Rotary switch water cup

By designing a sliding connection structure between the flip cap and the isolation cup in the rotary switch water cup, the problem of the connection between the flip cap and the cup cap is easily unlocked by mistake, achieving the stability of water storage and reducing the effect of flowing out.

CN115844178BActive Publication Date: 2025-05-13JIANGSU NAMEI IND CO LTD
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Patent Information

Application Number
CN202211682500.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-27
Publication Date
2025-05-13
Estimated Expiration
2042-12-27

AI Technical Summary

Technical Problem

The connection structure between the flip cover and the cup lid of the rotary switch-type water cup is easily unlocked by mistake, causing the water storage in the water cup to flow out between the flip cover and the cup lid.

Method used

A rotary switch-type water cup is designed, and its flip cap is arranged on the isolation cup cap. The rotating mechanism drives the resistance mechanism, the rotary mechanism and the hook connection mechanism to slide, so that the hook connection mechanism and the isolation cup cap are loosened, thereby facilitating the flip cap.

Benefits of technology

It effectively reduces the phenomenon that users accidentally touch the cap and even if the cap and the isolation cup cap are loose, ensures the water storage stability of the thermos cup body, and reduces the phenomenon that water storage flows from the cap and the isolation cup cap.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to a rotary switch type water cup, and to the technical field of water cups. The rotary switch type water cup comprises a cup body, a cup cap, a flip-joint portion and a connecting portion; the cup body comprises a thermos cup body, the cup cap comprises an isolating cup cap, the isolating cup cap is arranged on the thermos cup body, and a water outlet channel is arranged through the thermos cup cover; the flip-joint portion comprises a flip-joint cap, the flip-joint cap is arranged on the isolating cup cap; the connecting portion comprises a rotating mechanism, a bearing mechanism, a resistance mechanism, a guiding mechanism and a hooking mechanism, the hooking mechanism is arranged on the flip-joint cap through a resistance mechanism, the rotating mechanism is arranged on the flip-joint cap through a bearing mechanism, and the resistance mechanism is opposed to or communicated with the rotating mechanism; the guiding mechanism is arranged on the flip-joint cap. The present application has the effect of reducing the phenomenon that the user accidentally touches the flip-joint cap, even if the flip-joint cap and the isolating cup cap are loosened.
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Description

Technical Field

[0001] The present application relates to the technical field of water cups, and in particular to a rotary switch type water cup. Background Art

[0002] A thermos cup is a water cup with excellent heat preservation function. Among them, a rotary switch type thermos cup generally refers to a thermos cup with a cup cover threadedly connected to the cup body. In order to facilitate users to drink water, a rotary switch type thermos cup often has a flip cover on the cup cover. Users only need to flip the flip cover to drink water and pour water.

[0003] Related art discloses a rotary switch type water cup, referring to Figure 1 The water cup includes a cup body 1, a cup cover 11 and a flip cover mechanism 12, wherein the flip cover mechanism 12 further includes a flip cover 121, a gusset plate 122 and a block 123. The cup cover 11 is threadedly connected to the cup body 1, and the flip cover 121 can be flipped and set on the cup cover 11. One end of the gusset plate 122 is rotatably set on the flip cover 121, and the block 123 is set on the cup cover 11. When the flip cover 121 is buckled on the cup cover 11, the end of the gusset plate 122 away from the flip cover 121 can be sleeved on the block 123, so that the flip cover 121 is fixedly connected to the cup cover 11. When the user needs to drink water or pour water, the user rotates the gusset plate 122 to disengage the gusset plate 122 from the block 123 to flip the flip cover 121.

[0004] However, the buckle plate is very easy to detach from the card block, and it is often unlocked by accidental touch, which makes the water in the cup easily flow out from between the flip cover and the cup lid, so there is room for improvement. Summary of the invention

[0005] In order to improve the problem that the connection structure between the flip cover and the cup lid is easily unlocked by accidental touch, the present application provides a rotary switch type water cup.

[0006] The rotary switch type water cup provided in this application adopts the following technical solution:

[0007] The rotary switch type water cup comprises a cup body, a cup cap, a flip-joint part and a connecting part;

[0008] The cup body portion includes a thermos cup body, the cup cap portion includes an isolation cup cap, the isolation cup cap is arranged on the thermos cup body, and the thermos cup cover is penetrated by a water outlet channel for circulating stored water;

[0009] The flip-over portion includes a flip-over cap, and the flip-over cap is arranged on the isolation cup cap;

[0010] The connecting part includes a rotating mechanism, a bearing mechanism, a conflicting mechanism, a guiding mechanism and a hooking mechanism. The hooking mechanism is arranged on the flip cap through the conflicting mechanism. The rotating mechanism is arranged on the flip cap through the bearing mechanism, and the conflicting mechanism and the rotating mechanism are in conflict or in communication. The guiding mechanism is arranged on the flip cap to limit the position of the bearing mechanism.

