CN217471682U - Adjustable clothes hanger structure - Google Patents

Adjustable clothes hanger structure Download PDF

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Publication number
CN217471682U
CN217471682U CN202220972736.5U CN202220972736U CN217471682U CN 217471682 U CN217471682 U CN 217471682U CN 202220972736 U CN202220972736 U CN 202220972736U CN 217471682 U CN217471682 U CN 217471682U
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unit
groove
telescopic
limiting
inner rod
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CN202220972736.5U
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Chinese (zh)
Inventor
林学秀
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Edg China Corp ltd
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Edg China Corp ltd
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Priority to CN202220972736.5U priority Critical patent/CN217471682U/en
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Abstract

The utility model relates to an adjustable clothes hanger structure, adjustable clothes hanger structure includes base unit, linkage unit, interior pole unit, flexible unit and hangs the unit. The first end of the connecting unit is arranged at the first end of the base unit in a turnover mode along the vertical direction; the inner rod unit is arranged at the second end of the connecting unit in a turnover mode along the horizontal direction; the telescopic unit is a hollow structure with a downward opening and can be sleeved on the inner rod unit in a sliding manner; the first end of the hanging unit is arranged in the telescopic unit and located below the inner rod unit, and the second end of the hanging unit is downwards arranged below the telescopic unit and used for hanging clothes. The utility model discloses simple structure, quantity, style and the direction of adjustable couple, the flexibility is strong, can adapt to the height that the difference hung the thing, has good practical value and popularization and application and worth.

