Handle pot with handle end capable of being quickly disassembled
By designing the unlocking cavity and unlocking channel at the handle end of the portable drinking container, combined with the locking firmware and spring mechanism, a simple disassembly and installation of the handle and the pot body is achieved, solving the problem of cumbersome disassembly and assembly steps in the prior art and the easy deformation and damage of the handle, improving the convenience of suspension and user experience.
Patent Information
- Application Number
- CN202421798041.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-29
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-07-29
AI Technical Summary
The handle ends of existing portable drinking containers are complicated to disassemble and assemble, which makes it difficult to install, affecting the convenience of suspension and user experience. The handle made of plastic is prone to deform and damage when used frequently.
A hand pot with quick disassembly at the end of the handle is designed. By opening an unlocking cavity and unlocking channel at one end of the handle body, combining the locking firmware and spring mechanism, simple disassembly and installation of the handle and the pot body are achieved.
The disassembly and assembly steps of the handle ends have been greatly simplified, the convenience of connecting and hanging with closed-loop support is improved, the user experience is improved, and the handle is effectively avoided deformation and damage, and the service life is extended.
Smart Images

Figure CN222942096U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of drinking containers, and more specifically to a handle pot with a handle end that can be quickly detached. Background Art
[0002] Portable drinking containers refer to containers designed for convenient carrying, storage and use of drinking water or beverages. Portable drinking containers include hand-held kettles, hand-held cups, etc. What distinguishes them from conventional kettles and cups is that they are generally equipped with handles and hanging ropes so that they can be carried and stored more conveniently.
[0003] At present, the handles of portable drinking containers such as hand-held kettles and hand-held cups are usually U-shaped. The handles and the hanging rope are fixedly or rotatably connected to the kettle body of the hand-held kettle or the cup body of the hand-held cup by using both ends. The opening between the two ends of the handle is closed by the kettle body or the cup body, so that a roughly U-shaped fitting space is formed between the handle and the kettle body or the cup body. The handle can be hung on a support or lifted up through the fitting space to achieve carrying and storage. This type of design has certain limitations, that is, when the surrounding supports are also closed loop structures, it cannot be hung on the supports, making hanging storage difficult to achieve.
[0004] In this regard, setting one or both ends of the handle or hanging rope to be detachable can solve this problem. Taking the Chinese patent with publication number CN216316947U and patent name "A cup cover with a detachable handle" as an example, it includes a cup cover body and a handle. Hanging shafts are provided on both sides of the cup cover body. The handle is U-shaped, and hanging holes are provided at the ends of the open sides of the handle. The hanging hole of the handle is sleeved on the outside of the hanging shaft of the cup cover body, and a downwardly protruding clamping platform is provided at the bottom of the outer side of the hanging shaft, and a pin clearance groove is provided in the middle of the clamping platform; an ejector limiting boss corresponding to the ejector clearance groove is provided on the hole wall of the hanging hole; when the ejector limiting boss of the hanging hole is directly opposite to the ejector clearance groove in the middle of the clamping platform, the hanging shaft can pass through the hanging hole.
[0005] The above-mentioned prior art is that one end of the handle is separated from the cup body to form a spacing position between the handle and the cup body, and the closed-loop support can be embedded in the fitting space through the spacing position. After embedding, the handle can be reconnected to the cup body to complete the hanging. However, the handle recorded in the prior art is made of plastic. When the end of the handle is to be separated from the cup body, it is necessary to swing the handle first to align the ejector limit boss with the ejector stop groove in the middle of the card table, and then apply external force to the handle to make the handle detach from the hanging shaft and then separate from the cup body. The steps required for the entire separation process are cumbersome, resulting in greater difficulty in separating the end of the handle and subsequent installation, affecting the convenience of connecting and hanging with the closed-loop support and reducing the user experience. In addition, although the plastic handle has good support, the separation of the handle end from the cup body requires applying an outward pulling force to the handle, which makes pulling laborious, and frequent and long-term pulling force can easily cause the plastic handle to deform or even damage. Utility Model Content
[0006] In view of the above situation, in order to overcome the problem that the disassembly and assembly steps of the handle end of the above-mentioned existing portable drinking containers with detachable handles are cumbersome, resulting in great difficulty in installation, affecting the convenience of connecting and hanging with a closed-loop support and user experience, in addition, the handle is generally made of plastic, which makes it difficult to disassemble by pulling, and frequent and long-term pulling can easily cause it to deform or even damage. The purpose of the utility model is to provide a handle end that can be quickly disassembled, and the disassembly and assembly steps are simple, which can be conveniently connected and hung with a closed-loop support, thereby providing a good user experience. At the same time, the handle is not easy to deform and damage, and has a long service life.
