Clamping handle device, handbag and electronic equipment support using clamping handle device
By designing a sliding handle and a clamping grip device, combined with a detachable bag and silicone bag body, the problems of inconvenient item clamping and food bag leakage are solved, achieving stable carrying and environmentally friendly portability.
Patent Information
- Application Number
- CN202520778606.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2025-04-22
- Filing Date
- 2025-04-23
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-04-23
AI Technical Summary
Existing items lack effective clamping structures, which can easily lead to fatigue when held for extended periods. Furthermore, existing food bags are prone to deformation and leakage and are inconvenient to carry. Environmentally friendly containers take up space and require additional packaging, failing to meet the needs for portability and environmental protection.
Design a clamping handle device including a sliding handle and a clamping part, which opens and closes the clamping port by biasing a torsion spring, and combines a detachable bag and silicone bag body to provide stable clamping, leak prevention and portability.
It achieves stable clamping and carrying of items, reduces fatigue, lowers the risk of tipping over and leakage, reduces the use of additional packaging, and improves environmental friendliness and portability.
Smart Images

Figure CN223913676U_ABST
Abstract
Description
Technical Field
[0001] This disclosure relates to a gripping handle device, a handbag, and an electronic device holder using the device. The gripping handle device provided by this disclosure can be switched to different configurations for gripping, releasing, and carrying items. It can also be adjusted to function as an electronic device holder. The handbag provided by this disclosure can directly hold food without requiring an additional bag, making it environmentally friendly. Furthermore, the handbag is easy to fold for storage, stable during use, and reduces the risk of tipping over. Background Technology
[0002] Items without handles, such as documents, books, or food bags, can only be gripped with the palm of the hand or held in the arm to prevent them from slipping out of the hand or arm due to the lack of handles. Holding items in these ways for extended periods can easily lead to fatigue and make it difficult to lift or put them down.
[0003] Environmental protection has become a global concern. Single-use plastic containers or cardboard boxes used to hold food generate significant amounts of waste and non-biodegradable materials. Recyclable food containers can replace single-use plastic containers, but most recyclable food containers on the market that can hold solid or liquid foods are made of rigid plastic and glass, taking up space and being inconvenient to carry. Furthermore, whether using single-use or recyclable containers, additional plastic bags or insulated bags are usually needed for transport, exacerbating environmental pollution. Reducing the use of single-use containers and plastic bags, while prioritizing environmental protection, can decrease the amount of non-biodegradable waste and lessen the environmental burden.
[0004] Existing silicone or cloth food bags are prone to deformation and difficult to keep upright. They are also prone to leakage when used to contain liquids. These food bags require multiple folds to seal the opening, resulting in time-consuming use and poor sealing performance. Utility Model Content
[0005] In one aspect, the disclosed embodiments provide a gripping handle device for holding an article.
[0006] However, the embodiments of this disclosure are not limited to those set forth herein. The above and other aspects of the embodiments of this disclosure will become more apparent to those skilled in the art upon which this disclosure pertains from the following detailed description of the disclosure.
[0007] According to one or more embodiments of this disclosure, a clamping handle device includes a clamping body having a clamping opening configured to selectively open and close. A handle assembly includes a first handle and a second handle, each of the first and second handles being at least partially slidable relative to the clamping body and located on opposite sides of the clamping opening. Both the first and second handles include a first handgrip and a second handgrip. In the same handle, the second handgrip is hinged to the first handgrip.
[0008] According to one or more embodiments of this disclosure, the clamping body includes a first clamping portion and a second clamping portion hinged to the first clamping portion via a pivot. A torsion spring is disposed on the pivot, with its two ends abutting against the first clamping portion and the second clamping portion, respectively. Both the first clamping portion and the second clamping portion have an end remote from the pivot, and the two ends together define the clamping opening.
[0009] According to one or more embodiments of this disclosure, the first handle is slidably engaged with the first clamping portion, and the second handle is slidably engaged with the second clamping portion.
[0010] According to one or more embodiments of this disclosure, in a direction extending from the clamping opening toward the pivot, the distance between the first clamping portion and the second clamping portion first increases and then decreases.
