Assembled clothes hanger
By combining the main frame rod and the support frame rod with a button-type design, the problem of the clothes rack being too bulky when folded is solved, enabling convenient assembly and stable use, and reducing production and transportation costs.
Patent Information
- Application Number
- CN202422624179.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2023-10-31
- Filing Date
- 2024-10-29
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2034-10-29
AI Technical Summary
Existing clothes racks still occupy a large volume or area when folded, which makes packaging and transportation inconvenient, and the assembleable structure has assembly difficulties or sturdiness issues.
The design incorporates first and second main frame rods, main frame connecting components, support frame rods, and support units. The clothes rack is quickly assembled and securely connected via button-type connecting components, reducing the number of holes in the components to prevent corrosion.
It significantly reduces the packaging volume of clothes racks, improves assembly convenience and sturdiness, reduces production, packaging and transportation costs, and extends product life.
Smart Images

Figure CN223535463U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to an assembled clothes rack, specifically, an assembled clothes rack that can significantly reduce the product packaging volume or area and maximize assembly convenience while being sturdy and safe to use. Background Technology
[0002] Typical floor-standing clothes racks have a structure that allows clothes to be folded and unfolded for drying, as well as a support unit to support the drying unit. Therefore, manufacturers can package and sell them in a folded state after production, and users can fold them up and store them when not in use.
[0003] However, in the first direction of the clothes rack (e.g., along the length), the area when folded is significantly smaller than when unfolded, but in other directions (e.g., along the width or height), the area when folded is not significantly different from that when unfolded.
[0004] Therefore, even folded clothes racks are still packaged and sold with a considerable volume or area. For these reasons, purchasing clothes racks offline presents consumers with difficulties in transporting them directly or by vehicle, while online sales can lead to delivery difficulties.
[0005] Alternatively, when clothes racks are made into an assemblable structure to reduce the volume during packaging or sale, problems may arise such as difficulty in assembly or issues with the sturdiness or durability of the assembled state. Utility Model Content
[0006] Technical issues
[0007] The aim is to provide an assembly-type clothes rack that can significantly reduce the volume or area of product packaging and maximize ease of assembly while being sturdy and stable in use.
[0008] Technical solution
[0009] The assembled clothes rack according to the embodiments of this utility model aims to solve the above-mentioned technical problems. It includes: a first pair of first main frame rods and a second pair of first main frame rods; a pair of main frame connecting components, which respectively connect one end of one of the first pair of first main frame rods and one end of one of the second pair of first main frame rods; a pair of second main frame rods, which respectively connect the other ends of the first pair of first main frame rods and the other ends of the second pair of first main frame rods through corresponding main frame rod connecting components in the pair of main frame rod connecting components; a first pair of first support frame rods and a second pair of first support frame rods, which respectively include an upper rod and a lower rod, the upper rod and the lower rod being connected to each other through other upper and lower rod connecting components or a self-formed link structure; and a pair of support frame connecting components, which respectively connect one end of the upper rod of one of the first support frames in the first pair of first support frames and one of the first support frames in the second pair of first support frames. One end of the upper rod of the frame is connected to the corresponding main frame connecting component of the pair of main frame connecting components through a central component; a pair of second support frame rods are connected to the other ends of the lower rods of the first pair of first support frame rods and the other ends of the lower rods of the second pair of first support frame rods through the corresponding support frame rod connecting components of the pair of support frame rod connecting components; and a pair of support units, which include a pair of first support rods, a second support rod, a pair of first connecting heads, a pair of second connecting heads, and a pair of third connecting heads, thereby supporting the corresponding first main frame rods of the first pair of first main frame rods and the second pair of first main frame rods, wherein the pair of first connecting heads is located at one end of the pair of first support rods, the pair of second connecting heads is located at both ends of the second support rods and connected to the pair of first connecting heads, and the pair of third connecting heads is located at the other end of the pair of first support rods.
[0010] It may further include button-type connecting components, which are respectively installed at both ends of the first pair of first main frame rods and the second pair of first main frame rods, at one end of the upper rod of the first pair of first support frame rods and the second pair of first support frame rods, and at the other end of the lower rod of the first pair of first support frame rods and the second pair of first support frame rods, and each includes a connecting button, thereby connecting to the corresponding connecting component of the main frame connecting component, the main frame rod connecting component, the support frame connecting component, and the support frame rod connecting component in a button-type manner.
[0011] The upper rod may include at least one upper recessed protrusion, which is adjacent to the other end and protrudes from the inner wall, and is located on the same line as the center of the engagement button; the lower rod may include an engagement guide groove, at least one second sub-groove, and a lower recessed protrusion, which is formed by recessing from one end to the other end, the at least one second sub-groove is formed by recessing along the outer periphery of one end in a direction perpendicular to the engagement guide groove, and the lower recessed protrusion is adjacent to the other end and protrudes from the inner wall, and is located on the same line as the center of the engagement button.
[0012] The first support rod and the second support rod may be parallel or perpendicular to each other due to the first joint and the second joint.
[0013] The first coupling head may include: a first-1 support rod coupling groove, into which one end of the first support rod is inserted and mounted; a main frame support groove, including a support frame and a support plate, the support frame including a bottom surface and a pair of sidewalls, the bottom surface being configured to contact the sidewalls of the first-1 support rod coupling groove, the pair of sidewalls being configured to extend from both sides of the bottom surface, the support plate being configured by having its inner side in contact with the support frame but not in contact with the support frame etched into a shape corresponding to the shape of the first main frame rod; and a head coupling groove, each including a pair of second sidewalls, a first protrusion, and a second protrusion, the pair of second sidewalls being configured to extend from both sides of one of the pair of first sidewalls in a direction parallel to the bottom surface, the first protrusion being configured to extend from the first sidewall in contact with the second sidewall towards the second sidewall, and the second protrusion being configured to protrude from the second sidewall in a direction opposite to each other.
[0014] The first protrusion may include a first protrusion (1-1) and a second protrusion (1-2), the first protrusion (1-1) and the second protrusion (1-2) being configured to project different lengths from the first sidewall and to contact each other at one end. When the first protrusion (1-1) is located further from the bottom surface than the second protrusion (1-2), the first protrusion (1-1) is configured to be a rectangular column shape. One end of the second protrusion (1-2) protrudes further from the first sidewall than the first protrusion (1-1), and the other end of the protrusion from the first sidewall is reduced in length by a first curvature, thereby contacting the first sidewall at the other end.
[0015] The second coupling head may include: a second support rod coupling groove, which is inserted into and mounted thereon of the second support rod; and a head coupling plate, the first surface of which contacts the second support rod coupling groove, and the second surface of which is provided with a first groove recessed in a shape corresponding to the first protrusion, and a second protrusion mounting hole is provided therethrough, wherein, when coupled with the first coupling head between the bottom surface and the top surface, a pair of second protrusions are mounted into the second protrusion mounting holes.
[0016] With the first support rod and the second support rod being parallel as a reference, the side of the head connecting plate adjacent to the first connecting head can be configured as a curved surface with a second curvature from one end of the first groove adjacent to the first connecting head to one end of the corresponding first protrusion adjacent to the bottom surface.
[0017] It may further include: an integrated connecting component installed at a position corresponding to the joint of the upper rod and the lower rod, and including a fixing unit joint groove; and a fixing unit including a foldable fixing frame equipped with a pair of fixing rods and a fixing rod mounting groove, the pair of fixing rods being coupled to the fixing unit, thereby supporting the first pair of first support frame rods and the second pair of first support frame rods in their assembled state, the fixing rods being installed thereon by inserting an opening unit with a diameter smaller than the diameter of the fixing rod into the fixing rod mounting groove.
[0018] The third connecting head may include: a first-second support rod connecting groove; the other end of the first support rod is inserted into the groove and mounted thereon; and a fastening hook that contacts the first-second support rod connecting groove and is configured as a semi-cylindrical shape that opens to one side and bends outward at both ends, and is fastened to the fixing rod or the fixing unit connecting groove.
[0019] The lower rod may include a locking groove adjacent to the end that engages with the upper rod, thereby being formed by a difference in diameter; the integrated connecting component may include a locking protrusion protruding from the inner wall.
[0020] Beneficial effects
[0021] According to the embodiments of the present invention, the assembled clothes rack, through the first to third joints of the supporting unit, can improve the ease of assembly and ensure the sturdiness of the assembled or used state of the assembled clothes rack, while reducing the volume that may be limited by the supporting unit when packaging and selling the assembled clothes rack.
[0022] Furthermore, according to the embodiments of the present invention, the components of the assembled clothes rack are connected by buttons, which maximizes the convenience for users during assembly and improves the robustness of the button-connected structure, thereby enabling the assembled clothes rack to be firmly and stably used.
[0023] Furthermore, in the assembled clothes rack according to the present invention, since the clothes rod connecting groove is formed in a shape that easily connects with the clothes rod, the ease of assembly can be improved.
[0024] Furthermore, in the assembled clothes rack according to the embodiments of the present invention, by not forming holes on each frame, the difficulties in the manufacturing process and the assembly difficulties in the production process can be eliminated, and corrosion occurring around the holes can be prevented, thereby improving product quality and extending product life.
[0025] Furthermore, in the assembled clothes rack according to the embodiments of the present invention, the volume in the separated state can be significantly reduced to achieve minimization, thereby reducing the costs required for production, packaging, storage and transportation, while improving the convenience of production, packaging, storage and transportation.
[0026] Furthermore, in the assembled clothes rack according to the present invention, each component can be separated according to the requirement of minimizing volume, which can reduce unnecessary parts and integrate parts with the same function, thereby reducing production costs while improving assembly efficiency and convenience.
