A folding base and a folding clothes hanger
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-25
- Publication Date
- 2026-08-11
AI Technical Summary
然而目前针对承载衣物的衣架一般是由固定底座和晾晒杆所组成的,这种组合方式虽然能最大化的提高衣物在晾晒阶段的稳定性,但是固定底座占地面积大,且难以折叠携带,无法满足特定情况下的搬运以及运输需求
本申请实施例提供的一种折叠底座,该折叠底座首先通过两个铰接套筒的转动连接,可以实现平面方向的折叠,同时第一支撑立杆和第二支撑立杆分别与第一支撑横杆和第二支撑横杆铰接,可以实现竖直方向的折叠。另外,通过转动连接块、第一支撑立杆和第二支撑立杆的相互转动,可以在竖直面上形成稳定的三角形支撑区,可以分散折叠底座受到的压力;同时,使用包括第一铰接杆、第二铰接杆和第三铰接杆的铰接杆组,可以通过第一铰接杆实现第一支撑立杆和第一支撑横杆在竖直面的折叠,同时还能分隔竖直面,使得第一支撑立杆和第一支撑横杆之间形成稳定的小三角支撑区,进一步分散折叠底座受到的压力,对应的,第二铰接杆也可以方便第二支撑立杆和第二支撑横杆之间的折叠,并使得二者之间形成稳定的小三角支撑区;最后,通过第三铰接杆不仅可以引导第一支撑立杆和第二支撑立杆的转动折叠,还可以进一步分隔第一支撑立杆和第二支撑立杆所形成的三角形支撑区,进一步分散折叠底座受到的压力。因此该折叠底座通过转动连接块、包括第一铰接杆、第二铰接杆和第三铰接杆的铰接杆组可以提高折叠衣架的承载重量以及携带的简便性。
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Figure CN224620278U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of folding component technology, and more particularly to a folding base and a folding clothes hanger. Background Technology
[0002] With the increasing variety of clothing, clothes hangers are generally used as a carrier for washing and drying these clothes. However, current clothes hangers for carrying clothes are generally composed of a fixed base and a drying rod. Although this combination can maximize the stability of clothes during the drying process, the fixed base takes up a lot of space and is difficult to fold and carry, which cannot meet the needs of handling and transportation in certain situations.
[0003] Although some folding clothes hanger products exist at present, these products generally require a certain length of support rod to ensure support strength. This makes the capacity of folding clothes hangers still relatively large, making it difficult to meet the needs of easy carrying. In addition, folding clothes hangers generally use a hinged design, which makes traditional folding clothes hangers have a low load-bearing capacity, making it difficult to meet the needs of drying large quantities or high-quality clothes. Utility Model Content
[0004] This application provides a folding base and a folding clothes hanger to solve the following technical problem: how to simultaneously improve the load-bearing capacity and portability of the folding clothes hanger. In a first aspect, embodiments of this application provide a folding base, the folding base including symmetrically arranged folding support units, the two folding support units being rotatably connected by a hinged sleeve; the support unit includes: A first support crossbar and a second support crossbar are symmetrically arranged between them. The system comprises a first support column, a second support column, and a rotating connecting block. One end of the first support column is hinged to one end of the first support crossbar, and one end of the second support column is hinged to one end of the second support crossbar. The other ends of the first and second support columns are respectively connected to the two ends of the rotating connecting block to form a triangular support area. The articulated rod assembly includes a first articulated rod, a second articulated rod, and a third articulated rod. One end of the first articulated rod is connected to one side of the first supporting crossbar, and the other end of the first articulated rod is connected to one side of the first supporting vertical rod. One end of the second articulated rod is connected to one side of the second supporting crossbar, and the other end of the second articulated rod is connected to one side of the second supporting vertical rod. The rotation directions of the third articulated rod and the first articulated rod or the second articulated rod are perpendicular to each other.
[0005] Optionally, in adjacent folding support units, the other ends of the two first support crossbars are rotatably connected via the hinged sleeve.
[0006] Optionally, the hinged sleeve includes a first fixing pin and symmetrically arranged sleeve grooves. The sleeve grooves are semi-closed structures. The sleeve receiving grooves are used to accommodate the other end of the first support crossbar or the second support crossbar. The first fixing pin penetrates the other end of the first support crossbar or the second support crossbar, so that the first support crossbar or the second support crossbar can rotate within the sleeve grooves.
[0007] Optionally, the rotating connecting block includes a second fixing pin and symmetrically arranged receiving grooves. The receiving grooves are used to accommodate the other end of the first support rod or the second support rod. The second fixing pin penetrates the other end of the first support rod or the second support rod, so that the first support rod and the second support rod can rotate within the receiving grooves.
[0008] Optionally, the first hinge rod, the second hinge rod, and the third hinge rod all include a rotating pin, and the rotating pin is disposed in the middle section of the first hinge rod, the second hinge rod, and the third hinge rod.
