Anti-mis-touch handle cup cover and handle cup

CN224747772UActive Publication Date: 2026-09-15GUANGDONG MUSEN DAILY PRODUCTS CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202522010694.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2025-07-14
Filing Date
2025-09-18
Publication Date
2026-09-15
Estimated Expiration
2035-09-18

AI Technical Summary

Technical Problem

[0003]现有的提手杯,基本都是采用按钮来作为解锁操作结构,该按钮通常都是设置在盖本体外侧的,按钮的外表面形成供操作者按压施力的按压面,这种依靠单向直线运动来施力解锁的操作结构,在携带过程中很容易因为外物的单向运动撞击,导致误碰按钮的按压面而意外解锁翻盖等活动件,安全性低,且按压操作起来比较费力,为人们带来不便

Benefits of technology

本实用新型提供的提手杯盖,由于活动组件处于闭合位置时盖本体的外表面和活动组件的外表面围绕形成安全面,且活动组件通过锁定件来锁定,而锁定件又布置在安全面的内侧,按压安全面的任意位置均不触发锁定件活动,因此能够通过安全面阻挡外物按压触发锁定件活动,防止锁定件因外物撞击而导致意外解锁活动组件,大大提高了携带过程中的安全性;另外,提手环能够通过转动从保持锁定件处于锁定状态的第一状态切换至使锁定件处于解除锁定状态的第二状态,使得操作者在转动提手环从第一状态切换至第二状态的同时,即可带动锁定件从锁定状态活动至解除锁定状态,实现对活动组件的解锁,一次性打开提手环和解锁活动组件,操作更加便捷,且由于取消了现有技术中的按钮设置,而通过转动提手环来对活动组件进行解锁,相比于现有技术中采用按钮来解锁的操作结构,根据杠杆原理,操作起来更加轻松省力;由于提手环需要转动一定的角度,且需要从第一状态转动至第二状态才能触发锁定件从锁定状态切换至解除锁定状态,因此在杯子携带于背包内时,也不容易因背包内的外物对提手环的单向运动撞击导致误碰而意外触发锁定件对活动组件进行解锁,进一步提高了携带过程中的安全性。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224747772U_ABST
    Figure CN224747772U_ABST
Patent Text Reader

Abstract

The utility model discloses a kind of anti-mis-touch handle cup covers and handle cups, and the handle cup cover includes cover body, movable assembly, locking piece, handle ring, movable assembly is movably connected to cover body, locking piece is movably connected into cover body or movable assembly, handle ring is rotatably connected to cover body, it can be switched from first state to make locking piece be in the second state of unlocking state by rotation, when movable assembly is in closed position, the outer surface of cover body and the outer surface of movable assembly are formed around safety surface, locking piece is arranged in safety surface inside, and pressing the arbitrary position of safety surface does not trigger locking piece activity. The handle cup cover locks movable assembly by locking piece, and can be blocked by safety surface to press trigger locking piece activity, greatly improve the security in carrying process, and can be driven by rotating handle ring to unlock movable assembly to unlock movable assembly, it is more relaxed and labor-saving to operate.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of cups, and more particularly to a cup lid and a cup with a handle that prevents accidental contact. Background Technology

[0002] As people's demand for drinking water continues to increase, the handle cup has become an indispensable item that people carry with them in various scenarios such as at home, school, and when traveling.

[0003] Most existing handle cups use buttons as the unlocking mechanism. These buttons are usually located on the outside of the lid, and their outer surface forms a pressing surface for the operator to press and apply force. This unlocking mechanism, which relies on unidirectional linear motion, is easily affected by impacts from external objects during carrying. This can lead to accidental unlocking of the lid or other moving parts due to accidental contact with the pressing surface. This results in low safety and requires considerable effort to press, causing inconvenience to users. Summary of the Invention

[0004] This utility model addresses the shortcomings of existing technologies by providing a handle cup lid and handle cup that prevent accidental activation. The movable component is locked by a locking member, and the locking member can be activated by preventing external objects from pressing it, which greatly improves the safety during carrying. Furthermore, the movable component can be unlocked by rotating the handle ring, making it easier and less strenuous to operate.

[0005] The technical solution adopted in this utility model is as follows: An anti-accidental-touch handle cup lid includes a lid body, a movable component, a locking element, and a handle ring. The lid body can be connected to a cup body and has an outlet channel that communicates with a receiving cavity inside the cup body. The movable component is movably connected to the lid body and configured to selectively close the outlet channel, and is movable between a closed position where the outlet channel is closed and an open position where the outlet channel is not closed. The locking element is movably connected to the lid body or the movable component and configured to selectively hold the movable component in the closed position. The locking element is movable relative to the lid body or the movable component between a locked state and an unlocked state. In the locked state, the locking element can hold the movable component in the closed position. The handle ring is rotatably connected to the lid body and can be rotated to switch from a first state where the locking element is in a locked state to a second state where the locking element is in an unlocked state. When the movable component is in the closed position, the outer surfaces of the lid body and the movable component form a safety surface, the locking element is arranged inside the safety surface, and pressing any position of the safety surface will not trigger the locking element to move.