[0027] Alternatively, the assembled clothes rack according to the present invention can extend the product life without incurring significant costs because its components are replaceable. Attached Figure Description
[0028] Figure 1 This is an exploded view showing an assembled clothes rack according to an embodiment of the present invention.
[0029] Figure 2 This is a diagram showing the button-type connecting component installed on the first main frame rod or the first support frame rod according to an embodiment of the present invention.
[0030] Figure 3 The figure shows a more detailed illustration of the button-type connecting component according to an embodiment of the present invention.
[0031] Figure 4 This is a diagram showing the connection of the connecting component corresponding to the button-type connecting component according to an embodiment of the present invention.
[0032] Figure 5 This is a diagram showing the fourth connecting member according to an embodiment of the present invention in further detail.
[0033] Figure 6 The diagram further illustrates in detail the first to third connecting members according to an embodiment of the present invention.
[0034] Figure 7 It is a diagram used to describe the combination of the first to third connecting parts with the button-type connecting part.
[0035] Figure 8 This is a diagram showing a second connecting member according to another embodiment of the present invention.
[0036] Figure 9 yes Figure 8 Enlarged view of the center bracket hook.
[0037] Figure 10 This is a diagram showing the frame connection components according to an embodiment of the present invention.
[0038] Figure 11 This shows the bracket being assembled to... Figure 10 A diagram illustrating an example of a modular clothes drying rack.
[0039] Figure 12 and Figure 13 The figures shown are of the fixing unit according to an embodiment of the present invention.
[0040] Figure 14 This is a diagram illustrating a support unit according to an embodiment of the present invention.
[0041] Figure 15 This is a diagram illustrating a support unit according to another embodiment of the present invention.
[0042] Figure 16 This is to show in further detail Figure 15 Diagram of the first to third joints.
[0043] Figure 17 It is a diagram used to describe the action of the first and second coupling heads engaging.
[0044] Figure 18 It shows the equipment Figure 15 A diagram of an assembled clothes drying rack with a central support unit.
[0045] Figure 19 yes Figure 18 An exploded view of the assembled clothes drying rack. Figure 20 This is a diagram illustrating a drying unit according to an embodiment of the present invention.
[0046] Figure 21 This is to show in further detail Figure 20 A diagram of the middle bracket component.
[0047] Figure 22 This is to show in further detail Figure 1 A diagram showing the combined state of the upper and lower swings.
[0048] Figure 23 Is with Figure 22 An exploded diagram relating to the combination of the upper and lower swings.
[0049] Figure 24 This is a figure showing the sixth connecting member according to an embodiment of the present invention in further detail.
[0050] Figure 25 This is a diagram showing the structure connected by the sixth connecting member according to an embodiment of the present invention.
[0051] Figure 26 This is a diagram showing the combined state of the upper and lower rods according to another embodiment of the present invention.
[0052] Figure 27 Is with Figure 26 An exploded diagram relating to the combination of the upper and lower swings.
[0053] Figure 28 This is a diagram showing the combined state of the upper and lower rods according to another embodiment of the present invention.
[0054] Figure 29 Is with Figure 28 An exploded diagram relating to the combination of the upper and lower swings.
[0055] Figure 30 This is a diagram showing the combined state of the upper and lower rods according to another embodiment of the present invention.
[0056] Figure 31 This is a diagram showing the combined state of the upper and lower rods according to another embodiment of the present invention.
[0057] Figure 32 It is equipped with a sixth connecting component. Figure 31 Cross-sectional view of (b).
[0058] Figure 33 and Figure 34 These are exploded and assembled views showing the connection relationship between the connecting component and the frame rod according to another embodiment of the present invention.
[0059] Figure 35 This is a diagram showing the assembled clothes rack according to an embodiment of the present invention.
[0060] Figure 36 This is a diagram illustrating a support unit according to another embodiment of the present invention.
[0061] Figure 37 and Figure 38The figures show an assembled clothes rack in an assembled state according to another embodiment of the present invention.
[0062] Figure Labels
[0063] 100: Assembled clothes rack; 120: Drying unit; 140: Support unit; 160: Fixing unit; 180: Supporting unit; CNT1~CNT6: First connecting part~Sixth connecting part; 122: Main frame; 142: Support frame; 162: Fixing frame Detailed Implementation
[0064] The specific embodiments of this utility model are described below with reference to the accompanying drawings. The following detailed description is provided to aid in understanding the methods, apparatus, and / or systems shown in this specification. However, these are exemplary, and the utility model is not limited thereto.
[0065] In describing embodiments of the present invention, detailed descriptions of known technologies related to the present invention will be omitted where such descriptions might obscure the core of the present invention. Furthermore, several terms described below are defined in consideration of their function in the present invention and may vary depending on the purpose or convention of the user or operator. Therefore, they should be defined based on the content throughout this description.
[0066] The terminology used in this detailed description is for the purpose of describing embodiments of the present invention and is not intended to be limiting. Singular expressions include plural expressions unless otherwise expressly intended. In this description, expressions such as "comprising" or "equipped" are used to refer to certain features, numbers, steps, operations, factors, parts or combinations thereof, and should not be construed as excluding the presence or possibility of one or more other features, numbers, steps, operations, factors, parts or combinations thereof other than those described.
[0067] The terms "upper side," "lower side," "one side," and "the other side," etc., are used in association with the arrangement directions in the accompanying drawings. Components of this utility model embodiment can be positioned in various arrangement directions; therefore, the directional terms are used for illustrative purposes only and are not intended to limit them. Figure 1 The X, Y, and Z axes can become a standard, and the orientations of other components in the attached diagrams can also be aligned with this standard. Figure 1 The same standard is used to describe the coordinate axes unless otherwise specified.
[0068] The terms "first," "second," etc., can be used to describe various components, but the components are not limited to these terms. These terms can be used to distinguish one component from others. For example, without exceeding the scope of this utility model, a first component can be named a second component, and similarly, a second component can be named a first component.
[0069] Furthermore, the description of the shape or position of each component of the assembled clothes rack according to the embodiments of the present utility model shall be based on the unfolded state after the components are assembled, unless otherwise stated.
[0070] Figure 1 This is an exploded view showing an assembled clothes rack according to an embodiment of the present invention.
[0071] refer to Figure 1 According to an embodiment of the present utility model, the assembled clothes drying rack 100 includes a drying unit 120, a support unit 140, a fixing unit 160, a supporting unit 180, and first connecting parts CNT1 to sixth connecting parts CNT6.
[0072] The drying unit 120 includes a pair of main frames 122 and a plurality of clothes drying rods 124. The pair of main frames 122 extend in a first direction (X-axis direction), and the plurality of clothes drying rods 124 are spaced apart from each other in a space separated by the pair of main frames 122 in a second direction (Y-axis direction). When the pair of main frames 122 are extended at a certain angle, they can together form a "V" or "I" shape. The support unit 140 includes a pair of support frames 142 that extend in the X-axis direction, thereby supporting the drying unit 120 in a third direction (Z-axis direction). The first connecting component CNT1 can also be named the main frame connecting component.
[0073] The support unit 140 includes a pair of support frames 142 that extend in the X-axis direction to support the drying unit 120 in the Z-axis direction. When extended at a certain angle, the pair of support frames 142 can together form a 180-degree rotating "V" shape. The pair of support frames 142 can be connected to each other via a second connecting member CNT2. The second connecting member CNT2 can also be named a support frame connecting member. Alternatively, the first connecting member CNT1 and the second connecting member CNT2 can be collectively referred to as a frame connecting member.
[0074] The second connecting member CNT2 can be integrally formed with the first connecting member CNT1, or can be formed independently of the first connecting member CNT1.
[0075] The first connecting component CNT1 and the second connecting component CNT2 are connected to each other via a third connecting component CNT3. The first connecting component CNT1 is coupled to a pair of main frames 122, and the second connecting component CNT2 is coupled to a pair of support frames 142. The third connecting component CNT3 may be designated as the central component. The third connecting component CNT3 may be integrally formed with at least one of the first connecting components CNT1 and the second connecting component CNT2, or it may be formed separately with each of the first connecting components CNT1 and the second connecting component CNT2.
[0076] The first connecting parts CNT1 to the third connecting parts CNT3 can rotate within a certain angle range based on their fixed axes, either independently or through additional hinge components (not shown). Consequently, the pair of main frames 122 and the pair of support frames 142 connected to the first connecting parts CNT1 to the third connecting parts CNT3 can rotate within corresponding angle ranges, thereby allowing the drying unit 120 and support unit 140 of the assembled clothes rack 100 according to this embodiment of the invention to be folded or unfolded. The first connecting parts CNT1 to the third connecting parts CNT3 will be described in further detail later.
[0077] Continue to refer to Figure 1 According to an embodiment of the present invention, a pair of main frames 122 may each include a pair of first main frame rods 122-1, a pair of second main frame rods 122-2, and a pair of fourth connecting components CNT4. The pair of first main frame rods 122-1 included in one of the main frames 122 may be referred to as the first pair of first main frame rods 122-1, and the pair of first main frame rods 122-1 included in the other main frame 122 may be referred to as the second pair of first main frame rods 122-1, for distinction. However, the first pair of first main frame rods 122-1 and the second pair of first main frame rods 122-1 are equipped with the same structure; therefore, the following description of the first main frame rods 122-1 can be applied to both the first pair of first main frame rods 122-1 and the second pair of first main frame rods 122-1.