[0011] According to one or more embodiments of this disclosure, the first clamping portion has two through holes, and the first handle slides through the two through holes and is configured to reciprocate within the through holes. The connection method between the second handle and the second clamping portion is the same as the connection method between the first handle and the first clamping portion.
[0012] According to one or more embodiments of this disclosure, in the same handle:
[0013] The first handgrip includes two first rods and a first connecting section disposed between and connected to the two first rods; the second handgrip includes two second rods and a second connecting section disposed between and connected to the two second rods. The first rods and the second rods are pivotally connected in a one-to-one correspondence, and each mating group of the first rods and the second rods is slidably connected to the clamping body through at least one hole.
[0014] According to one or more embodiments of this disclosure, the first hand grip extends from the side of the clamping body away from the clamping opening; and / or,
[0015] The second hand-held part extends out from the side of the clamping body near the clamping opening.
[0016] According to one or more embodiments of this disclosure, the first hand-held portion and the second hand-held portion are hinged together by a hinge.
[0017] According to one or more embodiments of this disclosure, when the second hand-held portion rotates away from the clamping opening and contacts the clamping body, the distal end of the first hand-held portion away from the hinge is lower than the distal end of the second hand-held portion away from the hinge.
[0018] According to one or more embodiments of this disclosure, the handle assembly is operable in a first configuration. The hinge portion of the handle assembly is located on the outer side of the clamping body near the clamping opening, and the second hand grip portions are all rotated away from the clamping opening to open the clamping opening.
[0019] According to one or more embodiments of this disclosure, the handle assembly is operable in a second configuration. The torsion spring biases the first and second clamping portions toward a closed position of the clamping opening.
[0020] According to one or more embodiments of this disclosure, both the first clamping portion and the second clamping portion include additional segments. The additional segments are disposed on the side of the respective clamping portion adjacent to the clamping opening. The additional segments are configured to contact each other when the clamping opening is closed.
[0021] In another aspect, embodiments of this disclosure provide a bag including a bag body and the clamping handle device detachably disposed on the bag body.
[0022] According to one or more embodiments of this disclosure, the bag body defines an opening and includes a first sidewall and a second sidewall disposed on opposite sides of the opening. The first sidewall and the second sidewall are detachably connected adjacent to the opening.
[0023] According to one or more embodiments of this disclosure, the first sidewall includes a button located at the top adjacent to the opening, and the second sidewall includes a button ring configured to be detachably connected to the button. And / or, the first sidewall includes a sealing strip disposed at the top adjacent to the opening. The second sidewall includes a sealing groove configured to be detachably connected to the sealing strip by a pressing operation, thereby closing or opening the opening of the bag body.
[0024] According to one or more embodiments of this disclosure, the bag body has a rectangular opening and further includes a pair of opposing third sidewalls, each of which is partially foldable and located between the first and second sidewalls. The inner surface of each third sidewall is detachably connected to the first and second sidewalls adjacent to the clamping opening.
[0025] According to one or more embodiments of this disclosure, the bag body is a truncated rectangular pyramid structure with an opening. The cross-sectional area of the opening is larger than the cross-sectional area of the end of the truncated rectangular pyramid structure opposite to the opening.
[0026] According to one or more embodiments of this disclosure, the bag body is integrally formed; and / or, the bag body is made of silicone material; and / or, the thickness of the proximal portion of the bag body relative to the opening is less than the thickness of the distal portion of the bag body relative to the opening.
[0027] In another aspect, the disclosed embodiments provide an electronic device holder including a clamping handle device. Attached Figure Description
[0028] It should be clearly understood that the accompanying drawings are for illustrative and descriptive purposes only and are not intended to be used as a definition of limitations on this application.
[0029] Figure 1 This is a perspective view of the clamping handle device according to an embodiment of this application;
[0030] Figure 2 This is its side view;
[0031] Figure 3 This is a perspective view of the first handle according to an embodiment of this application;
[0032] Figure 4 This is a perspective view of the clamping handle device in the first configuration;
[0033] Figure 5 This is a perspective view of the clamping handle device in the second configuration;
[0034] Figure 6 This is a perspective view of a handbag according to an embodiment of this application;
[0035] Figure 7 This is a perspective view of the bag body with the opening in the open state according to an embodiment of this application;
[0036] Figure 8 An embodiment of a clamping handle device configured as an electronic device holder is shown;
[0037] Figure 9 Another embodiment of a clamping handle device configured as an electronic device holder is shown. Detailed Implementation
[0038] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. All other embodiments obtained by those skilled in the art based on the embodiments of this application without inventive effort are within the protection scope of this application.