[0009] Optionally, the middle sections of the first hinge rod, the second hinge rod, and the third hinge rod are provided with fixing plates and fixing grooves. When the first hinge rod, the second hinge rod, and the third hinge rod are in the open state, the fixing plates and the fixing grooves abut against each other to fix the open state of the first hinge rod, the second hinge rod, and the third hinge rod.
[0010] Optionally, the lengths of the first support crossbar and the second support crossbar are less than or equal to the lengths of the first support upright or the second support upright.
[0011] Secondly, embodiments of this application provide a folding clothes hanger, which includes the folding base described in the first aspect.
[0012] Optionally, the folding hanger further includes: The supporting unit includes a supporting crossbar, a fitting sleeve, a rotating sleeve, and symmetrically arranged supporting struts. The supporting struts pass through the rotating connecting block of the folding base to allow the supporting struts to slide up and down. The fitting sleeve is provided at the top end of one supporting strut and is engaged with one end of the supporting crossbar. The rotating sleeve is provided at the top end of the other supporting strut. The rotating end of the rotating sleeve is rotatably connected to the supporting strut, and the fixed end of the rotating sleeve is fixedly connected to the other end of the supporting crossbar to allow the supporting crossbar to rotate.
[0013] Optionally, one side of the supporting strut is provided with a plurality of through first fixing holes; The rotating connecting block further includes a through hollow sleeve, a fastening head, and a rotating plate. The through hollow sleeve is used to accommodate the bearing support rod. A second through fixing hole is provided on one side of the hollow sleeve. The first fixing hole and the second fixing hole are the same size and have the same opening direction. The rotating plate is rotatably connected to the surface of the rotating connecting block. One end of the fastening head is fixedly connected to one end of the rotating plate. When the bearing support rod is in a supported state, the other end of the fastening head passes through the first fixing hole and the second fixing hole to fix the bearing support rod. When the bearing support rod is in a folded state, the rotating plate rotates relative to the rotating connecting block, causing the fastening head to separate from the first fixing hole and the second fixing hole.
[0014] The technical solutions provided in this application have the following advantages compared with the prior art: This application provides a folding base. The folding base can be folded in the planar direction by rotating two hinged sleeves. At the same time, the first support column and the second support column are respectively hinged to the first support crossbar and the second support crossbar, which can be folded in the vertical direction. Furthermore, by rotating the connecting block and the mutual rotation of the first and second support rods, a stable triangular support area can be formed in the vertical plane, which can disperse the pressure on the folding base. Simultaneously, using a hinge rod assembly including a first hinge rod, a second hinge rod, and a third hinge rod, the first hinge rod enables the folding of the first support rod and the first support crossbar in the vertical plane, while also separating the vertical plane, forming a stable small triangular support area between the first support rod and the first support crossbar, further dispersing the pressure on the folding base. Correspondingly, the second hinge rod also facilitates the folding between the second support rod and the second support crossbar, forming a stable small triangular support area between them. Finally, the third hinge rod not only guides the rotational folding of the first and second support rods but also further separates the triangular support area formed by the first and second support rods, further dispersing the pressure on the folding base. Therefore, this folding base, through the rotating connecting block and the hinge rod assembly including the first, second, and third hinge rods, can improve the load-bearing capacity and portability of the folding hanger. Attached Figure Description
[0015] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application.
[0016] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, for those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0017] Figure 1 This is a schematic diagram of the structure of a folding base provided in an embodiment of this application; Figure 2 This is a schematic diagram of the structure of any one of the hinge rods in a hinge rod group of a folding base provided in an embodiment of this application; Figure 3 This is a schematic diagram of the structure of a rotating connecting block in a folding clothes hanger provided in an embodiment of this application; Figure 4 A top view of a folding clothes hanger provided in an embodiment of this application; Figure 5 This is a partial schematic diagram of the carrier unit provided in an embodiment of this application; Figure 6This is a schematic diagram of the overall structure of a folding clothes hanger in use, provided in an embodiment of this application. Figure 7 This is a schematic diagram of a folding clothes hanger in a folded state, provided in an embodiment of this application. Wherein, 1-hinged sleeve, 101-first fixing pin, 102-sleeve groove, 2-first support crossbar, 3-second support crossbar, 4-first support upright, 5-second support upright, 6-rotating connecting block, 601-second fixing pin, 602-accommodating groove, 603-hollow sleeve, 604-fastening head, 605-rotating piece, 606-second fixing hole, 7-hinged rod assembly, 701-first hinge rod, 702-second hinge rod, 703-third hinge rod, 8-rotating pin, 9-fixing piece, 10-fixing groove, 11-bearing crossbar, 12-fitting sleeve, 13-rotating sleeve, 14-bearing support rod, 1401-first fixing hole. Detailed Implementation
[0018] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0019] Various embodiments of this application may exist in the form of a range; it should be understood that the description in the form of a range is merely for convenience and brevity and should not be construed as a hard limitation on the scope of this application; therefore, it should be considered that the range description has specifically disclosed all possible sub-ranges and single numerical values within that range; for example, it should be considered that the range description from 1 to 6 has specifically disclosed sub-ranges such as from 1 to 3, from 1 to 4, from 1 to 5, from 2 to 4, from 2 to 6, from 3 to 6, etc., and single numbers within the range, such as 1, 2, 3, 4, 5, and 6, regardless of the range; in addition, whenever a numerical range is indicated herein, it means including any referenced number (fraction or integer) within the indicated range.