[0078] The fourth connecting component CNT4 can be named the main frame rod connecting component. A pair of first main frame rods 122-1 can be spaced apart and arranged in parallel along the Y-axis, and a second main frame rod 122-2 can be joined to form a right angle with the pair of first main frame rods 122-1 on the plane formed by the X-axis and Y-axis. The pair of first main frame rods 122-1 and the second main frame rod 122-2 are joined by a pair of fourth connecting components CNT4.
[0079] According to an embodiment of the present invention, a pair of support frames 142 may each include a pair of first support frame rods 142-1, a pair of second support frame rods 142-2, and a pair of fifth connecting components CNT5. The pair of first support frame rods 142-1 included in one of the support frames 142 may be referred to as the first pair of first support frame rods 142-1, and the pair of first support frame rods 142-1 included in the other support frame 142 may be referred to as the second pair of first support frame rods 142-1, for distinction. However, the first pair of first support frame rods 142-1 and the second pair of first support frame rods 142-1 are equipped with the same structure; therefore, the following description of the first support frame rods 142-1 can be applied to both the first pair of first support frame rods 142-1 and the second pair of first support frame rods 142-1.
[0080] The fifth connecting component CNT5 can be named the support frame rod connecting component. Alternatively, the fourth connecting component CNT4 and the fifth connecting component CNT5 can also be referred to together as the frame rod connecting component.
[0081] A pair of first support frame rods 142-1 can be spaced apart and arranged in parallel along the Y-axis, and a second support frame rod 142-2 can be joined to form a right angle with the pair of first support frame rods 142-1 on a plane formed by the X-axis and Y-axis. The pair of first support frame rods 142-1 and the second support frame rod 142-2 are joined by a pair of fifth connecting parts CNT5.
[0082] At this point, the pair of first support frame rods 142-1 can be separated into an upper rod UR and a lower rod DR. The connection and separation of the upper rod UR and the lower rod DR constituting the first support frame rod 142-1 will be described in further detail later.
[0083] According to an embodiment of the present invention, a button-type connecting component BCM is installed at both ends of the first main frame rod 122-1 and the first support frame rod 142-1.
[0084] Figure 2 This figure shows the button-type connecting component installed on the first main frame rod or the first support frame rod according to an embodiment of the present invention. Figure 3 The figure further illustrates in detail the button-type connecting component according to an embodiment of the present invention. Figure 4 This is a diagram showing the connection of the connecting component corresponding to the button-type connecting component according to an embodiment of the present invention.
[0085] refer to Figures 1 to 4 The button-type connecting component BCM is installed at both ends of the first main frame rod 122-1 and the first support frame rod 142-1, respectively.
[0086] The button-type connecting component BCM installed at one end of the first main frame rod 122-1 is button-type connected to the first connecting component CNT1, and the button-type connecting component BCM installed at the other end of the first main frame rod 122-1 is button-type connected to the fourth connecting component CNT4. Figure 2 (a)
[0087] As described above, the first support frame rod 142-1 is separated into an upper rod UR and a lower rod DR. Therefore, the button-type connecting component BCM can be installed at one end of the upper rod UR and the other end of the lower rod DR, respectively. The button-type connecting component BCM installed at one end of the upper rod UR is button-connected to the second connecting component CNT2, and the button-type connecting component BCM installed at the other end of the lower rod DR is button-connected to the fifth connecting component CNT5.
[0088] As described above, since both sides of the first main frame rod 122-1 and the first support frame rod 142-1 are connected by buttons, the convenience and robustness of the connection can be greatly improved. The structure and method of the button connection according to the embodiments of this utility model will be further described later.
[0089] The separately equipped upper rod UR and lower rod DR can be combined through additional upper and lower rod connecting parts, or combined with each other through a connecting structure integrally formed with the upper rod UR or lower rod DR. Figure 2 (b) shows an example of the upper rod UR having an internal thread on one end and the lower rod DR having an external thread corresponding to the internal thread on one end, thus the upper rod UR and the lower rod DR being threadedly engaged. However, this is not the only example. The engagement of the upper rod UR and the lower rod DR will be described in further detail later.
[0090] The button-type coupling component BCM includes an insertion unit IU and a coupling unit CU. The insertion unit IU is inserted into the first main frame rod 122-1 or the first support frame rod 142-1. The coupling unit CU is formed by contacting the insertion unit IU at one end and is coupled to the corresponding connecting component. The insertion unit IU and the coupling unit CU can be formed as one unit. In this case, the corresponding connecting component CNT can be one of the first connecting component CNT1, the second connecting component CNT2, the fourth connecting component CNT4, and the fifth connecting component CNT5, but... Figure 4 An example of a button-type connecting component being connected to a fourth connecting component CNT4 or a fifth connecting component CNT5 is shown. An example of a button-type connecting component BCM being connected to a first connecting component CNT1 or a second connecting component CNT2 will be described later.
[0091] The outer diameter of the insertion unit IU can be formed to be the same as the inner diameter of the first main frame rod 122-1 or the first support frame rod 142-1. The outer diameter of the connecting unit CU can be formed to be the same as the outer diameter of the first main frame rod 122-1 or the first support frame rod 142-1.
[0092] The coupling unit CU includes a coupling button CB and a first cut line CL1. The coupling button CB protrudes from the outer peripheral surface of the coupling unit CU. The first cut line CL1 includes a portion of the outer periphery of the coupling button CB and is formed by cutting through the outer peripheral surface to prevent their two ends from connecting to each other. Here, "including a portion of the outer periphery of the coupling button CB" can mean that it is formed by contact with said portion of the outer periphery. However, it is not limited to this; the first cut line CL1 can be cut into adjacent portions of the outer periphery according to the shape of its portion of the outer periphery. The portion of the outer peripheral surface of the coupling unit CU in which the coupling button CB is disposed and surrounded by the first cut line CL1 is called an elastic sheet EP. The coupling unit CU can be implemented using materials such as plastic or metal with any elastic modulus.
[0093] When the coupling unit CU is inserted into its corresponding connecting part, a force in the insertion direction is applied to the coupling button CB protruding from the outer peripheral surface of the coupling unit CU. At this time, the other end, separated from the insertion unit IU of the coupling unit CU, is formed by rounding in the direction of its reduced outer diameter, thereby allowing it to be easily inserted into or separated from the inner side of its corresponding connecting part CNT.
[0094] The force applied to the connecting button CB is distributed to the elastic sheet EP, allowing the elastic sheet EP to sink into the inner space. At this time, the connection between the elastic sheet EP and the outer peripheral surface of the connecting unit CU is maintained through the unconnected ends in the first cut line CL1.
[0095] At this point, the corners of the connecting button CB are rounded, allowing the connecting unit CU to be more easily inserted into or separated from the inner side of its corresponding connecting component CNT. After the connecting button CB passes through the inner space of its corresponding connecting component CNT due to thrust and is pulled out from the connecting hole CH, the elastic sheet EP can return to its original position, that is, return to the same plane as the outer peripheral surface of the connecting unit CU.
[0096] Since the engagement button CB extends from the engagement hole CH, the first main frame rod 122-1 or the first support frame rod 142-1 can be engaged with its corresponding connecting component CNT via the button-type engagement component BCM. When it is necessary to separate from the corresponding connecting component CNT, the engagement button CB can be pressed in the opposite direction of insertion to insert it into the inner side of the corresponding connecting component CNT, thereby achieving separation.
[0097] In the button-type connecting component BCM shown according to an embodiment of the present invention, the connecting button CB is formed as a rectangle with rounded corners, and the first cut line CL1 or the elastic sheet EP is formed in the shape of a fingernail, but is not limited thereto. The connecting button CB can be formed as a triangle, an inverted triangle, a pentagon, a hexagon, an ellipse, or a star, and the first cut line CL1 can be formed in a shape corresponding to the outer periphery of the connecting button CB it includes. In this case, the first cut line CL1 can be formed to include at least 1 / 2 or 2 / 3 or more of the entire outer periphery of the connecting button CB. Similarly, the elastic sheet EP can be formed to correspond to the shape of the connecting button CB, or can be formed regardless of the shape of the connecting button CB.
[0098] Preferably, the bonding unit CU of the button-type bonding component BCM according to an embodiment of the present invention may further include one or a pair of second cut lines CL2. The second cut lines CL2 are formed by cutting the outer peripheral surface from the other end of the bonding unit CU. When equipped with a pair of second cut lines CL2, the pair of second cut lines CL2 can be configured symmetrically with respect to the bonding button CB. The second cut lines CL2 are bonded to the bonding wall CW of their corresponding connecting component CNT, thereby further strengthening the bond between the button-type bonding component BCM and its corresponding connecting component CNT.
[0099] As described above, push-button coupling components BCM are installed at both ends of the first main frame rod 122-1 and the first support frame rod 142-1 according to the embodiment of the present invention, thus making their assembly easy and secure. In order to facilitate and secure coupling with the push-button coupling components BCM, the connecting component according to the embodiment of the present invention is configured to correspond to the push-button coupling components BCM. This will be described below.
[0100] Figure 5 This is a diagram showing the fourth connecting member according to an embodiment of the present invention in further detail.
[0101] refer to Figure 1 , Figure 4 as well as Figure 5 The fourth connecting component CNT4 may include a fourth body BD4 and a fourth engaging groove CG4. The fourth body BD4 may be configured such that one end is open and the other end is closed, and the button-type engaging component BCM for mounting the first main frame rod 122-1 is inserted into and engaged with the fourth body BD4.
[0102] The outer peripheral surface of the fourth main body BD4 has an open coupling hole CH, which corresponds to the coupling button CB of the button-type coupling component BCM. As described above, the first main frame rod 122-1, that is, when the button-type coupling component BCM is coupled with the fourth connecting component CNT4, the coupling button CH is led out from the coupling hole.