[0011] The rotating mechanism rotates relative to the supporting mechanism, so that the rotating mechanism and the conflicting mechanism are opposed or communicated with each other, so as to drive the rotating mechanism and the supporting mechanism to slide along the extending direction of the guide mechanism, so that the hooking mechanism is hooked or unhooked with the isolation cup cap.

[0012] By adopting the above technical scheme, the flip cap is arranged on the isolation cup cap, and the hooking mechanism makes the flip cap hooked relative to the isolation cup cap to lock the flip cap on the isolation cup cap, thereby blocking the water outlet channel; when the flip cap needs to be opened for use, the rotating mechanism drives the resistance mechanism and the hooking mechanism to rotate relative to the bearing mechanism, so that the rotating mechanism can drive the resistance mechanism and the hooking mechanism to slide on the flip cap, thereby making the connection structure of the hooking mechanism on the isolation cup cap loose, and the user can flip the flip cap to drink water or pour water through the water outlet channel; in this process, the flip cap must be rotated and slid before it can be flipped relative to the isolation cup cap, which effectively reduces the phenomenon that the user accidentally touches the flip cap and unlocks the locking structure of the flip cap and the isolation cup cap, thereby ensuring the water storage stability of the thermos cup body and reducing the phenomenon that the stored water in the thermos cup body flows out from between the flip cap and the isolation cup cap.

[0013] In a specific possible implementation scheme, the guide mechanism includes a limit plate and an external wing plate, the external wing plate is arranged on the flip cap through the limit plate, and a connecting channel is formed between the external wing plate, the limit plate and the flip cap;

[0014] The rotating mechanism comprises a rotating circular plate, a shaped plate and an external edge strip, wherein the rotating circular plate and the external edge strip are both arranged on the shaped plate; the external edge strip is located in the side wall of the connecting passage, so that the shaped plate is installed on the flip cover cap and is used to make the rotating circular plate, the shaped plate and the external edge strip move together along the extension direction of the external wing plate;

[0015] The rotating mechanism includes an outer rotating circular plate, an inner connecting ring plate and an abutting ring plate; the outer rotating circular plate is provided with an active inner groove for the abutting mechanism, the hooking mechanism and the rotating mechanism to abut against, the abutting ring plate is arranged in the side wall of the active inner groove through the inner connecting ring plate, and a rotation area for the rotating circular plate to abut against is formed between the abutting ring plate, the inner connecting ring plate and the outer rotating circular plate.

[0016] By adopting the above technical solution, the outer rotating circular plate is connected to the bearing rotating circular plate through the feeding and rotating area and can rotate along the outer circumference of the bearing rotating circular plate. The outer connecting strip is inserted into the inner cavity of the connecting channel, realizing the rapid positioning of the bearing rotating circular plate and the U-shaped plate on the flipping and connecting cap, and facilitating the outer rotating circular plate to drive the bearing rotating circular plate and the U-shaped plate to slide on the flipping and connecting cap, so that the hook connecting mechanism can be disengaged from the isolation cup cap. Furthermore, the flipping and connecting cap can be quickly flipped on the isolation cup cap, and the flipping and connecting cap is not easily disconnected from the isolation cup cap after being accidentally touched by the user.

[0017] In a specific feasible implementation, the bearing rotating mechanism further includes a mounting seat, a first support pillar and a second support pillar; the second support pillar is arranged on the U-shaped plate, the first support pillar is arranged on the flipping and connecting cap through the mounting seat, and the first support pillar abuts against the second support pillar to limit the displacement of the U-shaped plate on the flipping and connecting cap.

[0018] By adopting the above technical solution, the first support pillar is quickly mounted on the flipping and connecting cap through the mounting seat. After the U-shaped plate slides a certain distance on the flipping and connecting cap, the first support pillar abuts against the second support pillar to reduce the phenomenon of further displacement of the U-shaped plate on the flipping and connecting cap.

[0019] In a specific feasible implementation, the rotating mechanism further includes an operating circular plate, a control block, a positioning insertion shaft and a guiding cylinder; the positioning insertion shaft is arranged on the operating circular plate, a receiving groove for the operating circular plate to abut against is arranged on the outer rotating circular plate, and a preset channel for the positioning insertion shaft to abut against and be positioned is penetrated in the side wall of the receiving groove; the guiding cylinder is arranged on the bearing rotating circular plate, and one end of the guiding cylinder close to the positioning insertion shaft is inserted into the side wall of the preset channel and is in clearance fit with the positioning insertion shaft; a settling groove is arranged on the side wall of the operating circular plate far from the positioning insertion shaft, and the control block is arranged in the side wall of the settling groove.