Description

Adjustable clothes hanger structure
Technical Field
The utility model relates to the technical field of furniture, especially, relate to an adjustable clothes hanger structure.
Background
The clothes hanger is one of the necessary furniture in daily life, and the clothes hangers on the market are various at present, and are usually arranged on a wall or in a wardrobe so as to hang or dry clothes of people.
The existing clothes hanger is generally in a rod shape, is fixedly arranged in a wardrobe or on a wall body, and cannot be adjusted in a telescopic mode, so that certain influence is caused to the use of a user, for example, under the condition that the inside of the wardrobe is deep, if the user needs to take out clothes hung on the clothes hanger, the clothes hanger cannot be adjusted in a telescopic mode, and therefore the clothes in the wardrobe are difficult to take out; or the clothes rack is fixed on the wall body, so that the clothes rack can not adjust the clothes airing direction according to different time intervals, weather or seasons. In addition, the clothes hanger in the existing wardrobe cannot be folded under the condition that the clothes hanger is not used, so that the internal space of the wardrobe is undoubtedly occupied, and the storage space of the wardrobe is reduced.
At present, an effective solution is not provided yet aiming at the problems that the user is difficult to take out clothes inside a wardrobe and the clothes rack cannot be folded due to the fact that the existing clothes rack cannot be adjusted in a telescopic mode.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing an adjustable clothes hanger structure aiming at the defects in the prior art, which solves the problems that the prior clothes hanger can not be adjusted flexibly, so that the user is difficult to take out the clothes inside the wardrobe and the clothes hanger can not be folded.
In order to achieve the above object, the utility model provides an adjustable clothes hanger structure, include:
a base unit;
the first end of the connecting unit is arranged at the first end of the base unit in a turnover mode along the vertical direction;
the inner rod unit is arranged at the second end of the connecting unit in a turnover mode along the horizontal direction;
the telescopic unit is of a hollow structure with a downward opening and can be sleeved on the inner rod unit in a sliding manner;
and the first end of the hanging unit is arranged in the telescopic unit and is positioned below the inner rod unit, and the second end of the hanging unit is downwards arranged below the telescopic unit and is used for hanging clothes.
Further, the base unit includes:
mounting a component;
the first overturning groove element is arranged at the first end of the mounting element and is connected with the first end of the connecting unit in an overturning way;
and the supporting element is arranged at the bottom end of the mounting element and is used for supporting the mounting element.
Further, the base unit further comprises:
the first groove element is arranged on the side wall of the first turnover groove element;
at least one first hole element, wherein the first hole element is arranged on the side wall of the first groove element and communicated with the outside of the mounting element;
the first end of the first limiting element is arranged in the first groove element and corresponds to and is matched with the connecting unit, the second end of the first limiting element penetrates through the first hole element and is arranged outside the mounting element, and the first limiting element is used for limiting the connecting unit.
Further, the first stopper element includes:
the limiting column is arranged in the first groove element, corresponds to the first limiting groove element arranged on the connecting unit and is matched with the first limiting groove element;
the mounting plate is arranged in the first groove element in a sliding mode, sleeved with the first rotating shaft of the connecting unit and fixedly connected with the limiting column at the first end;
the reset spring is arranged in the first groove element, is sleeved with the first rotating shaft, and has two ends which are fixedly connected with the side wall of the first groove element and the second end of the mounting plate correspondingly;
the first end of the extending column is fixedly connected with the second end of the mounting plate, and the second end of the extending column penetrates through the first hole element and is positioned outside the mounting element;
the operating part is arranged at the second end of the extension column.
Further, the connection unit includes:
the overturning element is rotatably arranged at the first end of the base unit through a first rotating shaft;
the first end of the connecting element is fixedly connected with one end, far away from the first rotating shaft, of the overturning element;
and the second turnover groove element is arranged at the second end of the connecting element and is connected with the inner rod unit in a turnover way.
Further, the connection unit further includes:
the first limiting groove element is arranged on the side wall of the overturning element, corresponds to the limiting column of the base unit and is matched with the limiting column of the base unit;
a second trough member open to a side wall of the second inverted trough member;
a spring element disposed within the second slot element;
and the protruding element is arranged in the second groove element in a sliding manner, corresponds to the second limiting groove element of the inner rod unit and is arranged in a matched manner.