[0103] The internal space of the fourth main body BD4 can be formed in a shape corresponding to the shape of the first main frame rod 122-1 or the button-type connecting component BCM, for example, a cylinder. According to embodiments of the present invention, each frame or rod is presumably configured as a tube, and therefore the component connected to each frame or rod is also configured in a shape corresponding to a cylinder, unless otherwise stated. However, according to embodiments of the present invention, each frame or rod can be configured in a shape such as a four-cornered prism, in which case the component connected to the frame or rod can also be configured in a shape corresponding to a four-cornered prism, etc.
[0104] The inner diameter of the fourth body BD4 can be reduced at least once in a stepwise manner on its other end side. Figure 5 Figure (b) shows an example where the inner diameter of the fourth body BD4 decreases one step from the first inner diameter id1 to the second inner diameter id2. Because the inner diameter of the fourth body BD4 decreases in a stepped manner, the coupling unit CU of the push-button coupling component BCM inserted into the fourth body BD4 can be more securely fitted.
[0105] The inner space of the fourth body BD4 may further include a connecting wall CW protruding from its inner wall. As described above, the connecting wall CW engages with the second cut line CL2 of the push-button connecting component BCM.
[0106] The outer side of the closed end of the fourth main body BD4 can be formed into an arc shape to ensure ease of use and safety.
[0107] The fourth connecting groove CG4 can protrude from the outside of the other end adjacent to the fourth main body BD4, and it can be formed with one end open and the other end closed by the fourth main body BD4. However, it is not limited to this. Since the fourth main body BD4 and the fourth connecting groove CG4 are formed as one piece, the other end of the fourth connecting groove CG4 may not be closed and its internal space may be connected to the internal space of the fourth main body BD4.
[0108] The second main frame rod 122-2 can be inserted into the internal space of the fourth connecting groove CG4, thereby being mounted thereon. The internal space of the fourth connecting groove CG4 can be formed in a shape corresponding to the shape of the second main frame rod 122-2, for example, a cylindrical shape.
[0109] As described above, the assembled clothes rack according to the present utility model optimizes the structure of the first main frame rod 122-1 and the second main frame rod 122-2, the button-type connecting component BCM and the fourth connecting component CNT4, thereby achieving minimization of volume, weight and components while ensuring ease of assembly and sturdiness after assembly.
[0110] At this time, the second main frame rod 122-2 according to this embodiment of the present invention can also be equipped with push-button type coupling components BCM at both ends, just like the first main frame rod 122-1. At this time, the fourth coupling groove CG4 can include coupling hole CH or coupling wall CW, just like the fourth body BD4.
[0111] Furthermore, the fourth connecting component CNT4 according to this embodiment of the present invention can adopt various structures that can further strengthen the connection between the first main frame rod 122-1 and the second main frame rod 122-2, or the button-type connecting component BCM. For example, a fourth reinforcing component RM4 can be provided at the connection between the fourth main body BD4 and the fourth connecting groove CG4 to support or distribute the load caused by their connection.
[0112] The above description of the fourth connecting component CNT4 can also be applied to the fifth connecting component CNT5. The description of the connection between the fourth connecting component CNT4 and the first main frame rod 122-1 and the second main frame rod 122-2, or the button-type connecting component BCM, can also be applied to the connection between the fifth connecting component CNT5 and the first support frame rod 142-1 and the second support frame rod 142-2, or the button-type connecting component BCM.
[0113] Figure 6 This is a diagram showing the first to third connecting members according to an embodiment of the present invention. Figure 7 It is a diagram used to describe the combination of the first to third connecting parts with the button-type connecting part.
[0114] refer to Figure 1 , Figure 6 as well as Figure 7 According to an embodiment of the present invention, the first connecting component CNT1 may include a pair of first connecting plates CP1 and a pair of first bodies BD1. A first through hole TH1 may be formed at the center of each first connecting plate CP1, and each first body BD1 may be configured to connect with the corresponding first connecting plate CP1. A button-type connecting component BCM, mounted on one end of the first main frame rod 122-1, is inserted into and connected to the open end of the first body BD1. Therefore, the internal space of each first body BD1 can be formed in a shape corresponding to the shape of the connecting unit CU of the button-type connecting component BCM, for example, a cylinder.
[0115] The second connecting component CNT2 can also be equipped with the same shape as the first connecting component CNT1. That is, the second connecting component CNT2 can include a pair of second connecting plates CP2 and a pair of second bodies BD2. The center of the second connecting plate CP2 forms a second through hole TH2, and the second body BD2 is connected to the second connecting plate CP2 to form a cylindrical internal space. The diameters of the first through hole TH1 and the second through hole TH2 can be the same. The button-type connecting component BCM, which is installed at one end of the first support frame rod 142-1, is inserted into and connected to the open end of the second body BD2.
[0116] The connection between the first main body BD1 of the first connecting component CNT1 and the button-type connecting component BCM installed at one end of the first main frame rod 122-1 is the same as the technical concept of the connection between the fourth main body BD4 of the fourth connecting component CNT4 and the button-type connecting component BCM installed at the other end of the first main frame rod 122-1, and is also the same as the technical concept of the connection between the second main body BD2 of the second connecting component CNT2 and the button-type connecting component BCM installed at the other end of the first support frame rod 122-1.
[0117] That is, a mating hole CH corresponding to the mating button CB of the button-type mating component BCM is formed openly on the outer peripheral surface of the first body BD1. When the button-type mating component BCM, which is mounted on one end of the first main frame rod 142-1, is mated with the first body BD1, the mating button CB is led out from the mating hole CH. In addition, the inner diameter of the first body BD1 decreases at least once in a stepped manner on its other end side, thereby making the mating unit CU of the button-type mating component BCM more securely mounted. Furthermore, the inner space of the first body BD1 may further include a mating wall CW protruding from its inner wall, thereby mating with the second cut line CL2 of the button-type mating component BCM.
[0118] However, unlike the fourth body BD4, one end of the first body BD1 can be formed in a shape suitable for connection with the first connecting plate CP1. The second body BD2 can be formed in the same shape as the first body BD1.
[0119] The first connecting component CNT1 and the second connecting component CNT2 can be combined through the third connecting component CNT3.
[0120] The first through hole TH1 and the second through hole TH2 are located at the same position because the pair of first connecting plates CP1 of the first connecting member CNT1 and the pair of first connecting plates CP1 of the second connecting member CNT2 overlap each other. The center rod CR can be installed on one side of the overlapping first through hole TH1 and the second through hole TH2 and provided from one side to the other side. The third connecting member CNT3 can be installed on the other side. The third connecting member CNT3 and the second connecting member CNT2 are provided in a pair by being connected by the third connecting member CNT3, and the center rod CR connects the pair of connected bodies, thereby improving the sturdiness of the assembled clothes rack 100 according to the embodiment of the present invention.
[0121] The third connecting component CNT3 may include a connecting hook CK and a fixing screw FS. First, the connecting hook CK can be inserted into the inner side of the center rod CR in the overlapping area of the first through hole TH1, the second through hole TH2, and the center rod CR. Then, the fixing screw FS is inserted into the connecting hook CK and installed.
[0122] With the above structure, the first connecting member CNT1 and the second connecting member CNT2 can rotate, thereby allowing the drying unit 120 and the support unit 140 to be used foldably. Furthermore, a portion of the side of the connecting hook CK is cut open and a protruding groove is formed inside. Therefore, when the fixing screw FS is installed on the connecting hook CK, pressure can be applied to further engage the center rod CR with the first through hole TH1 and the second through hole TH2, thereby making the connection between the first connecting member CNT1 and the third connecting member CNT3 more secure.
[0123] At this point, to make the connection more secure, a through-hole connecting tube TP can be further provided. The through-hole connecting tube TP can be installed in the overlapping first through-hole TH1 and second through-hole TH2, and the center rod CR is inserted inside it.
[0124] In addition, when the rotation angle between the first connecting component CNT1 and the second connecting component CNT2 is limited, the support unit 140 of the assembled clothes rack 100 according to the present utility model embodiment can be fixed without exceeding a certain angle, even if it does not include the other fixing unit 160.
[0125] Re-reference Figure 1 The fixing unit 160 fixes the movement of the support unit 140 by a pair of support frames 142 connected to the support unit 140.
[0126] Figure 8 This is a diagram showing a second connecting member according to another embodiment of the present invention.
[0127] refer to Figure 6 and Figure 8 , Figure 8 The first connecting component CNT1 and the third connecting component CNT3 can be connected with Figure 6 Equipped in the same way. Figure 6 The second connecting component CNT2 is equipped with the same shape as the first connecting component CNT1, but unlike this, Figure 8 The second connecting component CNT2 can be configured with a shape different from that of the first connecting component CNT1.
[0128] For example, Figure 8 The second body BD2 of the second connecting member CNT2 can be configured to be longer than the first body BD1 of the first connecting member CNT1. At least one first open area OA1 can be provided on the second body BD2, which is cut open to reduce the weight of the second connecting member CNT2. At least one bracket hook HK can be provided at the other end of the second body BD2.
[0129] Figure 9 yes Figure 8 Enlarged view of the center bracket hook.