[0020] It should be noted that all directional indications in this utility model embodiment, such as up, down, left, right, front, back, etc., are only used to explain the relative positional relationship and movement of the components in a specific posture (as shown in the attached figure). If the specific posture changes, the directional indication will also change accordingly.
[0021] In this utility model, unless otherwise explicitly specified and limited, the terms "connection" and "fixation" should be interpreted broadly. For example, "fixation" can mean a fixed connection, a detachable connection, or an integral part; it can mean a mechanical connection, an electrical connection, or a magnetic connection; it can mean a direct connection or an indirect connection through an intermediate medium; it can mean the internal communication of two components or the interaction between two components, unless otherwise explicitly limited. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0022] Figure 1 An exemplary schematic diagram of a folding base provided in an embodiment of this application is shown; like Figure 1 As shown in the figure, this application embodiment provides a folding base, which includes symmetrically arranged folding support units, and the two folding support units are rotatably connected by a hinged sleeve 1; the support unit includes: The first support crossbar 2 and the second support crossbar 3 are symmetrically arranged between each other. The system comprises a first supporting column 4, a second supporting column 5, and a rotating connecting block 6. One end of the first supporting column 4 is hinged to one end of the first supporting crossbar 2, and one end of the second supporting column 5 is hinged to one end of the second supporting crossbar 3. The other ends of the first supporting column 4 and the second supporting column 5 are respectively connected to the two ends of the rotating connecting block 6, so as to form a triangular support area with the first supporting column 4 and the second supporting column 5. The hinge rod assembly 7 includes a first hinge rod 701, a second hinge rod 702, and a third hinge rod 703. One end of the first hinge rod 701 is connected to one side of the first support crossbar 2, and the other end of the first hinge rod 701 is connected to one side of the first support upright 4. One end of the second hinge rod 702 is connected to one side of the second support crossbar 3, and the other end of the second hinge rod 702 is connected to one side of the second support upright 5. One end of the third hinge rod 703 is connected to one side of the first support upright 4, and the other end of the third hinge rod 703 is connected to one side of the second support upright 5. The rotation directions of the third hinge rod 703 and the first hinge rod 701 or the second hinge rod 702 are perpendicular to each other.
[0023] It should be noted that a rotating assembly can be used at the hinge joints of the first support column 4 and the first support crossbar 2, as well as at the hinge joints of the second support column 5 and the second support crossbar 3. This rotating assembly can consist of a fixed cylinder, a fixed clamp, and a rotating pin 8. The fixed cylinder is located at the bottom end of the first support column 4 or the second support column 5, while the fixed clamp can be symmetrically arranged on both sides of the fixed cylinder. The rotating pin 8 penetrates the first support crossbar 2 or the second support crossbar 3 to enable the first support crossbar 2 and the second support crossbar 3 to rotate freely relative to the first support column 4 and the second support column 5.
[0024] It should be noted that the folding base provided in this application embodiment optimizes the mechanical properties of the folding hanger to enhance its load-bearing capacity and simplifies its carrying mechanism. These two aspects are achieved through symmetrical arrangement, multi-part hinges, and a triangular stabilizing structure, thus realizing both the load-bearing capacity and portability of the folding hanger. The specific principle is as follows: I. Increase load-bearing capacity: Distribute load through "multi-dimensional mechanical reinforcement": The core of load-bearing capacity lies in the structure's resistance to deformation. This folding base utilizes a composite mechanism of triangular stabilization between the first support rod 4 and the second support rod 5, multi-node force transmission, and symmetrical force balance to evenly distribute the vertical load (e.g., the weight of clothing) of the folding hanger across the entire base, preventing breakage or deformation caused by localized stress concentration. The specific working mechanism is as follows: 1. Core: The indeformability of the triangular support region: In each folding support unit, the first support rod 4, the second support rod 5, and the rotating connecting block 6 together form a triangular support area: (1) Mechanical principle: The triangle is the only structure in geometry without redundant degrees of freedom. Once the lengths of the three sides are fixed, the shape cannot be easily changed by external forces (compared to the characteristic of quadrilaterals being easily deformed).