[0006] This utility model also provides a handle cup, including a cup body with a receiving cavity and a handle cup lid as described above connected to the cup body.

[0007] The beneficial effects achieved by this utility model are as follows: The cup lid with a handle provided by this utility model has a safety surface formed by the outer surfaces of the lid body and the movable component when the movable component is in the closed position. The movable component is locked by a locking element, which is located inside the safety surface. Pressing any position on the safety surface will not trigger the locking element. Therefore, the safety surface prevents external objects from pressing and triggering the locking element, preventing accidental unlocking of the movable component due to impact from external objects, thus greatly improving safety during carrying. Furthermore, the handle can be rotated to switch from a first state where the locking element is locked to a second state where the locking element is unlocked. This allows the operator to simultaneously rotate the handle from the first state to the second state, thereby releasing the locking element from the locked position. The process of moving the handle to the unlocked state unlocks the active component, opening and unlocking the handle and the active component simultaneously, making operation more convenient. Furthermore, by eliminating the button found in existing technologies and unlocking the active component by rotating the handle, it is easier and less strenuous to operate compared to the button-based unlocking structure of existing technologies, based on the lever principle. Since the handle needs to be rotated at a certain angle and from the first state to the second state to trigger the locking mechanism to switch from the locked to the unlocked state, when the cup is carried in a backpack, it is less likely that the handle will be accidentally triggered by external objects impacting its unidirectional movement, thus further improving safety during carrying.

[0008] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description

[0009] The accompanying drawings, which are included to provide a further understanding of the present invention and form part of this application, illustrate exemplary embodiments of the present invention and, together with the description thereof, serve to explain the present invention and do not constitute an undue limitation thereof. In the drawings: Figure 1 This is a schematic diagram of the handle cup lid according to the first embodiment of this utility model.

[0010] Figures 2-3 This is a cross-sectional view of the handle cup lid according to the first embodiment of this utility model.

[0011] Figure 4 This is a schematic diagram of the handle cup lid in use according to the first embodiment of this utility model.

[0012] Figure 5 This is a partial structural diagram of the handle cup lid according to the first embodiment of this utility model.

[0013] Figure 6 This is an exploded view of the handle cup lid according to the first embodiment of this utility model.

[0014] Figure 7 This is an exploded view of the handle cup lid according to the second embodiment of this utility model.

[0015] Figure 8 This is a schematic diagram of the handle cup lid according to the second embodiment of the present utility model.

[0016] Figure 9 This is a cross-sectional view of the handle cup lid according to the third embodiment of this utility model.

[0017] Figure 10 This is an exploded view of the handle cup lid according to the third embodiment of this utility model.

[0018] Figures 11-12 This is a partial structural diagram of the handle cup lid according to the third embodiment of this utility model.

[0019] Figure 13 This is a partial structural diagram of the handle cup lid according to the fourth embodiment of this utility model.

[0020] Figure 14 This is a partial structural diagram of the handle cup lid according to the fifth embodiment of this utility model.

[0021] Figure 15 This is a schematic diagram of the handle cup according to the sixth embodiment of this utility model.

[0022] Reference numerals: Cover body 1, Storage base 11, Support platform 111, Buckle 2 112, Outlet channel 12, Receiving groove 13, Rear partition 131, Side partition 132, Locking channel 134, Connecting seat 15, Shaft channel 151, Drinking spout structure 171, First drinking spout 181, Locking buckle 2 182, Water passage 183, Connecting plate 10a, Connecting plate 2 10b, Positioning groove 10b1, Cover 30, Cover panel 30a Cover side panel 30b, positioning block 2 30b1, movable component 2, rotating wheel 21, rotating shaft 211, suction nozzle 22, locking buckle 1 221, drinking channel 23, suction nozzle 231, cover 24, extension 25, locking port 251, arm 26, movable area 271, reset baffle 272, mounting plate 273, flip cover body 274, hinge shaft 275, shaft channel 3 2751, first limiting structure 276, second limiting structure 277. 278. Baffle plate, second drinking spout, drinking spout cover, 281. Suction groove, 284. Flexible pad, 285. Sealing component, 29. Through hole, 291. Handle ring, 3. Drive shaft, 31. Positioning channel, 313. Lifting ring body, 32. Buckle 1, 321. Locking component, 4. Locking body, 41. Locking arm, 42. Positioning shaft, 5. Shaft part 1, 52. Limiting head 1, 53. Shaft part 2, 54. Limiting head 2, 55. First reset component, 6. Second reset component, 7. Cup body, 9. Drive unit, 101. Trigger 102, abutment surface 1021, locking part one 103, locking part two 104, tilting guide surface 1041, closed position A1, open position A2, locked state B1, unlocked state B2, first state X1, second state X2, storage position Y1, carrying position Y2, drive position Y3, first rotation direction M, second rotation direction N, handle ring rotation axis L1, movable component rotation axis L2, locking body rotation axis L3. Detailed Implementation