Further, the inner rod unit includes:
the first end of the inner rod element is rotatably arranged in the second turnover groove element of the connecting unit through a second rotating shaft.
Further, the inner rod unit further includes:
and the second limiting groove elements are arranged at the first end of the inner rod element along the circumferential direction of the second rotating shaft.
Further, the telescopic unit includes:
the telescopic element is of a hollow structure with a downward opening and can be sleeved on the inner rod unit in a sliding manner;
the cover plate element is arranged at one end of the telescopic element far away from the mounting element and used for sealing the telescopic element;
the fixing groove elements are arranged on the lower bottom wall inside the telescopic unit along the length direction of the telescopic unit and used for fixing the hanging unit.
Further, the suspension unit includes:
a fixing member detachably disposed in the fixing groove member of the telescopic unit;
and the first end of the hook element is fixedly connected with the bottom end of the fixing element, and the second end of the hook element is positioned below the telescopic unit.
The utility model adopts the above technical scheme, compare with prior art, have following technological effect:
(1) in the adjustable clothes hanger structure of the utility model, the telescopic unit can slide relative to the inner rod unit, so that the hanging unit arranged on the telescopic unit can slide along with the telescopic unit, thereby realizing the extension and retraction of the hanging unit and solving the problem that the existing clothes hanger can not be extended and retracted;
(2) the telescopic unit can rotate around the connection part of the connection unit and the inner rod unit through the inner rod unit, so that the problems that the existing clothes hanger is single in use direction and the clothes airing direction cannot be adjusted are solved;
(3) the telescopic unit and the inner rod unit can rotate along the joint of the connecting unit and the base unit through the connecting element, so that the telescopic unit and the inner rod unit can be conveniently turned upwards and folded, and the problem that the existing clothes hanger cannot be folded is solved;
(4) the utility model discloses simple structure, quantity, style and the direction of adjustable couple, the flexibility is strong, can adapt to the height that the difference hung the thing, has good practical value and popularization and application and worth.
Drawings
Fig. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic structural diagram (one) of the base unit of the present invention;
fig. 3 is a schematic structural diagram (one) of the connection unit of the present invention;
fig. 4 is an assembly view of the inner rod unit and the telescopic unit of the present invention;
fig. 5 is an assembled sectional view of the telescopic unit and the suspension unit of the present invention;
fig. 6 is a partial cross-sectional view of a base unit of the present invention;
fig. 7 is a partial cross-sectional view of a mounting member of the present invention;
fig. 8 is a schematic structural view of a first limiting element of the present invention;
fig. 9 is a partial sectional view of the connection unit of the present invention;
fig. 10 is a schematic structural view of the inner rod unit of the present invention;
wherein the reference symbols are:
100. a base unit; 110. mounting a component; 120. a first inverted trough member; 130. a support element; 140. a first trough member; 150. a first bore element; 160. a first spacing element; 161. a limiting column; 162. mounting a plate; 163. a return spring; 164. extending the column; 165. an operating member;
200. a connection unit; 210. a flip element; 220. a connecting element; 230. a second flipping slot element; 240. a first limit groove element; 250. a second trough member; 260. a spring element; 270. a raised element;
300. an inner rod unit; 310. an inner rod element; 320. a second limiting groove element;
400. a telescopic unit; 410. a telescopic element; 420. a cover member; 430. a fixing groove member;
500. a suspension unit; 510. a fixing element; 520. a hook element.
Detailed Description
In order to facilitate understanding of the present invention, the present invention will be described in more detail with reference to the accompanying drawings and specific embodiments. It will be understood that when an element is referred to as being "secured to" another element, it can be directly on the other element or intervening elements may be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may be present. The terms "upper", "lower", "inner", "outer", "vertical", "horizontal", and the like, as used herein, are used in the orientation or positional relationship indicated based on the orientation or positional relationship shown in the drawings for convenience of description and simplicity of description only, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore should not be construed as limiting the invention. Furthermore, the terms "first," "second," and the like are used for descriptive purposes only and are not to be construed as indicating or implying relative importance. Unless defined otherwise, 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 invention belongs. The terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items. Furthermore, the technical features mentioned in the different embodiments of the present invention described below can be combined with each other as long as they do not conflict with each other.
Example 1
