Side-hung handle and telescopic pull rod of luggage case

By designing a side-mounted handle and a telescopic pull rod, the problems of luggage handles being unable to hang small items and the lack of functionality in the pull rod design were solved. The hooks were hidden and telescopic, improving the convenience and aesthetics of the luggage.

CN223913630UActive Publication Date: 2026-02-17DONGGUAN JIANG SHUN SUITCASES & HANDBAGS SPARE PARTS
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Patent Information

Application Number
CN202520838691.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-28
Publication Date
2026-02-17
Estimated Expiration
2035-04-28

AI Technical Summary

Technical Problem

Existing suitcase handles are not convenient for hanging small items, and existing hooks take up space and affect aesthetics when not in use. The suitcase telescopic handle design lacks additional functionality.

Method used

Design a side-mounted handle with a hook and a button that slide together. The button controls the hook's hiding and popping out. Combined with a telescopic rod structure, the hook is hidden inside the handle when not in use and pops out to hang items when in use. The telescopic rod is connected to the inner tube to achieve the telescopic function.

Benefits of technology

The design improves the convenience and functionality of the suitcase, making the hooks space-saving and aesthetically pleasing when not in use, while also increasing the convenience of hanging small items and enabling the extension and retraction of the handle.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of luggage cases, and particularly discloses a side hanging type handle and a telescopic pull rod of a luggage case, the side hanging type handle comprises a handle body, a hook and a button are inserted on the handle body, the hook is sleeved outside the button in a sliding mode, and the hook is in elastic sliding connection with the handle body so that one part of the hook can slide out of the handle body. A lock is elastically connected into the handle body in a sliding mode, the button obliquely abuts against the lock to control the lock to slide, and a positioning hole for a part of the lock to slide in or retreat out is formed in the side face of the hook. According to the side hanging type handle, the hook can be popped out and hidden on the end face of the handle, various objects can be hung conveniently, and space is not occupied when the side hanging type handle is not used. The telescopic pull rod of the luggage case comprises two outer pipes, two inner pipes and the side hanging type handle, the two ends of the handle body are connected with the two inner pipes respectively, and the two outer pipes are arranged on the two inner pipes in a sliding and sleeving mode respectively. The draw bar not only is telescopic, but also is convenient for hanging articles, so that the functionality and the convenience of the luggage case are improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of the luggage, especially relates to a side hanging type handle and telescopic pull rod of luggage. BACKGROUND

[0002] In daily life and travel, luggage is a common tool for carrying articles. With the improvement of people's living standards and the diversification of travel needs, higher requirements are put forward for the functionality and convenience of luggage.

[0003] The existing luggage pull rod handle design mostly only has the basic lifting function, and the function is relatively single. In the actual use process, people often encounter the situation of carrying some small bags, convenience bags and other articles, such as shopping bags during shopping, and small article bags during travel. However, the existing luggage pull rod handle cannot conveniently hang these small articles, which brings many inconveniences to the users.

[0004] Although some luggage is equipped with some simple hook devices, these hook devices have obvious defects. These hooks are usually fixed on the handle, cannot be hidden and popped out according to actual needs, occupy space when not in use, and are easy to scratch other articles, affecting the overall appearance and use convenience of the luggage.

[0005] In terms of the telescopic pull rod of the luggage, the existing pull rod design mainly focuses on the smoothness and stability of the telescopic pull rod, and less considers the cooperation with the handle and the design of additional functions.

[0006] Therefore, the inventor is committed to designing a handle and telescopic pull rod to solve the above problems. UTILITY MODEL CONTENTS

[0007] The utility model aims at providing a side hanging type handle, which can pop out and hide the hook on the end face of the handle according to actual needs, conveniently hang multiple articles, improve the use convenience, and does not occupy space when not in use, and does not affect the overall appearance.

[0008] Another purpose of the utility model is to provide a telescopic pull rod of luggage, which not only can be telescopic, but also can conveniently hang multiple articles on the handle, increase additional functions, and improve the functionality and convenience of the luggage.

