of the first fixing cylinder 312 is matched with the size of the first rod 100, and the first rod 100 can be fixed in the first fixing cylinder 312; the second rod assembly 320 is rotatably connected to the first rod assembly 310, a second limiting member 321 is disposed at an end of the second rod assembly 320 facing the first rod assembly 310, a second fixing cylinder 322 is disposed at an end of the second rod assembly 320 facing away from the first rod assembly 310, a size of the second fixing cylinder 322 matches a size of the second rod 200, and the second rod 200 can be fixed in the second fixing cylinder 322. In addition, when the foldable garden tool is in the working state and the first rod 100 and the second rod 200 are unfolded, the rotation angle X between the first rod assembly 310 and the second rod assembly 320 is 180 °, and the first limiting member 311 on the first rod assembly 310 and the second limiting member 321 on the second rod assembly 320 are disposed opposite to each other.
Referring to fig. 4 and 6, the locking structure 330 is disposed on the first rod assembly 310 or the second rod assembly 320, the locking structure 330 is disposed with a limiting structure 332, and the limiting structure 332 is aligned with the first limiting part 311 and the second limiting part 321 when the first rod assembly 310 and the second rod assembly 320 are unfolded (i.e. when the rotation angle between the first rod assembly 310 and the second rod assembly 320 is 180 °). The locking structure 330 is provided with a driving member 333 for driving the limiting structure 332 to approach the first limiting member 311 and the second limiting member 321 which are oppositely disposed. When the locking structure 330 is in a locked state, the driving member 333 drives the limiting structure 332 to abut against the first limiting member 311 and the second limiting member 321 and to cooperate with the first limiting member 311 and the second limiting member 321, respectively, so as to lock the first rod assembly 310 and the second rod assembly 320 relatively, so that the first rod assembly 310 and the second rod assembly 320 are fixed and cannot rotate relatively; when the locking structure 330 is in the unlocking state, the limiting structure 332 is separated from the first limiting member 311 and the second limiting member 321, and does not limit the first limiting member 311 and the second limiting member 321, and the first rod assembly 310 and the second rod assembly 320 can rotate relatively. In the unlocked state, the rotation angle X between the first rod assembly 310 and the second rod assembly 320 is in the range of 0 ° to 180 °.
Referring to fig. 4 to 6, the second rod assembly 320 is provided with a first rotating shaft 323 at an end portion close to the first rod assembly 310, and the first rod assembly 310 is mounted on the first rotating shaft 323 in a penetrating manner, so that the first rod assembly 310 and the second rod assembly 320 rotate around the first rotating shaft 323 relatively. In addition, the second lever assembly 320 is provided with a rotating housing 324 at both sides of the first rotating shaft 323; in contrast, the first lever assembly 310 is provided with a sleeve 313 at an end portion adjacent to the second lever assembly 320, the sleeve 320 is provided at a position corresponding to the first rotating shaft 323 of the first lever assembly 310, and the shape of the outer edge of the sleeve 313 matches the shape of the rotating housing 324 at both sides of the first rotating shaft 323. When the first rod assembly 310 is inserted into the first shaft 323 of the second rod assembly 320, the sleeve 313 is coaxial with the first shaft 323 and is clamped between the rotating shells 324 at two sides of the first shaft 323.
In addition, referring to fig. 1, the foldable garden tool may be an electric garden tool, which is provided with an energy source assembly on the first pole 100 for supplying power to the working part 210 provided on the second pole 200. Wherein, the inside electric wire 400 that is provided with of above-mentioned foldable garden instrument, above-mentioned electric wire 400 one end is connected on the energy component, and the other end passes foldable body of rod connection structure 300 along body of rod extending direction and connects on work portion 210, has realized the electric connection between the last energy component of foldable garden instrument and work portion 210.
As shown in fig. 4, 9 and 12, in an embodiment of the present invention, a channel for supplying electric power 400 is provided in the first and second poles 100 and 200 in the foldable gardening tool, and the electric power 400 extends from one end of the power source assembly through the foldable pole connecting structure 300 along the channel in the first pole 100 into the inner channel in the second pole 200 and is connected to the working part 210 along the channel in the second pole 200. When the electric wire 400 passes through the foldable rod connecting structure 300, the electric wire 400 enters the first fixed cylinder 312 from the passage in the first rod 100, then passes through the gap between the first rotating shaft 323 and the sleeve 313 from the first fixed cylinder 312 to extend into the second fixed cylinder 322, and finally enters the passage in the second rod 200 through the second fixed cylinder 322.