As shown in fig. 1, the adjustable clothes hanger structure of the present invention comprises a base unit 100, a connecting unit 200, an inner rod unit 300, a telescopic unit 400 and a hanging unit 500. The base unit 100 is used for being mounted on a wall or inside a wardrobe and providing a mounting support function; the first end of the connection unit 200 is arranged at the first end of the base unit 100 in a turnable manner along the vertical direction; the inner rod unit 300 is arranged at the second end of the connecting unit 200 in a turnover manner along the horizontal direction and is used for providing a supporting function; the telescopic unit 400 is a hollow structure with a downward opening, and is slidably sleeved on the inner rod unit 300, and the telescopic unit 400 can slide along the extending direction of the inner rod unit 300; the hanging unit 500 has a first end disposed inside the telescopic unit 400 and below the inner pole unit 300, and a second end disposed downward below the telescopic unit 400 for hanging the laundry and sliding with the telescopic unit 400.
In some of these embodiments, the inner rod unit 300 is made of a metallic material, such as stainless steel.
Specifically, under the condition that the telescopic unit 400 and the hanging unit 500 need to be stowed, a user turns the connecting unit 200 upwards along the vertical direction, so that the telescopic unit 400 and the hanging unit 500 are turned upwards, and the telescopic unit 400 is attached to a wall or attached to the inner side wall of a wardrobe. In case that the telescopic unit 400 and the hanging unit 500 need to be rotated in the horizontal direction, the user rotates the inner rod unit 300 around the joint of the inner rod unit 300 and the connecting unit 200, thereby driving the telescopic unit 400 and the hanging unit 500 to rotate, so as to change the direction of the hanging unit 500 for airing clothes.
As shown in fig. 2, the base unit 100 includes a mounting member 110, a first flipping slot member 120, and a support member 130. Wherein, the mounting element 110 is mounted on the wall body and the inner side wall of the wardrobe; the first turning groove element 120 is arranged at the first end of the mounting element 110 and is connected with the first end of the connecting unit 200 in a turning way, so as to facilitate turning of the connecting unit 200; the supporting member 130 is disposed at the bottom end of the mounting member 110, and is used for supporting the mounting member 110 and preventing the mounting member 110 from falling off the wall or the inner wall of the wardrobe.
Wherein the longitudinal section of the support member 130 may be provided in a triangular shape or a quarter-cylindrical shape.
As shown in fig. 3, the coupling unit 200 includes an inversion member 210, a coupling member 220, and a second inversion groove member 230. The turning element 210 is rotatably disposed at the first end of the base unit 100 through a first rotating shaft, and is configured to turn over at the first end of the base unit 100 along a vertical direction through the first rotating shaft; the first end of the connecting element 220 is fixedly connected with one end of the turning element 210 far away from the first rotating shaft, and is used for turning along with the turning element 210; the second turning groove member 230 is disposed at the second end of the connecting member 220, and is connected to the inner rod unit 300 in a turnable manner, so that the inner rod unit 300 can be turned in a horizontal direction.
The two ends of the first rotating shaft are disposed inside the first flipping groove element 120 of the base unit 100, and the flipping element 210 is rotatably sleeved on the first rotating shaft, so that the flipping element 210 can flip inside the first flipping groove element 120 through the first rotating shaft.
As shown in fig. 4, the inner rod unit 300 includes an inner rod element 310, and a first end of the inner rod element 310 is rotatably disposed in the second flipping slot element 230 of the connection unit 200 through a second rotating shaft, so as to drive the telescopic unit 400 to flip.
Specifically, the second rotating shaft is vertically arranged in the second turning groove, and the first end of the inner rod element 310 is rotatably sleeved on the second rotating shaft, so that the inner rod element 310 can be turned over through the second rotating shaft.
The inner rod member 310 is a support rod and is made of a metal material, such as stainless steel.
As shown in fig. 4 to 5, the telescopic unit 400 includes a telescopic member 410, a cover member 420, and a plurality of fixing groove members 430. The telescopic element 410 is a hollow structure with an opening facing downward, and is slidably sleeved on the inner rod unit 300; a cover member 420 is disposed at an end of the telescopic member 410 away from the mounting member 110 for sealing the telescopic member 410; the plurality of fixing groove members 430 are opened at a lower bottom wall inside the telescopic member 410 along a length direction of the telescopic unit 400, and are used for fixing the hanging unit 500 to prevent the hanging unit 500 from arbitrarily sliding inside the telescopic unit 400.
Wherein the telescopic element 410 is made of a metallic material, such as stainless steel.
In some embodiments, one end of the cover member 420 may be rotatably disposed at one end of the mounting member 110, such as by a hinge disposed at one end of the mounting member 110.
In some embodiments, the cover member 420 is removably disposed at one end of the mounting member 110, such as by a magnetic connection between the cover member 420 and the mounting member 110. Such as where the cover member 420 is a magnetic cover.