[0009] In order to achieve the above purpose, a technical scheme adopted by the utility model is as follows:

[0010] A side-hung handle comprises a handle body, a hook and a button are inserted on the handle body, the hook is slidingly sleeved outside the button, the hook is elastically slidingly connected with the handle body to realize sliding of a part of the hook outside the handle body, a lock is elastically slidingly connected inside the handle body, the button is obliquely pressed against the lock to control sliding of the lock, and a positioning hole is arranged on a side surface of the hook to allow a part of the lock to slide in or out.

[0011] As an improvement of the side-hung handle, the hook and the button are located on the same end surface of the handle body, the hook is elastically slidingly connected along the axial direction of the handle body, the lock is elastically slidingly connected along the radial direction of the handle body, the button is obliquely pressed against the lock along the axial direction of the handle body to control sliding of the lock along the radial direction of the handle body, an outer wall of the part of the handle body outside which the hook slides is provided with a hanging groove, and the positioning hole is located in the hanging groove.

[0012] As an improvement of the side-hung handle, the positioning hole is arranged along the radial direction of the hook, and the button is movably clamped with the handle body.

[0013] As an improvement of the side-hung handle, an outer inclined surface is arranged on an inner end surface of the button, an inner inclined surface is arranged in a side opening of the lock close to the button, and the inclined surface of the outer inclined surface is slidingly matched with the inclined surface of the inner inclined surface.

[0014] As an improvement of the side-hung handle, two buttons, two hooks and two locks are symmetrically arranged on the two end surfaces of the handle body, the buttons on the same end are obliquely pressed against the locks on the corresponding end to make the locks radially slide to lock the hooks on the corresponding end.

[0015] In order to achieve the above-mentioned another object, a technical scheme adopted by the utility model is as follows:

[0016] A telescopic handle of a luggage case comprises two outer pipes, two inner pipes and the above-mentioned side-hung handle, the two ends of the handle body are fixedly and perpendicularly connected with the two inner pipes, and the two outer pipes are slidingly sleeved on the two inner pipes.

[0017] As an improvement of the telescopic handle of the luggage case, the handle body comprises a shell and two cores, the two cores are concave-convex limitedly connected and fixed in the shell, and the two hooks are elastically connected with the two cores in one-to-one correspondence through the ejection springs.

[0018] As an improvement of the telescopic pull rod of the luggage case, two said locks are arranged in the lock slots of the two said cores in one-to-one correspondence, each said lock is connected with the corresponding said core in radial elasticity through a locking spring, and the buckle on each said button is movably connected with the clamping groove on the side of the corresponding said core.

[0019] As an improvement of the telescopic pull rod of the luggage case, two said locks are arranged in the lock slots of the two said cores in one-to-one correspondence, each said lock is connected with the corresponding said core in radial elasticity through a locking spring, and the buckle on each said button is movably connected with the clamping groove on the side of the corresponding said core.

[0020] As an improvement of the telescopic pull rod of the luggage case, two said locks are arranged in the lock slots of the two said cores in one-to-one correspondence, each said lock is connected with the corresponding said core in radial elasticity through a locking spring, and the buckle on each said button is movably connected with the clamping groove on the side of the corresponding said core.

[0021] Compared with the prior art, the side-hung handle of the utility model is elastically connected with the handle body through the lock, and the button is inclined to press the lock, so that part of the lock is elastically slid into the positioning hole of the hook, the hook is locked and the button is popped open, the purpose of hiding the hook in the handle body is achieved, the handle does not occupy space when not in use, and the overall appearance is not affected. By pressing the button, the lock is away from the positioning hole, the hook is unlocked, part of the hook is elastically slid out of the handle body, various objects can be hung on the hook, and the use convenience is improved.