Referring to fig. 7, in an embodiment of the utility model, the locking structure 330 is disposed on the first rod assembly 310, and the locking structure 330 includes an insert shaft 331, a limiting structure 332, a driving member 333 and a second rotating shaft 334.
Referring to fig. 9 and 11, the insert shaft 331 is disposed on the first limiting member 311 of the first rod assembly 310. The first limiting member 311 is provided with an insert groove 3111 matching the insert shaft 331, and side lugs 3112 are provided on two sides of the corresponding position of the insert shaft 331. The insert groove 3111 extends in a direction orthogonal to the surface of the first limiting member 311, one end of the insert shaft 331 is disposed in the insert groove 3111, and the other end extends in a direction orthogonal to the surface of the first limiting member 311. The insert shaft 331 has a first through hole 3311 at an end extending out of the first limiting member 311, the side lugs 3112 at two sides of the insert shaft 331 are respectively provided with a second through hole 3113 corresponding to the first through hole 3311, and when the insert shaft 331 is disposed in the insert groove 3111, the first through hole 3311 of the insert shaft 331 and the second through holes 3113 on the side lugs 3112 at two sides are disposed on the same axis.
Referring to fig. 7, 9 and 11, the limiting structure 332 is provided with a third through hole 3321 matching with the shaft body of the insert shaft 331. When the insert shaft 331 is disposed in the insert groove 3111, the limiting structure 332 is sleeved on the shaft body of the insert shaft 331 through the third through hole 3321, and the limiting structure 332 sleeved on the insert shaft 331 can approach or depart from the first limiting member 311 or the second limiting member 321 along the axial direction of the insert shaft 331. Moreover, since the shape of the limiting structure 332 is matched with the first limiting member 331 and the second limiting member 321 in the relative installation state, the limiting structure 332 can lock the first limiting member 331 and the second limiting member 321 when contacting the first limiting member 331 and the second limiting member 321 in the relative installation state, so that the relative positions of the first limiting member 331 and the second limiting member 321 are kept unchanged even under the action of an external force.
The shape of the limiting structure 332 is not limited, and the shape of the limiting structure 332 on the side facing the first limiting member 311 and the second limiting member 321 is only required to match the shape of the first limiting member 311 and the second limiting member 321 that are oppositely disposed, for example, in this embodiment, the first limiting member 311 and the second limiting member 321 are bosses, the limiting structure 332 has a groove on a surface facing the first limiting member 311 and the second limiting member 321, the groove is matched with the bosses of the first limiting piece 311 and the second limiting piece 321 which are oppositely arranged, therefore, in the locked state of the foldable rod connecting structure 300, the bosses of the first limiting member 311 and the second limiting member 321 are embedded into the grooves of the limiting structure 332, under the limiting action of the groove, the positions of the first limiting member 311 and the second limiting member 321 are kept relatively fixed, so that the first rod assembly 310 and the second rod assembly 320 are maintained in the unfolded state.
Referring to fig. 14, the driving member 333 is provided with a pressing portion and a wrench 3334. The extrusion part is provided with a fourth through hole 3331, the outer edge of the extrusion part is a continuous arc surface with different radians arranged along the circumferential direction of the fourth through hole 3331, and the wrench 3334 extends outwards along the tangential direction of the arc surface on the extrusion part. The cambered surface of the extrusion part comprises a cam cambered surface 3332 and a flat wheel cambered surface 3333, the radian of the cam cambered surface 3332 is larger, the outward bulge is formed on the surface of the extrusion part, and the radian of the flat wheel cambered surface 3333 is smaller, and the surface of the extrusion part is smoother.