[0025] (2) Function: When the top of the folding hanger bears the weight of the clothes, the vertical pressure will be transmitted to the two support poles. The triangular structure can convert the pressure into the axial force of the poles (instead of the bending moment that is easily deformed), which greatly improves the bending resistance of the two support poles and directly enhances the overall load-bearing capacity of the base.
[0026] 2. Auxiliary: Bidirectional force transmission and structural reinforcement of hinged rod assembly 7: The hinge rod group 7 (first hinge rod 701, second hinge rod 702, and third hinge rod 703) is not only used for folding, but also undertakes the combined functions of distributing local loads and limiting structural misalignment, and achieves secondary reinforcement of the folding base through the vertical rotation direction: (1) First hinge rod 701 (connecting the first support crossbar 2 and the first support upright 4), second hinge rod 702 (connecting the second support crossbar 3 and the second support upright 5): The hinge rod can restrict the longitudinal relative rotation of the crossbar and the upright, and prevent the crossbar from shifting laterally due to the weight of the clothes or the upright from tilting due to the weight of the clothes.
[0027] (2) Third hinge rod 703 (connecting two uprights): Its rotation direction is perpendicular to the first two (for example, the first two types of hinge rods rotate left and right, while the third hinge rod 703 rotates up and down), which can limit the lateral relative displacement of the two supporting uprights, prevent the folding base from tilting to one side due to unilateral force, and further strengthen the stability of the triangular support area.
[0028] 3. Foundation: Balanced force distribution between the symmetrical structure and the hinged sleeve 1 (1) Symmetrical arrangement of two folding support units: ensure that the load (mainly the weight of the clothes) is evenly distributed to the folding support units on both sides to avoid overloading on one side; (2) The folding support units are rotatably connected by the hinge sleeve 1: the hinge point can withstand a certain radial force, while ensuring the flexibility during folding, and can limit the excessive rotation between the folding support units in the unfolded state, maintaining the balance of the overall folding base structure.
[0029] II. Enhanced portability: Minimal storage achieved through multi-node hinges and a foldable structure. The core of its portability lies in its retractable structure and shrinkable size. This folding base, through a "fully hinged design + segmented folding logic," allows the stable structure in its unfolded state to quickly shrink into a flat, compact form. The specific principle is as follows: 1. Core: Rotatability of fully articulated joints All key connection points on the base are hinged (rather than fixed), ensuring that all components can rotate and fold flexibly. (1) Hinged connection between support upright and support crossbar: When unfolded, the support upright and support crossbar form a specific support angle; when folded, the support upright can rotate toward the support crossbar. (2) Hinge between support rod and rotating connecting block 6: When folded, the two support rods can rotate towards the middle, and the rotating connecting block 6 adjusts with the angle of the support rods to avoid structural jamming; (3) The hinge of the hinge rod group 7: Each hinge rod can be folded synchronously with the rotation of the support crossbar and the support upright, and the vertical rotation direction of the third hinge rod 703 does not affect the overall folding action. (4) Hinged sleeve 1 between units: Two support units rotate around the sleeve (for example, the two support units can be folded in the middle) to further reduce the lateral volume.
[0030] 2. Logic: Segmented folding achieves multi-layered contraction. The folding process can be divided into two steps: folding within a cell and folding between cells, ultimately achieving volume minimization. (1) Folding within the folding support unit: In a single folding support unit, the support crossbar and the support upright are hinged together, and the two support uprights are joined together with the third hinge rod 703 through the rotating connecting block 6, and the unit itself shrinks from a three-dimensional support form to a flat strip. (2) Folding between folding support units: Two retracted flat folding support units are folded in half towards the middle through the hinge sleeve 1 to form a double-layer flat structure (similar to a folded tripod), which is easy to carry.
[0031] III. Simultaneous Realization of Load Bearing and Carrying: Synergy in Structural Design The key advantage of this base is that it enhances the load-bearing structure while also serving the folding function, and the folding design does not sacrifice load-bearing capacity: (1) Triangular support area: When unfolded, it is the load-bearing core. When folded, it can be quickly closed due to the hinge of the upright and the connecting block, without hindering the shrinkage. (2) Hinged rod group 7: When unfolded, it is a reinforcement part; when folded, it can shrink synchronously due to the hinge characteristics, and the design of the vertical rotation direction does not increase the extra volume after folding. (3) Symmetrical and hinged sleeve 1: It can ensure balanced force when unfolded (improving the stability of load bearing) and can also achieve flexible rotation when folded (improving portability).
[0032] In summary, the folding base provided in this application embodiment solves the problems of poor load-bearing capacity and easy deformation of traditional folding clothes hangers by deeply integrating a mechanically stable structure with a foldable hinge design, while avoiding the defects of traditional load-bearing bases being bulky and difficult to carry, ultimately achieving a simultaneous improvement in both aspects.