[0022] Compared with the prior art, the telescopic pull rod of the luggage case has the side-hung handle with the functions of hiding and popping out the hook, and the two ends of the handle are connected with the two inner tubes respectively, so that the outer tube and the inner tube can not only be telescopic, but also the hook popped out of the handle can conveniently hang various objects, additional functions are increased, and the functionality and convenience of the luggage case are improved. BRIEF DESCRIPTION OF DRAWINGS

[0023] Figure 1 is a perspective view of the telescopic pull rod of the luggage case, in which the two hooks are in a hidden state;

[0024] Figure 2 is a sectional enlarged view of the handle part of the telescopic pull rod in the utility model, in which the two hooks are in a hidden state;

[0025] Figure 3 isFigure 2 Enlarged view of the middle A;

[0026] Figure 4 Partial exploded view of the handle body of the utility model;

[0027] Figure 5 Stereoscopic exploded view of the left core body and corresponding hook, button, lock of the utility model;

[0028] Figure 6 Stereoscopic exploded view of the left core body and corresponding hook, button, lock of the utility model from another perspective;

[0029] Figure 7 Stereoscopic exploded view of the right core body and corresponding hook, button, lock of the utility model;

[0030] Figure 8 Stereoscopic exploded view of the lower seat, button and two sliding blocks of the utility model;

[0031] Figure 9 Stereoscopic view of the telescopic handle of the luggage case of the utility model, with a single hook in a popped-out state;

[0032] Figure 10 Cross-sectional view of the handle part of the telescopic handle of the utility model, with a single hook in a popped-out state;

[0033] Figure 11 Stereoscopic assembly view of the inner tube end, push block and corresponding fastener, push block and transmission bar of the utility model;

[0034] Figure 12 Partial cross-sectional view of the sliding block, push block, fastener, inner tube and outer tube of the telescopic handle of the luggage case of the utility model, with the fastener and one of the clamping holes of the outer tube in a fastened state.

[0035] Illustration:

[0036] 1, handle body; 11, upper cover; 12, lower seat; 13, shell; 14, left core body; 141, limiting table; 15, right core body; 151, limiting groove; 16, groove; 161, lock groove; 1611, socket; 1612, insertion hole; 162, clamping groove; 2, hook; 21, hanging groove; 211, positioning hole; 22, side hole; 23, ejection spring; 231, boss; 3, button; 31, buckle; 32, outer inclined table; 4, lock; 41, inner inclined table; 42, locking spring; 5, key; 51, pushing part; 52, pushing spring; 6, left slider; 61, left inclined surface; 62, left inclined pushing surface; 7, right slider; 71, right inclined surface; 72, right inclined pushing surface; 8, push rod; 81, transmission bar; 82, inner tube; 821, sliding block; 822, push block; 8221, inclined surface; 823, fastener; 8231, triangular table; 824, connecting rod; 9, outer tube; 91, clamping hole. DETAILED DESCRIPTION

[0037] The embodiments of the present application will be described in detail below with reference to the drawings, which are used only for reference and illustration, and do not constitute a limitation on the scope of patent protection of the present application.

[0038] Referring to Figures 1 to 12 A side-hung handle includes a handle body 1, a hook 2 and a button 3 are inserted on the handle body 1, the hook 2 is slidingly sleeved outside the button 3, the hook 2 is elastically and slidingly connected with the handle body 1 to realize that a part of the hook 2 slides outside the handle body 1, a lock 4 is elastically and slidingly connected in the handle body 1, the button 3 is inclined to press the lock 4 to control the sliding of the lock 4, and the side surface of the hook 2 is provided with a positioning hole 211 for the part of the lock 4 to slide in or out.

[0039] Referring to Figure 2 And Figure 3 The hook 2 and the button 3 are located on the same end surface of the handle body 1, the hook 2 is elastically and slidingly connected along the axial direction of the handle body 1, the lock 4 is elastically and slidingly connected along the radial direction of the handle body 1, and the button 3 is inclined to press the lock 4 along the axial direction of the handle body 1 to control the sliding of the lock 4 along the radial direction of the handle body 1.