As shown in fig. 7, the driving member 333 is disposed on a side of the limiting structure 332 away from the first limiting member 311, and is rotatably connected to the insert shaft 331 and the side lug 3112 through the second rotating shaft 334. Specifically, when the driving member 333 is mounted, the pressing portion extends between the insert shaft 331 and the side lugs 3112, and when the fourth through hole 3331 of the pressing portion is located on the same axis as the first through hole 3311 of the insert shaft 331 and the second through holes 3113 of the side lugs 3112 on both sides, the second rotating shaft 334 passes through the second through hole 3113 of the side lug 3112, the fourth through hole 3331 of the driving member 333 and the first through hole 3311 of the insert shaft 331, so that the driving member 333 is rotatably connected to the insert shaft 331 and the side lug 3112 and can rotate around the second rotating shaft 334. One end of the second rotating shaft 334 is provided with a head portion for limiting, the other end of the second rotating shaft is provided with a limiting hole 3341, and a cotter pin 3342 matched with the limiting hole 3341 can be sleeved in the limiting hole 3341. When the second shaft 334 is mounted on the side ear 3112, the head of one end of the second shaft 334 is located outside the side ear 3112, and the limiting hole 3341 of the other end is located outside the other side ear 3112, the second shaft 334 can be engaged with the cotter pin 3342 disposed in the limiting hole 3341 of the other end of the second shaft 334 through the head of one end of the second shaft 334, so as to limit the second shaft 334 on the side ears 3112, and prevent the second shaft 334 from sliding out of the second through hole 3113 of the side ear 3112.
Referring to fig. 8 to 13, in the locking structure 330, the driving member 333 is rotatably connected to the insert shaft 331 and the side lug 3112, and when the driving member 333 rotates around the second rotating shaft 334, the arc surface on the outer edge of the extruding portion abuts against the limiting structure 332. When the folding rod body connecting structure 300 is used, a user can drive the driving piece 333 to rotate through the wrench 3334, so that the arc surfaces with different radians on the extrusion part are in contact with the limiting structure 332, and the locking and unlocking of the folding rod body connecting structure 300 by the locking structure 330 are realized. As shown in fig. 11 to 13, when the user operates the wrench 3334 to rotate the driving member 333 to make the cam arc surface 3332 on the extruding portion contact with the limiting structure 332, the folding rod connecting structure 300 is in a locked state, the cam arc surface 3332 protruding on the extruding portion presses the limiting structure 332 to contact with the first limiting member 311 and the second limiting member 321 which are oppositely disposed, and the clamping surface of the limiting structure 332 presses the table surfaces of the first limiting member 311 and the second limiting member 321 to make the first limiting member 311 and the second limiting member 321 limited in the limiting structure 332 and cannot rotate relatively. As shown in fig. 8 to 10, when the user operates the wrench 3334 to rotate the driving member 333 to make the flat wheel arc surface 3333 on the pressing portion contact with the limiting structure 332, the folding rod connecting structure 300 is in an unlocked state, and the limiting structure 332 is separated from the first limiting member 311 and the second limiting member 321 which are oppositely disposed due to the small arc of the flat wheel arc surface 3333, so that the first limiting member 311 and the second limiting member 321 are separated from the constraint of the limiting structure 332 and can rotate freely around the first rotating shaft 323.
In addition, the type of the foldable garden tool according to the present invention may not be limited, and the foldable garden tool may be any garden tool in which the working part 210 is disposed on the rod body, for example, in an embodiment of the present invention, the foldable garden tool is a rod chain saw, and the working part 210 disposed on the end of the second rod body 200 is a saw head.
According to the foldable garden tool, the first rod body and the second rod body are connected by the rod body connecting structure capable of locking and unlocking to rotate, which is arranged between the first rod body and the second rod body, so that the foldable garden tool can maintain a stable unfolded or folded state, for example, when in work, the first rod body and the second rod body maintain the unfolded state by locking and rotating, and the working length is ensured; or the unblock is rotated when transportation storage and is made first body of rod and second body of rod fold, is convenient for reduce and takes up an area of the space. Therefore, the foldable garden tool can realize the quick switching between the working state and the folded state without the assistance of an external tool, and has the advantages of reliable joint, simple structure, easy manufacture, low cost, safe working and long service life; and light weight, small size, convenient adjustment and maintenance, etc. Therefore, the utility model effectively overcomes some practical problems in the prior art, thereby having high utilization value and use significance.
The foregoing embodiments are merely illustrative of the principles and utilities of the present invention and are not intended to limit the utility model. Those skilled in the art can modify or change the above-described embodiments without departing from the spirit and scope of the present invention. Accordingly, it is intended that all equivalent modifications or changes which may be made by those skilled in the art without departing from the spirit and scope of the present invention as defined in the appended claims.

