Convex connection type hand strap support
By using a convex connecting hand strap bracket design, and through the cooperation of convex rails and sliders, the problem of lack of tactile feedback when switching states in existing hand strap brackets is solved, thus improving the user's operating experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2026-03-10
AI Technical Summary
The existing wrist strap support lacks tactile feedback when switching between states, affecting the user experience.
The design employs a convex connection, where the assembly between the convex rail and the slider utilizes the cooperation of positioning beads and spring components to achieve the switching of positioning beads between the fixed bead holes, providing noticeable movement resistance and sound, and enhancing the tactile feel of the slider.
The slider movement has been improved, enhancing the user's experience of operating the device with a stand.
Smart Images

Figure CN223987113U_ABST
Abstract
Description
Technical Field
[0001] This utility model patent relates to the technical field of hand strap supports, and more specifically, to a convex-connected hand strap support. Background Technology
[0002] In order to better protect their mobile phones during daily use, people usually put on and install phone cases to protect them.
[0003] By equipping the phone case with a wrist strap bracket, it is easier for users to hold the phone and to support its placement. For example, the prior patent with authorization announcement number CN221900910U discloses a phone case including a shell and a shell film, which are designed separately. A central protective sleeve is provided on one side of the shell, and a slide rail is provided on the back of the shell below the camera opening. A wrist strap assembly is provided on the back of the shell via the slide rail. With the slide rail and wrist strap assembly, by pushing the slider along the slide rail towards the end closer to the camera opening, the first inner plate and the second inner plate will be lifted upward under the pushing force. When the slider is released, the magnet will attract the slide rail. At this time, the first inner plate and the second inner plate cooperate with each other to form a bracket.
[0004] In existing technologies, when switching the state of the support, the slider moves smoothly relative to the slide rail based on the thrust, which makes the user feel a lack of tactile feedback when pushing the slider, resulting in a poor user experience. Utility Model Content
[0005] The purpose of this invention is to provide a protruding wrist strap bracket, which aims to solve the problem of lack of tactile feedback when switching the state of the wrist strap bracket in the prior art.
[0006] This utility model is implemented as follows: a convex-connected hand strap bracket includes a slide rail, a frame plate, a slider, and a positioning component. The slide rail includes a slide rail plate and a convex rail strip, which are arranged in a mating arrangement. The slide rail plate is assembled with a fixed object, and the convex rail strip is arranged to protrude in a direction away from the slide rail plate. The slider is movably assembled with the convex rail strip, and the slider is used to cause the frame plate to bend or unfold. The positioning component is installed on the slider or the convex rail strip. The slider or the convex rail strip respectively forms a plurality of fixed bead holes. The positioning component includes a positioning bead and a spring, which are arranged in a mating arrangement with the positioning bead. The spring is used to cause the positioning bead to be inserted into the fixed bead hole, and the positioning bead is pushed away from the fixed bead hole by a pushing force.
[0007] Furthermore, the positioning component includes a positioning seat, and the two ends of the spring are respectively connected to the positioning seat and the positioning bead. The positioning bead and the positioning seat are movably assembled. The positioning seat is mounted on the slider. The convex rail has a plurality of positioning bead holes. Each positioning bead hole is arranged at intervals along the length direction of the convex rail. The positioning bead and the positioning bead hole are arranged vertically correspondingly. The movement of the slider causes the positioning bead to be embedded or disengaged relative to each positioning bead hole.
[0008] Furthermore, the convex connecting hand strap bracket includes multiple positioning components, each of which is arranged at intervals along the width direction of the convex rail; the convex rail has multiple hole rows, each of which is arranged at intervals along the width direction of the convex rail, and each hole row includes multiple fixed bead holes arranged in a straight line.
[0009] Furthermore, the slider includes a main block and two longitudinal slide plates. The longitudinal slide plates are connected to the main block and extend vertically in a direction away from the main block. The convex rail is located between the two longitudinal slide plates and has a side rail surface facing the longitudinal slide plate. The positioning seat is installed on the longitudinal slide plate, and the side rail surface has a plurality of fixed bead holes.