[0033] In some alternative embodiments, in adjacent folding support units, the other ends of the two first support crossbars 2 are rotatably connected via the hinged sleeve 1.
[0034] In these embodiments, the first support crossbars 2 of the two folding support units are rotatably connected by a hinged sleeve 1, which enables the first support crossbars 2 to fold inward in the vertical plane. At the same time, the radial guidance of the hinged sleeve 1 can limit excessive rotation between the folding support units and maintain the balance of the overall folding base structure.
[0035] In some optional embodiments, the hinged sleeve 1 includes a first fixing pin 101 and symmetrically arranged sleeve grooves 102. The sleeve grooves 102 are semi-closed structures. The sleeve receiving groove is used to accommodate the other end of the first support crossbar 2 or the second support crossbar 3. The first fixing pin 101 penetrates the other end of the first support crossbar 2 or the second support crossbar 3, so that the first support crossbar 2 or the second support crossbar 3 can rotate within the sleeve grooves 102.
[0036] In these embodiments, a hinged sleeve 1, including a first fixing pin 101 and symmetrically arranged sleeve grooves 102, is used. By combining the sleeve grooves 102 and the first fixing pin 101, the first support crossbar 2 or the second support crossbar 3 can be folded inward in the vertical plane to form a double-layer flat structure, thereby minimizing the carrying volume of the folding support unit. In addition, the semi-enclosed sleeve grooves 102 can guide the first support crossbar 2 or the second support crossbar 3 to extend and support in the plane, improving the uniformity of force distribution on the overall folding support base, thereby ultimately increasing the load-bearing capacity of the folding support base.
[0037] It should be noted that the semi-enclosed sleeve groove 102 refers to a side opening of the sleeve groove 102 with the opening end facing the ground, while the unopened side can serve as a temporary fixing component, so that the first support crossbar 2 or the second support crossbar 3 of the two folding support units are in a straight state. In addition, this side opening method is conducive to guiding the first support crossbar 2 or the second support crossbar 3 to fold inward, forming a linkage with the rotation direction of the hinge rod group 7, thereby improving the folding speed and convenience of the folding base.
[0038] Figure 3 An exemplary schematic diagram of the structure of the rotating connecting block 6 in a folding clothes hanger provided in an embodiment of this application is shown; In some alternative implementations, such as Figure 3 As shown, the rotating connecting block 6 includes a second fixing pin 601 and symmetrically arranged receiving grooves 602. The receiving grooves 602 are used to receive the other end of the first support rod 4 or the second support rod 5. The second fixing pin 601 penetrates the other end of the first support rod 4 or the second support rod 5, so that the first support rod 4 and the second support rod 5 can rotate within the receiving grooves 602.
[0039] In these embodiments, a rotating connecting block 6, including a second fixing pin 601 and symmetrically arranged receiving grooves 602, is used. The first support rod 4 and the second support rod 5 can rotate within a certain angle through the cooperation between the receiving groove and the second fixing pin 601, so that the first support rod 4 and the second support rod 5 can form a stable triangular support area.
[0040] Figure 2 An exemplary schematic diagram of any one of the hinge rods in the hinge rod group 7 of a folding base provided in an embodiment of this application is shown; In some alternative implementations, such as Figure 2 As shown, the first hinge rod 701, the second hinge rod 702 and the third hinge rod 703 all include a rotating pin 8, and the rotating pin 8 is disposed in the middle section of the first hinge rod 701, the second hinge rod 702 and the third hinge rod 703.
[0041] In these embodiments, the rotating pin 8 is located in the middle section of the first hinge rod 701, the second hinge rod 702, and the third hinge rod 703. This allows the first hinge rod 701, the second hinge rod 702, and the third hinge rod 703 to be separated into two hinge pieces that rotate relative to each other, enabling the various hinge rods to rotate quickly and improving the convenience of folding. In addition, the rotating pin 8 can serve as a force-bearing point, improving the pressure-bearing capacity of the first hinge rod 701, the second hinge rod 702, and the third hinge rod 703, thereby increasing the overall load-bearing capacity of the folding base.
[0042] In some optional embodiments, the middle sections of the first hinge rod 701, the second hinge rod 702, and the third hinge rod 703 are provided with fixing plates 9 and fixing grooves 10. When the first hinge rod 701, the second hinge rod 702, and the third hinge rod 703 are in the open state, the fixing plates 9 and the fixing grooves 10 abut against each other to fix the open state of the first hinge rod 701, the second hinge rod 702, and the third hinge rod 703.