[0020] By adopting the above technical solution, the positioning insertion shaft is positioned in the side wall of the preset channel, realizing the positioning of the operating circular plate in the receiving groove, so that the user only needs to rotate the control block to make the outer rotating circular plate rotate along the outer circumference of the bearing rotating circular plate; the positioning insertion shaft is inserted into the side wall of the preset channel to improve the stability of the outer rotating circular plate rotating along the outer circumference of the bearing rotating circular plate.

[0021] In a specific feasible implementation, the抵触机构 includes a抵触架 and a抵触凸块. One ends of the抵触架 and the hook connecting mechanism are both arranged in the side wall of the movable inner groove, and the抵触架 abuts against the inner connecting ring plate; the抵触凸块 is arranged on the flipping and connecting cap, and a through channel for the抵触凸块 to pass through is penetrated in the inner connecting ring plate.

[0022] By adopting the above technical solution, the abutment frame is used to abut the inner ring plate, thereby improving the position stability of the outer rotating circular plate installed on the flip-up cap; when the outer rotating circular plate is rotated by a certain angle, the passage is aligned with the abutment protrusion, so that the user can slide the outer rotating circular plate, the supporting circular plate, the abutment frame, and the anti-slip plate on the flip-up cap together, so that the hooking mechanism is unhooked from the isolation cup cap, thereby facilitating the flipping of the flip-up cap.

[0023] In a specific possible implementation scheme, the interference mechanism further includes a damping protrusion and a plurality of limiting columns; all the limiting columns are arranged on the interference frame, the damping protrusion is arranged in the side wall of the movable inner groove, and the damping protrusion is against any one of the limiting columns.

[0024] By adopting the above technical solution, the damping protrusion abuts against any one of the limiting columns, thereby improving the connection stability between the outer rotating circular plate and the abutment frame, thereby helping to ensure the position stability and rotation stability of the outer rotating circular plate.

[0025] In a specific feasible implementation scheme, the hooking mechanism includes a bending frame and a hooking assembly, the interference frame is penetrated by an installation channel for installing one end of the bending frame, and the flip-up cap is penetrated by a first channel for the bending frame to pass through; the hooking assembly is arranged at the other end of the bending frame, and the isolation cup cap is penetrated by a second channel for the hooking assembly to pass through and limit the position.

[0026] By adopting the above technical solution, the bending frame is hooked in the side wall of the second channel through the hook assembly to realize the rapid locking of the flip cap on the isolation cup cap; when the outer rotating circular plate drives the resistance frame, the bending frame and the hook assembly to slide, the bending frame is displaced in the first channel, and the hook assembly is displaced in the second channel, so that the hook assembly is quickly unhooked in the second channel, thereby making it easier for the user to flip the flip cap.

[0027] In a specific possible implementation scheme, the hooking assembly includes an end support plate, an end connecting block and a preset edge block; the preset edge block is arranged in the side wall of the second channel, the end connecting block is arranged on the bending frame through the end support plate, and the end connecting block is located at the bottom of the preset edge block.

[0028] By adopting the above technical solution, the end support plate is abutted against the preset edge block through the end connecting block, thereby realizing the hook connection of the end support plate in the second channel, and then the flip-up cap is locked and positioned on the isolation cup cap; as the end support plate follows the displacement of the outer rotating circular plate, the end connecting block can be separated from the preset edge block, thereby realizing the rapid flipping of the flip-up cap on the isolation cup cap.

[0029] In summary, this application has the following beneficial technical effects:

[0030] 1. By rotating the rotating mechanism relative to the bearing and rotating mechanism, and then driving the抵触mechanism, the bearing and rotating mechanism, and the hook - connecting mechanism to slide along the guiding mechanism together by the rotating mechanism, the loosening of the hook - connecting mechanism on the isolation cup cap is realized, which is convenient for the user to flip the cap to use; in this process, by limiting the steps of rotation and sliding that must be carried out before flipping the cap, the phenomenon that the user accidentally touches the flip - up cap and causes the flip - up cap to loosen from the isolation cup cap is effectively reduced.