[0010] Furthermore, the slider includes a main block and two longitudinal slide plates. The longitudinal slide plates are connected to the main block and extend vertically away from the main block. The convex rail is located between the two longitudinal slide plates. The convex connecting hand strap bracket includes multiple positioning components. Each positioning component is arranged along the length of the convex rail. The convex rail has a side rail surface facing the longitudinal slide plate. Each positioning seat is installed on the side rail surface. The longitudinal slide plate has the fixed bead hole.
[0011] Furthermore, the convex hand strap bracket includes multiple positioning components, each of which is arranged along the length of the convex rail, and each of the positioning beads is arranged along the length of the convex rail; the slider has a bottom surface facing the convex rail, the bottom surface has the positioning bead hole, the positioning bead is embedded in the positioning bead hole, and the slider is pushed by a force to cause the positioning bead to disengage from the positioning bead hole.
[0012] Furthermore, the convex hand strap bracket includes two sliders, with the two ends of the frame plate respectively arranged in abutment with the two sliders. The two sliders slide individually or synchronously. The two sliders are used to cause the frame plate to bend or unfold, or the two sliders are used synchronously to cause the frame plate to bend or unfold.
[0013] Furthermore, the fixed bead holes are arranged in a hemispherical shape; or, the fixed bead holes are arranged in a wave-like pattern.
[0014] Furthermore, the convex rail includes a rail groove, which is arranged to be recessed inward and extends along the length direction; the slider includes a main block and two longitudinal sliding plates, which are connected to the main block and extend vertically in a direction away from the main block, with the outer end of the longitudinal sliding plate forming a plate head, which is movably embedded in the rail groove.
[0015] Furthermore, the convex rail includes a rail piece, which is arranged to convexly along the width direction and extends in a long strip along the length direction; the slider includes a main block and two longitudinal sliding plates, which are connected to the main block and extend vertically away from the main block, and each longitudinal sliding plate has a sliding plate groove, the two ends of which are connected, and the rail piece is movably embedded in the sliding plate groove.
[0016] Compared with the prior art, the convex connecting hand strap bracket provided by this utility model has a convex rail arranged in a convex manner, which facilitates the assembly between the convex rail and the slider. When it is necessary to switch the state of the frame plate, the user applies a pushing force to the slider, causing the slider to move relative to the convex rail. The pushing force causes the positioning bead hole to apply a reverse force to the positioning bead, causing the positioning bead to overcome the elastic force of the spring and disengage from the positioning bead hole, realizing the switching of the positioning bead along different positioning holes. In this way, when the user switches the state of the frame plate, the positioning bead is subjected to force and moves along different positioning bead holes. The movement of the positioning bead has movement resistance and sound, which improves the tactile feel of the slider movement, thereby improving the user's push feel of the slider and thus improving the user's operating experience of the hand strap bracket. Attached Figure Description
[0017] Figure 1 This is a three-dimensional schematic diagram of the protruding hand strap bracket and the protective shell assembled according to this utility model;
[0018] Figure 2 This is a cross-sectional schematic diagram of the convex connecting hand strap bracket provided by this utility model in a folded state;
[0019] Figure 3 This is a schematic diagram of a multi-segment embodiment of the bracket plate of the protruding hand strap bracket provided by this utility model;
[0020] Figure 4 This is a cross-sectional schematic diagram of the positioning component of the protruding hand strap bracket provided by this utility model;
[0021] Figure 5 This is a three-dimensional schematic diagram of the assembly of the protruding wrist strap bracket and the power bank provided by this utility model.
[0022] Figure 6 This is a three-dimensional schematic diagram of the assembly of the protruding hand strap bracket and the card holder provided by this utility model;
[0023] Figure 7 This is a cross-sectional schematic diagram of an embodiment of the convex connecting hand strap bracket provided by this utility model;
[0024] Figure 8 This is a cross-sectional schematic diagram of Embodiment 2 of the protruding hand strap bracket provided by this utility model;
[0025] Figure 9 This is a cross-sectional schematic diagram of Embodiment 3 of the protruding hand strap bracket provided by this utility model.