[0040] Referring to Figure 2 、 Figure 4 、 Figure 5 、 Figure 6 、 Figure 7 And Figure 8The handle body 1 comprises a shell 13 and two cores, the upper end of the shell 13 is in a cylindrical shape, the shell 13 comprises a lower seat 12 and an upper cover 11, the lower seat 12 is in a whole V shape, the upper end of the lower seat 12 is in a long strip semi-circular shape and the top of the lower seat 12 is provided with a sliding groove, the bottom of the sliding groove is provided with a mounting hole, the upper cover 11 is in a long strip semi-circular shell shape, the bottom and the left and right two ends of the upper cover 11 are hollowly provided, the upper cover 11 is covered on the top of the lower seat 12 to form a cavity, the cavity is communicated with the sliding groove in the lower seat 12, the two cores are concave-convex position-limiting connected and fixed in the cavity of the shell 13, the two cores are specifically a left core 14 and a right core 15, the bottom surface of the left core 14 is in a Z shape, the convex part of the bottom of the left end of the left core 14 is fixedly connected with the lower seat 12 through a screw, the inner concave part of the bottom of the right end of the left core 14 is provided with a plurality of long strip-shaped limiting tables 141, all the limiting tables 141 are arranged in a row and spaced, the upper surface of the left core 14 is in a semi-circular arc shape, a locking groove 161 and a recess 16 are sequentially and spaced arranged on the left end top of the left core 14 along the axial direction thereof from outside to inside, two insertion holes 1612 are arranged on the left end surface of the left core 14, one insertion opening 1611 is arranged on one side of the locking groove 161 facing the left end surface of the left core 14, the insertion opening 1611 is located on the left end surface of the left core 14 and is located between the two insertion holes 1612, one clamping groove 162 is arranged on each of the front and rear sidewalls of the left core 14, the two clamping grooves 162 are respectively and correspondingly communicated with the two insertion holes 1612 on the left core 14; the right core 15 is similar in structure to the left core 14, the right end bottom of the right core 15 is fixedly connected with the lower seat 12 through a screw, the top of the right core 15 is in a long strip semi-circular shape, an arc-shaped notch is arranged on the left end top of the right core 15, a plurality of long strip-shaped limiting grooves 151 are arranged in the notch in a spaced manner, all the limiting grooves 151 are arranged in a row and spaced and correspondingly matched with all the limiting tables 141, so that the right end of the left core 14 and the left end of the right core 15 are concave-convex position-limiting matched, the right end of the right core 15 is also provided with a locking groove 161 (the sidewall of the locking groove 161 is also provided with an insertion opening 1611), a recess 16, two clamping grooves 162 and two insertion holes 1612, the structures of the locking groove 161, the recess 16, the two clamping grooves 162 and the two insertion holes 1612 on the left core 14 are symmetrically arranged with the structures of the locking groove 161, the recess 16, the two clamping grooves 162 and the two insertion holes 1612 on the right core 15, that is, the left end of the left core 14 and the right end of the right core 15 are symmetrically arranged.