[0043] In these embodiments, fixing plates 9 and fixing grooves 10 are introduced in the middle sections of the first hinge rod 701, the second hinge rod 702, and the third hinge rod 703. Through the limiting effect of the fixing plates 9 and fixing grooves 10, the first hinge rod 701, the second hinge rod 702, and the third hinge rod 703 can be quickly unfolded during the unfolding phase of the folding base, and all three can be stably held in the unfolded state. Furthermore, the limiting effect of the fixing plates 9 and fixing grooves 10 can prevent misalignment between the first support upright 4 and the first support crossbar 2, the second support upright 5 and the second support crossbar 3, and the first support upright 4 and the second support upright 5 caused by free rotation of the hinge rods, thereby improving the overall stability of the folding base in use.
[0044] In some alternative embodiments, the lengths of the first support crossbar 2 and the second support crossbar 3 are less than or equal to the lengths of the first support upright 4 or the second support upright 5.
[0045] In these embodiments, the lengths of the first support crossbar 2 and the second support crossbar 3 are less than or equal to the lengths of the first support upright 4 or the second support upright 5. This avoids the first support crossbar 2 or the second support crossbar 3 being too long during the folding and storage stage of the folding base, thus increasing the difficulty of storage and improving the convenience of storing the folding base.
[0046] Figure 4 An exemplary top view of a folding clothes hanger provided in an embodiment of this application is shown; Based on a general inventive concept, such as Figure 4 As shown in the figure, this application embodiment provides a folding clothes hanger, which includes the folding base.
[0047] The folding clothes hanger is based on the folding base described above. The specific structure of the folding base can be referred to in the above embodiments. Since the folding clothes hanger adopts some or all of the technical solutions of the above embodiments, it has at least all the beneficial effects brought about by the technical solutions of the above embodiments, which will not be elaborated here.
[0048] Figure 5 A partial schematic diagram of the bearer unit provided in an embodiment of this application is shown as an example; In some alternative implementations, such as Figure 5 As shown, the folding clothes hanger also includes: The supporting unit includes a supporting crossbar 11, a fitting sleeve 12, a rotating sleeve 13, and symmetrically arranged supporting struts 14. The supporting struts 14 pass through the rotating connecting block 6 of the folding base to allow the supporting struts 14 to slide up and down. The fitting sleeve 12 is provided at the top of one supporting strut 14, and the fitting sleeve 12 is engaged with one end of the supporting crossbar 11. The rotating sleeve 13 is provided at the top of the other supporting strut 14. The rotating end of the rotating sleeve 13 is rotatably connected to the supporting strut 14, and the fixed end of the rotating sleeve 13 is fixedly connected to the other end of the supporting crossbar 11 to allow the supporting crossbar 11 to rotate.
[0049] In these embodiments, a support unit is used, comprising a support crossbar 11, a fitting sleeve 12, a rotating sleeve 13, and symmetrically arranged support struts 14. The support struts 14 are inserted through the rotating connecting block 6, allowing for vertical displacement. The fitting sleeve 12 of one support strut 14 engages with a section of the support crossbar 11, enabling quick disassembly and assembly of the support crossbar 11. Finally, the rotating sleeve 13 of the other support strut 14 allows the support crossbar 11 to rotate around its top, facilitating quick folding and storage. Furthermore, the fixed fitting of the fitting sleeve 12 and the rotating sleeve 13 increases the contact area between the support crossbar 11 and the support struts 14, effectively distributing the weight of the clothing on the support crossbar 11 and increasing the overall load-bearing capacity of the folding hanger.
[0050] It should be noted that the configuration of the rotating sleeve 13 can be similar to that of the rotating assembly. The bearing crossbar 11 is fixed by the fixed sleeve, one end of the fixed clamp is fixed to the surface of the fixed sleeve, and the other end is rotatably connected to the bearing support rod 14 through the rotating pin 8, thereby realizing the rotation of the bearing crossbar 11 relative to the bearing support rod 14.
[0051] It should be noted that the fitting sleeve 12 is configured differently from the rotating assembly. One end of the fitting sleeve 12 is fixed to the top of the supporting strut 14, while the other end has an arc-shaped opening. The spacing of the arc-shaped openings is smaller than the diameter of the supporting crossbar 11. Through the elastic deformation of the fitting sleeve 12 itself (which requires the material of the fitting sleeve 12 to have a certain elasticity, and can be formed using thin metal sheets or plastic materials), the supporting crossbar 11 can be embedded, fixed, and snapped together.
[0052] In some optional embodiments, one side of the supporting strut 14 is provided with a plurality of through first fixing holes 1401; The rotating connecting block 6 further includes a through hollow sleeve 603, a fastening head 604, and a rotating plate 605. The through hollow sleeve 603 is used to accommodate the bearing support rod 14. A through second fixing hole 606 is provided on one side of the hollow sleeve 603. The first fixing hole 1401 and the second fixing hole 606 are the same size and have the same opening direction. The rotating plate 605 is rotatably connected to the surface of the rotating connecting block 6. One end of the fastening head 604 is fixedly connected to one end of the rotating plate 605. When the bearing support rod 14 is in a supported state, the other end of the fastening head 604 passes through the first fixing hole 1401 and the second fixing hole 606 to fix the bearing support rod 14. When the bearing support rod 14 is in a folded state, the rotating plate 605 rotates relative to the rotating connecting block 6, causing the fastening head 604 to separate from the first fixing hole 1401 and the second fixing hole 606.