[0031] 2. After the C - shaped plate displaces a certain distance on the flip - up cap, the first pillar abuts against the second pillar to limit the phenomenon of the C - shaped plate continuing to displace on the flip - up cap, thereby effectively reducing the phenomenon of excessive displacement of the C - shaped plate and effectively reducing the phenomenon of the external edge strip detaching from the connection channel. Description of the Drawings

[0032] Figure 1 is a schematic structural diagram of a rotary - switch water cup disclosed in the related art;

[0033] Figure 2 is a schematic structural diagram of the rotary - switch water cup in the embodiment of the present application;

[0034] Figure 3 is a schematic vertical cross - sectional view of the connection part for showing in the embodiment of the present application;

[0035] Figure 4 is an exploded schematic diagram of the connection relationship among the connection part, the flip - up part, the cup cap part and the cup body part in the embodiment of the present application;

[0036] Figure 5 is a schematic diagram of the connection relationship between the flip - up cap and the C - shaped plate in the embodiment of the present application;

[0037] Figure 6 is a schematic diagram of the connection relationship between the outer rotating circular plate and the抵触frame in the embodiment of the present application.

[0038] Description of the Reference Numerals:

[0039] 1. Cup body; 11. Cup lid; 12. Flip mechanism; 121. Flip cover; 122. Buckle plate; 123. Latching block; 2. Cup body part; 21. Heat-insulated cup body; 3. Cup cap part; 31. Isolated cup cap; 311. Water outlet channel; 312. Second channel; 4. Flip connection part; 41. Flip connection cap; 411. First channel; 5. Connection part; 6. Rotating mechanism; 61. Outer rotating circular plate; 611. Movable inner groove; 612. Receiving groove; 613. Preset channel; 62. Inner connecting circular plate; 621. Through channel for threading; 63. Contact circular plate; 64. Rotating area; 65. Operating circular plate; 651. Sinking groove; 66. Dominating block; 67. Positioning insertion shaft; 68. Guiding cylinder; 7. Bearing and rotating mechanism; 71. Bearing and rotating circular plate; 72. C-shaped plate; 73. Outer connecting strip; 74. Mounting seat; 75. First support pillar; 76. Second support pillar; 8.抵触机构; 81.抵触架; 82.抵触凸块; 83.阻尼凸块; 84.限位柱; 9.导向机构; 91.限位板; 92.外接翼板; 93.连接通道; 10.钩连机构; 101.折弯架; 102.钩连组件; 1021.端部支板; 1022.端部连块; 1023.预设边块。 Detailed implementation mode

[0040] The embodiment of the present application discloses a rotary switch type water cup.

[0041] The following is a further detailed description of the present application in conjunction with the attached Figure 2-6 Drawings.

[0042] Refer to Figure 2 , the rotary switch type water cup includes a cup body part 2, a cup cap part 3, a flip connection part 4 and a connection part 5. Among them, the cup body part 2 includes a heat-insulated cup body 21. In this embodiment, the heat-insulated cup body 21 is a cup body composed of a 304 stainless steel inner liner and a steel shell, and the inner cavity of the heat-insulated cup body 21 is used for storing water.

[0043] Refer to Figure 3 And Figure 4 , the cup cap part 3 includes an isolated cup cap 31, and the isolated cup cap 31 is threadedly connected to the heat-insulated cup body 21 to seal the opening of the heat-insulated cup body 21 and reduce the phenomenon that the stored water in the heat-insulated cup body 21 leaks outwards. A water outlet channel 311 is penetrated through the isolated cup cap 31, and the water outlet channel 311 is used for allowing the stored water in the heat-insulated cup body 21 to flow outwards. In actual use, the user can pass a straw through the water outlet channel 311 so that the user can quickly drink the stored water in the heat-insulated cup body 21.

[0044] Refer to Figure 3 And Figure 4 , the flip connection part 4 is rotatably arranged on the isolated cup cap 31 through the connection part 5. Among them, the flip connection part 4 includes a flip connection cap 41, and the flip connection cap 41 is rotatably arranged on the isolated cup cap 31 through a rotating shaft with a torsion spring.

[0045] Reference Figure 3 and Figure 4 The connecting part 5 includes a rotating mechanism 6, a bearing mechanism 7, a conflict mechanism 8, a guiding mechanism 9 and a hooking mechanism 10, wherein the hooking mechanism 10 is used to connect the rotating mechanism 6 with the isolation cup cap 31, so that the flip cap 41 is locked on the isolation cup cap 31 and cannot be flipped freely. When the flip cap 41 needs to be flipped for use, the user can rotate the rotating mechanism 6 relative to the isolation cup cap 31 through the bearing mechanism 7, and then the rotating mechanism 6, the bearing mechanism 7, the conflict mechanism 8 and the hooking mechanism 10 are displaced relative to the isolation cup cap 31 through the guiding mechanism 9, so that the connection structure between the hooking mechanism 10 and the isolation cup cap 31 is loosened, thereby facilitating the flip cap 41 to rotate relative to the isolation cup cap 31 for opening and use.