[0023] First embodiment: like Figures 1-6 As shown, as the first embodiment of this utility model, a handle cup lid that prevents accidental contact is provided, including a lid body 1, a movable component 2, a handle ring 3, and a locking member 4, wherein the movable component 2 is configured as a flip-top structure, and the locking member 4 is movably connected to the movable component 2, i.e., the flip-top structure in this embodiment.

[0024] The lid body 1 can be connected to the cup body and is provided with an outlet channel 12 that can communicate with the containing cavity inside the cup body, so that the liquid container medium such as water or beverage in the containing cavity can be discharged to the outside through the outlet channel 12. The lid body 1 includes a first drinking spout 181 protruding from its top, and the outlet channel 12 is disposed through the first drinking spout 181.

[0025] The movable component 2, i.e., the flip-top structure in this embodiment, is movably connected to the cap body 1 and is configured to selectively close the outlet channel 12. It can move between the closed position A1 where the outlet channel 12 is closed and the open position A2 where the outlet channel 12 is not closed. When the movable component 2, i.e., the flip-top structure in this embodiment, is in the closed position A1, the flip-top structure closes the first drinking spout 181 to close the outlet channel 12. At this time, the liquid holding medium in the receiving cavity cannot be discharged to the outside from the outlet channel 12. When the movable component 2, i.e., the flip-top structure in this embodiment, is in the open position A2, the flip-top structure is separated from the first drinking spout 181, i.e., the outlet channel 12 is not closed. At this time, the liquid holding medium in the receiving cavity can be discharged to the outside from the outlet channel 12.

[0026] The locking element 4 is configured to selectively hold the movable component 2, i.e., the flip structure in this embodiment, in the closed position A1. The locking element 4 is movable relative to the movable component 2, i.e., the flip structure in this embodiment, between a locked state B1 and an unlocked state B2. In the locked state B1, the locking element 4 can lock the movable component 2, i.e., the flip structure in this embodiment, to the closed position A1 by locking the locking element 4 to the cover body 1, at which time the movable component 2, i.e., the flip structure in this embodiment, is not allowed to move from the closed position A1 to the open position A2. In the unlocked state B2, the locking element 4 can separate from the cover body 1 to allow the movable component 2, i.e., the flip structure in this embodiment, to move from the closed position A1 to the open position A2, and the locking element 4 also moves relative to the cover body 1 with the flip structure.

[0027] The handle ring 3 is rotatably connected to the cover body 1. The handle ring 3 can be switched from a first state X1, which keeps the locking member 4 in a locked state B1, to a second state X2, which releases the locking member 4 from the locked state B2, by rotation.

[0028] When the movable component 2, i.e., the flip structure in this embodiment, is in the closed position, the outer surface of the cover body 1 and the outer surface of the movable component 2, i.e., the flip structure in this embodiment, surround each other to form a safety surface. The locking member 4 is arranged inside the safety surface, and pressing any position on the safety surface will not trigger the locking member 4 to move. That is to say, when the movable component 2, i.e., the flip structure in this embodiment, is in the closed position, pressing any position on the outer surface of the cover body 1 or any position on the outer surface of the movable component 2, i.e., the flip structure in this embodiment, will not trigger the locking member 4 to move.

[0029] In this embodiment, when the movable component 2, i.e., the flip-top structure in this embodiment, is in the closed position A1, the outer surface of the cover body 1 and the outer surface of the movable component 2 form a safety surface. The movable component 2 is locked by the locking member 4, which is located inside the safety surface. Pressing any position on the safety surface will not trigger the locking member 4. Therefore, the safety surface can prevent external objects from pressing and triggering the locking member 4, preventing accidental unlocking of the movable component 2, i.e., the flip-top structure in this embodiment, due to impact from external objects, greatly improving safety during carrying. Furthermore, the handle 3 can be rotated to switch from the first state X1 (keeping the locking member 4 in the locked state B1) to the second state X2 (keeping the locking member 4 in the unlocked state B2). This allows the operator to move the locking member 4 from the locked state B1 to the unlocked state while rotating the handle 3 from the first state X1 to the second state X2. State B2 unlocks the active component 2, i.e., the flip-top structure in this embodiment, opening the handle 3 and unlocking the active component 2 at the same time. This makes the operation more convenient. Since the button setting in the prior art has been eliminated, and the active component 2, i.e., the flip-top structure in this embodiment, is unlocked by rotating the handle 3, it is easier and less strenuous to operate than the button unlocking operation structure in the prior art, based on the lever principle. Since the handle 3 needs to be rotated at a certain angle and needs to be rotated from the first state X1 to the second state X2 to trigger the locking member 4 to switch from the locked state B1 to the unlocked state B2, when the cup is carried in a backpack, it is less likely to be accidentally triggered by the unidirectional movement of the handle 3 due to the impact of foreign objects in the backpack, thus further improving the safety during carrying. In other embodiments, the locking element may be movably connected to the cover body, and the locking element may be configured to move between a locked state and an unlocked state relative to the cover body. Alternatively, the locking element may be moved from the locked state to the unlocked state by rotating the handle ring, thereby unlocking the moving component.