[0007] In order to achieve the above purpose, the technical solution of the utility model is:
[0008] A handle pot with a quick-detachable handle end comprises a pot body and a handle body, a positioning card is formed on the pot body, an unlocking cavity and an unlocking channel are opened at one end of the handle body, the unlocking cavity and the external space are connected, the positioning card is embedded in the unlocking cavity through the unlocking channel, and is detachably connected to the handle body, a locking piece is movably connected to the handle body, the unlocking channel is opened and closed by the locking piece, and the other end of the handle body is hinged to the pot body.
[0009] Preferably, the locking piece is slidably connected to the unlocking inner cavity, and a movable locking groove is provided on the locking piece, and the movable locking groove is communicated with the unlocking inner cavity. When the locking piece closes the unlocking channel, the positioning card is synchronously embedded in the movable locking groove.
[0010] Preferably, a spring is provided in the unlocking channel, the locking piece is connected to the spring, and the locking piece is driven to reset when the spring recovers its deformation.
[0011] Preferably, the outer wall of the locking element close to the unlocking channel is an inclined surface or a curved surface.
[0012] Preferably, a paddle is formed on the locking member, a control groove communicating with the unlocking inner cavity is formed on the handle body, the paddle passes through the control groove and extends into the external space, and the paddle is slidably matched with the control groove.
[0013] Preferably, a rotation groove is formed at the hinged end of the handle body and the kettle body, and a rotating member is formed on the kettle body, and the rotating member is rotatably connected to the rotation groove.
[0014] Preferably, a rubber block is provided in the rotating groove, and the rubber block is in contact with the rotating member.
[0015] Preferably, the rotating groove includes a rotating cavity, a rotating channel and a receiving groove. The rotating cavity is connected to the external space through the rotating channel. The receiving groove is connected to the rotating cavity. The rotating member passes through the rotating channel and is embedded in the rotating cavity. The mating surface between the rotating member and the rotating cavity is a spherical surface and can slide along the rotating channel. The rotating member is matched with the step at the transition between the rotating cavity and the rotating channel, and the rubber block is installed in the receiving groove.
[0016] Preferably, the handle body comprises a left shell and a right shell that are opposite to each other, and the left shell and the right shell are detachably connected.
[0017] Preferably, a card plate and a support plate are formed on opposite surfaces of the left shell and the right shell respectively, the card plate and the support plate are stacked up and down, the support plate and the card plate respectively have engaging buckles and slots, and stoppers are formed on both sides of the buckle.
[0018] Preferably, there are two groups of clamping plates and two groups of supporting plates respectively.