[0041] Referring to Figure 4 , Figure 5 , Figure 6 and Figure 7The two end faces of the handle body 1 are symmetrically provided with two buttons 3, two hooks 2 and two lockings 4. The button 3 at the same end is in abutment with the corresponding end locking 4 through axial inclination, so as to make the corresponding end hook 2 slide and lock in the radial direction. In the embodiment, the two lockings 4 are symmetrically arranged. Each locking 4 is provided with an inner inclined table 41 in the side opening close to the corresponding end button 3. Specifically, the left locking 4 is located in the locking groove 161 of the left core body 14, and the bottom of the left locking 4 is elastically connected with the left core body 14 through a locking spring 42. The right locking 4 is located in the locking groove 161 of the right core body 15, and the bottom of the right locking 4 is elastically connected with the right core body 15 through another locking spring 42. The two hooks 2 are symmetrically arranged. One end of each hook 2 is in the shape of a semicircular shell. The other end of the hook 2 is provided with a side hole 22 on the end face, so as to form a ring. The outer wall of the part outside the handle body 1 of each hook 2 is provided with a hook groove 21. The hook groove 21 is provided with a positioning hole 211. The positioning hole 211 is arranged along the radial direction of the corresponding hook 2. The inner wall of each hook 2 is provided with a boss 231. The left end hook 2 is slidably arranged on the left end face of the left core body 14, so as to cover the recess groove 16 and the locking groove 161 of the left core body 14. The circular table at the top of the left end locking 4 can be extended into the positioning hole 211 of the left end hook 2 under the elastic force of the left end locking spring 42, so as to lock the left end hook 2. The boss 231 in the left end hook 2 is elastically connected with the left core body 14 through a pop-up spring 23. The right end hook 2 is slidably arranged on the right end face of the right core body 15, so as to cover the recess groove 16 and the locking groove 161 of the right core body 15. The circular table at the top of the right end locking 4 can be extended into the positioning hole 211 of the right end hook 2 under the elastic force of the right end locking spring 42, so as to lock the right end hook 2. The boss 231 in the right end hook 2 is elastically connected with the right core body 15 through another pop-up spring 23. The two hooks 2 are elastically connected with the two core bodies in the axial direction through the respective pop-up springs 23. The two lockings 4 are elastically connected with the corresponding core bodies in the radial direction through the respective locking springs 42.Two buttons 3 are symmetrically arranged, and each button 3 is provided with an outer inclined table 32 and two L-shaped buckles 31 on the inner end surface (i.e. the end surface close to the corresponding lock 4), and the outer inclined table 32 is located between the two buckles 31 on the same button 3. The left end button 3 is installed in the side hole 22 of the left end hook 2, and the outer inclined table 32 of the left end button 3 is inserted into the left end lock 4 from the insertion port 1611 of the left core 14, so that the inclined surface of the outer inclined table 32 of the left end button 3 is in sliding fit with the inclined surface of the inner inclined table 41 of the left end lock 4. The two buckles 31 of the left end button 3 are respectively inserted into the two insertion ports 1612 of the left core 14 and are in movable clamping connection with the two clamping grooves 162 on the left core 14 (the clamping part of the buckle 31 can move in the corresponding clamping groove 162). The right end button 3 is installed in the side hole 22 of the right end hook 2, and the outer inclined table 32 of the right end button 3 is inserted into the right end lock 4 from the insertion port 1611 of the right core 15, so that the inclined surface of the outer inclined table 32 of the right end button 3 is in sliding fit with the inclined surface of the inner inclined table 41 of the right end lock 4. The two buckles 31 of the right end button 3 are respectively inserted into the two insertion ports 1612 of the right core 15 and are in movable clamping connection with the two clamping grooves 162 on the right core 15.

[0042] Referring to Figure 2 , Figure 4 and Figure 8 , two sliders are reversely arranged between the left core 14 and the right core 15 and the inner wall of the shell 13, and the two sliders are specifically a left slider 6 and a right slider 7. The left slider 6 and the right slider 7 are specifically arranged in the sliding groove of the lower seat 12, and the structure of the left slider 6 is opposite to that of the right slider 7. Specifically, the left end of the left slider 6 is provided with a left inclined pushing surface 62, and the two left inclined surfaces 61 are arranged on both sides of the notch at the right end of the left slider 6. The two left inclined surfaces 61 are arranged in the same inclined direction and are spaced apart from each other. The inclined direction of the left inclined pushing surface 62 is opposite to the inclined direction of the left inclined surface 61. The right end of the right slider 7 is provided with a right inclined pushing surface 72, and the two right inclined surfaces 71 are arranged on both sides of the notch at the left end of the right slider 7. The two right inclined surfaces 71 are arranged in the same inclined direction and are spaced apart from each other. The inclined direction of the left inclined pushing surface 62 is opposite to the inclined direction of the right inclined pushing surface 72. The two left inclined surfaces 61 and the two right inclined surfaces 71 are arranged staggered. A button 5 is installed in the mounting hole at the bottom of the lower seat 12. The center of the button 5 is elastically connected with the right core 15 of the handle body 1 through a pushing spring 52. The top of the button 5 is provided with two trapezoidal pushing parts 51. The two pushing parts 51 extend into the sliding groove of the lower seat 12 and jointly and obliquely press the two sliders, so that the two sliders are close to or away from the axial direction of the shell 13. Specifically, the two eight-shaped inclined surfaces on the left end pushing part 51 of the button 5 slide and press the left inclined surface 61 on the left side of the notch of the left slider 6 and the right inclined surface 71 on the left side of the notch of the right slider 7, respectively. The two eight-shaped inclined surfaces on the right end pushing part 51 of the button 5 slide and press the left inclined surface 61 on the right side of the notch of the left slider 6 and the right inclined surface 71 on the right side of the notch of the right slider 7, respectively.