[0030] like Figure 5As shown, in this embodiment, the locking member 4 includes a trigger part 102, and the handle ring 3 includes a driving part 101 arranged corresponding to the trigger part 102. When the handle ring 3 is in the driving position Y3, it is in the first state. The driving position Y3 is the position where the handle ring 3 triggers the locking member 4 to move from the locked state B1 to the unlocked state B2. When the handle ring 3 is in the driving position Y3, the driving part 101 can abut against the trigger part 102 and can rotate with the handle ring 3 along the first rotation direction M, applying a pushing force to the trigger part 102 arranged along the first rotation direction M or along the tangent direction of the first rotation direction M, so as to trigger the locking member 4 to move from the locked state B1 to the unlocked state B2. Thus, the rotation of the handle ring 3 drives the driving part 101 to rotate and drives the trigger part 102 to move. In turn, the movement of the trigger part 102 drives the entire locking member 4 to move from the locked state B1 to the unlocked state B2, thereby allowing the movable component 2, i.e., the flip structure in this embodiment, to move from the closed position A1 to the open position A2. Furthermore, both the trigger part 102 and the drive part 101 are located inside the safety surface, which can prevent external objects from pressing the trigger part 102 or the drive part 101 through the safety surface, preventing the locking member 4 from moving as a whole due to the impact of external objects on the trigger part 102 or the drive part 101, thereby preventing accidental unlocking of the active component 2, i.e. the flip structure in this embodiment, and further improving the safety during carrying.

[0031] like Figure 3 As shown, in this embodiment, when the handle 3 rotates from the storage position Y1 to the driving position Y3 along the first rotation direction M, it is in the first state X1. The storage position Y1 is the position where the handle 3 is stored outside the lid body 1. The handle 3 can be stored outside the lid body 1 in the storage position Y1 to reduce space occupation, allowing the cup to be carried in a backpack. Between the storage position Y1 and the driving position Y3, there is also a carrying position Y2, where the handle 3 is raised for lifting the cup, thus enabling it to be carried. When the handle 3 is in the undriven position between the storage position Y1 and the driving position Y3, rotating along the first rotation direction M or along the second rotation direction N opposite to the first rotation direction M will not trigger the movement of the trigger part 102. In other embodiments, the storage position can also be set to the position where the handle is stored outside the movable component.

[0032] In this embodiment, the handle ring 3 rotates from the storage position Y1 by a set angle along the first rotation direction M and then enters the carrying position Y2. Since the handle ring 3 needs to rotate from the storage position Y1 by a set angle along the first rotation direction M to enter the carrying position Y2, the carrying position Y2 and the storage position Y1 are arranged at a certain set angle. This can prevent the handle ring 3 from interfering with the movement of the locking member 4 toward the unlocked state B2 when the operator pulls the handle ring 3 in the carrying position Y2 and operates the active component 2, i.e., the flip cover structure in this embodiment, to lock. The handle 3 rotates from the carrying position Y2 to the driving position Y3 along the first rotation direction M after a set angle, so that the carrying position Y2 and the driving position Y3 are spaced apart to form a certain set angle. This can prevent the handle from driving the locking member to unlock the active component 2, i.e., the flip-top structure in this embodiment, due to the cup shaking when the operator pulls the handle 3 to move the cup in the carrying position Y2, thus further improving the safety of use. Since the handle 3 needs to rotate a certain angle, and needs to rotate a set angle from the storage position Y1 to enter the driving position Y3 to trigger the locking member 4 to move to the unlocked state B2, when the cup is carried in the backpack, it is not easy for the handle 3 to be accidentally triggered by the unidirectional movement of the foreign object in the backpack, thus improving the safety of use.