[0019] Compared with the prior art, the advantages of the utility model are:
[0020] After the locking piece at one end of the handle body of the utility model releases the closure of the unlocking channel, the positioning card of the kettle body can be disengaged from the unlocking inner cavity by rotating the other end of the handle body, thereby separating from the handle body, so that the closed-loop fitting space is opened at the end of the handle body 1 close to the positioning card to form an opening. If the support object is a closed-loop structure, the support object can be embedded in the fitting space from the opening, and the handle body is rotated, and the positioning card is then embedded in the unlocking inner cavity through the unlocking channel. Finally, the unlocking channel is closed by the locking piece, and the handle can be hung with the closed-loop support. The entire separation process is relatively simple, which can greatly improve the convenience of connecting and hanging with the closed-loop support and the user experience, and can effectively avoid deformation and damage of the handle body, thereby extending its service life. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 It is a schematic diagram of the overall structure of the handle kettle lock when the unlocking channel is closed;
[0022] Figure 2 This utility model Figure 1 A schematic diagram of the enlarged structure of part A;
[0023] Figure 3 It is a schematic diagram of the overall structure of the utility model after the locking piece of the handle kettle is moved to open the unlocking channel;
[0024] Figure 4 This utility model Figure 3 A schematic diagram of the enlarged structure of part B;
[0025] Figure 5 It is a schematic diagram of the overall structure of the utility model after the locking piece of the handle kettle is moved to open the unlocking channel and the positioning card is moved out to the external space;
[0026] Figure 6 This utility model Figure 5 Schematic diagram of the enlarged structure of part C;
[0027] Figure 7 It is a partial structural schematic diagram of the handle body of the utility model of the hand-held kettle connected to one end of the locking piece;
[0028] Figure 8 It is a partial structural schematic diagram of the handle body of the utility model of the handle pot connected to one end of the rotating member;
[0029] Fig. 9 It is a schematic diagram of the overall structure of the handle body of the utility model when the left shell and the right shell are separated from each other from the first perspective;
[0030] Fig.10 This utility model Fig. 9 A schematic diagram of the enlarged structure of the D portion;
[0031] Fig.11 It is a schematic diagram of the overall structure of the handle body of the utility model when the left shell and the right shell are separated from each other from a second viewing angle;
[0032] Fig.12 This utility model Fig.11 Schematic diagram of the enlarged structure of part E;
[0033] Fig.13 It is a schematic diagram of the overall structure of the handle body of the utility model of the kettle from a third perspective when the left shell and the right shell are separated;
[0034] Fig.14 This utility model Fig.13 Schematic diagram of the enlarged structure of part F.
[0035] As shown in the figure:
[0036] 1. Handle body; 101. Unlocking inner cavity; 102. Unlocking channel; 103. Control slot; 104. Rotating slot; 104a. Rotating cavity; 104b. Rotating channel; 104c. Storage slot; 105. Left shell; 105a. Card plate; 105b. Card slot; 106. Right shell; 106a. Support plate; 106b. Buckle; 106c. Block; 2. Locking piece; 201. Movable locking slot; 202. Paddle; 3. Spring; 4. Kettle body; 401. Positioning card; 402. Rotating piece; 5. Rubber block. DETAILED DESCRIPTION
[0037] The utility model is further described in detail below with reference to the accompanying drawings and specific embodiments.
[0038] In the description of the present utility model, it should be noted that the terms "upper", "lower", "left", "right", "inside", "outside", etc. indicate directions or positional relationships based on the directions or positional relationships shown in the accompanying drawings, or the directions or positional relationships in which the utility model product is usually placed when in use. They are only for the convenience of simplifying the description, and do not indicate or imply that the directions are specific directions that must be possessed and specific directions, structures, and operations, and therefore should not be understood as limitations on the present utility model.