[0039] It should be understood that although the terms "first," "second," etc., may be used herein to describe different elements, these elements should not be limited by these terms. These terms are only used to distinguish one element from another. Therefore, without departing from the teachings of the disclosed concepts, a first element may be referred to as a second element.
[0040] Unless otherwise expressly stated and defined, the term "connection" in this application should be interpreted broadly. For example, it can refer to a fixed connection, a connection via an intermediate medium, internal communication between two elements, or an interactive relationship between two elements. For those skilled in the art, the specific meaning of the above-mentioned terms in this utility model can be understood according to the specific circumstances.
[0041] like Figure 1 As shown, the clamping handle device includes a clamping body 100, on which a handle assembly 200 is attached.
[0042] like Figure 1 and Figure 2 As shown, the clamping body 100 includes a first clamping portion 110 and a second clamping portion 120 hingedly connected to the first clamping portion 110. The ends of the first clamping portion 110 and the second clamping portion 120 are hingedly connected via a pivot 310. A cavity is formed between the intermediate portions of the first clamping portion 110 and the second clamping portion 120, the cavity being configured to accommodate at least a portion of the clamped article. Both the first clamping portion 110 and the second clamping portion 120 have distal ends remote from the pivot 310, the two distal ends jointly defining a clamping opening. The clamping opening is configured to selectively open and close.
[0043] A torsion spring 300 is sleeved on the pivot 310, and the two ends of the torsion spring 300 abut against the first clamping part 110 and the second clamping part 120, respectively. The torsion spring 300 is configured to bias the first clamping part 110 and the second clamping part 120 toward the closed position of the clamping opening.
[0044] The handle assembly 200 includes a first handle 210 and a second handle 220. The first handle 210 is disposed on a first clamping portion 110, and the second handle 220 is disposed on a second clamping portion 120. The first handle 210 and the second handle 220 are each at least partially slidable relative to the clamping body 100 and are located on opposite sides of the clamping opening.
[0045] The first clamping portion 110 and the second clamping portion 120 are slidably connected to the first handle 210 and the second handle 220, respectively. For example, the first clamping portion 110 includes a through hole, and the first handle 210 is at least partially inserted into the through hole and can reciprocate within the through hole. The connection between the second clamping portion 120 and the second handle 220 is similarly configured. The second clamping portion 120 includes a through hole, and the second handle 220 is at least partially inserted into the through hole and can reciprocate within the through hole.
[0046] The first handle 210 includes a first hand-held portion 211 and a second hand-held portion 212 hingedly connected to the first hand-held portion 211. The second handle 220 also includes a first hand-held portion 211 and a second hand-held portion 212 hingedly connected to the first hand-held portion 211. Relative to each other, the first hand-held portion 211 is disposed closer to the pivot 310, and the second hand-held portion 212 is disposed closer to the clamping opening.
[0047] The first handle portion 211 and the second handle portion 212 are hinged together by a hinge joint located between the first handle portion 211 and the second handle portion 212 within the same handle. When it is necessary to open the clamping port, the hinge joint of the first handle 210 slides out of the clamping body 100 from the side near the clamping port. The hinge joint of the second handle 220 also slides out of the clamping body 100 from the side near the clamping port. This configuration prevents the clamping body 100 from interfering with the rotation of the second handle portion 212 to open the clamping port.
[0048] In one embodiment, in the same handle, for example in the first handle 210, the hinge portion of the first hand-holding portion 211 and the second hand-holding portion 212 can be moved to the interior of the clamping body 100, the exterior of the clamping body 100 on the side adjacent to the pivot 310, and the exterior of the clamping body 100 on the side adjacent to the clamping opening.