[0033] like Figure 3As shown, in this embodiment, when the handle ring 3 is in the storage position Y1, it is arranged horizontally relative to the cover body 1. The rotation angle between the drive position Y3 and the storage position Y1 is greater than 180°, which can better prevent accidental triggering of the locking member 4 to unlock the active component 2, i.e., the flip cover structure in this embodiment, due to the impact of the unidirectional movement of the handle ring 3 by foreign objects in the backpack. At the same time, it can also better prevent the handle ring 3 from rotating relative to the cover body 1 to the drive position Y3 when the operator lifts the cup to move or shake it, thus accidentally unlocking the active component 2, i.e., the flip cover structure in this embodiment. Optionally, the rotation angle range between the driving position Y3 and the storage position Y1 is 190°~270°, especially 195°, 200°, 205°, 210°, 215°, 220°, 225°, 230°, 235°, 240°, 245°, 250°, 255°, 260°, and 265°; the rotation angle range between the carrying position Y2 and the storage position Y1 is 90°~140°, especially 95°, 100°, 105°, and 110°. 130°, 115°, 120°, 125°, 130°, and 135° are suitable for most cups currently available. This design ensures a large angular gap between the storage position Y1 and the carrying position Y2 and the driving position Y3. As a result, when the handle 3 is in the storage position Y1 or the carrying position Y2, it is less likely to rotate to the driving position Y3 suddenly due to accidental contact with external objects or the shaking of the lid body 1 relative to the handle 3. This ensures safety during the process of lifting and moving the cup.

[0034] like Figure 1 As shown, in this embodiment, a storage seat 11 is arranged on the outer side of the cover body 1. The storage seat 11 is configured to prevent the handle ring 3 from crossing the storage seat 11 and rotating relative to the cover body 1 in the second rotation direction N. Thus, in the storage position Y1, the handle ring 3 is limited to the upper side of the storage seat 11 and stored around the outer side of the cover body 1, saving the space occupied by the handle ring 3 and making it convenient to place the container in a backpack for carrying. The outer surface of the storage seat 11 is partially configured as a safety surface structure. That is, when the movable component 2, i.e., the flip-top structure in this embodiment, is in the closed position and the handle ring 3 is in the carrying position Y2, pressing any position on the outer surface of the storage seat 11 will not trigger the locking member 4 to move. In other embodiments where the storage position is located on the outside of the movable component, the storage seat can also be located on the outside of the movable component.

[0035] In this embodiment, the top of the storage base 11 forms a support platform 111 for supporting the handle ring 3. The handle 3 includes a first buckle 321, which protrudes from the inner wall of the handle body 32. The movable component 2, i.e., the flip-top structure in this embodiment, has a second buckle 112 arranged corresponding to the first buckle 321 on its outer side. The second buckle 112 protrudes from the outer wall of the movable component 2, i.e., the flip-top structure in this embodiment, and is arranged above the storage base 11. When the handle 3 is in the storage position Y1, the bottom surface of the handle 3 is supported and limited on the upper side of the support platform 111, and the top surface of the first buckle 321 is limited on the lower side of the second buckle 112, thereby locking the handle 3 in the storage position Y1. This prevents the handle 3 from being accidentally rotated due to shaking or unidirectional impact from external objects when the operator carries the cup in the backpack. When it is necessary to rotate the handle 3 in the first rotation direction M, the operator can apply a little force to make the first buckle 321 pass over the second buckle 112, so that it can rotate freely.

[0036] In this embodiment, a first reset member 6 is provided between the movable component 2 (i.e., the flip-cover structure) and the cover body 1. The first reset member 6 is used to reset the movable component 2 (i.e., the flip-cover structure) to the open position A2. When the locking member 4 is in the unlocked state B2, the movable component 2 (i.e., the flip-cover structure) can automatically spring up to the open position A2 under the force of the first reset member 6, and keep the movable component 2 (i.e., the flip-cover structure) in the open position A2, thereby facilitating the unlocking of the movable component 2 (i.e., the flip-cover structure). A second reset member 7 is provided between the locking member 4 and the movable component 2 (i.e., the flip-cover structure). The second reset member 7 is used to reset the locking member 4 to the locked state B1. After the handle ring 3 moves the locking member 4 to the unlocked state B2, releasing the handle ring 3 will cause the locking member 4 to automatically spring back to the locked state B1 under the force of the second reset member 7, thereby facilitating the keeping of the locking member 4 in the locked state B1.