Claims (10)

1. The utility model provides a foldable garden instrument, its characterized in that, foldable garden instrument includes the first body of rod and the second body of rod, be provided with energy component on the first body of rod, be provided with work portion on the second body of rod, the first body of rod with the second body of rod is connected through foldable body of rod connection structure, foldable body of rod connection structure includes:
a first rod body component, one end of which is provided with a first limiting piece;
the second rod body assembly is rotatably connected to one end, provided with the first limiting piece, of the first rod body assembly, and a second limiting piece is arranged at one end, facing the first rod body assembly, of the second rod body assembly;
the locking structure is arranged on the first rod body assembly or the second rod body assembly, a limiting structure is arranged on the locking structure, and when the locking structure is in a locking state, the limiting structure is respectively matched with the first limiting part and the second limiting part to relatively lock the first rod body assembly and the second rod body assembly; when the locking structure is in an unlocking state, the limiting structure is separated from the first limiting part and the second limiting part, and the first rod body assembly and the second rod body assembly rotate relatively.
2. The foldable garden tool of claim 1, wherein the second lever assembly is provided with a first shaft at an end thereof adjacent to the first lever assembly, and the first lever assembly is mounted on the first shaft; the second rod body assembly is provided with rotating shells on two sides of the first rotating shaft, a sleeve is arranged at one end, close to the second rod body assembly, of the first rod body assembly, and the sleeve and the first rotating shaft are coaxially arranged and clamped between the rotating shells on two sides of the first rotating shaft.
3. The foldable garden tool of claim 1, wherein the first lever assembly is provided with a first fixing cylinder at a side facing away from the second lever assembly, the second lever assembly is provided with a second fixing cylinder at a side facing away from the first lever assembly, the first and second fixing cylinders are sized to match a size of a lever to be connected, and the lever is fixed in the first and/or second fixing cylinders.
4. The foldable garden tool of claim 2, wherein an electric wire is provided inside the foldable garden tool, the electric wire being connected to the working part from an end of the energy source assembly through the foldable rod connection structure, the electric wire extending inside the foldable rod connection structure from the first rod assembly into the second rod assembly through a gap between the first rotation shaft and the sleeve.
5. The foldable garden tool of claim 1, wherein the rotation angle X between the second rod assembly and the first rod assembly ranges from 0 ° to 180 °.
6. The foldable garden tool of claim 1, wherein the locking structure is disposed on the first rod assembly, the locking structure comprises an insert shaft, a second rotating shaft, a driving member and the limiting structure, the insert shaft is disposed on the first limiting member, the first rod assembly is disposed with side lugs on two sides of the insert shaft, the limiting structure is sleeved on the insert shaft, the driving member is disposed on the insert shaft and located on one side of the limiting structure, and the driving member is rotatably connected to the insert shaft and the side lugs through the second rotating shaft.
7. The foldable garden tool of claim 6, wherein the first retainer is provided with an insert groove that matches the insert shaft, the insert groove extending in a direction perpendicular to a surface of the first retainer, and the insert shaft is provided in the insert groove.
8. The foldable garden tool of claim 6, wherein the driving member is provided with a pressing portion and a wrench, the pressing portion is provided with a cam arc and a flat wheel arc, and the wrench protrudes from the pressing portion.
9. The foldable garden tool of claim 8, wherein the driving member rotates around the second rotation axis and abuts against the position limiting structure, and when the driving member rotates until the cam arc surface contacts with the position limiting structure, the cam arc surface presses the position limiting structure against the first position limiting member and the second position limiting member; when the driving part rotates to the position where the flat wheel cambered surface is contacted with the limiting structure, the limiting structure is separated from the contact with the first limiting part and the second limiting part.
10. The foldable garden tool of claim 1, wherein the working part is a saw head.
CN202122983358.9U 2021-11-29 2021-11-29 Foldable garden tool Active CN216492159U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122983358.9U CN216492159U (en) 2021-11-29 2021-11-29 Foldable garden tool

Applications Claiming Priority (1)

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CN202122983358.9U CN216492159U (en) 2021-11-29 2021-11-29 Foldable garden tool

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