In some of the embodiments, the number of the fixing groove members 430 is greater than or equal to the number of the hanging units 500, so that the hanging units 500 can be fixed to the inside of the corresponding fixing grooves to prevent the hanging units 500 from being arbitrarily slid in the inside of the telescopic unit 400.
As shown in fig. 6, the suspension unit 500 includes a fixing member 510 and a hooking member 520. Wherein, the fixing member 510 is detachably disposed in the fixing groove member 430 of the telescopic unit 400; the hook member 520 has a first end fixedly coupled to the bottom end of the fixing member 510 and a second end positioned below the telescopic unit 400, and the hook member 520 can be fixed inside the corresponding fixing groove member 430 by the fixing member 510, thereby preventing the hook member 520 from being arbitrarily slid.
The fixing elements 510 may be screwed into the corresponding fixing groove elements 430, or may be embedded into the corresponding fixing groove elements 430.
The hook member 520 is connected to the fixing member 510 by welding, screwing, or integrally molding.
The working principle of the embodiment is as follows:
under the condition that the telescopic unit 400 and the hanging unit 500 need to be folded, the user rotates the turning element 210, the turning element 210 turns upwards inside the first turning groove element 120 through the first rotating shaft, then the turning element 210 drives the connecting element 220 to rotate, then the connecting element 220 drives the inner rod element 310 to turn upwards, and the inner rod element 310 drives the telescopic unit 400, the fixing element 510 and the hook element 520 to turn upwards, so that the telescopic unit 400 and the hanging unit 500 are folded;
under the condition that the position of the telescopic unit 400 needs to be adjusted, a user can pull the telescopic unit 400 so that the telescopic element 410 and the inner rod element 310 slide relatively, and the telescopic unit 400 is driven to be far away from or close to the wall body or the inner side wall of the wardrobe;
in the case that it is necessary to adjust the orientation of the telescopic unit 400 in the horizontal direction, the user keeps the connection unit 200 still, and turns the inner rod member 310, and the inner rod member 310 rotates around the second rotation shaft and drives the telescopic member 410, the hanging member and the hook member 520 to rotate, thereby changing the orientation of the clothes hung on the hook member 520.
Example 2
This embodiment is a modification of embodiment 1.
As shown in fig. 6 to 7, the base unit 100 further includes a first groove member 140, at least one first hole member 150, and a first position-limiting member 160. Wherein the first trough member 140 opens into the side wall of the first inverted trough member 120; the first hole member 150 is opened at a side wall of the first groove member 140 and communicated with the outside of the mounting member 110; the first end of the first limiting element 160 is disposed in the first groove element 140, and is disposed corresponding to and matching with the connection unit 200, the second end of the first limiting element 160 passes through the first hole element 150 and is disposed outside the mounting element 110, and the first limiting element 160 is used for limiting the connection unit 200, so as to prevent the connection unit 200 from moving downward by itself due to the weight of the inner rod unit 300 and the telescopic unit 400.
Specifically, the first limiting element 160 is used for limiting the overturning element 210 of the connection unit 200, so as to prevent the overturning element 210 from overturning by itself.
As shown in fig. 8, the first position-limiting element 160 includes at least one position-limiting post 161, a mounting plate 162, a return spring 163, at least one extending post 164, and an operating member 165. The limiting column 161 is disposed in the first groove element 140, corresponds to and is matched with the first limiting groove element 240 disposed on the connection unit 200, and is used for entering the first limiting groove element 240 to limit the connection unit 200; the mounting plate 162 is slidably disposed in the first groove member 140, and is disposed around the first rotating shaft of the connecting unit 200, and a first end of the mounting plate 162 is fixedly connected to the limiting post 161, and the mounting plate 162 can move along the radial direction of the first groove member 140; the reset spring 163 is disposed in the first groove element 140, and is sleeved with the first rotating shaft, and two ends of the reset spring are correspondingly and fixedly connected with the side wall of the first groove element 140 and the second end of the mounting plate 162, so as to reset the mounting plate 162, so as to push the limiting column 161 to enter the first limiting groove element 240; a first end of the extending column 164 is fixedly connected to a second end of the mounting plate 162, and the second end of the extending column 164 passes through the first hole element 150 and is located outside the mounting element 110; the operation member 165 is disposed at the second end of the extending column 164, and is used for facilitating a user to pull the extending column 164 to move outward, so that the position-limiting column 161 is separated from the first position-limiting groove element 240.
In some embodiments, the plurality of limiting columns 161 may be provided, so as to enhance the limiting capability of the connection unit 200 and avoid the fracture caused by insufficient supporting capability of the single limiting column 161.