[0037] In this embodiment, the movable component 2, i.e., the flip-top structure, is rotatably connected to the cover body 1. The first reset member 6 is an elastic member. When the locking member 4 is in the unlocked state B2, the movable component 2, i.e., the flip-top structure, can rotate and spring up from the closed position A1 to the open position A2 under the elastic force of the first reset member 6, and hold the movable component 2, i.e., the flip-top structure, in the open position A2. In this embodiment, the first reset member 6 is a torsion spring. When the movable component 2, i.e., the flip-top structure, rotates from the open position A1 to the closed position A2, it compresses and deforms the first reset member 6. After the locking member 4 moves from the locked state B1 to the unlocked state B2, the first reset member 6 is released and can deform and expand under its elastic force to push the movable component 2, i.e., the flip-top structure, from the closed position A1 to the open position A2, and hold the movable component 2, i.e., the flip-top structure, in the open position A2.

[0038] like Figure 6As shown, in this embodiment, the handle ring 3 also includes a lifting ring portion, which is constructed as a non-closed ring structure. The two ends of the lifting ring portion are rotatably connected to the cover body 1 along the handle ring rotation axis L1. The driving portion 101 is connected to the end of the lifting ring portion and can rotate around the handle ring rotation axis L1 as the lifting ring portion rotates. The trigger portion 102 and the correspondingly arranged driving portion 101 are located on the same rotation plane arranged along the first rotation direction M, and the driving portion 101 can rotate around the handle ring rotation axis L1 on the trigger portion 102 between the two sides arranged around the handle ring rotation axis L1 as the handle ring 3 rotates. When the handle ring 3 is in the storage position Y1, at least a portion of the handle ring structure rests on the storage base 11 for easy storage of the handle ring 3. At this time, the drive unit 101 is located on one side of the trigger unit 102 arranged around the handle ring rotation axis L1, and is spaced apart from the side of the trigger unit 102 arranged around the handle ring rotation axis L1, so as to avoid the drive unit 101 and the side of the trigger unit 102 abutting against each other, which would cause the handle ring 3 to interfere with the movement of the locking member 4 toward the unlocked state B2 when the operator operates the movable component 2, i.e. the flip structure in this embodiment, to lock it. Thus, when the handle ring 3 is in the storage position Y1, the operator can operate the movable component 2, i.e. the flip structure in this embodiment, to move from the open position A2 to the closed position A1, and lock it in the closed position A1 by the locking member 4 under the action of the second reset member 7. In this embodiment, when the handle ring 3 is in the storage position Y1, the entire bottom of the handle ring rests on the storage base 11, making the resting more stable. In other embodiments, when the handle ring 3 is in the storage position Y1, only a portion of the bottom of the handle ring on the side away from the handle ring rotation axis L1 can be placed on the storage base 11, or only a portion of the bottom of the handle ring on both sides adjacent to the handle ring rotation axis L1 can be placed on the storage base 11. Both methods can support the handle ring 3 on the storage base 11.When the handle 3 is in the carrying position Y2, the side of the handle portion away from the handle rotation axis L1 is spaced apart above the storage base 11, making it convenient for the operator to lift the handle 3 to move the cup. At this time, the drive unit 101 is arranged between the two sides of the trigger unit 102 arranged around the handle rotation axis L1, and the two sides of the drive unit 101 arranged around the handle rotation axis L1 are spaced apart from the two sides of the trigger unit 102 arranged around the handle rotation axis L1, to avoid the drive unit 101 and the trigger unit 102 abutting against each other, which would cause the operator to flip the cup while operating the active component 2, i.e., the flipping mechanism in this embodiment. During the locking process of the lid structure, the handle ring 3 interferes with the movement of the locking member 4 toward the unlocked state B2, thereby enabling the movable component 2, i.e., the flip-top structure in this embodiment, to move from the open position A2 to the closed position A1 when the handle ring 3 is in the storage position Y1, and to be locked in the closed position A1 by the locking member 4 under the force of the second reset member 7; thus avoiding the driving part 101 and the trigger part 102 from abutting against each other, which would cause the handle ring 3 to drive the locking member 4 to unlock the movable component 2, i.e., the flip-top structure in this embodiment, when the operator moves the cup by pulling the handle ring 3. When the handle ring 3 is in the drive position Y3, the side of the handle ring that is away from the handle ring rotation axis L1 is arranged at intervals on the side of the storage base 11. At this time, the drive part 101 is located on the other side of the trigger part 102 arranged around the handle ring rotation axis L1, and the drive part 101 abuts against the trigger part 102. It can rotate with the handle ring along the first rotation direction M and push the trigger part 102 to move along the tangential direction of the first rotation direction M, so as to drive the locking member 4 to move from the locked state B1 to the unlocked state B2. In this embodiment, when the operator rotates the handle ring 3 along the first rotation direction M, the side of the handle ring that is away from the rotation axis L1 of the handle ring can rotate from the storage seat 11, passing above the storage seat 11 and the side of the storage seat 11, to the second state X2. Thus, while rotating the handle ring 3 along the first rotation direction M to open it, the active component 2, i.e., the flip cover structure in this embodiment, can be unlocked at the same time. The handle ring 3 and the active component 2, i.e., the flip cover structure in this embodiment, can be opened at the same time, making the operation simple and convenient.