[0046] Reference Figure 4 and Figure 5 The rotating mechanism 6 is rotatably arranged on the flip cap 41 through the bearing mechanism 7, and the bearing mechanism 7 is positioned and slid by the guide mechanism 9 arranged on the flip cap 41. The guide mechanism 9 includes a limit plate 91 and an external wing plate 92. In this embodiment, the number of the limit plates 91 can be two, and the two limit plates 91 are welded to the top wall of the flip cap 41 at intervals, and the two limit plates 91 are parallel to each other.

[0047] Reference Figure 5 The number of the external wing plates 92 can be two, and the two external wing plates 92 are respectively integrally formed on the side walls of the two limiting plates 91 facing each other, and each external wing plate 92 is located at an end of each limiting plate 91 away from the flip cover 41. A connecting channel 93 is formed between the external wing plates 92, the limiting plates 91 and the flip cover 41.

[0048] Reference Figure 5 The rotating mechanism 7 includes a rotating circular plate 71, a shaped plate 72 and an external edge strip 73, wherein the shaped plate 72 is integrally formed on the bottom wall of the rotating circular plate 71. The number of the external edge strips 73 can be two, and the two external edge strips 73 are respectively integrally formed on both sides of the width direction of the shaped plate 72, each external edge strip 73 extends along the length direction of the shaped plate 72, and the external edge strip 73 is located at one end of the shaped plate 72 away from the rotating circular plate 71.

[0049] Reference Figure 5 , an external edge strip 73 can be pressed into the inner cavity of a connecting channel 93, so that the external edge strip 73 is pressed against the limiting plate 91, and the external wing plate 92 is pressed against the shaped plate 72, so that the rotating circular plate 71 and the shaped plate 72 can be quickly installed on the flip cap 41. In addition, the rotating circular plate 71 and the shaped plate 72 can slide along the length direction of the connecting channel 93 through the external edge strip 73 to achieve displacement on the flip cap 41.

[0050] Reference Figure 5 In order to limit the displacement distance of the rotating circular plate 71 and the shaped plate 72 on the flip cap 41, the rotating mechanism 7 also includes a mounting seat 74, a first pillar 75 and a second pillar 76. Among them, the first pillar 75 is integrally formed on the mounting seat 74 along the horizontal direction, and the mounting seat 74 is integrally formed on the top wall of the flip cap 41, and the mounting seat 74 and the first pillar 75 are both located below the rotating circular plate 71 and inside the side wall of the shaped plate 72. The second pillar 76 is integrally formed inside the side wall of the shaped plate 72. When the shaped plate 72 and the rotating circular plate 71 are displaced a certain distance on the flip cap 41, the second pillar 76 abuts against the first pillar 75 to limit the further displacement of the shaped plate 72 and the rotating circular plate 71, and can effectively reduce the phenomenon of the external edge strip 73 being separated from the connecting channel 93.

[0051] Reference Figure 4 and Figure 6 The abutment mechanism 8 and the hooking mechanism 10 are both arranged on the rotating mechanism 6, and the rotating mechanism 6 is connected to the rotating circular plate 71. The rotating mechanism 6 comprises an outer rotating circular plate 61, an inner connecting ring plate 62 and an abutting ring plate 63, wherein the outer diameter of the outer rotating circular plate 61 is larger than the outer diameter of the inner connecting ring plate 62, and the outer diameter of the inner connecting ring plate 62 is larger than the outer diameter of the abutting ring plate 63.

[0052] Reference Figure 4 and Figure 6 The side wall of the outer rotating circular plate 61 facing the flip cover 41 is provided with an active inner groove 611, the inner ring plate 62 is integrally formed on the inner top wall of the active inner groove 611, and the abutting ring plate 63 is integrally formed in the side wall of the inner ring plate 62. A rotation supply area 64 is formed between the abutting ring plate 63, the inner ring plate 62 and the outer rotating circular plate 61, and the rotating circular plate 71 is adapted to abut against the side wall of the rotating supply area 64. The abutting ring plate 63 abuts against the rotating circular plate 71 to reduce the phenomenon of the rotating circular plate 71 being separated from the rotating supply area 64, thereby realizing the installation of the outer rotating circular plate 61 on the flip cover 41.

[0053] Reference Figure 4 and Figure 6 In order to make the outer rotating circular plate 61 drive the supporting rotating circular plate 71 to rotate together, the rotating mechanism 6 also includes an operating circular plate 65, a control block 66, a positioning plug shaft 67 and a guide tube 68.

