Suitcase puller with hidden external hanging structure and suitcase

CN224776238UActive Publication Date: 2026-09-22SHANGHAI TUPLUS LUGGAGE TRADING CO LTD
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Patent Information

Application Number
CN202521957442.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-11
Publication Date
2026-09-22
Estimated Expiration
2035-09-11

AI Technical Summary

Technical Problem

然而,此类行李箱通常缺乏便捷的外挂功能,使用者在出行过程中如需悬挂手提袋、雨伞或其它随身物品,往往需额外借助挂钩配件,或直接将物品悬挂于拉杆把手上,存在放置不稳、易滑落或影响拉杆正常使用的问题

Benefits of technology

本实用新型结构简单且操作方便,基于不改变拉杆基本功能前提下,在拉杆侧部增加旋转式的外挂结构,在拉杆使用状态时侧部的外挂结构旋出,形成凸起式的悬挂结构,可在凸起内放置包带等悬挂物,在无需使用时可将外挂结构旋转至隐藏于拉杆端部,其结构形式简单且不影响拉杆整体外观。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a kind of luggage pull rod and luggage with hidden external hanging structure, including pull rod main part and external hanging structure, external hanging structure includes external hanging structure main body and rotating shaft, rotating shaft is inserted in accommodating cavity;Rotating shaft outside is provided with clamping groove structure along circumference, the inner wall of accommodating cavity is fixedly installed with elastic clamping piece, elastic clamping piece is positioned to rotating shaft when rotating shaft rotates to first angle and second angle and extends into clamping groove structure;External hanging structure main body is protruded on the upper surface of pull rod upper cover when rotating shaft rotates to first angle, rotating shaft rotates to second angle, no higher than the upper surface of pull rod upper cover.The utility model is based on not changing the basic function premise of pull rod, increase rotating external hanging structure in pull rod side portion, external hanging structure is rotated out when pull rod use state, form protruding structure, can place bag strap etc. Hanging in protruding structure, when not need to use, can rotate and hide external hanging structure, its structure form is simple and does not affect pull rod overall appearance.
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Description

Technical Field

[0001] This utility model relates to the field of luggage technology, specifically to a luggage handle with a concealed external hanging structure and a luggage. Background Technology

[0002] Currently, most suitcases on the market are equipped with a pull handle, making it easy for users to push or drag them. However, these suitcases usually lack convenient external hanging functions. If users need to hang handbags, umbrellas, or other personal items during their travels, they often need to use hook accessories or hang the items directly on the pull handle, which can lead to instability, slippage, or affect the normal use of the pull handle.

[0003] While some external hanging solutions exist in the existing technology, most have exposed structures, occupy space and affect aesthetics, or are complex to operate and not very practical. For example, patent document CN212185502U discloses a suitcase that can realize a pull rod for hanging items. Tightening the first bolt can fix the suitcase body to the support frame for easy installation. Then, the zipper can be opened and the lid can be opened. The suitcase body can then be moved up and down manually to adjust the internal storage space according to specific needs. After storing the luggage, the zipper can be closed. Then, the rubber pin can be removed and the hanging rod can be pulled out. The bagged luggage can then be hung on the hanging rod. The hanging rod is then passed through the telescopic pull rod and the rubber pin is inserted to fix the hanging rod. At this time, the hanging rod serves to support the bagged luggage. The operation of external hanging of this suitcase is too complicated and its practicality is poor. Therefore, it is necessary to provide an external attachment device that is simple in structure, easy to hide, and convenient to operate, so as to improve the convenience and functionality of suitcases. Utility Model Content

[0004] In view of the deficiencies in the existing technology, the purpose of this utility model is to provide a luggage handle and luggage with a hidden external hanging structure.

[0005] The luggage handle with a concealed external hanging structure provided by this utility model includes a handle body and an external hanging structure, wherein the external hanging structure is rotatably installed at the end of the handle body; The external structure includes an external structure body and a rotating shaft disposed on the side of the external structure body. A receiving cavity is formed between the end of the upper cover of the pull rod and the end of the lower cover of the pull rod. The rotating shaft is inserted into the receiving cavity along the length direction of the pull rod body. The rotating shaft is provided with a slot structure along the circumferential direction on the outside. The inner wall of the receiving cavity is fixedly installed with an elastic engaging member corresponding to the slot structure. The elastic engaging member is configured to extend into the slot structure to position the rotating shaft when the rotating shaft rotates to the first angle and the second angle. The main body of the external structure is configured such that when the rotating shaft rotates to the first angle, the upper edge of the main body of the external structure protrudes beyond the upper surface of the pull rod cover, at which time the external structure is in a suspended state; when the rotating shaft rotates to the second angle, the upper edge of the main body of the external structure is not higher than the upper surface of the pull rod cover, at which time the external structure is in a retracted state.