[0130] refer to Figure 8 and Figure 9According to an embodiment of the present invention, the bracket hook HK may include a bracket plate HS and a support plate SS. The bracket plate HS may be configured to extend protrudingly from the second body BD2, and its other end, spaced apart from the second body BD2, bends toward the second connecting plate CP2 to form an open space. The support plate SS also extends protrudingly from the second body BD2, and its other end, spaced apart from the second body BD2, bends toward the second connecting plate CP2, with the other end configured to contact the bracket plate HS. The support plate SS may be configured with a side-closed shape or an open shape. Figure 9 An example is shown where the support plate SS closest to the other end is open.
[0131] The support unit 180 can be placed on the bracket hook HK. For example, the two ends formed by bending and cutting the support unit 180 can be placed after passing through the open side of the support plate SS. The support unit 180 can be equipped with a frame having at least two bends between the two ends formed by bending and cutting. The bends formed between the two ends of the support unit 180 can be used to place... Figure 1 The clothesline 124. However, the support unit 180 can be equipped in different forms. These will be described in detail later.
[0132] Figure 10 This is a diagram showing the frame connection components according to an embodiment of the present invention.
[0133] refer to Figure 6 and Figure 10 According to an embodiment of the present invention, the button-type connecting component BCM may include an integrally formed first connecting component CNT1 and a second connecting component CNT2. For example, the first connecting plate CP1 of the first connecting component CNT1 and the second connecting plate CP2 of the second connecting component CNT2 may be integrally formed. The first connecting plate CP1 of the first connecting component CNT1 and the second connecting plate CP2 of the second connecting component CNT2 can be connected to the first main frame rod 122-1 and the first support frame rod 142-1 respectively through the button-type connecting component BCM.
[0134] The second main body BD2 can be equipped with... Figure 8 The same structure. That is, the second body BD2 is equipped with at least one cut-and-open first open area OA1, and the other end may also be equipped with at least one bracket hook HK. In addition, the bracket hook HK may include a bracket plate HS and a support plate SS.
[0135] Figure 11 This shows the bracket being assembled to... Figure 10 A diagram illustrating an example of a modular clothes drying rack.
[0136] refer to Figure 10 and Figure 11According to an embodiment of the present invention, the bracket unit 180 can be equipped with a frame having at least two bends between its two ends formed by bending and cutting. At this time, with... Figure 8 and Figure 9 Unlike other brackets, the two ends formed by bending and cutting the bracket hook HK are placed through the first body hole BH1 formed in the first body BD1, and the bent portion formed between the two ends of the support unit 180 can be placed in the open space formed by bending the bracket plate HS. However, the support unit 180 can be equipped in different forms. These will be described in detail later.
[0137] Figure 12 and Figure 13 The figures shown are of the fixing unit according to an embodiment of the present invention.
[0138] First, refer to Figure 1 and Figure 12 According to an embodiment of the present invention, the fixing unit 160 may include a pair of fixing frames 162 and a pair of fixing rods 164.
[0139] Each fixed frame 162 has open frame through holes FTH formed at both ends of its inner side. In addition, the middle part of each fixed frame 162 is foldable (i.e., foldable type), so that it can be folded together when the assembled clothes rack 100 according to the present invention is folded in the assembled state.
[0140] A pair of fixing rods 164 can be installed after passing through the frame through hole FTH. In the assembled state of the clothes rack 100 according to the present utility model embodiment, each fixing rod 164 can be configured to correspond to the interval sd between a pair of first support frame rods 142-1 spaced apart in the Y-axis direction.
[0141] In addition to fixing the spacing between a pair of support frames 142, the fixing unit 160 according to this embodiment of the present invention also assists the drying unit 120 in performing its function. Therefore, the fixing unit 160 according to this embodiment of the present invention may further include a plurality of auxiliary clothes drying rod connecting grooves 166 and a plurality of auxiliary clothes drying rods 168. The auxiliary clothes drying rod connecting grooves 166 may be formed on the inner side of the fixing frame 162. In this case, the auxiliary clothes drying rods 168 are equipped with a length corresponding to the spacing between the pair of fixing frames 162 in the Y-axis direction, and therefore their length can be shorter than that of the fixing rods 164.
[0142] Next, refer to Figure 1 and Figure 13 ,like Figure 12 As shown, the fixing unit 160 includes a fixing frame 162 and a fixing rod 164, thereby supporting the assembled support frame 142 while assisting the function of the drying unit 120. However, compared with... Figure 12 The difference lies in Figure 13 In the fixed frame 162, the fixing rod 164 can be installed without passing through the frame through hole FTH through the fixed frame 162. Figure 13 A mounting groove FG for the fixing rod can be formed on the fixing unit 160, instead of a frame through hole FTH being formed on the fixing frame 162. The fixing rod 164 can be installed in the internal space of the mounting groove FG through the opening unit of the mounting groove FG.
[0143] At this time, the diameter of the opening unit of the fixing rod mounting slot FG can be smaller than the diameter of the fixing rod 164. After the fixing rod 164 is inserted into the fixing rod mounting slot FG, it can remain in place due to the elasticity of the fixing frame 162. Therefore, the fixing rod can be more easily attached to the fixing frame 162 while maintaining a secure state.
[0144] Figure 13 Examples (a) and (b) show an example of the downward-facing opening unit of the fixing rod mounting slot FG, but are not limited thereto. Figure 13 As shown in (c), the opening unit of the fixing rod mounting slot FG can be formed in the direction of both sides. Or, as Figure 13 As shown in (d), the fixing rod mounting slot FG can include two internal spaces with different diameters. Therefore, even if the diameter of the fixing rod 164 changes due to the size of the assembled clothes rack 100 according to this embodiment, the same fixing frame 162 can be used, thus simplifying the production process. Or... Figure 13 For example, in case (d), the fixing rod 164 is installed in the internal space (which is separated from the opening unit), thereby making the connection between the fixing frame 162 and the fixing rod 164 more secure.
[0145] Re-reference Figure 1 The support unit 180 is connected to a pair of equipped and corresponding support frames 142 and any one of the plurality of clothes drying rods 124. The angle formed by the drying unit 120 and the plane formed by the X-axis and Y-axis can vary depending on the position of the clothes drying rod 124 connected to the support unit 180.
[0146] Figure 14 This is a diagram illustrating a support unit according to an embodiment of the present invention.
[0147] refer to Figure 1 and Figure 14According to an embodiment of the present invention, the support unit 180 may include an upper frame 182 and a lower frame 184. The upper frame 182 and the lower frame 184 may be configured in a “┌┐” shape. The two edges of the upper frame 182 may be bent to accommodate a clothesline rod 124. The upper frame 182 and the lower frame 184 can be foldably connected. For example, the two ends of the upper frame 182 may be bent to form loops, and the lower frame 184 may be inserted into and connected to these loops. The two ends of the lower frame 184 may be bent.
[0148] At this time, the width WD of the lower frame 184 in the X-axis direction is longer than the spacing sd of the first support frame rods 142-1 in the Y-axis direction. Therefore, the lower frame 184 is supported by a pair of first support frame rods 142-1, and the upper frame 182 connected to the lower frame 184 can support the corresponding clothesline 124 with the help of the aforementioned support force.
[0149] With the aforementioned structure of the support unit 180, the volume and weight of the assembled clothes rack 100 before assembly can be minimized, and ease of use is ensured through the sturdiness after assembly. Furthermore, the support unit 180 according to this embodiment of the present invention further reduces the volume and weight before assembly while maintaining sturdiness during installation and use. This will be described below.
[0150] Figure 15 This is a diagram illustrating a support unit according to another embodiment of the present invention. Figure 16 This is to show in further detail Figure 15 Diagrams of the first to third joints in the middle. Figure 17 This diagram is used to describe the action of the first and second coupling heads engaging. Figure 18 It shows the equipment Figure 15 A diagram of an assembled clothes drying rack with a central support unit. Figure 19 yes Figure 18 An exploded view of the assembled clothes drying rack.
[0151] refer to Figures 15 to 19 According to an embodiment of the present invention, the support unit 180 is folded in a straight line before assembly (e.g., during packaging or sale), but can be unfolded in a "[" shape during assembly or use. Therefore, the support unit 180 according to this embodiment of the present invention supports the first main frame rod 122-1 by including a pair of first support rods SB1 and second support rods SB2, and first connecting heads CD1 to third connecting heads CD3. The support unit 180 can be configured as a pair to support two pairs of first main frame rods 122-1. One end of the first support rod SB1 has a first connecting head CD1, and both ends of the second support rod SB2 have second connecting heads CD2.
[0152] The first connecting head CD1 may include a first-1 support rod connecting groove SC1-1, a main frame support groove MG, and a head connecting groove HG. One end of a first support rod SB1 can be inserted into the internal space of the first-1 support rod connecting groove SC1-1, thereby mounting it thereon. The main frame support groove MG may include a pair of first sidewalls WL1, a support frame SF, and a support plate SP, wherein the support frame SF is configured with a bottom surface FP, and the support plate SP is configured to contact the inner side of the support frame SF. One side of the support plate SP that does not contact the inner side of the support frame SF may be configured to be etched into a semi-circular shape, thereby inserting the cylindrical first main frame rod 122-1 into the main frame support groove MG and mounting it to the support plate SP. However, this is not a limitation. The shape of one side of the support plate SP may vary depending on the shape of the first main frame rod 122-1, and may be formed by methods other than etching.
[0153] The head engagement groove HG may include a pair of second sidewalls WL2, a first protrusion BP1, and a second protrusion BP2. The second sidewalls WL2 may contact both sides of the first sidewalls WL1 of the supporting frame SF and are configured to extend in a direction parallel to the bottom surface FP. The first protrusion BP1 may protrude from the first sidewalls WL1, which are positioned in contact with the second sidewalls WL2, in the direction extending from the second sidewalls WL2.