[0026] Figure 10 This is a cross-sectional schematic diagram of Embodiment 4 of the convex connecting hand strap bracket provided by this utility model;
[0027] Figure 11 This is a cross-sectional schematic diagram of Embodiment 5 of the convex connecting hand strap bracket provided by this utility model;
[0028] Figure 12 This is a cross-sectional schematic diagram of Embodiment Six of the Convex Connector Hand Strap Bracket provided by this utility model. Detailed Implementation
[0029] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.
[0030] The implementation of this utility model will be described in detail below with reference to specific embodiments.
[0031] In the accompanying drawings of this embodiment, the same or similar reference numerals correspond to the same or similar components. In the description of this utility model, it should be understood that if terms such as "upper," "lower," "left," and "right" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, they are only for the convenience of describing this utility model 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, the terms used to describe positional relationships in the drawings are only for illustrative purposes and should not be construed as limiting this patent. For those skilled in the art, the specific meaning of the above terms can be understood according to the specific circumstances.
[0032] Reference Figure 1-12 The image shown is a preferred embodiment of the present invention.
[0033] A convex-type hand strap bracket includes a slide rail 1, a frame plate 2, a slider 3, and a positioning component 5. The slide rail 1 includes a slide rail plate 12 and a convex rail 11, which are arranged in a mating arrangement. The slide rail plate 12 is assembled with a fixed object 4. The convex rail 11 is arranged to protrude in a direction away from the slide rail plate 12. The slider 3 is movably assembled with the convex rail 11. The slider 3 is used to cause the frame plate 2 to bend or unfold. The positioning component 5 is installed on the slider 3 or the convex rail 11. The slider 3 or the convex rail 11 is respectively formed with a plurality of fixed bead holes 6. The positioning component 5 includes a positioning bead 51 and a spring 52, which are arranged in a mating arrangement with the positioning bead. The spring 52 is used to cause the positioning bead 51 to be inserted into the fixed bead hole 6. The positioning bead 51 is pushed away from the fixed bead hole 6.
[0034] The aforementioned convex-connected hand strap bracket has a convex rail 11 that is arranged to facilitate the assembly between the convex rail 11 and the slider 3. When it is necessary to switch the state of the frame plate 2, the user applies a pushing force to the slider 3, causing the slider 3 to move relative to the convex rail 11. The pushing force causes the fixed bead hole 6 to apply a reverse force to the positioning bead 51, causing the positioning bead 51 to overcome the elastic force of the spring member 52 and disengage from the fixed bead hole 6, thus realizing the switching of the positioning bead 51 along different positioning holes. In this way, when the user switches the state of the frame plate 2, the positioning bead 51 is subjected to force and moves along different fixed bead holes 6. The movement of the positioning bead 51 has movement resistance and sound, which improves the tactile feel of the slider 3, thereby improving the user's push feel on the slider 3, and thus improving the user's operating experience of the hand strap bracket.
[0035] The fixing object 4 can be a protective case, which protects mobile phones, tablets, etc. The protruding wrist strap bracket is assembled with the protective case to support electronic devices such as mobile phones and tablets, making it convenient to place and use the device and to hold the device.
[0036] The fixed object 4 can be a power bank, which is used to provide power to electronic devices. The protruding hand strap bracket is assembled with the power bank to support it, making it easy to place and use the power bank and to hold it by hand.
[0037] The fixing element 4 can be a card holder, which has storage space to place and store cards such as bank cards, bus cards, and credit cards. The protruding hand strap bracket is assembled with the card holder to support the card holder, making it easy to place and use the card holder and to hold it by hand.
[0038] The slide rail plate 12 and the fixing object 4 can be assembled by embedding or by adhesive bonding, or the slide rail plate 12 and the fixing object 4 can be arranged as a single piece.
[0039] The frame 2 includes a first plate and a second plate, which are hinged together. The slider 3 is connected to the first plate or the second plate. The first plate and the second plate are folded and unfolded by moving the slider 33. When folded, they form a triangular shape to support the fixed object 4.