[0006] Preferably, the slot structure includes a radial positioning groove, and the elastic engaging member includes a radial positioning bead; The radial positioning groove is disposed on the outer surface of the rotating shaft, and the radial positioning bead is installed on the inner wall of the receiving cavity and can move radially. The radial positioning bead is configured such that when the rotating shaft rotates to the first angle and the second angle, it pops out radially and is embedded in the radial positioning groove.

[0007] Preferably, the slot structure includes a radially locating toothed disc, and the elastic engaging member includes a radially plastic deformable body; The radial positioning toothed disc is fixedly sleeved on the outside of the rotating shaft, and the outer surface of the radial positioning toothed disc is provided with meshing teeth extending radially in the circumferential direction. The radial plastic deformable body is installed on the inner wall of the receiving cavity and is configured such that when the rotating shaft rotates to the first angle and the second angle, the end of the radial plastic deformable body engages with the meshing teeth on the outer surface of the radial positioning toothed disc.

[0008] Preferably, the slot structure includes an axial positioning groove, and the elastic engaging member includes an axial positioning bead; The axial positioning groove is fixedly installed on the outside of the rotating shaft, the end of the rotating shaft, or the inner side of the external structure body. The axial positioning bead is installed on the inner wall of the receiving cavity and can move axially. The axial positioning bead is configured such that when the rotating shaft rotates to the first angle and the second angle, it pops out along the axial direction and is embedded in the axial positioning groove.

[0009] Preferably, the slot structure includes an axially positioning toothed disc, and the elastic engaging member includes an axially plastic deformable body; The axial positioning toothed disc is fixedly installed on the outside of the rotating shaft, the end of the rotating shaft, or the inner side of the external structure body, and the axial positioning toothed disc has meshing teeth extending axially along the circumferential direction on its axial side surface. The axial plastic deformable body is mounted on the inner wall of the receiving cavity and is configured such that when the rotating shaft rotates to the first angle and the second angle, the end of the axial plastic deformable body engages with the meshing teeth on the side of the axial positioning gear.

[0010] Preferably, the outline shape of the main body of the external structure is the same as the outline shape of the main body of the pull rod.

[0011] Preferably, the connection between the rotating shaft and the main body of the external structure does not coincide with the center point of the main body of the external structure, so that when the rotating shaft is at the first angle, the upper edge of the main body of the external structure protrudes from the upper surface of the pull rod cover.

[0012] Preferably, the connection point between the rotating shaft and the main body of the external structure coincides with the center point of the main body of the external structure; The outer edge of the main body of the external structure is provided with an outwardly protruding suspension structure. When the rotation axis is at the first angle, the suspension structure rotates to protrude upwards from the upper surface of the pull rod cover. When the rotation axis is at the second angle, the suspension structure rotates to a position not higher than the upper surface of the pull rod cover.

[0013] Preferably, the first angle and the second angle are spaced 180° apart.

[0014] The suitcase provided by this utility model includes a suitcase pull rod with a hidden external hanging structure. Both ends of the pull rod body are equipped with external hanging structures, and the external hanging structures at both ends are symmetrically arranged.

[0015] Compared with the prior art, the present invention has the following beneficial effects: This utility model has a simple structure and is easy to operate. Without changing the basic function of the pull rod, a rotating external structure is added to the side of the pull rod. When the pull rod is in use, the external structure on the side is rotated out to form a protruding suspension structure. Straps or other hanging items can be placed in the protrusion. When not in use, the external structure can be rotated to hide at the end of the pull rod. Its structure is simple and does not affect the overall appearance of the pull rod. Attached Figure Description

[0016] Other features, objects, and advantages of this invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings: Figure 1 This is a cross-sectional schematic diagram of Embodiment 1 of this utility model; Figure 2 This is a schematic diagram of the internal structure of Embodiment 1 of this utility model; Figure 3 This is a cross-sectional schematic diagram of Embodiment 2 of this utility model; Figure 4 This is a schematic diagram of the internal structure of Embodiment 2 of this utility model; Figure 5 This is a cross-sectional schematic diagram of Embodiment 3 of this utility model; Figure 6 This is a schematic diagram of the internal structure of Embodiment 3 of this utility model; Figure 7 This is a cross-sectional schematic diagram of Embodiment 4 of this utility model; Figure 8This is a schematic diagram of the internal structure of Embodiment 4 of this utility model.