[0049] When the hinge is located outside the clamping body 100 near the clamping opening, the first hand grip 211 extends from the clamping body 100 near the pivot 310. This configuration ensures that a portion of the first hand grip 211 is always located outside the clamping body 100. When carrying is required, the user can pull the extended portion of the first hand grip 211 for easy operation. The distal end of the second hand grip 212, away from the hinge, can rotate away from the clamping opening, thereby opening the clamping opening.
[0050] When the second hand grip 212 rotates away from the clamping opening and contacts the clamping body 100, the distal end of the first hand grip 211 away from the hinge is lower than the distal end of the second hand grip 212 away from the hinge. This configuration prevents the first hand grip 211 from interfering with the rotation of the second hand grip 212 during the opening of the clamping opening and helps the user apply clamping force.
[0051] When the hinge is located on the side of the clamping body 100 near the pivot 310, the second hand grip 212 extends from the side of the clamping body 100 near the clamping opening. This configuration ensures that a portion of the second hand grip 212 is always located outside the clamping body 100. When it is necessary to open the clamping opening, the user can pull the extended portion of the second hand grip 212 to allow the hinge to slide out of the clamping body 100 from the side near the clamping opening, and then rotate the second hand grip 212.
[0052] By adjusting the rotation angle of the hinge and the second hand-held part 212, the handle component 200 has various configurations to achieve different functions.
[0053] like Figure 4 As shown, when the clamping opening needs to be opened, the handle assembly 200 transforms into a first configuration, wherein the hinge portion of the handle assembly 200 is located outside the clamping body 100 on the side adjacent to the clamping opening. The two second hand grips 212 rotate away from the clamping opening, forming a dovetail-like structure with the clamping body 100. The two second hand grips 212 continue to rotate toward the pivot 310, separating the ends of the first clamping portion 110 and the second clamping portion 120 adjacent to the clamping opening, thereby opening the clamping opening for receiving subsequently clamped items.
[0054] When it is necessary to carry an item by hand, the handle assembly 200 changes to a second configuration. At this time, the external force is removed, and the ends of the first clamping portion 110 and the second clamping portion 120 adjacent to the clamping openings move towards the closed position of the clamping openings under the action of the torsion spring 300, thereby firmly clamping the item. The user can hold the first hand-held portion 211 to carry the item. In the second configuration, the main bodies of the first hand-held portion 211 and the second hand-held portion 212 in the same handle are configured to be substantially aligned in their extension directions.
[0055] like Figure 5 As shown, when the extension directions of the main bodies of the first hand-holding part 211 and the second hand-holding part 212 in the same handle are substantially aligned, each hinge of the handle assembly 200 is located outside the clamping body 100 away from the clamping opening, thereby providing the user with a larger hand-holding space.
[0056] In one embodiment, the hinge portion of the first hand-held portion 211 and the second hand-held portion 212 can slide to the interior of the clamping body 100 and the exterior of the clamping body 100 adjacent to the clamping opening.
[0057] In the first configuration, the hinge portion of the handle assembly 200 is located outside the clamping body 100 adjacent to the clamping opening. The two second hand grips 212 rotate away from the clamping opening, forming a structure similar to a dovetail clip with the clamping body 100.
[0058] In the second configuration, the ends of the first clamping portion 110 and the second clamping portion 120 adjacent to the clamping opening move toward the closed position of the clamping opening under the action of the torsion spring 300. In the same handle, the main bodies of the first hand-holding portion 211 and the second hand-holding portion 212 are configured to be substantially aligned in their extending directions. When the main bodies of the first hand-holding portion 211 and the second hand-holding portion 212 are substantially aligned in their extending directions in the same handle, each hinge of the handle assembly 200 is located inside the clamping body 100, thereby providing the user with greater hand-holding space.
[0059] In one embodiment, the distance between the first clamping portion 110 and the second clamping portion 120 first increases and then decreases in the direction extending from the clamping opening toward the pivot 310. The longitudinal cross-section of the first clamping portion 110 may be approximately C-shaped. Specifically, the first clamping portion 110 includes, from far to near, an upper wall 111, a transition wall 112, and a lower wall 113 relative to the clamping opening. Both the upper wall 111 and the lower wall 113 are constructed as inclined plates. Both the upper wall 111 and the lower wall 113 include through holes through which the first handle 210 slides. This design is configured to operatively constrain the direction of movement of each of the first handle 210 and the second handle 220 such that it is aligned with a line connecting the centers of the two through holes.