[0040] The first plate is embedded in the fixing object 4, or the first plate is glued to the fixing object 4; thus realizing the assembly between the frame plate 2 and the fixing object 4.
[0041] The frame 2 includes a third plate, and the first, second and third plates are arranged in sequence and hinged together; the slider 3 is arranged in a docking arrangement with the first or third plate; the frame 2 can be folded or unfolded by moving the slider 3.
[0042] The positioning bead holes 6 are arranged in a hemispherical shape, which facilitates the entry and exit of the positioning bead 51 into the positioning bead holes 6, thereby facilitating the switching of the positioning bead 51 between the various positioning bead holes 6, making it easy to produce a clicking sound, and ensuring that the resistance of the positioning bead holes 6 is moderate, which not only ensures the user's pushing feel, but also avoids excessive effort.
[0043] Alternatively, the positioning holes 6 can be arranged in a wave-like pattern to facilitate the entry and exit of the positioning beads 51 from the positioning holes 6, thereby facilitating the switching of the positioning beads 51 between the positioning holes 6, making it easier to produce a clicking sound, and ensuring that the resistance of the positioning holes 6 is moderate, which not only ensures the user's pushing feel, but also avoids excessive effort.
[0044] The frame plate 2 includes a plate side, which is fixedly arranged with the fixing object 4, so that one end of the frame plate 2 is fixed and the other end is switched by sliding the slider 3.
[0045] Alternatively, the plate can be glued to the fixing object 4, so that one end of the frame plate 2 is fixed and the other end can switch states by sliding the slider 3.
[0046] Implementation 1:
[0047] The positioning component 5 includes a positioning seat 53. The two ends of the spring 52 are respectively connected to the positioning seat 53 and the positioning bead 51. The positioning bead 51 is movably assembled with the positioning seat. The positioning seat 53 is installed on the slider 3. The convex rail 11 has multiple bead holes 6. The bead holes 6 are arranged at intervals along the length of the convex rail 11. The positioning bead 51 is arranged vertically corresponding to the bead holes 6. The slider 3 moves to drive the positioning bead 51 to be embedded or disengaged relative to each bead hole 6.
[0048] In this way, the positioning bead 51 and the fixed bead hole 6 are arranged vertically in correspondence. By moving the slider 3, the positioning bead 51 is driven to be embedded or disengaged from different fixed bead holes 6, which improves the tactile feel of the slider 3 and thus improves the user's push feel of the slider 3, thereby improving the user's operating experience of the bracket.
[0049] Implementation 2:
[0050] The convex hand strap bracket includes multiple positioning components 5, which are arranged at intervals along the width direction of the convex rail 11; the convex rail 11 has multiple hole rows, which are arranged at intervals along the width direction of the convex rail 11, and the hole rows include multiple fixed bead holes 6 arranged in a straight line.
[0051] In this way, the cooperation between the positioning component 5 and the convex rail 11 improves the tactile feedback of the slider 3, thereby enhancing the user's push feel on the slider 3 and improving the user's operating experience of the bracket. Furthermore, when the slider 3 is pushed, multiple positioning components 5 move synchronously, making the movement of the slider 3 more stable, the tactile feedback of the slider 3 stronger, and the push feel better.
[0052] Implementation Three:
[0053] The slider 3 includes a main block and two longitudinal slides. The longitudinal slides are connected to the main block and extend vertically in a direction away from the main block. The convex rail 11 is located between the two longitudinal slides and has a side rail surface facing the longitudinal slide. The positioning seat 53 is installed on the longitudinal slide and has multiple bead holes 6 on the side rail surface.
[0054] In this way, the positioning seat 53 is installed on the side. Through the cooperation of the longitudinal sliding plate and the side rail surface of the convex rail 11, the positioning bead 51 is matched with the positioning hole, which improves the tactile feel of the slider 3, thereby improving the user's push feel of the slider 3 and thus improving the user's operating experience of the bracket.