[0154] The first protrusion BP1 may include a first protrusion BP1-1 and a first protrusion BP1-2, the first and second protrusions BP1-1 and BP1-2 protruding from the first sidewall WL1 with different lengths, and one end of each protrusion contacting the first sidewall WL1. The first protrusion BP1-1 may be positioned further from the bottom surface FP than the first protrusion BP1-2. In this case, the first protrusion BP1-1 may be configured as a rectangular column. Furthermore, the first protrusion BP1-2 may be configured such that one end of the first protrusion BP1 protrudes further from the first sidewall WL1 than the first protrusion BP1-1, and the other end's protrusion length from the first sidewall WL1 decreases with a first curvature, thereby contacting the first sidewall WL1 at the other end. For reference, when the first coupling head CD1 is viewed from the front, the first protrusion BP1 is obscured by the second sidewall WL2, but for ease of description... Figure 17 The cross-section of the first protrusion BP1 is shown.
[0155] A pair of second protrusions BP2 can be respectively provided from the second sidewall WL2 in a direction opposite to each other. Figure 16 (a) shows an example of the portion of the second protrusion BP2 and the second sidewall WL2 being etched into a cylindrical shape at the other end, but is not limited thereto.
[0156] The second coupling head CD2 may include a second support rod coupling groove SC2 and a head coupling plate HP. A second support rod SB2 is inserted into the internal space of the second support rod coupling groove SC2, thereby mounting it thereon. The bottom surface of the head coupling plate HP contacts and positions itself in contact with the second support rod coupling groove SC2, and its top surface may form a first groove GR1.
[0157] The first groove GR1 can be recessed to correspond to the shape of the first protrusion BP1. That is, the first groove GR1 can include a first groove GR1-1 and a first groove GR1-2, with one end of each groove contacting each other. The first groove GR1-1 can be recessed to correspond to the shape of the first protrusion BP1-1, and the first groove GR1-2 can be recessed to correspond to the shape of the first protrusion BP1-2. Therefore, when the first coupling head CD1 and the second coupling head CD2 are coupled to make the first support rod SB1 and the second support rod SB2 perpendicular ( Figure 17 (c) The first-1 protrusion BP1-1 contacts the first-1 groove GR1-1, and the first-2 protrusion BP1-2 contacts the first-2 groove GR1-2. Furthermore, when the first support rod SB1 and the second support rod SB2 are perpendicular ( Figure 17 (c) The area from the other end of the first groove GR1-1 on the top surface of the head bonding plate HP to one side of the head bonding plate HP can be attached to the outside of the other end of the first protrusion BP1-1.
[0158] The other side of the head joint plate HP can be equipped with a surface having a second curvature at a location from the other end of the first-second groove GR1-2 to the corresponding other end of the first-second groove GR1-2, wherein the first-second groove GR1-2 is formed when the first joint head CD1 and the second joint head CD2 are joined together to make the first support rod SB1 and the second support rod SB2 parallel. Figure 17 (b) The first-second groove GR1-2. At this time, the second curvature can be determined based on the first curvature of the first-second protrusion BP1-2, and the length from the first-second groove GR1-2 to the location at the other end of the corresponding first-second protrusion BP1-2, etc.
[0159] The first protrusion BP1 and the first groove GR1 described above are respectively divided into two regions, the purpose of which is to allow the first support rod SB1 and the second support rod SB2 to... Figure 17 (b) unfolds into Figure 17 (c) or, conversely, to maintain a firmly extended state while moving smoothly (e.g.) Figure 17 (c)), but not limited to this.
[0160] The second protrusion mounting hole BBH is provided through the head bonding plate HP. When the first bonding head CD1 and the second bonding head CD2 are engaged, a pair of second protrusions BP2 can be inserted into the second protrusion mounting hole BBH and mounted thereon. At this time, the head bonding plate HP may further include a second protrusion guide BGD, which is etched from another side toward the second protrusion mounting hole BBH. When the first bonding head CD1 and the second bonding head CD2 are engaged, a pair of second protrusions BP2 can be inserted into the second protrusion guide BGD.
[0161] As described above, the support unit 180 according to the embodiment of the present invention can be in a folded state (e.g., Figure 17 (b) After packaging and sale, in an unfolded state (e.g.) Figure 17 (c)) Installed onto the modular clothes rack 100 (e.g. Figure 18 (a) when, or conversely, in an unfolded state (such as Figure 17 (c) needs to be folded after use (e.g.) Figure 17 (b) During storage, the head coupling plate HP of the second coupling head CD2 moves flexibly and the coupling force is firm against the head coupling groove HG of the first coupling head CD1. As described above, while ensuring the sturdiness of the assembled clothes rack 100 according to the present invention, the volume that may be limited by the supporting unit when packaging and selling the assembled clothes rack can be significantly reduced.
[0162] The above describes only the connection between the first joint CD1 of one of the first support rods SB1 and the second joint CD2 located at one end of the second support rod SB2. However, the same applies to the connection between the first joint CD1 of the other first support rod SB1 and the second joint CD2 located at the other end of the second support rod SB2.
[0163] Furthermore, according to an embodiment of the present invention, the third coupling head CD3 of the support unit 180 can be located at the other end of a pair of first support rods SB1. Each third coupling head CD3 may include a first-second support rod coupling groove SC1-2 and a fastening hook FH. The other end of the first support rod SB1 can be inserted and coupled to the first-second support rod coupling groove SC1-2. The fastening hook FH can be configured as a semi-cylindrical shape open to one side. In this case, both ends of the fastening hook FH are partially bent outwards, thereby easily fastening with the object to be fastened, and further securing the connection through elasticity after fastening.
[0164] Figure 18 (b) description Figure 18The fastening action of the dashed portion in (a) illustrates an example, but is not limited to, the fastening action of the fixing frame 162 connected to the fixing rod 164 and the fastening hook FH fastening to the fixing unit engagement groove FXG of the sixth connector CNT6 (which connects the support frame 142 and the fixing rod 164). The fastening hook FH can also be fastened together with the fixing frame 162 to the fixing rod 164. The fixing unit engagement groove FXG of the sixth connector CNT6 will be described later. Figure 20 This is a diagram illustrating a drying unit according to an embodiment of the present invention. Figure 21 This is to show in further detail Figure 20 A diagram of the middle bracket component.
[0165] refer to Figure 20 and Figure 21 The drying unit 120 according to this embodiment of the present invention is configured to dry washed clothes. In order to prevent holes from forming on the main frame 122 according to this embodiment of the present invention, the drying unit 120 can be positioned between the main frames 122 spaced apart by an additional bracket component MTM.
[0166] Multiple clotheslines 124 can be mounted on the bracket assembly MTM. The bracket assembly MTM may include a pair of bracket frames MF and multiple clothesline mounting slots DG.
[0167] A pair of bracket frames MF are respectively coupled to the corresponding first main frame rod 122-1. To improve the convenience and safety of the above-mentioned coupling, the pair of bracket frames MF can each be formed in a semi-cylindrical shape to partially surround and couple with the first main frame rod 122-1. In this case, the bracket frame MF can be equipped with at least one cut-open second open area OA2 to achieve weight reduction. The second open area OA2 can be formed in the bracket frame MF in areas other than the minimum area required for placement on the first main frame rod 122-1 and forming the clothesline coupling groove DG.
[0168] Multiple clothesline connecting slots DG can be formed protruding from the outer side of the bracket frame MF. Multiple clothesline connecting slots DG can also be formed at certain intervals along the X-axis on the side of the bracket frame MF. One end of the clothesline 124 can be inserted into or separated from the first clothesline connecting slot DG1 within the clothesline connecting slots DG. The other end of the clothesline 124 can be inserted into or separated from the second clothesline connecting slot DG2 within the clothesline connecting slots DG.
[0169] Figure 22 This is to show in further detail Figure 1 A diagram showing the combined state of the upper and lower swings. Figure 23 Is with Figure 22 An exploded diagram relating to the combination of the upper and lower swings.
[0170] refer to Figure 1 , Figure 22 as well as Figure 23 According to an embodiment of the present invention, the first support frame rod 142-1 can be separated into an upper rod UR and a lower rod DR. The upper rod UR and the lower rod DR can be connected by a connecting rod CR. The connecting rod CR can be fitted inside the upper rod UR and the lower rod DR. That is, the outer diameter of the connecting rod CR can be fitted to be smaller than the inner diameter of the upper rod UR and the lower rod DR. The position of the upper rod UR, which is installed in the direction of the arrow, can be fixed by a first fixing ring FR1 of the connecting rod CR. The first fixing ring FR1 can be integrally formed with the connecting rod CR. For example, the first fixing ring FR1 can be protruding from the outer circumferential surface of the connecting rod CR, and the outer diameter of the first fixing ring FR1 can be larger than the outer diameter of the upper rod UR and the lower rod DR.
[0171] Using the first retaining ring FR1 as a reference, the lower part of the connecting rod CR can be inserted into the lower rod DR, and the upper part of the connecting rod CR can be inserted into the upper rod UR. To improve the bonding strength between the upper rod UR and the lower rod DR, the connecting rod CR can be equipped with at least one sub-ring SR. The sub-ring SR can be made of a flexible material, such as a rubber ring. The sub-ring SR can be integrally formed with the connecting rod CR, or it can be independently installed on the connecting rod CR.
[0172] The sub-ring SR can be installed in the first sub-groove SG1 formed on the outer circumferential surface of the connecting rod CR. For ease of description, Figure 23 The first sub-groove SG1 is shown without the sub-ring SR installed on the upper part of the connecting rod CR, but the first sub-groove SG1 on the upper part of the connecting rod CR can also be equipped with the sub-ring SR.