[0053] In these embodiments, a hollow sleeve 603 is provided inside the rotating connecting block 6, forming a sliding channel for the supporting rod 14, thereby enabling the supporting rod 14 to move vertically in the vertical plane. Additionally, a first fixing hole 1401 is provided on one side of the supporting rod 14, and a second fixing hole 606 is provided on the hollow sleeve 603. A fastening head 604 and a rotating plate 605 are also provided. In the supported state, the fastening head 604 can pass through the first fixing hole 1401 and the second fixing hole 606, thus fixing the supporting rod 14 in the vertical direction. Simultaneously, the fastening head 604 can convert the vertical pressure received by the supporting rod 14 into a lateral dispersing force, achieving stable support for the overall folding hanger. In the folded state, the rotating plate 605 can cause the fastening head 604 to separate from the first fixing hole 1401 and the second fixing hole 606, allowing the supporting rod 14 to slide down along the hollow sleeve 603 and be stored.
[0054] It should be noted that the structure of the rotating plate 605 and the rotating connecting block 6 can be similar to that of a spring clip. A rigid spring is provided between the rotating plate 605 and the rotating connecting block 6. One end of the rigid spring extends to abut against the rotating plate 605, while the other end of the rigid spring extends to abut against the surface of the rotating connecting block 6, thereby realizing the rotation of the rotating plate 605 and the rotating connecting block 6.
[0055] In summary, the folding clothes hanger provided in this application has the following usage process: like Figure 6 As shown, when the folded clothes hanger needs to be used, the two folding support units are first pulled open. At this time, under the action of the hinge sleeve 1, the first support crossbar 2 and the second support crossbar 3 are made to form a relatively straight support crossbar between the two first support crossbars 2 and the two second support crossbars 3 through the action of the sleeve groove 102 and the first fixing pin 101. At the same time, the fixing plates 9 and fixing grooves 10 of the first hinge rod 701 and the second hinge rod 702 abut against each other under the action of the rotation pin 8, so that the first support upright 4 and the first support crossbar 2 and the second support crossbar 3 are in contact. A stable small triangular support area is formed between the support rod 5 and the second support crossbar 3. During this process, the fixing plate 9 and fixing groove 10 of the third hinge rod 703 between the first support rod 4 and the second support rod 5 abut against each other under the rotation of the rotating pin 8, and through the action between the receiving groove of the rotating connecting block 6 and the second fixing pin 601, a stable triangular support area is formed between the first support rod 4 and the second support rod 5. At the same time, the triangular support area is divided into smaller triangular support areas by the extended third hinge rod 703 to complete the unfolding of the folding base.
[0056] Then, the rotating plate 605 is rotated relative to the rotating connecting block 6, causing the fastening head 604 to separate from the bearing support rod inside the hollow sleeve 603. Then, the vertical position of the bearing support rod is adjusted so that the first fixing hole 1401 at different heights and the second fixing hole 606 of the hollow sleeve 603 are aligned. After the bearing support rod 14 reaches the preset height, the operation is repeated until the other bearing support rod 14 reaches the same or the height required for use. Then, the fastening head 604 is inserted into the first fixing hole 1401 and the second fixing hole 606 by the rotating plate 605 to achieve stable support for the bearing support rod 14. Then, the bearing crossbar 11 is rotated through the rotating sleeve 13 until the bearing crossbar 11 is close to the fitting sleeve 12. Then, the bearing crossbar 11 is pressed into the fitting sleeve 12 to achieve the snap-fit of the bearing crossbar 11, thereby completing the support use of the folding clothes hanger.
[0057] like Figure 7 As shown, when it is necessary to fold the folding hanger in its supported state, the folding hanger is folded by reversing the above operation.
[0058] The above description is merely a specific embodiment of this application, enabling those skilled in the art to understand or implement this application. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of this application. Therefore, this application is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features claimed in this application.