[0043] With reference to Figure 2 And Figure 10 The two ends of the lower seat 12 are internally slidably connected with push rods 8 along the radial direction thereof, the inclined surfaces of the two push rods 8 are in a spread shape, the left sliding block 6 and the right sliding block 7 are located between the two push rods 8, the left inclined pushing surface 62 of the left sliding block 6 slidably abuts against the inclined surface of the left end push rod 8, the right inclined pushing surface 72 of the right sliding block 7 slidably abuts against the inclined surface of the right end push rod 8, and the bottoms of the two push rods 8 are fixedly connected with transmission bars 81 respectively.

[0044] With reference to Figures 1 to 10 The working principle of the side-hung handle is as follows:

[0045] When the user needs to mount multiple articles on the two hooks 2, the two buttons 3 are manually pressed, the outer inclined table 32 of the button 3 slidably abuts against the inner inclined table 41 of the corresponding lock 4, the lock 4 slides downward along the corresponding lock slot 161, the locking spring 42 is compressed, until the circular table at the top of the lock 4 is out of the positioning hole 211 of the corresponding hook 2, the two hooks 2 are unlocked, at this time, the two hooks 2 are popped out under the action of the elastic force of the respective pop-out spring 23, and partially slide to the outside of the handle body 1, so that the user can hang multiple articles on the popped-out parts of the two hooks 2.

[0046] When the user no longer uses the two hooks 2, the two hooks 2 are directly manually pressed to slide into the handle body 1, so that the two hooks 2 are hidden, the pop-out spring 23 is compressed, until the positioning hole 211 of the hook 2 is aligned with the circular table at the top of the corresponding lock 4, the lock 4 moves upward under the action of the elastic force of the corresponding locking spring 42, so that the circular table at the top of the lock 4 enters the positioning hole 211 of the hook 2, and the hook 2 can be locked, at this time, the button 3 will move outward by a small distance (as shown in Figure 10

[0047] The side-hung handle of the utility model utilizes the elastic connection of the lock 4 and the handle body 1, and the inclined abutment of the button 3 against the lock 4, so that a part of the lock 4 elastically slides into the positioning hole 211 of the hook 2, the hook 2 is locked and the button 3 is popped out, the purpose of hiding the hook 2 in the handle body 1 is achieved, the handle does not occupy space when not in use, and the overall appearance is not affected, the button 3 is pressed, the lock 4 is away from the positioning hole 211, the hook 2 is unlocked, a part of the hook 2 elastically slides to the outside of the handle body 1, it is convenient to mount multiple articles on the hook 2, and the use convenience is improved.

[0048] With reference to Figures 1 to 12 A telescopic pull rod of a luggage case, comprising two outer pipes 9, two inner pipes 82 and the above-mentioned side-hung handle, the two ends of the handle body 1 are fixedly and perpendicularly connected with the two inner pipes 82 respectively, and the two outer pipes 9 are slidably sleeved on the two inner pipes 82 respectively.