[0054] Reference Figure 4 The side wall of the outer rotating circular plate 61 away from the rotating circular plate 71 is provided with a receiving groove 612, and the inner diameter of the receiving groove 612 is adapted to the outer circumference of the operating circular plate 65, so as to place the operating circular plate 65. The side wall of the operating circular plate 65 away from the rotating circular plate 71 is also provided with a sedimentation groove 651, and the control block 66 is integrally formed on the inner bottom wall of the sedimentation groove 651.

[0055] Reference Figure 6, the positioning insertion shaft 67 is integrally formed on the side wall of the operation circular plate 65 away from the control block 66. A preset channel 613 is provided through the outer rotating circular plate 61 at the position of the bearing rotating circular plate 71. One end of the positioning insertion shaft 67 close to the outer rotating circular plate 61 is inserted into the inner cavity of the preset channel 613 and welded and fixed.

[0056] Refer to Figure 4 and Figure 5 , the guiding connection cylinder 68 is welded to the side wall of the operation circular plate 65 facing the outer rotating circular plate 61, and one end of the guiding connection cylinder 68 close to the outer rotating circular plate 61 is also inserted into the inner cavity of the preset channel 613. In this embodiment, there is a clearance fit between the guiding connection cylinder 68 and the positioning insertion shaft 67. The user rotates the operation circular plate 65 by grasping the control block 66, so that the outer rotating circular plate 61 connected to the operation circular plate 65 rotates along the outer circumference of the bearing rotating circular plate 71 through the rotation area 64.

[0057] Refer to Figure 4 and Figure 6 , for the part of the inner cavity of the movable inner groove 611 other than the rotation area 64, that is, the area formed by the movable inner groove 611 around the outer circumference of the inner connecting ring plate 62 is used for installing the抵触机构8 and the hook connecting mechanism 10. Among them, one end of the hook connecting mechanism 10 is connected to the outer rotating circular plate 61 through the抵触机构8.

[0058] Refer to Figure 4 and Figure 6 , the抵触机构8 includes a抵触架81 and a抵触凸块82. Among them, the抵触架81 is a circular steel frame, and the抵触架81 is glued to the side wall inside the movable inner groove 611 by glue, and the抵触架81 abuts against the outer peripheral wall of the inner connecting ring plate 62 to ensure the position stability of the outer rotating circular plate 61 installed on the flip cap 41. In addition, the outer rotating circular plate 61 can abut against the flip cap 41 through the抵触架81, further improving the position stability of the outer rotating circular plate 61.

[0059] Refer to Figure 5 and Figure 6 , the抵触凸块82 is integrally formed on the flip cap 41, and a穿通道621 for the抵触凸块82 to pass through is provided through the inner connecting ring plate 62. When the抵触凸块82 abuts against the outer peripheral wall of the inner connecting ring plate 62, it is difficult for the outer rotating circular plate 61, the bearing rotating circular plate 71 and the C-shaped plate 72 to displace on the flip cap 41. When the outer rotating circular plate 61 rotates relative to the bearing rotating circular plate 71 to align the穿通道621 with the抵触凸块82, the user can displace the outer rotating circular plate 61, the抵触架81, the bearing rotating circular plate 71 and the C-shaped plate 72 together on the flip cap 41 until the first support column 75 abuts against the second support column 76.

[0060] Refer to Figure 4 It should be noted that there are some unclear terms in the original text such as "抵触机构8" and "钩连机构10" which are directly retained in the translation for lack of specific clear information. You may need to further clarify these terms according to the actual situation.In order to improve the connection stability between the outer rotating circular plate 61 and the abutment frame 81, the abutment mechanism 8 also includes a damping protrusion 83 and a plurality of limiting columns 84. Among them, all limiting columns 84 are integrally formed on the top wall of the abutment frame 81, and all limiting columns 84 are spaced and equidistantly distributed along the circumference of the abutment frame 81. The damping protrusion 83 is integrally formed on the inner top wall of the movable inner groove 611, and the damping protrusion 83 is located at one end of the inner ring plate 62 away from the abutment ring plate 63. The end of the damping protrusion 83 close to the abutment frame 81 abuts against the side wall of any limiting column 84 to improve the connection stability between the outer rotating circular plate 61 and the abutment frame 81.

[0061] Reference Figure 3 and Figure 6 The hooking mechanism 10 includes a bending frame 101 and a hooking assembly 102, wherein the hooking assembly 102 further includes an end support plate 1021, an end connecting block 1022 and a preset edge block 1023. An installation channel is provided through the abutment frame 81, and one end of the bending frame 101 in the length direction is welded to the side wall of the installation channel.