[0060] The additional section 114 is located on the side of the lower wall 113 adjacent to the clamping opening. When there is no external force, the clamping opening is closed, and the two additional sections 114 come into contact with each other, thereby increasing the clamping contact area and ensuring the clamping effect.
[0061] In one embodiment, the structure of the first clamping part 110 is the same as that of the second clamping part 120, and the first clamping part 110 and the second clamping part 120 are mirror-symmetrical.
[0062] In one embodiment, such as Figure 3 As shown, the first hand-held part 211 includes two first rods and a first connecting section disposed between and connected to the two first rods. The second hand-held part 212 includes two second rods and a second connecting section disposed between and connected to the two second rods. The first rods and second rods are pivotally connected in a one-to-one correspondence, and the mating assembly of the first rods and second rods is slidably connected to the clamping body 100 through at least one hole.
[0063] Both the first hand-holding portion 211 and the second hand-holding portion 212 are U-shaped and together form a rectangular ring to prevent the handle assembly 200 from slipping out of the clamping body 100. The first connecting section also facilitates gripping.
[0064] To enhance usability, anti-slip sleeves are provided on the connection between the first hand grip 211 and the second hand grip 212. These anti-slip sleeves are made of rubber.
[0065] In one embodiment, the hinge portion includes: an end plate 213 disposed on the proximal end of the first hand-held portion 211 near the second hand-held portion 212, a connecting shaft protruding from the end plate 213, and a connector 214 disposed on the proximal end of the second hand-held portion 212 near the first hand-held portion 211. The connector 214 is rotatably mounted on the connecting shaft. Optionally, two end plates 213 are symmetrically arranged, and the connecting shaft is disposed between the two end plates 213.
[0066] In one embodiment, the second handle 220 has the same structure as the first handle 210.
[0067] In one embodiment, the clamping handle device is made of a rigid material.
[0068] The items can be bags, books, or other items that need to be carried by hand. The gripping handle device can be switched to different configurations for gripping, releasing, and carrying items.
[0069] On the other hand, such as Figure 6 As shown, this disclosure provides a handbag, including a bag body 400 and the aforementioned clamping handle device, the clamping handle device being detachably clamped to the top of the bag body 400.
[0070] In one embodiment, the bag body 400 is made of a soft material such as silicone.
[0071] like Figure 7 As shown, the bag body 400 has an opening at its top and includes a first sidewall 410 and a second sidewall 420 located on opposite sides of the opening. The first sidewall 410 and the second sidewall 420 are detachably connected at the top near the opening, thereby enabling the opening to be opened or closed to ensure the closure effect of the bag body 400.
[0072] In one embodiment, a button is provided on the first sidewall 410, and a button ring is provided on the second sidewall 420, with the button and the button ring being detachably connected. The button is located at at least one end of the first sidewall 410, and the button ring is located at at least one end of the second sidewall 420 and corresponds to the button.
[0073] In one embodiment, the first sidewall 410 includes a sealing strip disposed at the top near the opening; the second sidewall 420 includes a sealing groove configured to be detachably connected to the sealing strip by a pressing operation, thereby closing or opening the opening of the bag body 400.
[0074] In one embodiment, the opening of the bag body 400 is rectangular, wherein the first sidewall 410 and the second sidewall 420 form a pair of opposite sides of the rectangle. Additionally, the bag body 400 includes a pair of opposing third sidewalls 430 located between the first sidewall 410 and the second sidewall 420. To facilitate storage of the bag body 400, the third sidewalls 430 are configured to be partially foldable, and the inner surface of each third sidewall 430 is detachably connected to the first sidewall 410 and the second sidewall 420 near the opening, thereby enhancing the sealing capability of the bag body 400 when closed. For example, the third sidewall 430 has a protrusion facing inwards, and the first sidewall 410 and the second sidewall 420 have corresponding grooves facing inwards, with the protrusion engaging in the groove.