[0055] The first longitudinal slide is equipped with a positioning seat 53, and multiple fixed bead holes 6 are provided on one side of the track surface, so that the positioning component 5 can be set through one side.
[0056] Both longitudinal slides are equipped with positioning seats 53, and both side rails are equipped with multiple fixed bead holes 6. Positioning components 5 are arranged on both sides of the convex rail 11 to make the pushing of the slider 3 more stable, the force on the slider 3 more even, and facilitate the movement of the slider 3.
[0057] Implementation Four:
[0058] The slider 3 includes a main block and two longitudinal slides. The longitudinal slides are connected to the main block and extend vertically in a direction away from the main block. The convex rail 11 is located between the two longitudinal slides. The convex hand strap bracket includes multiple positioning components 5. Each positioning component 5 is arranged along the length of the convex rail 11. The convex rail 11 has a side rail surface facing the longitudinal slide. Each positioning seat 53 is installed on the side rail surface. The longitudinal slide has a bead hole 6.
[0059] In this way, the positioning seat 53 is installed on the side. Through the cooperation of the longitudinal sliding plate and the side rail surface of the convex rail 11, the positioning bead 51 is matched with the positioning hole, which improves the tactile feel of the slider 3, thereby improving the user's push feel of the slider 3 and thus improving the user's operating experience of the bracket.
[0060] Multiple positioning seats 53 are arranged on one side of the track surface, and a fixed bead hole 6 is provided on one longitudinal slide to realize the setting of the positioning component 5. When the slider 3 moves, it drives the positioning hole to move relative to each positioning seat 53, so that the positioning hole is embedded or disengaged relative to different positioning beads 51.
[0061] Multiple positioning seats 53 are provided on both side rails, and the positioning seats 53 on the side rails are arranged at intervals. Both longitudinal slides are provided with fixed ball holes 6. Positioning components 5 are arranged on both sides of the convex rail 11, so that the pushing of the slider 3 is more stable, the force on the slider 3 is more even, and the movement of the slider 3 is easier.
[0062] Implementation 5:
[0063] The convex hand strap bracket includes multiple positioning components 5, each positioning component 5 is arranged along the length direction of the convex rail 11, and each positioning bead 51 is arranged along the length direction of the convex rail 11; the slider 3 has a bottom block surface facing the convex rail 11, the bottom block surface has a fixed bead hole 6, the positioning bead 51 is embedded in the fixed bead hole 6, and the slider 3 is pushed by a force to cause the positioning bead 51 to disengage from the fixed bead hole 6.
[0064] In this way, when the slider 3 moves, it causes the positioning holes to move relative to each positioning seat 53, so that the positioning holes are embedded or disengaged from different positioning beads 51, which improves the tactile feel of the slider 3, thereby improving the user's push feel of the slider 3 and thus improving the user's operating experience of the bracket.
[0065] Implementation Six:
[0066] The convex-type hand strap bracket includes two sliders 3. The two ends of the frame plate 2 are respectively arranged to be connected to the two sliders 3. The two sliders 3 slide individually or synchronously. The two sliders 3 are used to cause the frame plate 2 to bend or unfold, or the two sliders 3 are used synchronously to cause the frame plate 2 to bend or unfold.
[0067] In this way, when users need to switch the stand status, they can choose to push one slider 3 or push both sliders 3 simultaneously; this improves the user's control method, making it more practical and easy to operate, and enhancing the user's experience of operating the stand.
[0068] Implementation Seven:
[0069] The convex rail 11 includes a rail groove, which is arranged to be recessed inward and extends along the length direction; the slider 3 includes a main block and two longitudinal sliding plates, which are connected to the main block and extend vertically in a direction away from the main block. The outer end of the longitudinal sliding plate forms a plate head, and the plate head is movably embedded with the rail groove.
[0070] In this way, the cooperation between the plate head and the rail groove prevents the slider 3 from shaking during movement and improves the smoothness of the slider 3's movement.