[0049] With reference to​Figure 1 、 Figure 9 、 Figure 11 and Figure 12 The upper ends of the two inner tubes 82 are fixedly connected with the protruding part of the lower end of the lower seat 12, so that the two inner tubes 82 together with the handle body 1 form a U shape, the two transmission bars 81 are respectively located in the two inner tubes 82, the two outer tubes 9 are connected by a connecting rod 824 to form a U shape, and the two outer tubes 9 and the connecting rod 824 are fixed on the luggage case. The upper end and the lower end of each outer tube 9 are respectively provided with a clamping hole 91, the two outer tubes 9 are respectively slidably sleeved on the two inner tubes 82 to form a telescopic structure. The end (i.e. the bottom) of each inner tube 82 is fixed with a sliding block 821, the inner tube 82 is slidably connected with the corresponding outer tube 9 through the sliding block 821. A push block 822 is clamped in the sliding block 821 along the axial direction, the upper end of the push block 822 is located in the corresponding inner tube 82, the upper end of the push block 822 is fixedly connected with the lower end of the corresponding push rod 8 through the corresponding transmission bar 81, and a slope 8221 is arranged at the gap of the lower end of the push block 822. A buckle 823 is elastically connected in the sliding block 821 along the radial direction, the buckle 823 can be used to lock the corresponding outer tube 9, the buckle 823 is provided with a triangular-shaped triangular platform 8231, the slope 8221 of the push block 822 is slidably abutted against the slope of the triangular platform 8231 of the buckle 823, so that the lower end of the push block 822 can be obliquely abutted against the corresponding buckle 823, and the button 5 is arranged on the side of the two inner tubes 82 (i.e. located at the bottom of the handle).

[0050] With reference to Figures 1 to 12 , the working principle of the telescopic pull rod of the luggage case is as follows:

[0051] The two buttons 3 are pressed, the two locks 4 are lowered, the two hooks 2 are unlocked, the two hooks 2 are popped out, and the articles can be hung on the two hooks 2;

[0052] The two hooks 2 are pressed, the spring 23 is compressed, the hooks 2 are locked by the lock 4 under the elastic force of the locking spring 42, and the two hooks 2 can be hidden in the two ends of the handle body 1;

[0053] The button 5 at the bottom of the handle body 1 is pressed, the spring 52 is compressed, the two pushers 51 on the button 5 jointly abut against the left sliding block 6 and the right sliding block 7, the left sliding block 6 moves left, the right sliding block 7 moves right, the left sliding block 6 and the right sliding block 7 respectively push the left and right push rods 8 to move downward, the two push rods 8 control the push blocks 822 at the left and right ends to move downward through the respective transmission bars 81, the inclined surface 8221 of each push block 822 is slidably abutted against the triangular platform 8231 on the corresponding buckle 823, the buckling part of each buckle 823 is withdrawn from the clamping hole 91 at the lower end of the corresponding outer tube 9, then the two buckles 823 are respectively moved into the two outer tubes 9 to unlock the outer tubes 9, at this time, the handle is pulled upward with force, the two inner tubes 82 can slide upward, and the pull rod is lengthened.

[0054] When the sliding block 821 slides to the limit position, the buckle part of the buckle 823 is opposite to the clamping hole 91 at the upper end of the outer tube 9, the button 5 is released, the button 5 is moved downward under the elastic force of the push spring 52, the spring at the tail of the buckle 823 pushes the buckle 823 outward, the buckle part of the buckle 823 extends into the clamping hole 91 at the upper end of the outer tube 9, at the same time, the triangular platform 8231 on the buckle 823 pushes the inclined surface 8221 on the push block 822, so that the push block 822 moves upward, the transmission bar 81 moves upward, and then the two push rods 8 move upward together, drive the left sliding block 6 to move right to reset, the right sliding block 7 moves left to reset, the buckle part of the buckle 823 extends into the clamping hole 91 at the upper end of the outer tube 9, and the buckle 823 locks the outer tube 9, at this time, the pull rod is elongated to the maximum length;

[0055] When the length of the pull rod needs to be shortened, the button 5 is pressed again, the outer tube 9 can be unlocked, after adjusting the length, the button 5 is released, and the outer tube 9 can be locked.