[0039] In this embodiment, the lifting ring part includes a lifting ring body 32 and two drive shafts 31. The lifting ring body 32 is constructed as a non-closed ring structure, and is used by the operator to contact and apply force to the handle ring 3 to rotate around the handle ring rotation axis L1. The two drive shafts 31 are respectively connected to both ends of the lifting ring body 32 and are arranged coaxially with the handle ring rotation axis L1. The two drive shafts 31 are rotatably connected to both sides of the cover body 1. Two drive parts 101 are provided, and the two drive parts 101 are respectively protruding from the ends of the two drive shafts 31. The locking member 4 is provided with two trigger parts 102 corresponding to the two drive parts 101. When the handle ring 3 is in the driving position Y3, the two driving parts 101 abut against the corresponding trigger parts 102, and can rotate with the two driving shafts 31 along the first rotation direction M. They synchronously push the corresponding trigger parts 102 along the tangent direction of the first rotation direction M, thereby jointly driving the locking member 4 from the locked state B1 to the unlocked state B2, improving the stability of the handle ring 3 driving the locking member 4 from the locked state B1 to the unlocked state B2. In other embodiments, the two driving parts can be protruded from the sides of the two driving shafts; or the driving shafts can be omitted, and the two ends of the handle ring body can be rotatably connected to the two sides of the cover body along the handle ring rotation axis, with the driving parts protruding from one or both ends of the handle ring body. All these embodiments can drive the locking member from the locked state to the unlocked state by rotating the handle ring.

[0040] like Figure 6 As shown, in this embodiment, a positioning channel 313 is provided through the drive shaft 31 and the lifting ring body 32 along the rotation axis L1 of the lifting ring. The two ends of the lifting ring are connected by a positioning shaft 5 connected in the two positioning channels 313. The positioning shaft 5 includes a shaft part 52, a limiting head 53 connected to the outer end of the shaft part 52, a shaft part 54, and a limiting head 55 connected to the outer end of the shaft part 54. The inner ends of the shaft part 52 and the shaft part 54 are connected to each other. The connection can be fixed by welding or by threaded connection or other detachable connection. After connection, the limiting head 53 and the limiting head 55 are respectively limited to the outer side walls of the two ends of the lifting ring body 32 to prevent the lifting ring 3 from detaching from the cover body 1.

[0041] In this embodiment, the storage base 11 is arranged in front of the handle ring rotation axis L1, and the cover body 1 includes two connecting seats 15 arranged behind the storage base 11, with a locking member 4 arranged between the two connecting seats 15. The two connecting seats 15 are arranged at intervals along the handle ring rotation axis L1, forming an interval region between them, and the trigger part 102 is arranged in the interval region. Both ends of the handle ring 3 are rotatably connected to the two connecting seats 15. In this embodiment, the two drive shafts 31 are respectively configured as convex shaft structures protruding from the inner sidewalls of the two ends of the handle ring body 32. The two connecting seats 15 are respectively provided with shaft channels 151 arranged corresponding to the drive shafts 31 along the handle ring rotation axis L1. The two drive shafts 31 extend into the shaft channels 151 and are rotatably connected to the two connecting seats 15. After connection, the drive part 101 is arranged in the interval region. In this embodiment, when the handle ring 3 rotates, the handle ring body 32 rotates on the outside of the connecting seat 15, and the driving part 101 rotates in the interval area inside the connecting seat 15. Thus, by rotating the handle ring body 32 on the outside of the connecting seat 15, the driving part 101 inside the connecting seat 15 drives the trigger part 102 in the interval area to move.

[0042] like Figure 4 As shown, in this embodiment, the cover body 1 includes a cover base, a first drinking spout 181 protruding from the top of the cover base, a storage seat 11 as part of the cover base structure, and a connecting seat 15 as part of the cover base structure. The movable component 2, i.e., the flip cover structure in this embodiment, is hinged to the positioning shaft 5 and rotates relative to the cover body 1. The movable component 2, i.e., the flip cover structure in this embodiment, includes a hinge shaft 275 disposed on its rear side. The hinge shaft 275 is arranged between the two connecting seats 15 and is hinged to the positioning shaft 5 through the shaft channel 2751 disposed thereon. The rear side of the flip cover body 274 is also provided with a cover plate 278 extending from both ends of the hinge shaft 275 toward the two connecting seats 15 for covering the locking member 4. The two trigger parts 102 and the drive part 101 are respectively arranged inside the two cover plates. The outer surface of the cover 278 is partially configured as a safety surface. That is, when the movable component 2, i.e., the flip-top structure in this embodiment, is in the closed position, and the handle ring 3 is in the carrying position Y2, pressing any position on the outer surface of the cover 278 will not trigger the locking member 4 to move. In other embodiments, the connecting seat may also be configured as part of both the cover base and the cover.