[0017] The diagram shows: Detailed Implementation

[0018] The present invention will now be described in detail with reference to specific embodiments. These embodiments will help those skilled in the art to further understand the present invention, but do not limit the present invention in any way. It should be noted that those skilled in the art can make several changes and improvements without departing from the concept of the present invention. These all fall within the protection scope of the present invention.

[0019] This utility model discloses a luggage handle with a hidden external hanging structure and a luggage. Without changing the basic function of the handle, a rotating external hanging structure is added to the side of the handle. When the handle is in use, the external hanging structure on the side rotates out to form a raised suspension structure, in which bag straps and other hanging items can be placed. When not in use, the external hanging structure can be rotated to hide at the end of the handle. Its structure is simple and does not affect the overall appearance of the handle.

[0020] The luggage handle with a concealed external hanging structure provided by this utility model includes a handle body and an external hanging structure 4. The external hanging structure 4 is rotatably installed at the end of the handle body. The external hanging structure 4 includes an external hanging structure body 42 and a rotating shaft 41 disposed on the side of the external hanging structure body 42. A receiving cavity is formed between the end of the upper cover 1 of the handle and the end of the lower cover 2 of the handle. The rotating shaft 41 is inserted into the receiving cavity along the length direction of the handle body. The rotating shaft 41 is provided with a slot structure along its circumferential direction. The inner wall of the receiving cavity is fixedly installed with an elastic engaging member corresponding to the slot structure. The elastic engaging member is configured to extend into the slot structure to position the rotating shaft 41 when it rotates to the first angle and the second angle. The external hanging structure body 42 is configured such that when the rotating shaft 41 rotates to the first angle, the upper edge of the external hanging structure body 42 protrudes from the upper surface of the pull rod cover 1, at which time the external hanging structure 4 is in a suspended state. When the rotating shaft 41 rotates to the second angle, the upper edge of the external hanging structure body 42 is not higher than the upper surface of the pull rod cover 1, at which time the external hanging structure 4 is in a retracted state. Preferably, the first angle and the second angle are spaced 180° apart.

[0021] Specifically, the outline shape of the external structure main body 42 is the same as that of the pull rod main body. In order to realize the switching between storage and hanging states by rotation, this utility model provides the following two solutions: Option 1: The rotating shaft 41 is set eccentrically. Specifically, the connection between the rotating shaft 41 and the outer structure body 42 does not coincide with the center point of the outer structure body 42, so that when the rotating shaft 41 is at the first angle, the upper edge of the outer structure body 42 protrudes from the upper surface of the pull rod cover 1. Option 2 involves protruding the outer edge of the main body 42 of the external structure. Specifically, the connection between the rotating shaft 41 and the main body 42 of the external structure coincides with the center point of the main body 42 of the external structure. The outer edge of the main body 42 of the external structure is provided with an outwardly protruding suspension structure. When the rotating shaft 41 is at the first angle, the suspension structure rotates to protrude upwards from the upper surface of the pull rod cover 1. When the rotating shaft 41 is at the second angle, the suspension structure rotates to a position not higher than the upper surface of the pull rod cover 1.

[0022] The above are the basic embodiments of this utility model. The following are further explanations of the rotary engagement structure in the above basic embodiments through several preferred examples. Example 1 like Figure 1 , Figure 2 As shown, the slot structure includes a radial positioning groove 5, and the elastic engaging member includes a radial positioning bead 3; the radial positioning groove 5 is disposed on the outer surface of the rotating shaft 41, and the radial positioning bead 3 is installed on the inner wall of the receiving cavity and can move radially. The radial positioning bead 3 is configured such that when the rotating shaft 41 rotates to the first angle and the second angle, it pops out radially and is embedded in the radial positioning groove 5.

[0023] Specifically, Figure 1 The left side shows the retracted state of the external structure 4. In this state, the surface of the pull rod is relatively intact, and it looks like a whole. The external structure 4 has radial positioning grooves 5 (dimples, holes, etc.). In this state, the radial positioning beads 3 (spring and steel ball) are pressed against the radial positioning grooves 5 on the external structure 4, restricting the external structure 4 from continuing to rotate. If a rotational force (regardless of direction) is applied to the external structure 4 in this state, the external structure 4 will continue to rotate until the radial positioning beads 3 are pressed against the next radial positioning groove 5.