[0062] Reference Figure 3 and Figure 6 The end support plate 1021 is integrally formed at one end of the bending frame 101 away from the abutment frame 81, and a first channel 411 is penetrated through the flip cap 41. The inner diameter of the first channel 411 is larger than the outer circumference of the bending frame 101. The first channel 411 is used for the bending frame 101 to pass through and facilitate the displacement of the bending frame 101 in the first channel 411.

[0063] Reference Figure 3 and Figure 6 The end connecting block 1022 is integrally formed on the side wall of the end support plate 1021, and the end connecting block 1022 is located at the end of the end support plate 1021 away from the bending frame 101. A second channel 312 is provided through the isolation cup cap 31, and the inner diameter of the second channel 312 is larger than the outer circumference of the end support plate 1021. The second channel 312 is used for the end support plate 1021 with the end connecting block 1022 to pass through, and the end support plate 1021 can be displaced in the inner cavity of the second channel 312. The preset edge block 1023 is integrally formed in the side wall of the second channel 312, and the preset edge block 1023 is located above the end connecting block 1022.

[0064] Reference Figure 3 and Figure 6When the flip cap 41 is covered on the top of the isolation cup cap 31, the top wall of the end connecting block 1022 abuts against the bottom wall of the preset edge block 1023, so that the flip cap 41 is fixedly connected to the isolation cup cap 31. When the flip cap 41 needs to be used, the outer rotating circular plate 61 drives the abutment frame 81, the end support plate 1021 and the end connecting block 1022 to move, so that the end connecting block 1022 is separated from the preset edge block 1023. By flipping the flip cap 41, the operator can pull out the end of the end support plate 1021 with the end connecting block 1022 from the second channel 312, thereby realizing the opening and use of the flip cap 41.

[0065] The implementation principle of the rotary switch type water cup of the embodiment of the present application is: the end connecting block 1022 abuts against the bottom wall of the preset side block 1023, so that the end support plate 1021 is hooked with the isolation cup cap 31 through the end connecting block 1022, and then the flip-up cover cap 41 is positioned on the isolation cup cap 31 and is difficult to flip over.

[0066] When the flip-up cap 41 needs to be used, the user grabs the control block 66 to rotate the operating circular plate 65, and the operating circular plate 65 drives the outer rotating circular plate 61, the abutment frame 81, the bending frame 101, the end support plate 1021 and the end connecting block 1022 to rotate along the outer circumference of the supporting circular plate 71 until the passage 621 is aligned with the abutment protrusion 82.

[0067] Next, the user can push the outer rotating circular plate 61 to make the outer connecting strip 73 slide along the length direction of the connecting channel 93, thereby driving the outer rotating circular plate 61, the abutment frame 81, the bending frame 101, the end support plate 1021 and the end connecting block 1022 to slide on the flip cap 41 until the first pillar 75 and the second pillar 76 abut against each other.

[0068] At this time, the end connecting block 1022 is separated from the preset edge block 1023, and the operator can pull the end of the end support plate 1021 with the end connecting block 1022 out of the second channel 312 by flipping the flip cap 41, thereby realizing the opening and use of the flip cap 41.

[0069] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereto. Therefore, any equivalent changes made according to the structure, shape, and principle of the present application should be included in the protection scope of the present application.

Claims

1. Rotary switch type water cup, characterized by: It comprises a cup body portion (2), a cup cap portion (3), a folding portion (4) and a connecting portion (5); The cup body (2) comprises a heat-insulating cup body (21), the cup cap (3) comprises an isolating cup cap (31), the isolating cup cap (31) is arranged on the heat-insulating cup body (21), and a water outlet channel (311) for circulating stored water is provided through the heat-insulating cup cover (11); The flip-joint portion (4) comprises a flip-joint cover cap (41), and the flip-joint cover cap (41) is arranged on the isolation cup cap (31); The connecting portion (5) comprises a rotating mechanism (6), a transfer mechanism (7), a resistance mechanism (8), a guiding mechanism (9) and a hooking mechanism (10); the hooking mechanism (10) is arranged on the flip cap (41) via the resistance mechanism (8); the rotating mechanism (6) is arranged on the flip cap (41) via the transfer mechanism (7), and the resistance mechanism (8) and the rotating mechanism (6) are in resistance or communication with each other; the guiding mechanism (9) is arranged on the flip cap (41) to limit the position of the transfer mechanism (7); The rotating mechanism (6) rotates relative to the transfer mechanism (7), so that the rotating mechanism (6) and the abutment mechanism (8) abut against or communicate with each other, thereby driving the rotating mechanism (6) and the transfer mechanism (7) to slide along the extension direction of the guide mechanism (9), so that the hooking mechanism (10) is hooked or unhooked with the isolation cup cap (31); The guide mechanism (9) comprises a limit plate (91) and an external wing plate (92), the external wing plate (92) being arranged on the flip cover (41) through the limit plate (91), and a connecting channel (93) is formed between the external wing plate (92), the limit plate (91) and the flip cover (41); The transfer mechanism (7) comprises a transfer circular plate (71), a shaped plate (72) and an external edge strip (73); the transfer circular plate (71) and the external edge strip (73) are both arranged on the shaped plate (72); the external edge strip (73) is located in the side wall of the connecting channel (93), so that the shaped plate (72) is installed on the flip cover (41) and is used to make the transfer circular plate (71), the shaped plate (72) and the external edge strip (73) move together along the extension direction of the external wing plate (92); The rotating mechanism (6) comprises an outer rotating circular plate (61), an inner connecting ring plate (62) and an abutting ring plate (63); the outer rotating circular plate (61) is provided with an active inner groove (611) for the abutting mechanism (8), the hooking mechanism (10) and the rotating mechanism (7) to abut against; the abutting ring plate (63) is arranged in the side wall of the active inner groove (611) through the inner connecting ring plate (62); and a rotation supply area (64) for the rotating circular plate (71) to abut against is formed between the abutting ring plate (63), the inner connecting ring plate (62) and the outer rotating circular plate (61).