[0075] The fold point of the third sidewall 430 is located at the midpoint of its top edge. When the opening is closed, the two third sidewalls 430 bend toward each other until their fold points contact each other, and the first sidewall 410 and the second sidewall 420 are fully connected to the third sidewall 430.
[0076] To facilitate the folding of the third sidewall 430, creases are provided on the third sidewall 430.
[0077] In one embodiment, the bag body 400 is a truncated rectangular pyramid structure with an opening. The cross-sectional area of the opening may be greater than, equal to, or less than the cross-sectional area of the end of the truncated rectangular pyramid structure opposite to the opening.
[0078] When the cross-sectional area of the opening is greater than the cross-sectional area of the end of the truncated rectangular pyramid structure opposite to the opening, a wider opening is provided at the top of the bag body 400, making it easier for the user to view or remove the contents of the bag body 400.
[0079] The bag body 400 can be made of food-grade material used for containing food, and the bag body 400 is integrally molded without any seams, thereby reducing the risk of leakage. The bag body 400 can be heated in a microwave oven; the clamping handle device should be removed before heating the bag body 400.
[0080] When the bag body 400 is made of silicone material, the thickness of the silicone is designed to ensure that the bag body 400 stands firmly upright without deforming, thereby maintaining its internal space and reducing the possibility of food deformation.
[0081] In one embodiment, the thickness of the bag body 400 can be 1-5 mm. Due to the flexibility of the silicone material, the user can easily flip the inner surface of the bag body 400 outward.
[0082] In one embodiment, the thickness of the proximal portion of the bag body 400 relative to the opening is less than the thickness of the distal portion of the bag body 400 relative to the opening. For example, the silicone thickness is 2 mm at the bottom 2 cm of the bag body 400, and the silicone thickness gradually decreases upwards to 1.4 mm for the remaining portion. Here, the bottom is the distal portion relative to the opening. This design ensures that the bag body 400 stands upright and is less likely to tip over, especially when containing liquids. Additionally, the thinner material at the top facilitates folding.
[0083] The bag body 400 is detachably connected to the grip handle device. When retrieving items, the grip handle device can be removed first. When storing food, no additional storage bag is needed, which is environmentally friendly. The grip handle device and bag body 400 are easy to install and remove, and the grip handle device can further seal the opening of the bag body 400. The bag body 400 and the grip handle device can each perform their own environmental protection functions, and working together is even better.
[0084] In food storage applications, recyclable food containers can replace disposable food boxes. Currently, commercially available food containers for solid and liquid foods are primarily made of rigid plastic or glass, making them inconvenient to carry. Furthermore, disposable food boxes and containers made of rigid plastic, glass, or flexible plastic require additional hand-held storage bags. This approach is not only inconvenient but also environmentally unfriendly. Extensive research has revealed that consumers prioritize leak-proof features, ease of use, and portability when choosing food bags to carry when out and about.
[0085] The bag body 400 of this invention is made of food-grade silicone material, making it convenient for holding food. The bag body 400 is designed to remain upright without tipping over. The bag body 400 is integrally molded, minimizing the risk of leakage while allowing liquid containment. The detachable connection between the first sidewall 410, the second sidewall 420, and the third sidewall 430 improves the sealing effect of the bag body 400. The bag body 400 is made of a flexible material with an opening larger than its base, allowing it to be folded to a depth suitable for the user. When not in use, the physical properties of silicone allow the bag body 400 to be easily rolled up and folded for easy storage and transport.
[0086] The disclosed tote bag is a lightweight, leak-proof, and foldable food bag that consumers will appreciate, capable of holding food and beverages. When equipped with a grip handle, it is easy to carry, ready to use immediately upon opening, and allows for direct eating. For consumers, it is a convenient and thoughtful alternative to traditional lunch bags and containers. The disclosed tote bag is also portable and environmentally sustainable.
[0087] like Figure 8 and Figure 9As shown, in another aspect, this disclosure provides an application of the clamping handle device as a support for an electronic device. The electronic device may be a mobile phone or a tablet computer.