[0173] The integrated connecting component can be installed on the outside of the upper rod UR. In this case, the integrated connecting component can connect two or more different components in the assembled clothes rack 100 according to this embodiment of the invention. The integrated connecting component can be referred to as the sixth connecting component CNT6. The position of the sixth connecting component CNT6 can be fixed in the direction of the arrow by the first fixing ring FR1. The sixth connecting component CNT6 according to this embodiment of the invention can be installed without perforation in the frame or rod, and its connection is convenient and secure while minimizing the number and types of components.
[0174] Figure 24 The figure further illustrates the sixth connecting member according to an embodiment of the present invention in detail. Figure 25 This is a diagram showing the structure connected by the sixth connecting member according to an embodiment of the present invention.
[0175] refer to Figure 24 and Figure 25According to an embodiment of the present invention, the sixth connecting component CNT6 may include a sixth body BD6, a fixing unit coupling groove FXG, and a pair of supporting unit coupling flaps SW. The fixing unit coupling groove FXG protrudes from the sixth body BD6. A fixing rod 164 of a fixing unit 160 can be inserted into the fixing unit coupling groove FXG, thereby mounting it thereon.
[0176] One end of the lower frame 184 of the support unit 180 can be inserted through and installed into each of the pair of support unit connecting fins SW. The pair of support unit connecting fins SW protrude from the outside of the sixth connecting member CNT6 and may include a sixth through hole TH6 formed through the support unit connecting fins SW. The pair of support unit connecting fins SW can be configured symmetrically with respect to the fixing unit connecting groove FXG. Because the support unit connecting fins SW are configured as a symmetrical pair with respect to the fixing unit connecting groove FXG, they can be used even if the installation position of the sixth connecting member CNT6 is different; that is, they can be used for any of the four first support frame rods 142-1.
[0177] But not limited to this. When the support unit 180 is equipped with a section (such as...) Figure 8 or Figure 10 When the support unit 180 is fastened by the fastening hook FH, the sixth connector CNT6 may not be equipped with the support unit combined with the wing SW.
[0178] Figure 26 This is a diagram showing the combined state of the upper and lower rods according to another embodiment of the present invention. Figure 27 Is with Figure 26 An exploded diagram relating to the combination of the upper and lower swings.
[0179] refer to Figure 26 and Figure 27 One end of the lower rod DR can be inserted into the inside of the upper rod UR to form and join them. At this time, the joint strength between the upper rod UR and the lower rod DR can be improved by the sixth connecting part CNT6.
[0180] The sixth body BD6 of the sixth connecting member CNT6 may include an outer body OB and an inner body IB. The inner body IB may be configured to be shorter than the outer body OB. An internal groove IG may be provided between the inner body IB and the outer body OB. The internal groove IG may be configured to be open at one end and closed at the other end. The sixth connecting member CNT6 may not have a [missing information - likely a typo]. Figure 24 The supporting unit in the middle is combined with the airfoil SW.
[0181] The upper rod UR and lower rod DR can be inserted into the internal groove IG. A locking groove SJ can be formed in the lower rod DR, decreasing in diameter as it engages with the end of the upper rod UR. When the upper rod UR and lower rod DR are engaged, the other end of the closed internal groove IG of the sixth connecting member CNT6 can be fitted into the locking groove SJ. At least one second sub-groove SG2 can be provided on the outer peripheral surface of one end of the lower rod DR. When the upper rod UR and lower rod DR are engaged, the second sub-groove SG2 can be fitted with a recessed protrusion CPR of the upper rod UR. A engagement guide groove CGG can be formed from the second sub-groove SG2 of the lower rod DR to one end. When the upper rod UR and lower rod DR are engaged, the recessed protrusion CPR of the upper rod UR can be fitted into the second sub-groove SG2 along with the engagement guide groove CGG. Figure 28 This is a diagram showing the combined state of the upper and lower rods according to another embodiment of the present invention. Figure 29 Is with Figure 28 An exploded diagram relating to the combination of the upper and lower swings.
[0182] refer to Figure 28 and Figure 29 One end of the lower lever DR can be formed by inserting it into the other end of the upper lever UR. Therefore, the diameter of one end of the lower lever DR can be smaller than the diameter of the upper lever UR. Conversely, one end of the lower lever DR can be fitted with... Figure 23 The same structure is present below the middle connecting rod CR to improve the bonding strength with the upper rod UR. Specifically, at least one sub-ring SR can be fitted to one end of the lower rod D. The sub-ring SR can be made of a resilient material, such as a rubber ring. The sub-ring SR can be integrally formed with the lower rod DR, or it can be separately fitted and installed on the connecting rod CR. The sub-ring SR can be installed in the first sub-groove SG1 formed on the outer circumferential surface of the lower rod DR. Figure 29 The sub-ring SR is obscured by the first sub-slot, therefore the first sub-slot is not explicitly shown, but Figure 29 The first sub-slot in can be with Figure 23 The first sub-slot SG1 is equipped with the same features.
[0183] At this point, the sixth connecting component CNT6 passes through the upper rod UR and its position is fixed by the sixth retaining ring FR6. When the upper rod UR and the lower rod DR are engaged, the position of the sixth retaining ring FR6 is fixed by the locking groove SJ formed by the reduced diameter of the lower rod DR.
[0184] Figure 30 This is a diagram showing the combined state of the upper and lower rods according to another embodiment of the present invention.
[0185] refer to Figure 30When the lower lever DR is inserted into the upper lever UR according to this embodiment of the invention and they engage with each other, a pair of protruding protrusions PR of the lower lever DR protrude outward from the engagement hole (not shown) of the upper lever UR, thereby maintaining their engagement. The protruding part PM of the lower lever DR may be configured as a cone, with the diameter of the end of the protruding part PM protruding outward from the lower lever DR being smaller than the diameter of the other end configured inside the lower lever DR. The non-protruding end of the protruding protrusion PR may be configured to contact the side of the protruding part PM.
[0186] In the above embodiment, the upper rod UR and the lower rod DR are connected by an additional upper and lower rod connecting component. However, this is not the only possibility.
[0187] Figure 31 This is a diagram showing the combined state of the upper and lower rods according to another embodiment of the present invention. Figure 32 It is equipped with a sixth connecting component. Figure 31 (b) is a cross-sectional view.
[0188] refer to Figure 31 and Figure 32 The recessed protrusion CPR can be configured to be adjacent to the other end of the upper rod UR according to the embodiment of the present invention, and a second sub-slot SG2, a connecting guide slot CGG, and a locking slot SJ can be configured on one end of the lower rod DR. The recessed protrusion CPR can be configured to protrude to a certain extent from the interior of the upper rod UR, and the second sub-slot SG2 and the connecting guide slot CGG can be configured to be recessed to a certain extent on the outer side of the lower rod DR. Two recessed protrusions CPR and two sub-slots SG2 can be configured, but are not limited thereto. Therefore, Figure 31 An example is shown where the recessed protrusion CPR and the second sub-slot SG2 are each equipped with two. Figure 32 An example is shown where the recessed protrusion CPR and the second sub-slot SG2 are each configured as one. When the recessed protrusion CPR and the second sub-slot SG2 are each configured as two, the spacing between a pair of recessed protrusions CPR and the spacing between a pair of second sub-slots SG2 can be configured to be the same.
[0189] The recessed protrusion CPR of the upper rod UR moves along the engagement guide groove CGG until the lower rod DR is inserted into the upper rod UR, causing the upper rod UR to reach the locking groove SJ of the lower rod DR. At this time, the upper rod UR or the lower rod DR rotates in a direction perpendicular to the insertion direction of the lower rod DR, so that the recessed protrusion CPR of the upper rod UR is located in the second sub-groove SG2 of the lower rod DR. Thus, the engagement of the upper rod UR and the lower rod DR can be maintained.
[0190] According to an embodiment of the present invention, the lower rod DR may further include a recessed protrusion CPR. In this case, the recessed protrusions CPR of the upper rod UR and the lower rod DR are respectively located on the same line as the center of the engagement button CB of the button-type engagement component BCM. Therefore, after the upper rod UR reaches the locking groove SJ of the lower rod DR, when the user rotates the upper rod UR or the lower rod DR to align the recessed protrusions CPR of the upper rod UR and the lower rod DR on the same line, the position of the button-type engagement component BCM connected to the upper rod UR and the lower rod DR can be accurately positioned. Therefore, the assembly of the assembled clothes rack 100 according to an embodiment of the present invention can be accurately performed.
[0191] The sixth connector CNT6 can be installed onto the combined upper rod UR and lower rod DR. The combined upper rod UR and lower rod DR are inserted into the inner side of the sixth body BD6 of the sixth connector CNT6. The locking protrusion SPR formed on the inner wall of the sixth body BD6 can be positioned and fixed in the locking groove SJ. Although Figure 32 Not shown in the text, but as Figure 24 As shown, a fixing unit engagement groove FXG is formed on the sixth connector CNT6. Figure 1 The fixed unit 160 is uniformly connected to the support frame 142 through the sixth connector CNT6.
[0192] Re-reference Figure 1 In the assembled clothes rack 100 according to an embodiment of the present utility model, both ends of the first main frame rod 122-1, one end of the upper rod UR of the first support frame rod 142-1, and the other end of the lower rod DR of the first support frame rod 142-1 can be equipped with a button-type connecting component BCM. However, it is not limited to this.
[0193] Figure 33 and Figure 34 These are exploded and assembled views showing the connection relationship between the connecting component and the frame rod according to another embodiment of the present invention.