Claims
1. A folding base, characterized in that, The folding base includes symmetrically arranged folding support units, and the two folding support units are rotatably connected by a hinged sleeve (1); the support unit includes: The first support crossbar (2) and the second support crossbar (3) are symmetrically arranged between each other; The system comprises a first support rod (4), a second support rod (5), and a rotating connecting block (6). One end of the first support rod (4) is hinged to one end of the first support crossbar (2), and one end of the second support rod (5) is hinged to one end of the second support crossbar (3). The other ends of the first support rod (4) and the second support rod (5) are respectively connected to the two ends of the rotating connecting block (6) to form a triangular support area between the first support rod (4) and the second support rod (5). The articulated rod assembly (7) includes a first articulated rod (701), a second articulated rod (702), and a third articulated rod (703). One end of the first articulated rod (701) is connected to one side of the first support crossbar (2), and the other end of the first articulated rod (701) is connected to one side of the first support upright (4). One end of the second articulated rod (702) is connected to one side of the second support crossbar (3), and the other end of the second articulated rod (702) is connected to one side of the second support upright (5). One end of the third articulated rod (703) is connected to one side of the first support upright (4), and the other end of the third articulated rod (703) is connected to one side of the second support upright (5). The rotation directions of the third articulated rod (703) and the first articulated rod (701) or the second articulated rod (702) are perpendicular to each other.
2. The folding base of claim 1, wherein, In adjacent folding support units, the other ends of the two first support crossbars (2) are rotatably connected by the hinge sleeve (1).
3. The folding base of claim 1 or 2, wherein, The hinged sleeve (1) includes a first fixing pin (101) and symmetrically arranged sleeve grooves (102). The sleeve grooves (102) are semi-closed structures. The sleeve receiving groove is used to accommodate the other end of the first support crossbar (2) or the second support crossbar (3). The first fixing pin (101) penetrates the other end of the first support crossbar (2) or the second support crossbar (3), so that the first support crossbar (2) or the second support crossbar (3) rotates in the sleeve grooves (102).
4. The folding base of claim 1, wherein, The rotating connecting block (6) includes a second fixing pin (601) and symmetrically arranged receiving grooves (602). The receiving grooves (602) are used to receive the other end of the first support rod (4) or the second support rod (5). The second fixing pin (601) penetrates the other end of the first support rod (4) or the second support rod (5) so that the first support rod (4) and the second support rod (5) can rotate within the receiving grooves (602).
5. The folding base of claim 1, wherein, The first hinge rod (701), the second hinge rod (702) and the third hinge rod (703) all include a rotating pin (8), and the rotating pin (8) is located in the middle section of the first hinge rod (701), the second hinge rod (702) and the third hinge rod (703).
6. The folding base of claim 1, wherein, The first hinge rod (701), the second hinge rod (702), and the third hinge rod (703) are all provided with a fixing plate (9) and a fixing groove (10) in the middle section. When the first hinge rod (701), the second hinge rod (702), and the third hinge rod (703) are in the open state, the fixing plate (9) and the fixing groove (10) abut against each other to fix the first hinge rod (701), the second hinge rod (702), and the third hinge rod (703) in the open state.
7. The folding base of claim 1, wherein, The lengths of the first support crossbar (2) and the second support crossbar (3) are less than or equal to the lengths of the first support upright (4) or the second support upright (5).
8. A folding clothes hanger, characterized by The folding hanger includes the folding base as described in any one of claims 1 to 7.
9. The folding clothes hanger of claim 8, wherein The folding clothes hanger also includes: The bearing unit includes a bearing crossbar (11), a fitting sleeve (12), a rotating sleeve (13), and symmetrically arranged bearing support rods (14). The bearing support rods (14) are inserted into the rotating connecting block (6) of the folding base to enable the bearing support rods (14) to slide up and down. The fitting sleeve (12) is provided at the top of one bearing support rod (14), and the fitting sleeve (12) is engaged with one end of the bearing crossbar (11). The rotating sleeve (13) is provided at the top of the other bearing support rod (14), and the rotating end of the rotating sleeve (13) is rotatably connected to the bearing support rod (14). The fixed end of the rotating sleeve (13) is fixedly connected to the other end of the bearing crossbar (11) to enable the bearing crossbar (11) to rotate.
10. The folding clothes hanger of claim 9, wherein The supporting strut (14) has multiple through first fixing holes (1401) on one side; The rotating connecting block (6) further includes a through hollow sleeve (603), a fastening head (604), and a rotating plate (605). The through hollow sleeve (603) is used to accommodate the bearing support rod (14). A through second fixing hole (606) is provided on one side of the hollow sleeve (603). The first fixing hole (1401) and the second fixing hole (606) are the same size and have the same opening direction. The rotating plate (605) is rotatably connected to the surface of the rotating connecting block (6). One end of the fastening head (604) is fixedly connected to... Connect one end of the rotating plate (605); when the bearing support rod (14) is in the supported state, the other end of the fastening head (604) passes through the first fixing hole (1401) and the second fixing hole (606) to fix the bearing support rod (14); when the bearing support rod (14) is in the folded state, the rotating plate (605) rotates relative to the rotating connecting block (6) to separate the fastening head (604) from the first fixing hole (1401) and the second fixing hole (606).