Specifically, when the connection unit 200 is released, the user pulls out the extension column 164 through the operation member 165, the extension column 164 drives the mounting plate 162 to slide along the first groove member 140 to the outside far away from the connection unit 200, and then drives the limit column 161 to leave the first limit groove member 240 and press the return spring 163, at this time, the limit column 161 releases the connection unit 200, after the user turns over the connection unit 200, the user releases the operation member 165, so that the mounting plate 162 and the limit column 161 enter the first limit groove member 240 under the elastic force of the return spring 163, and limit the connection unit 200 again.
As shown in fig. 9, the connection unit 200 includes at least one first groove member 240, a second groove member 250, a spring member 260, and a protrusion member 270. The first limiting groove element 240 is disposed on a side wall of the turning element 210, corresponds to and is matched with the limiting post 161 of the base unit 100, and is used for limiting the turning element 210 by matching with the limiting post 161; the second slot member 250 opens at the side wall of the second inverted slot member 230 for providing a mounting function; the spring element 260 is disposed within the second slot element 250; the protrusion element 270 is slidably disposed in the second groove element 250, and is disposed corresponding to and matched with the second limiting groove element 320 of the inner rod unit 300, for limiting the inner rod unit 300 by matching with the second limiting groove element 320 under the action of the spring element 260.
Wherein the spring element 260 is a spring.
Wherein, the top end of the protrusion element 270 is configured as a hemispherical protrusion for entering into the second limiting groove element 320 to limit the inner rod element 310.
Specifically, under the condition that the limiting column 161 enters the interior of the first limiting groove element 240, the limiting column 161 can cooperate with the first limiting groove element 240 to limit the overturning element 210, so as to prevent the overturning element 210 from rotating; under the condition that the protrusion element 270 enters the second limiting groove element 320, the protrusion element 270 can limit the inner rod element 310, and the inner rod element 310 is prevented from rotating by itself.
As shown in fig. 10, the inner rod unit 300 further includes a plurality of second limiting groove elements 320, the plurality of second limiting groove elements 320 are disposed at the first end of the inner rod element 310 along the circumferential direction of the second rotating shaft, and are corresponding to and disposed in cooperation with the limiting protrusions of the connecting unit 200, so as to limit the inner rod element 310 in cooperation with the limiting protrusions.
Wherein, the second position-limiting groove element 320 is a hemispherical groove.
Specifically, under the inside condition that spacing arch entered into second spacing groove component 320, spacing arch can cooperate second spacing groove component 320 to carry on spacingly to interior pole component 310, avoids interior pole component 310 to rotate by oneself.
The working principle of the embodiment is as follows:
under the condition that the inner rod unit 300 and the telescopic unit 400 need to be retracted, a user pulls the operating element 165 by hand, the operating element 165 drives the extending column 164 and the mounting plate 162 to move in the direction away from the turning element 210, so that the mounting plate 162 drives the limiting column 161 to leave the first limiting groove element 240 to release the turning element 210, and at the moment, the user turns the turning element 210 upwards, so that the inner rod unit 300 and the telescopic unit 400 turn upwards along with the turning element 210;
after the inner rod unit 300 and the telescopic unit 400 are retracted, the user releases the operating member 165, and the mounting plate 162 is moved toward the flip member 210 by the return spring 163, so that the stopper post 161 enters the first stopper groove member 240 to re-position the first stopper groove member 240.
In the case that the inner rod member 310 needs to be rotated in the horizontal direction, the user only needs to push the inner rod member 310 with force after limiting the turning member 210, and the second limiting groove member 320 can extrude the limiting protrusion into the second groove member 250 to release the inner rod member 310, so as to turn over the inner rod member 310 until the limiting protrusion enters the inside of the other second limiting groove member 320, so as to limit the inner rod member 310 again.
The technical features of the above embodiments can be arbitrarily combined, and for the sake of brevity, all possible combinations of the technical features in the above embodiments are not described, but should be considered as the scope of the present specification as long as there is no contradiction between the combinations of the technical features.
The above examples only express several embodiments of the present application, and the description thereof is more specific and detailed, but not to be construed as limiting the scope of the invention. It should be noted that, for a person skilled in the art, several variations and modifications can be made without departing from the concept of the present application, which falls within the scope of protection of the present application. Therefore, the protection scope of the present patent shall be subject to the appended claims.