[0056] The telescopic pull rod of the luggage case has the functions of hiding and popping out the hook 2, and the two ends of the side hanging type handle are connected with the two inner tubes 82 respectively, so that the outer tube 9 and the inner tube 82 can not only be telescopic, but also the hook 2 popped out by the handle can conveniently hang various objects, additional functions are increased, and the functionality and convenience of the luggage case are improved.

[0057] The above disclosed is only the preferred embodiment of the utility model, which cannot limit the protection scope of the utility model, therefore, equivalent changes made according to the patent application scope of the utility model still belong to the range covered by the utility model.

Claims

1. A side handle comprising a handle body, characterized in that, The handle body is provided with a hook and a button, the hook is sleeved outside the button, the hook is elastically connected with the handle body to slide to outside of the handle body, the handle body is elastically connected with a lock inside, the button is inclined to press the lock to control the lock to slide, and the side surface of the hook is provided with a positioning hole for the lock to slide in or out.

2. The pendant handle of claim 1, wherein The hook and the button are located on the same end surface of the handle body, the hook is elastically connected along the axial direction of the handle body, the lock is elastically connected along the radial direction of the handle body, the button is inclined to press the lock along the axial direction of the handle body to control the lock to slide along the radial direction of the handle body, the outer wall of the part of the hook outside the handle body is provided with a hanging groove, and the positioning hole is located in the hanging groove.

3. The pendant handle of claim 1, wherein The positioning hole is arranged along the radial direction of the hook, and the button is movably connected with the handle body.

4. The pendant handle of claim 1, wherein An outer inclined table is arranged on the inner end surface of the button, an inner inclined table is arranged in the side opening of the lock close to the button, and the inclined surface of the outer inclined table is in sliding connection with the inclined surface of the inner inclined table.

5. The pendant handle of claim 1, wherein Two buttons, two hooks and two locks are symmetrically arranged on the two end surfaces of the handle body, the buttons on the same end are inclined to press the locks on the corresponding end to make the locks slide radially to lock the hooks on the corresponding end.

6. A telescopic pull handle for a luggage case, comprising: The handle body comprises two outer tubes, two inner tubes and the side hanging handle as claimed in claim 5, and the two ends of the handle body are fixedly and perpendicularly connected with the two inner tubes respectively, and the two outer tubes are sleeved on the two inner tubes respectively.

7. The telescoping handle of claim 6, wherein, The handle body comprises a shell and two cores, the two cores are connected in concave-convex limiting mode and fixed in the shell together, and the two hooks are elastically connected with the two cores in axial one-to-one correspondence through ejection springs respectively.

8. The telescoping handle of claim 7, wherein, The two locks are arranged in the lock grooves of the two cores in one-to-one correspondence, each lock is elastically connected with the corresponding core in radial direction through a locking spring, and the buckle on each button is movably connected with the clamping groove on the side surface of the corresponding core.

9. The telescoping handle of claim 7, wherein, The inner part of the two ends of the shell is elastically connected with a push rod in radial direction respectively, the end of each inner tube is connected with the corresponding outer tube through a sliding block, the push block is connected in limiting mode in axial direction in the sliding block, the corresponding buckle is elastically connected in radial direction in the sliding block, one end of the push block is inclined to press the corresponding buckle, and the other end of the push block is fixedly connected with the corresponding push rod through a transmission bar.

10. The telescoping handle of claim 9, wherein, Two sliding blocks are reversely arranged between the two cores and the inner wall of the shell, the two sliding blocks are located between the two push rods and inclined to press the two push rods in one-to-one correspondence, a key is arranged on the side of the shell facing the two inner tubes, two pushing parts of the key extend into the shell and are inclined to press the two sliding blocks together, so that the two sliding blocks are close to or away from each other in the axial direction of the shell.