2. The rotary switch type water cup according to claim 1, characterized in that: The transfer mechanism (7) further includes a mounting base (74), a first support column (75), and a second support column (76); the second support column (76) is arranged on the C-shaped plate (72), the first support column (75) is arranged on the flip-connecting cap (41) through the mounting base (74), and the first support column (75) abuts against the second support column (76) to limit the displacement of the C-shaped plate (72) on the flip-connecting cap (41).

3. The rotary switch type water cup according to claim 2, characterized in that: The rotating mechanism (6) further includes an operating circular plate (65), a control block (66), a positioning insertion shaft (67), and a guiding cylinder (68); the positioning insertion shaft (67) is arranged on the operating circular plate (65), a receiving groove (612) for the operating circular plate (65) to abut against is arranged on the outer rotating circular plate (61), and a preset channel (613) for the positioning insertion shaft (67) to abut against and be positioned is penetrated in the side wall of the receiving groove (612); the guiding cylinder (68) is arranged on the rotating circular plate (71), and one end of the guiding cylinder (68) close to the positioning insertion shaft (67) is inserted into the side wall of the preset channel (613) and is in clearance fit with the positioning insertion shaft (67); a settling groove (651) is arranged on the side wall of the operating circular plate (65) away from the positioning insertion shaft (67), and the control block (66) is arranged in the side wall of the settling groove (651).

4. The rotary switch type water cup according to claim 3, characterized in that: The抵触机构(8) includes a抵触架(81) and a抵触凸块(82), one ends of the抵触架(81) and the hook connection mechanism (10) are both arranged in the side wall of the movable inner groove (611), and the抵触架(81) abuts against the inner connecting ring plate (62); the抵触凸块(82) is arranged on the flip-connecting cap (41), and a through channel (621) for the抵触凸块(82) to pass through is penetrated in the inner connecting ring plate (62).

5. The rotary switch type water cup according to claim 4, characterized in that: The抵触机构(8) further includes a damping convex block (83) and a plurality of limiting columns (84); all the limiting columns (84) are arranged on the抵触架(81), the damping convex block (83) is arranged in the side wall of the movable inner groove (611), and the damping convex block (83) abuts against any one of the limiting columns (84).

6. The rotary switch type water cup according to claim 5, characterized in that: The hook connection mechanism (10) includes a bent frame (101) and a hook connection assembly (102), a mounting channel for one end of the bent frame (101) to be installed is penetrated in the抵触架(81), and a first channel (411) for the bent frame (101) to pass through is penetrated in the flip-connecting cap (41); the hook connection assembly (102) is arranged at the other end of the bent frame (101), and a second channel (312) for the hook connection assembly (102) to pass through and be limited is penetrated in the isolation cup cap (31). It should be noted that there are some Chinese characters in the original text that seem to be incorrect or incomplete. I have translated them as they are, but it may affect the understanding of the overall content. It is recommended to check and correct the original text for more accurate translation and comprehension.

7. The rotary switch type water cup according to claim 6, characterized in that: The hooking assembly (102) comprises an end support plate (1021), an end connecting block (1022) and a preset side block (1023); the preset side block (1023) is arranged in the side wall of the second channel (312), the end connecting block (1022) is arranged on the bending frame (101) through the end support plate (1021), and the end connecting block (1022) is located at the bottom of the preset side block (1023).

Citation Information

Patent Citations

  • Rotary pressing type water cup

    CN115299758A

  • Cup cover

    CN209090660U