[0088] The hinge provides limited rotation, requiring a torque of a certain threshold to overcome static friction in order to drive rotation about the connecting shaft.
[0089] like Figure 8 As shown, the hinge portion of the first handle 210 is located on the outside of the clamping body 100 near the pivot 310, and the first hand-held portion 211 of the first handle 210 rotates away from the pivot 310. The distal ends of the first hand-held portion 211 and the second hand-held portion 212 of the first handle 210, away from the hinge portion, contact the tabletop. The hinge portion of the second handle 220 is located on the outside of the clamping body 100 near the clamping opening. The distal end of the second hand-held portion 212, away from the hinge portion, contacts the tabletop. This configuration ensures the stability of the electronic device holder on the tabletop. In the second handle 220, the extension directions of the main bodies of the first hand-held portion 211 and the second hand-held portion 212 are substantially aligned. The bottom end of the electronic device rests on the second hand-held portion 212 of the second handle 220, and its rear surface contacts the second clamping portion 120.
[0090] The anti-slip sleeve enhances friction between the handle assembly 200 and electronic devices and desktops. This design ensures stable placement and reduces the risk of slippage during use.
[0091] like Figure 9 As shown, the hinge portion of the first handle 210 is located on the outer side of the clamping body 100 near the pivot 310, and the first hand-held portion 211 of the first handle 210 rotates away from the pivot 310. The distal end of the second hand-held portion 212 of the first handle 210, away from the hinge portion, contacts the desktop. The hinge portion of the second handle 220 is located on the outer side of the clamping body 100 near the clamping opening, and the second hand-held portion 212 of the second handle 220 rotates away from the clamping opening, with the distal end of the second hand-held portion 212 contacting the desktop. This configuration ensures stable placement of the electronic device holder on the desktop. In the second handle 220, the extension directions of the main bodies of the first hand-held portion 211 and the second hand-held portion 212 are not aligned. The bottom end of the electronic device rests on the second hand-held portion 212 of the second handle 220, with its rear surface contacting the first hand-held portion 211 of the second handle 220.
[0092] In one embodiment, each first handgrip 211 has a first contact portion on its first connecting segment. The first contact portion is disposed along the extending direction of the first connecting segment and is located on the side away from the clamping opening. In some embodiments, the first contact portion is a strip-shaped protrusion.
[0093] In one embodiment, the second connecting segment of each second handle portion 212 includes a second contact portion. The second contact portion is disposed along the extending direction of the second connecting segment and located on the side away from the clamping opening. In some embodiments, the second contact portion is a strip-shaped protrusion. The bottom of the electronic device rests on the contact portion of the second handle portion 212 of the second handle 220, and its rear surface contacts the contact portion of the first handle portion 211 of the second handle 220, thereby preventing the electronic device from slipping off the stand. The first and second contact portions of the second handle 220 are configured to maintain stable contact with the electronic device, while the first and second contact portions of the first handle 210 are configured to maintain stable contact with the desktop.
[0094] The gripping handle can be converted on a desktop to support electronic devices. Users can adjust the shape of the gripping handle according to the viewing angle of the electronic device, thereby supporting the device and allowing it to perform different functions in different configurations.
[0095] Finally, it should be noted that the above description is merely an illustration of some embodiments of this application, and not a limitation thereof. Although this application has been described in detail in conjunction with the foregoing embodiments, those skilled in the art can still modify the technical disclosures described in the foregoing embodiments, or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. A clamping handle device, characterized in that, include: A clamping body having a clamping port configured to selectively open and close; A handle assembly includes a first handle and a second handle, each of the first handle and the second handle being at least partially slidable relative to the clamping body, and both being located on opposite sides of the clamping opening; Both the first handle and the second handle include a first hand-holding portion and a second hand-holding portion; in the same handle, the second hand-holding portion is hinged to the first hand-holding portion.
2. The clamping handle device according to claim 1, characterized in that, The clamping body includes: First clamping part; The second clamping part is hinged to the first clamping part via a pivot; A torsion spring is disposed on the pivot, and the two ends of the torsion spring abut against the first clamping part and the second clamping part, respectively; Both the first clamping portion and the second clamping portion have an end portion away from the pivot, and the two ends together define the clamping opening.