[0039] like Figure 1 , Figure 3 and Figure 5 As shown, the utility model relates to a handle pot with a handle end that can be quickly detached, which comprises a pot body 4 and a handle body 1, wherein the pot body 4 is embedded in openings at both ends of the handle body 1 and connected to the handle body 1, so that a closed-loop fitting space is formed between the handle body 1 and the pot body 4;
[0040] like Figures 1 to 8 As shown, a positioning card 401 is formed on the kettle body 4, and an unlocking inner cavity 101 and an unlocking channel 102 are opened at one end of the handle body 1. The unlocking inner cavity 101 and the unlocking channel 102 are connected, and the unlocking channel 102 is also connected to the external space. The unlocking inner cavity 101 is also connected to the external cavity through the unlocking channel 102. The positioning card 401 is embedded in the unlocking inner cavity 101 through the unlocking channel 102, and is plugged and matched with the handle body 1 to form a detachable connection. In the connected state, the positioning card 401 approximately locks the end of the handle body 1. The handle body 1 is connected to the kettle body 4 by a locking piece 2, and the unlocking channel 102 is opened and closed by the locking piece 2. The locking piece 2 and the handle body 1 can be connected in a sliding, rotating or other form, and only need to be able to move between a relative position with the unlocking channel 102 and a position away from the relative position. When the unlocking channel 102 is closed by the locking piece 2, the positioning card 401 is restricted in the unlocking inner cavity 101, thereby preventing the positioning card 401 from being separated from the handle body 1, and ensuring the stability of the cooperation;
[0041] like Figure 1 , Figure 3 and Figure 5 As shown, the other end of the handle body 1 is hinged with the kettle body 4. When the locking piece 2 releases the closure of the unlocking channel 102, due to the removal of the obstruction of the locking piece 2, the other end of the handle body 1 can rotate around the hinge position of the other end and the kettle body 4, so that the positioning card 401 is disengaged from the unlocking inner cavity 101 and separated from the handle body 1. At this time, the closed-loop fitting space is opened at the end of the handle body 1 close to the positioning card 401 to form an opening. If the support is a closed-loop structure, the support can be embedded in the fitting space from the opening, and the handle body 1 is rotated, and the positioning card 401 is embedded in the unlocking inner cavity 101 through the unlocking channel 102. Finally, the unlocking channel 102 is closed by the locking piece 2, and the handle can be hung with the closed-loop support. The entire separation process is relatively simple, which can greatly improve the convenience of connecting and hanging with the closed-loop support and the user experience, and can effectively avoid deformation and damage of the handle body 1 and extend its service life.
[0042] like Figures 1 to 8 As shown, the locking member 2 is slidably connected to the unlocking inner cavity 101. It can be understood that the unlocking inner cavity 101 is close to the center of the handle body 1 relative to the unlocking channel 102. When the locking member 2 slides along the unlocking inner cavity 101, the unlocking channel 102 can be closed from the inside. That is, when the locking member 2 slides to the position opposite to the unlocking channel 102, it is closed. An active locking groove 201 is provided on the locking member 2. The active locking groove 201 is located on a side of the locking member close to the unlocking channel 102, and it is connected to the unlocking inner cavity 101. When the locking piece 2 closes the unlocking channel 102, the positioning card 401 is synchronously embedded in the active locking groove 201. At this time, the positioning card 401 is jointly limited by the inner wall of the unlocking inner cavity 101 and the active locking groove 201, preventing it from moving to the external space through the unlocking channel 102. The function of the active locking groove 201 is also to prevent the locking piece 2 from being blocked by the positioning card 401 and unable to slide to the relative position with the unlocking channel 102 when the positioning card 401 is plugged into the unlocking inner cavity 101, thereby ensuring that the locking piece 2 can move into place.
[0043] like Fig. 9 and Fig.10 A spring 3 is provided in the unlocking inner cavity 101. The direction of the spring 3 is consistent with the moving path of the locking piece 2. The locking piece 2 is connected to the spring 3. The spring 3 is compressed when the locking piece slides along the unlocking inner cavity 101 to leave the unlocking channel 102, generating elastic potential energy, so that the locking piece 2 can be automatically reset along the unlocking inner cavity 101 through the elastic force of restoring the deformation, thereby eliminating the need for manual reset control by the user, thereby improving convenience of use.