[0024] Figure 1 The right side shows the external hanging structure 4 in its suspended state. In this state, the pull rod cover 1 and the external hanging structure 4 form a step, allowing the external component to be hung on the pull rod cover 1. The external hanging structure 4 restricts the rightward freedom of the external component. The external hanging structure 4 has radial positioning grooves 5 (recesses, holes, etc.). In this state, the radial positioning beads 3 (springs and steel balls) press against the radial positioning grooves 5 on the external hanging structure 4, preventing further rotation. If a rotational force (regardless of direction) is applied to the external hanging structure 4 in this state, it will continue to rotate until the radial positioning beads 3 press against the next radial positioning groove 5.

[0025] Example 2 like Figure 3 , Figure 4 As shown, the slot structure includes a radial positioning toothed disc 7, and the elastic engaging component includes a radial plastic deformable body 6. The radial positioning toothed disc 7 is fixedly sleeved on the outside of the rotating shaft 41, and the outer surface of the radial positioning toothed disc 7 is provided with meshing teeth extending radially in the circumferential direction (including, but not limited to, positioning holes, positioning grooves, gears, ratchet teeth, etc., depending on actual needs). The radial plastic deformable body 6 is installed on the inner wall of the receiving cavity and is configured such that when the rotating shaft 41 rotates to the first angle and the second angle, the end of the radial plastic deformable body 6 engages with the meshing teeth on the outer surface of the radial positioning toothed disc 7.

[0026] Specifically, Figure 3 The left side shows the retracted state of the external structure 4. In this state, the surface of the pull rod is relatively intact, and it looks like a whole. The external structure 4 is equipped with a radial positioning toothed disc 7. In this state, the radial plastic deformable body 6 (made of plastic material) engages with the meshing teeth on the radial positioning toothed disc 7, restricting the external structure 4 from continuing to rotate. If a rotational force (regardless of direction) is applied to the external structure 4 in this state, the external structure 4 will continue to rotate until the radial plastic deformable body 6 abuts against the next meshing tooth of the radial positioning toothed disc 7.

[0027] Figure 3 The right side shows the external structure 4 in its suspended state. In this state, the upper cover 1 of the pull rod and the external structure 4 form a step. At this time, the external component can be hung on the upper cover 1 of the pull rod. The external structure 4 restricts the rightward freedom of the external component. A radial positioning toothed disc 7 is provided on the outside of the external structure 4. In this state, the radial plastic deformable body 6 (made of plastic material) engages with the meshing teeth on the radial positioning toothed disc 7, restricting the external structure 4 from continuing to rotate. If a rotational force (regardless of direction) is applied to the external structure 4 in this state, the external structure 4 will continue to rotate until the radial plastic deformable body 6 abuts against the next meshing tooth of the radial positioning toothed disc 7.

[0028] Example 3 like Figure 5 , Figure 6 As shown, the slot structure includes an axial positioning groove 9, and the elastic engaging component includes an axial positioning bead 8. The axial positioning groove 9 is fixedly disposed on the outside of the rotating shaft 41, the end of the rotating shaft 41, or the inner side of the external structure body 42. The axial positioning bead 8 is installed on the inner wall of the receiving cavity and can move axially. The axial positioning bead 8 is configured such that when the rotating shaft 41 rotates to the first angle and the second angle, it pops out axially and embeds into the axial positioning groove 9. The installation position of the axial positioning groove 9 is not limited, and those skilled in the art can reasonably adjust it in actual production, as long as it can cooperate with the axial positioning bead 8 to achieve positioning. Specifically, Figure 5The left side shows the retracted state of the external structure 4. In this state, the surface of the pull rod is relatively intact, and it looks like a whole. The external structure 4 has an axial positioning groove 9 (dimples, holes, etc.). In this state, the axial positioning bead 8 (spring plus steel ball) is pressed against the axial positioning groove 9 on the external structure 4, restricting the external structure 4 from continuing to rotate. If a rotational force (regardless of direction) is applied to the external structure 4 in this state, the external structure 4 will continue to rotate until the axial positioning bead 8 is pressed against the next axial positioning groove 9.