3. The clamping handle device according to claim 2, characterized in that, The first handle is slidably engaged with the first clamping part, and the second handle is slidably engaged with the second clamping part.
4. The clamping handle device according to claim 2, characterized in that, In the direction extending from the clamping opening toward the pivot, the distance between the first clamping portion and the second clamping portion first increases and then decreases.
5. The clamping handle device according to claim 4, characterized in that, The first clamping part has two through holes; the first handle slides through the two through holes and is configured to reciprocate within the through holes; the connection method between the second handle and the second clamping part is the same as the connection method between the first handle and the first clamping part.
6. The clamping handle device according to claim 1, characterized in that, In the same controller: The first handheld part includes two first rods and a first connecting section disposed between the two first rods and connected to the two first rods; The second hand-held part includes two second rods and a second connecting section disposed between and connected to the two second rods; The first rod and the second rod are pivotally connected in a one-to-one correspondence, and the mating assembly of the first rod and the second rod is slidably connected to the clamping body through at least one hole.
7. The clamping handle device according to claim 1, characterized in that, The first hand-held part extends out from the side of the clamping body away from the clamping opening; And / or, The second hand-held part extends out from the side of the clamping body near the clamping opening.
8. The clamping handle device according to claim 2, characterized in that, Both the first clamping portion and the second clamping portion include an additional section; the additional section is disposed on the side of the respective clamping portion near the clamping opening; the additional section is configured to contact each other when the clamping opening is closed.
9. The clamping handle device according to claim 1, characterized in that, The first hand-held part and the second hand-held part are hinged together by a hinge joint.
10. The clamping handle device according to claim 9, characterized in that, When the second hand-held part rotates away from the clamping opening and contacts the clamping body, the distal end of the first hand-held part away from the hinge is lower than the distal end of the second hand-held part away from the hinge.
11. The clamping handle device according to claim 9, characterized in that, The handle assembly operates in a first configuration, with each of the hinged portions of the handle assembly located on the outside of the clamping body near the clamping opening; the second hand grips rotate away from the clamping opening to open the clamping opening.
12. The clamping handle device according to claim 2, characterized in that, The handle assembly operates in the second configuration, where the torsion spring biases the first clamping portion and the second clamping portion toward the closed position of the clamping opening.
13. A handbag, characterized in that, It includes a bag body and a clamping handle device as described in claim 1, wherein the clamping handle device is detachably disposed on the bag body.
14. The handbag according to claim 13, characterized in that, The bag body defines an opening and includes a first sidewall and a second sidewall disposed on opposite sides of the opening; the first sidewall and the second sidewall are detachably connected adjacent to the opening.
15. The handbag according to claim 14, characterized in that, The first sidewall includes a button located at the top adjacent to the opening, and the second sidewall includes a button ring configured to be detachably connected to the button; and / or, The first sidewall includes a sealing strip disposed at the top adjacent to the opening; the second sidewall includes a sealing groove configured to be detachably connected to the sealing strip by a pressing operation, thereby closing or opening the opening of the bag.
16. The handbag according to claim 14, characterized in that, The bag body has a rectangular opening and also includes a pair of opposing third sidewalls; a portion of each of the third sidewalls is foldable and located between the first and second sidewalls; the inner surface of each of the third sidewalls is detachably connected to the first and second sidewalls near the opening.
17. The handbag according to claim 16, characterized in that, The third sidewall includes a protrusion facing the interior of the bag body; both the first and second sidewalls include corresponding grooves facing the interior of the bag body; the protrusion is detachably engaged within the groove.
18. The handbag according to claim 13, characterized in that, The bag body is a truncated rectangular pyramid structure with an opening; the cross-sectional area of the opening is greater than the cross-sectional area of the end of the truncated rectangular pyramid structure opposite to the opening.
19. The handbag according to claim 18, characterized in that, The bag body is integrally formed; and / or, The bag body is made of silicone material; and / or, The thickness of the bag body at the proximal end relative to the opening is less than the thickness of the bag body at the distal end relative to the opening.
20. An electronic device bracket, characterized in that, Includes the clamping handle device as described in claim 1.