[0044] like Figures 1 to 8As shown, a paddle 202 is formed on the locking member 2, and a control groove 103 connected to the unlocking inner cavity 101 is formed on the handle body 1. The control groove 103 is also connected to the external space. The paddle 202 extends through the control groove 103 to the external space, and it slides with the control groove 103. The paddle 202 is used for the user to control the locking member 2. The direction of the above-mentioned control groove 103 is consistent with the direction of the unlocking inner cavity 101, that is, it coincides with one section of the sliding path of the locking member 2. Therefore, when the paddle 402 slides along the control groove 103, it can drive the locking member 2 to move synchronously along the unlocking inner cavity 101, so that the locking member 2 can open and close the unlocking channel 102 when the user needs.
[0045] like Figure 2 , Figure 4 , Figure 6 and Figure 8 As shown, the outer wall of the locking piece 2 close to the unlocking channel 102 is an inclined surface or an arc surface, and the outer wall on this side is also exposed to the external space through the unlocking channel 102. When the outer wall on this side of the locking piece 2 is subjected to pressure, under the action of pressure, the locking piece 2 can slide along the unlocking inner cavity 101 by itself to disengage from the relative position with the unlocking channel 102, so that the unlocking channel 102 is opened. This also makes it possible for the locking piece 2 to automatically disengage from the relative position with the unlocking channel 102 under the pressure of the positioning card 401 when the positioning card 401 needs to be re-embedded in the unlocking inner cavity 101, without the need for the operator to exert additional pressure on the locking piece 2 to control its sliding, thereby improving the convenience of use.
[0046] like Figure 1 , Figure 3 , Figure 5 and Figure 8 As shown, a rotating groove 104 is provided at the hinged end of the handle body 1 and the kettle body 4, and a rotating member 402 is formed on the kettle body 1, and the rotating member 402 is rotatably connected to the rotating groove 104. When the locking member 2 is separated from the relative position with the unlocking channel 102 and opened, the handle body 1 can move relative to the positioning card 401 by rotating around the connection end with the rotating member 402, so that the positioning card 401 can move to the external space by itself through the unlocking channel 102, thereby releasing the constraint on the other end of the handle body 1.
[0047] like Fig. 9 , Fig.11 and Fig.12 As shown, a rubber block 5 is provided in the rotating groove 104, and the rubber block 5 is in contact with the rotating member 402. When the handle body 1 rotates around the hinged end with the kettle body 4, friction is generated between the rubber block 5 and the rotating member 402. The damping effect generated prevents the handle body 1 from rotating too fast, such as falling under the action of gravity, thereby solving the problem that the handle body 1 is prone to collide with the kettle body 4 when rotating. At the same time, the handle body 1 can be kept at the rotating angle, allowing the user to better control the handle body 1.
[0048] like Figure 8 and Fig.12 As shown, the rotating groove 104 is composed of a rotating cavity 104a, a rotating channel 104b and a receiving groove 104c. The rotating cavity 104a is connected to the external space through the rotating channel 104b. The rotating member 402 passes through the rotating channel 104b and is embedded in the rotating cavity 104a. The matching surface of the rotating member 402 and the rotating cavity 104a is a spherical surface, so that the handle body can rotate around the matching position with the rotating member 402. When the handle body rotates, the rotating member 402 can slide along the rotating channel 104b, thereby allowing the handle body 1 to rotate to a certain extent in a single plane, ensuring that the inner cavity 101 and the handle body 102 are unlocked. The unlocking channel 102 is always opposite to the positioning card 401, and the length of the rotating channel 104b is limited. Its two ends are used to limit the rotation range of the handle body to avoid excessive rotation. The rotating member 402 cooperates with the step at the transition between the rotating cavity 104a and the rotating channel 104b, thereby effectively preventing the rotating member 402 from detaching from the rotating groove 104, thereby achieving a relatively stable connection with the handle body. The storage groove 104c is connected to the rotating cavity 104a, and the rubber block 5 is installed in the storage groove 104c, so that it can contact the rotating member 402 in the rotating cavity 104a to produce a damping effect when the handle body 1 rotates.