[0029] Figure 5 The right side shows the external structure 4 in its suspended state. In this state, the upper cover 1 of the pull rod and the external structure 4 form a step. At this time, the external component can be hung on the upper cover 1 of the pull rod. The external structure 4 restricts the rightward freedom of the external component. The external structure 4 has an axial positioning groove 9 (recess, hole, etc.). In this state, the axial positioning bead 8 (spring plus steel ball) presses against the axial positioning groove 9 on the external structure 4, restricting the external structure 4 from continuing to rotate. If a rotational force (regardless of direction) is applied to the external structure 4 in this state, the external structure 4 will continue to rotate until the axial positioning bead 8 presses against the next axial positioning groove 9.

[0030] Example 4 like Figure 7 , Figure 8 As shown, the slot structure includes an axial positioning toothed disc 11, and the elastic engaging component includes an axially deformable plastic body 10. The axial positioning toothed disc 11 is fixedly disposed on the outside of the rotating shaft 41, at the end of the rotating shaft 41, or on the inner side of the external structure body 42. The axial side of the axial positioning toothed disc 11 is provided with axially extending meshing teeth (including, but not limited to, positioning holes, positioning grooves, gears, ratchet teeth, etc., depending on actual needs). The axially deformable plastic body 10 is installed on the inner wall of the receiving cavity and configured such that when the rotating shaft 41 rotates to the first angle and the second angle, the end of the axially deformable plastic body 10 engages with the meshing teeth on the side of the axial positioning toothed disc 11. The installation position of the axial positioning toothed disc 11 is not limited, and those skilled in the art can reasonably adjust it in actual production, as long as it can cooperate with the axially deformable plastic body 10 to achieve positioning. Specifically, Figure 7 The left side shows the retracted state of the external structure 4. In this state, the surface of the pull rod is relatively intact, and it looks like a whole. An axial positioning toothed disc 11 is provided on the outside of the external structure 4. In this state, the axial plastic deformable body 10 (made of plastic material) engages with the meshing teeth on the axial positioning toothed disc 11, restricting the external structure 4 from continuing to rotate. If a rotational force (regardless of direction) is applied to the external structure 4 in this state, the external structure 4 will continue to rotate until the axial plastic deformable body 10 presses against the next meshing tooth of the axial positioning toothed disc 11.

[0031] Figure 7The right side shows the external hanging structure 4 in its suspended state. In this state, the upper cover 1 of the pull rod and the external hanging structure 4 form a step. At this time, the external hanging part can be hung on the upper cover 1 of the pull rod. The external hanging structure 4 restricts the rightward freedom of the external hanging part. An axial positioning toothed disc 11 is provided on the outside of the external hanging structure 4. In this state, the axial plastic deformation body 10 (made of plastic material) engages with the meshing teeth on the axial positioning toothed disc 11, restricting the external hanging structure 4 from continuing to rotate. If a rotational force (regardless of direction) is applied to the external hanging structure 4 in this state, the external hanging structure 4 will continue to rotate until the axial plastic deformation body 10 abuts against the next meshing tooth of the axial positioning toothed disc 11.

[0032] The suitcase provided by this utility model includes a suitcase pull rod with a hidden external hanging structure. Both ends of the pull rod body are equipped with external hanging structures 4, and the external hanging structures 4 at both ends are symmetrically arranged.

[0033] This invention, without altering the basic function of the pull rod, adds rotating components to both sides of the pull rod. When the pull rod is in the engaged position, the rotating components on both sides unscrew to form protrusions, which can be used to place hanging items such as straps. Its structure is simple and does not affect the overall appearance of the pull rod.

[0034] In the description of this application, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.

[0035] The specific embodiments of this utility model have been described above. It should be understood that this utility model is not limited to the specific embodiments described above, and those skilled in the art can make various changes or modifications within the scope of the claims, which do not affect the substantive content of this utility model. Unless otherwise specified, the embodiments and features described in this application can be arbitrarily combined with each other.

Claims

1. A suitcase handle with a concealed external hanging structure, characterized in that, It includes a pull rod body and an external structure (4), wherein the external structure (4) is rotatably mounted on the end of the pull rod body; The external structure (4) includes an external structure body (42) and a rotating shaft (41) disposed on the side of the external structure body (42). A receiving cavity is formed between the end of the upper cover (1) of the pull rod and the end of the lower cover (2) of the pull rod. The rotating shaft (41) is inserted into the receiving cavity along the length direction of the pull rod body. The rotating shaft (41) is provided with a slot structure along the circumferential direction on the outside. The inner wall of the receiving cavity is fixedly installed with an elastic engaging member corresponding to the slot structure. The elastic engaging member is configured to extend into the slot structure to position the rotating shaft (41) when the rotating shaft (41) rotates to the first angle and the second angle. The external structure body (42) is configured such that when the rotating shaft (41) rotates to the first angle, the upper edge of the external structure body (42) protrudes from the upper surface of the pull rod cover (1), at which time the external structure (4) is in a suspended state. When the rotating shaft (41) rotates to the second angle, the upper edge of the external structure body (42) is not higher than the upper surface of the pull rod cover (1), at which time the external structure (4) is in a stored state.