[0071] Implementation 8:
[0072] The convex rail 11 includes a rail piece, which is arranged to convexly along the width direction and extends in a long strip along the length direction; the slider 3 includes a main block and two longitudinal sliding plates, which are connected to the main block and extend vertically in a direction away from the main block. The longitudinal sliding plates have sliding plate grooves, and the two ends of the sliding plate grooves are arranged to pass through each other. The rail piece is movably embedded in the sliding plate groove.
[0073] In this way, the cooperation between the rail strip and the slide groove prevents the slider 3 from shaking during movement and improves the smoothness of the slider 3's movement.
[0074] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A convex continuation hand strap holder characterized in that, The convex rail type hand strap support includes a plurality of positioning assemblies, each of the positioning assemblies is arranged in an interval along the width direction of the convex rail; the convex rail has a plurality of hole rows, each of the hole rows is arranged in an interval along the width direction of the convex rail, and each of the hole rows includes a plurality of positioning beads arranged in a straight line.
2. The convex link hand strap holder of claim 1, wherein, The convex rail type hand strap support includes a plurality of positioning assemblies, each of the positioning assemblies is arranged in an interval along the width direction of the convex rail; the convex rail has a plurality of hole rows, each of the hole rows is arranged in an interval along the width direction of the convex rail, and each of the hole rows includes a plurality of positioning beads arranged in a straight line.
3. The convex link hand strap holder of claim 2, wherein, The convex rail type hand strap support includes a plurality of positioning assemblies, each of the positioning assemblies is arranged in an interval along the width direction of the convex rail; the convex rail has a plurality of hole rows, each of the hole rows is arranged in an interval along the width direction of the convex rail, and each of the hole rows includes a plurality of positioning beads arranged in a straight line.
4. The convex link handband holder of claim 2, wherein, The convex rail type hand strap support includes a plurality of positioning assemblies, each of the positioning assemblies is arranged in an interval along the width direction of the convex rail; the convex rail has a plurality of hole rows, each of the hole rows is arranged in an interval along the width direction of the convex rail, and each of the hole rows includes a plurality of positioning beads arranged in a straight line.
5. The convex link handband holder of claim 2, wherein, The convex rail type hand strap support includes a plurality of positioning assemblies, each of the positioning assemblies is arranged in an interval along the width direction of the convex rail; the convex rail has a plurality of hole rows, each of the hole rows is arranged in an interval along the width direction of the convex rail, and each of the hole rows includes a plurality of positioning beads arranged in a straight line.
6. The convex link hand strap holder of any one of claims 1-5, wherein, The convex rail type hand strap support includes a plurality of positioning assemblies, each of the positioning assemblies is arranged in an interval along the width direction of the convex rail; the convex rail has a plurality of hole rows, each of the hole rows is arranged in an interval along the width direction of the convex rail, and each of the hole rows includes a plurality of positioning beads arranged in a straight line.
7. The convex link hand strap holder of any of claims 1-5, wherein, The convex rail strip comprises a rail strip groove arranged inwardly recessed and extending along the length direction; the sliding block comprises a main block part and two longitudinal sliding plates which are in butt joint with the main block part and vertically extend away from the main block part, and the outer end of the longitudinal sliding plate forms a plate head which is movably embedded in the rail strip groove.
8. The convex link hand strap holder of any one of claims 1-5, wherein, The convex rail strip comprises a rail strip groove arranged inwardly recessed and extending along the length direction; the sliding block comprises a main block part and two longitudinal sliding plates which are in butt joint with the main block part and vertically extend away from the main block part, and the outer end of the longitudinal sliding plate forms a plate head which is movably embedded in the rail strip groove.
9. The convex link hand strap holder of any of claims 1-5, wherein, The convex rail strip comprises a rail strip groove arranged inwardly recessed and extending along the length direction; the sliding block comprises a main block part and two longitudinal sliding plates which are in butt joint with the main block part and vertically extend away from the main block part, and the outer end of the longitudinal sliding plate forms a plate head which is movably embedded in the rail strip groove.
10. The convex link hand strap holder of any one of claims 1-5, wherein,
Citation Information
Patent Citations
Mobile phone shell
CN221900910U