[0049] like Figures 9 to 14 As shown, the handle body 1 includes a left shell 105 and a right shell 106 that are opposite to each other, and the left shell 105 and the right shell 106 are detachably connected to each other, that is, the handle body is a split structure. When the left shell 105 and the right shell 106 are separated, the locking member 2, the spring 3, and the rotating member 402 can be assembled to either the left shell 105 or the right shell 106, and then the left shell 105 and the right shell 106 can be assembled, thereby simplifying the difficulty of assembling the locking member 2, the spring 3, and the rotating member 402 and improving the assembly efficiency.
[0050] like Fig. 9 , Fig.10 as well as Fig.13 and Fig.14As shown, a card plate 105a and a support plate 106a are respectively formed on the opposite surfaces of the left shell 105 and the right shell 106, and the card plate 105a and the support plate 106a are overlapped up and down. The support plate 106a and the card plate 105a are respectively provided with a buckle 106b and a slot 105b that engage with each other. The left shell 105 and the right shell 106 are connected and fixed by the cooperation of the slot 105b and the buckle 106b. Stoppers 106c are also formed on both sides of the buckle 106b. During the installation of the left shell 105 and the right shell 106, when the card plate 105a moves to the top of the support plate 106a, it can be guided by the stopper 106c to ensure that the two can be directly opposite and engaged when the relative position of the slot 105b and the buckle 106b is difficult to observe from an external perspective.
[0051] like Fig. 9 , Fig.10 as well as Fig.13 and Fig.14 As shown, there are two groups of clamping plates 105a and supporting plates 106a respectively. The two groups of clamping plates 106a and supporting plates 107b are close to the end of the handle body 1, and two-point positioning is used to achieve a stable connection between the left shell 106 and the right shell 107.
[0052] Combination Figures 1 to 14The two ends of the handle body 1 of the utility model are respectively connected with the positioning clamp 401 and the rotating member 402 on the pot body 4, so as to form a fitting space of a closed-loop structure with the pot body 4. By using non-closed-loop supports such as rods, columns, hooks, etc. to penetrate into the fitting space, the utility model can be hung to achieve carrying and storage. When it is to be connected and hung with a closed-loop support, the paddle 202 can be toggled to move the locking member 2 along the unlocking inner cavity 101 to break away from the relative position with the unlocking channel 102. After the blocking of the locking member 2 is released, the positioning clamp 401 can move to the external space through the unlocking channel 102. At this time, it is only necessary to control the handle body 1 to rotate around the rotating member 402. During the rotation, the rotating member 402 slides along the rotating channel 104b of the rotating groove 104 to move the handle body 1 relative to the positioning clamp 401, so that The positioning card 401 detaches from the external space by itself. At this time, the closed-loop fitting space is opened at the end of the handle body 1 near the positioning card 401 to form an opening, and the support of the closed-loop structure can be embedded in the fitting space from the opening, and finally the handle body 1 is rotated to move toward the positioning card 401. During the movement, the positioning card 403a contacts the outer wall of the locking member 2 which is an arc surface when passing through the unlocking channel 102. At this time, the locking member 2 can be easily and automatically pushed to move, and the unlocking inner cavity 101 is connected with the unlocking channel 104, so that the positioning card 401 can enter the unlocking inner cavity 101. After that, the locking member 2 is reset under the action of the spring 3, so that the positioning card 401 is synchronously embedded in the active locking groove 201, and is jointly limited by the inner walls of the unlocking inner cavity 101 and the active locking groove 201, preventing it from moving to the external space through the unlocking channel 102, thereby completing the suspension.
[0053] The above embodiments and descriptions are only for explaining the principle and the best embodiment of the present invention. Without departing from the spirit and scope of the present invention, the present invention may have various changes and improvements, and these changes and improvements shall fall within the scope of the present invention to be protected.