Claims (10)

1. An adjustable hanger structure, comprising:
a base unit;
the first end of the connecting unit is arranged at the first end of the base unit in a turnover mode along the vertical direction;
the inner rod unit is arranged at the second end of the connecting unit in a turnover manner along the horizontal direction;
the telescopic unit is of a hollow structure with a downward opening and is sleeved on the inner rod unit in a sliding manner;
and the first end of the hanging unit is arranged in the telescopic unit and is positioned below the inner rod unit, and the second end of the hanging unit is downwards arranged below the telescopic unit and is used for hanging clothes.
2. An adjustable hanger construction according to claim 1, wherein said base unit comprises:
mounting a component;
the first overturning groove element is arranged at the first end of the mounting element and is connected with the first end of the connecting unit in an overturning way;
the supporting element is arranged at the bottom end of the mounting element and used for supporting the mounting element.
3. The adjustable hanger structure of claim 2, wherein said base unit further comprises:
the first groove element is arranged on the side wall of the first turnover groove element;
at least one first hole element, wherein the first hole element is arranged on the side wall of the first groove element and communicated with the outside of the mounting element;
the first end of the first limiting element is arranged in the first groove element and corresponds to and is matched with the connecting unit, the second end of the first limiting element penetrates through the first hole element and is arranged outside the mounting element, and the first limiting element is used for limiting the connecting unit.
4. An adjustable hanger construction according to claim 3, wherein the first stop element comprises:
the limiting column is arranged in the first groove element, corresponds to the first limiting groove element arranged on the connecting unit and is matched with the first limiting groove element;
the mounting plate is arranged in the first groove element in a sliding mode, sleeved with the first rotating shaft of the connecting unit and fixedly connected with the limiting column at the first end;
the reset spring is arranged in the first groove element, sleeved with the first rotating shaft, and fixedly connected with the side wall of the first groove element and the second end of the mounting plate at two ends;
the first end of the extending column is fixedly connected with the second end of the mounting plate, and the second end of the extending column penetrates through the first hole element and is positioned outside the mounting element;
the operating part is arranged at the second end of the extension column.
5. The adjustable hanger structure of claim 1, wherein the connection unit comprises:
the overturning element is rotatably arranged at the first end of the base unit through a first rotating shaft;
the first end of the connecting element is fixedly connected with one end, far away from the first rotating shaft, of the overturning element;
and the second turnover groove element is arranged at the second end of the connecting element and is connected with the inner rod unit in a turnover way.
6. The adjustable hanger structure of claim 5, said connection unit further comprising:
the first limiting groove element is arranged on the side wall of the overturning element, corresponds to the limiting column of the base unit and is matched with the limiting column of the base unit;
a second trough member open to a side wall of the second inverted trough member;
a spring element disposed within the second slot element;
and the protruding element is arranged in the second groove element in a sliding manner, corresponds to the second limiting groove element of the inner rod unit and is arranged in a matched manner.
7. The adjustable hanger structure of claim 1, wherein the inner bar unit comprises:
the first end of the inner rod element is rotatably arranged in the second turnover groove element of the connecting unit through a second rotating shaft.
8. The adjustable hanger structure of claim 7, wherein said inner bar unit further comprises:
and the second limiting groove elements are arranged at the first end of the inner rod element along the circumferential direction of the second rotating shaft.
9. An adjustable hanger construction according to claim 1, wherein the telescopic unit comprises:
the telescopic element is of a hollow structure with a downward opening and can be sleeved on the inner rod unit in a sliding manner;
the cover plate element is arranged at one end of the telescopic element far away from the base unit and used for sealing the telescopic element;
the fixing groove elements are arranged on the lower bottom wall inside the telescopic unit along the length direction of the telescopic unit and used for fixing the hanging unit.
10. An adjustable hanger construction according to claim 1, wherein said suspension unit comprises:
a fixing member detachably disposed in the fixing groove member of the telescopic unit;
and the first end of the hook element is fixedly connected with the bottom end of the fixing element, and the second end of the hook element is positioned below the telescopic unit.
CN202220972736.5U 2022-04-25 2022-04-25 Adjustable clothes hanger structure Active CN217471682U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220972736.5U CN217471682U (en) 2022-04-25 2022-04-25 Adjustable clothes hanger structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220972736.5U CN217471682U (en) 2022-04-25 2022-04-25 Adjustable clothes hanger structure

Publications (1)

Publication Number Publication Date
CN217471682U true CN217471682U (en) 2022-09-23

Family

ID=83307929

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220972736.5U Active CN217471682U (en) 2022-04-25 2022-04-25 Adjustable clothes hanger structure

Country Status (1)

Country Link
CN (1) CN217471682U (en)

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