2. The luggage handle with a concealed external hanging structure according to claim 1, characterized in that, The slot structure includes a radial positioning groove (5), and the elastic locking component includes a radial positioning bead (3). The radial positioning groove (5) is provided on the outer surface of the rotating shaft (41), and the radial positioning bead (3) is installed on the inner wall of the receiving cavity and can move radially. The radial positioning bead (3) is configured such that when the rotating shaft (41) rotates to the first angle and the second angle, it pops out radially and is embedded in the radial positioning groove (5).

3. The luggage handle with a concealed external hanging structure according to claim 1, characterized in that, The slot structure includes a radial positioning toothed disc (7), and the elastic engaging component includes a radial plastic deformable body (6). The radial positioning toothed disc (7) is fixedly sleeved on the outside of the rotating shaft (41), and the outer surface of the radial positioning toothed disc (7) is provided with meshing teeth extending radially in the circumferential direction. The radial plastic deformable body (6) is installed on the inner wall of the receiving cavity and is configured such that when the rotating shaft (41) rotates to the first angle and the second angle, the end of the radial plastic deformable body (6) engages with the meshing teeth on the outer surface of the radial positioning toothed disc (7).

4. The luggage handle with a concealed external hanging structure according to claim 1, characterized in that, The slot structure includes an axial positioning groove (9), and the elastic locking component includes an axial positioning bead (8). The axial positioning groove (9) is fixedly disposed on the outside of the rotating shaft (41), the end of the rotating shaft (41), or the inner side of the external structure body (42). The axial positioning bead (8) is installed on the inner wall of the receiving cavity and can move axially. The axial positioning bead (8) is configured such that when the rotating shaft (41) rotates to the first angle and the second angle, it pops out along the axial direction and is embedded in the axial positioning groove (9).

5. The luggage handle with a concealed external hanging structure according to claim 1, characterized in that, The slot structure includes an axially locating toothed disc (11), and the elastic engaging component includes an axially plastic deformable body (10). The axial positioning toothed disk (11) is fixedly disposed on the outside of the rotating shaft (41), the end of the rotating shaft (41), or the inner side of the external structure body (42), and the axial positioning toothed disk (11) has meshing teeth extending axially along the circumferential direction on its axial side surface. The axial plastic deformable body (10) is mounted on the inner wall of the receiving cavity and is configured such that when the rotating shaft (41) rotates to the first angle and the second angle, the end of the axial plastic deformable body (10) engages with the meshing teeth on the side of the axial positioning toothed disc (11).

6. The luggage handle with a concealed external hanging structure according to claim 1, characterized in that, The outline shape of the external structure (42) is the same as that of the pull rod body.

7. The luggage handle with a concealed external hanging structure according to claim 6, characterized in that, The connection between the rotating shaft (41) and the outer structure body (42) does not coincide with the center point of the outer structure body (42), so that when the rotating shaft (41) is at the first angle, the upper edge of the outer structure body (42) protrudes from the upper surface of the pull rod cover (1).

8. The luggage handle with a concealed external hanging structure according to claim 6, characterized in that, The connection between the rotating shaft (41) and the external structure body (42) coincides with the center point of the external structure body (42); The outer edge of the main body (42) of the external structure is provided with an outwardly protruding suspension structure. When the rotation shaft (41) is at the first angle, the suspension structure rotates to protrude upwards from the upper surface of the pull rod cover (1). When the rotation shaft (41) is at the second angle, the suspension structure rotates to a position not higher than the upper surface of the pull rod cover (1).

9. The luggage handle with a concealed external hanging structure according to claim 1, characterized in that, The first angle and the second angle are spaced 180° apart.

10. A suitcase, characterized in that, The luggage handle with a hidden external structure as described in any one of claims 1-9 is provided, wherein both ends of the handle body are equipped with external structures (4), and the external structures (4) at both ends are symmetrically arranged.

Citation Information

Patent Citations

  • Luggage case capable of realizing draw bar hanging

    CN212185502U