Claims
1. A handle pot with a quick-detachable handle end, comprising a pot body (4) and a handle body (1), characterized in that: A positioning card (401) is formed on the kettle body (4); an unlocking inner cavity (101) and an unlocking channel (102) are formed on one end of the handle body (1); the unlocking channel (102) communicates the unlocking inner cavity (101) with the external space; the positioning card (401) is embedded in the unlocking inner cavity (101) through the unlocking channel (102), thereby being detachably connected to the handle body (1); a locking piece (2) is movably connected to the handle body (1); the unlocking channel (102) is opened and closed by the locking piece (2); and the other end of the handle body (1) is hinged to the kettle body (4).
2. The kettle with a handle that can be quickly detached at the end of the handle according to claim 1, characterized in that: The locking piece (2) is slidably connected to the unlocking inner cavity (101); a movable locking groove (201) is provided on the locking piece (2); the movable locking groove (201) is communicated with the unlocking inner cavity (101); when the locking piece (2) closes the unlocking channel (102), the positioning card (401) is synchronously embedded in the movable locking groove (201).
3. The kettle with a handle that can be quickly detached at the end of the handle according to claim 1 or 2, characterized in that: A spring (3) is provided in the unlocking inner cavity (101), and the locking piece (2) is connected to the spring (3). When the spring (3) recovers its deformation, it drives the locking piece (2) to reset.
4. The kettle with a handle that can be quickly detached at the end of the handle according to claim 3, characterized in that: The outer wall of the locking member (2) close to the unlocking channel (102) is an inclined surface or a curved surface.
5. The kettle with a handle that can be quickly detached at the end of the handle according to any one of claims 1, 2, and 4, characterized in that: The locking element (2) is provided with a paddle (202), the handle body (1) is provided with a control groove (103) connected to the unlocking inner cavity (101), the paddle (202) passes through the control groove (103) and extends into the external space, and is slidably matched with the control groove (103).
6. The kettle with a handle that can be quickly detached at the end of the handle according to claim 5, characterized in that: A rotating groove (104) is provided at the hinged end of the handle body (1) and the kettle body (4); a rotating member (402) is formed on the kettle body (4); and the rotating member (402) is rotatably connected to the rotating groove (104).
7. The kettle with a handle that can be quickly detached at the end of the handle according to claim 6, characterized in that: A rubber block (5) is provided in the rotating groove (104), and the rubber block (5) is in contact with the rotating member (402).
8. The kettle with a handle that can be quickly detached at the end of the handle according to claim 7, characterized in that: The rotating groove (104) comprises a rotating cavity (104a), a rotating channel (104b) and a receiving groove (104c); the rotating cavity (104a) is in communication with an external space through the rotating channel (104b); the receiving groove (104c) is in communication with the rotating cavity (104a); the rotating member (402) passes through the rotating channel (104b) and is embedded in the rotating cavity (104a); the matching surface between the rotating member (402) and the rotating cavity (104a) is a spherical surface and can slide along the rotating channel (104b); the rotating member (402) matches with a step at a transition point between the rotating cavity (104a) and the rotating channel (104b); and the rubber block (5) is installed in the receiving groove (104c).
9. The kettle with a handle having a quick-detachable handle end according to any one of claims 1, 2, 4, 6, 7 or 8, characterized in that: The handle body (1) comprises a left shell (105) and a right shell (106) which are opposite to each other, and the left shell (105) and the right shell (106) are detachably connected.
10. The kettle with a handle that can be quickly detached at the end of the handle according to claim 9, characterized in that: A card plate (105a) and a support plate (106a) are respectively formed on the opposite surfaces of the left shell (105) and the right shell (106), the card plate and the support plate are stacked up and down, the support plate (106a) and the card plate (105a) are respectively provided with a snap buckle (106b) and a card slot (105b) that engage with each other, and stoppers (106c) are formed on both sides of the snap buckle (106b).
11. The kettle with a handle that can be quickly detached at the end of the handle according to claim 10, characterized in that: The clamping plate (105a) and the supporting plate (106a) are provided in two groups respectively.
Citation Information
Patent Citations
Cup cover with detachable handle
CN216316947U