[0194] refer to Figure 1 , Figure 33 as well as Figure 34 In the assembled clothes rack 100 according to an embodiment of the present invention, the connecting component CNT and the frame rod FR can be connected by a rod connecting hook RH. The connecting component CNT can be the first connecting component CNT1, the second connecting component CNT2, the fourth connecting component CNT4, or the fifth connecting component CNT5 as described above. The frame rod FR can be at least one of the upper rod UR or the lower rod DR of the first main frame rod 122-1 and the first support frame rod 142-1.
[0195] The rod-connecting hook RH can be inserted into the inside of the frame rod FR, thereby being installed into the inside of the connecting member CNT. At this time, one end of the connecting member CNT can be equipped with at least one cut and open line OL. A connecting member connecting groove CCG and a connecting member locking protrusion CSJ can be formed in the separation area SA separated by the open line OL. The connecting member CNT can be fitted into the connecting member connecting groove CCG, and the connecting member locking protrusion CSJ can protrude from the connecting member CNT. Therefore, the bonding strength between the connecting member CNT and the frame rod FR according to the embodiment of this utility model can be improved.
[0196] Figure 35 This is a diagram showing the assembled clothes rack according to an embodiment of the present invention.
[0197] refer to Figure 35 According to the present invention, the assembled clothes rack 100 uses a button-type connecting component BCM to connect the first main frame rod 122-1 and the first support frame rod 142-1 with the corresponding connecting components (CNT1 to CNT5), thus significantly improving the ease of assembly, and improving the firmness of the connection through the structure of the button-type connecting component BCM and the corresponding connecting components (CNT1 to CNT5).
[0198] In addition, the assembled clothes rack 100 according to the present invention does not form holes in the frame or rod itself, thus solving the problems of corrosion and assembly difficulties.
[0199] Furthermore, in the assembled clothes rack 100 according to the present invention, the drying unit 120 and the support unit 140, which occupy the largest volume, can be separated into each frame. In particular, the longest first support frame rod 142-1 is separated into upper and lower rods, and its volume can be significantly reduced by means of the bracket component MTM, the fixing unit 160 and the support unit 180.
[0200] In addition, the assembled clothes rack 100 according to the present utility model embodiment realizes the combination of the first support frame rod 142-1, the fixing unit 160 and the supporting unit 180 through a single integrated connecting component with simple structure and convenient installation, thus reducing the volume, number and types of components while improving the ease of assembly.
[0201] The above describes in detail representative embodiments of the present invention. However, those skilled in the art will understand that various modifications can be made to the above embodiments without exceeding the scope of the present invention.
[0202] For example, with Figure 14 or Figure 15 Unlike the support unit 180, the support unit 180 can be configured to be similar to... Figure 36 Same shape. Figure 36 The portion of the support unit 180 placed in the bracket hook HK can be bent into a shape such as "[". Or, with Figure 1 Each component is assembled Figure 35 Unlike the modular clothes rack 100, when the support unit 180 is equipped with a single section, it can be used with... Figure 37 or Figure 38 The modular clothes racks are assembled in the same way as the 100 modular clothes racks.
[0203] Therefore, the scope of this utility model should not be limited to the embodiments described above, but should be defined by the claims and their equivalents.
Claims
1. An assembled clothes drying rack, comprising: The first pair of first main frame rods and the second pair of first main frame rods; A pair of main frame connecting components, which are respectively connected to one end of one of the first pair of first main frame rods and one end of one of the second pair of first main frame rods; A pair of second main frame rods, which are respectively connected to the other end of the first pair of first main frame rods and the other end of the second pair of first main frame rods through corresponding main frame rod connecting components in a pair of main frame rod connecting components; The first pair of first support frame rods and the second pair of first support frame rods each include an upper rod and a lower rod, and the upper rod and the lower rod are connected to each other by other upper and lower rod connecting parts or by their own link structure; A pair of support frame connecting components, which are respectively connected to one end of the upper rod of one of the first support frames in the first pair of first support frames and one end of the upper rod of one of the first support frames in the second pair of first support frames, and respectively connected to the corresponding main frame connecting components in the pair of main frame connecting components through a central component; A pair of second support frame rods, which are respectively connected to the other end of the lower rod of the first pair of first support frame rods and the other end of the lower rod of the second pair of first support frame rods through corresponding support frame rod connecting components in a pair of support frame rod connecting components; as well as A pair of support units includes a pair of first support rods, a second support rod, a pair of first connecting heads, a pair of second connecting heads, and a pair of third connecting heads, thereby supporting the corresponding first main frame rods in the first pair of first main frame rods and the second pair of first main frame rods, wherein the pair of first connecting heads is located at one end of the pair of first support rods, the pair of second connecting heads is located at both ends of the second support rods and connected to the pair of first connecting heads, and the pair of third connecting heads is located at the other end of the pair of first support rods.
2. The assembled clothes rack according to claim 1, wherein, It further includes: A button-type connecting component is respectively installed at at least one of the following: at both ends of the first pair of first main frame rods and the second pair of first main frame rods, at one end of the upper rod of the first pair of first support frame rods and the second pair of first support frame rods, and at the other end of the lower rod of the first pair of first support frame rods and the second pair of first support frame rods. Each component includes a connecting button, thereby connecting to the corresponding connecting component of the main frame connecting component, the main frame rod connecting component, the support frame connecting component, and the support frame rod connecting component in a button-type manner.
3. The assembled clothes rack according to claim 2, wherein, The upper rod includes at least one upper recessed protrusion, which protrudes from the inner wall near the other end and is aligned with the center of the engaging button. The lower rod includes a connecting guide groove, at least one second sub-groove, and a lower recessed protrusion. The connecting guide groove is formed by a downward slope from one end to the other end. The at least one second sub-groove is formed by a downward slope along the outer periphery of one end in a direction perpendicular to the connecting guide groove. The lower recessed protrusion is formed near the other end and protrudes from the inner wall, and is located on the same line as the center of the connecting button.
4. The assembled clothes rack according to claim 1, wherein, The first support rod and the second support rod are parallel or perpendicular to each other due to the first joint and the second joint.
5. The assembled clothes rack according to claim 4, wherein, The first connector includes: The first-1 support rod connecting groove is into which one end of the first support rod is inserted and installed; A main frame support groove includes a support frame and a support plate. The support frame includes a bottom surface and a pair of sidewalls. The bottom surface is configured to contact the sidewalls of the first-1 support rod engaging the groove. The pair of sidewalls are configured to extend from both sides of the bottom surface. The support plate is configured by having its inner side, which contacts the support frame but does not contact the support frame, etched into a shape corresponding to the shape of the first main frame rod. The head engagement groove includes a pair of second sidewalls, a first protrusion, and a second protrusion. The pair of second sidewalls are configured to extend from both sides of one of the pair of first sidewalls in a direction parallel to the bottom surface. The first protrusion is configured to extend from the first sidewall of the pair of first sidewalls that contacts the second sidewall toward the second sidewall. The second protrusion is configured to protrude from the second sidewall in a direction opposite to each other.
6. The assembled clothes rack according to claim 5, wherein, The first protrusion includes a first protrusion (1-1) and a second protrusion (1-2), the first protrusion (1-1) and the second protrusion (1-2) being configured to project from the first sidewall of different lengths and having one end in contact with each other. When the first-1 protrusion is located further away from the bottom surface than the first-2 protrusion, the first-1 protrusion is configured as a rectangular column shape, one end of the first-2 protrusion protrudes further on the first sidewall than the first-1 protrusion, and the other end protrudes from the first sidewall in a direction with a first curvature, thereby contacting the first sidewall at the other end.
7. The assembled clothes rack according to claim 5, wherein, The second coupling head includes: The second support rod is inserted into the groove and installed thereon; and The head connecting plate has a first surface that contacts the second support rod connecting groove, and a second surface that is provided with a first groove recessed to correspond to the shape of the first protrusion. A second protrusion mounting hole is provided therethrough, wherein, when engaged with the first connecting head between the bottom and top surfaces, a pair of second protrusions are mounted into the second protrusion mounting holes.
8. The assembled clothes rack according to claim 7, wherein, With the first support rod and the second support rod parallel as a reference, the side of the head joint plate adjacent to the first joint head is provided with a curved surface having a second curvature from one end of the first groove adjacent to the first joint head to one end of the corresponding first protrusion adjacent to the bottom surface.
9. The assembled clothes rack according to claim 1, wherein, It further includes: An integrated connecting component is installed at a position corresponding to the joint between the upper rod and the lower rod, and includes a fixing unit joint groove; and A fixing unit includes a foldable fixing frame equipped with a pair of fixing rods and fixing rod mounting slots. The pair of fixing rods are connected to the fixing unit, thereby supporting the first pair of first support frame rods and the second pair of first support frame rods in their assembled state. The fixing rods are mounted thereon by inserting them into the fixing rod mounting slots through openings with a diameter smaller than the diameter of the fixing rods.
10. The assembled clothes rack according to claim 9, wherein, The third connector includes: The first and second support rods are connected in a groove; the other end of the first support rod is inserted into the groove and installed thereon; and The fastening hook contacts the groove of the first-second support rod and is equipped with a semi-cylindrical shape that is open to one side and bent outward at both ends, and is fastened to the fixing rod or the groove of the fixing unit.
11. The assembled clothes rack according to claim 9, wherein, The lower rod includes a locking groove, which is located adjacent to the end that engages with the upper rod and is thus formed by a difference in diameter. The integrated connecting component includes a locking protrusion that protrudes from the inner wall.