[0043] like Figure 5As shown, in this embodiment, when the locking member 4 is in the locked state B1, the trigger part 102 is arranged below the handle ring rotation axis L1, and the second reset member 7 is arranged along the front-back direction of the handle ring rotation axis L1. When the handle ring 3 is in the driving position Y3, the trigger part 102 can move forward towards the handle ring rotation axis L1 under the pushing force of the driving part 101, so as to drive the locking member 4 to move forward from the locked state B1 to the unlocked state B2, and the second reset member 7 is deformed and shortened by the forward compression of the locking member 4; after the handle ring 3 is released, the second reset member 7 is released and can deform and extend backward under its elastic force, so as to push the locking member 4 to move backward from the unlocked state B2 to the locked state B1. At the same time, the locking member 4 can rotate relative to the cover body 1 to the open position A2 with the upper cover structure 2, that is, the flip cover structure in this embodiment.

[0044] like Figure 1 , Figure 2 As shown, in this embodiment, the movable component 2, i.e., the flip-top structure in this embodiment, is also provided with a second drinking spout 28, and the cover body 1 is also provided with a water passage 183 for connecting the second drinking spout 28. The operator can drink through the second drinking spout 28 when the movable component 2, i.e., the flip-top structure in this embodiment, is in the closed position A1, making the function more versatile. In this embodiment, the first drinking spout 181 is configured as a direct drinking spout, the second drinking spout 28 is configured as a suction spout, the outlet channel 12 is located inside the first drinking spout 181, and the water passage 183 is located inside the first drinking spout 181 and arranged near the outlet channel 12. The movable component 2, i.e., the flip-top structure in this embodiment, has a sealing member 29 on its lower side for sealing the outlet channel 12, which can seal the outlet channel 12 when the movable component 2, i.e., the flip-top structure in this embodiment, is in the closed position A1, preventing the liquid container in the containing cavity from leaking to the outside through the outlet channel 12. The upper side of the movable component 2, i.e., the flip-top structure in this embodiment, is provided with a flexible pad 285. A through hole 291 for connecting to the water passage 183 is provided through the sealing component 29, the flexible pad 285, and the movable component 2, i.e., the flip-top structure in this embodiment. The second drinking spout 28 can be rotated to connect its drinking spout channel to the through hole 291. At this time, the operator can drink the liquid contained in the receiving cavity through the second drinking spout 28, or the drinking spout channel can be misaligned with the through hole 291 to close the through hole 291, preventing the liquid contained in the receiving cavity from being discharged to the outside through the second drinking spout 28. A drinking spout cover 281 is hinged to the second drinking spout 28. The top of the movable component 2, i.e., the flip-top structure in this embodiment, is recessed with a suction groove 284. When the second drinking spout 28 is in the closed state, it is housed within the suction groove 284.

[0045] like Figure 4As shown, in this embodiment, the movable component 2, i.e., the flip structure in this embodiment, includes a flip body 274 and a mounting plate 273 detachably connected to the lower side of the flip body 274. The locking member 4 is positioned between the flip body 274 and the mounting plate 273 for easy assembly. The movable component 2, i.e., the flip structure in this embodiment, has an active area 271 formed on it, allowing the locking part 104 to extend beyond the movable component 2, i.e., the flip structure in this embodiment. The active area 271 is arranged between the front side of the mounting plate 273 and the front side of the flip body 274. The movable component 2, i.e., the flip structure in this embodiment, has a first limiting structure 276 arranged at the rear side of the locking body 41 and a second limiting structure 277 arranged at the front side of the locking body 41. The travel of the locking member 4 is limited between the first limiting structure 276 and the second limiting structure 277.

[0046] like Figure 4 As shown, in this embodiment, the cover body 1 includes a locking part 103, and the locking member 4 includes a locking part 2 104 arranged corresponding to the locking part 103. When the locking member 4 is in the locked state B1, the movable component 2, i.e., the flip cover structure in this embodiment, can be kept in the closed position A1 by locking the locking part 2 104 and the locking part 103 together; when the locking member 4 is in the unlocked state B2, the movable component 2, i.e., the flip cover structure in this embodiment, can be allowed to move relative to the cover body 1 to the open position A2 by separating the locking part 2 104 and the locking part 103; when the trigger part 102 moves behind the handle ring rotation axis L1, it drives the locking part 2 104 to move behind the cover body 1 until it separates from the locking part 103.

[0047] In this embodiment, the locking part 103 is configured as a locking buckle 182 arranged on the side of the first drinking spout 181. When the locking part 4 is in the locked state B1, the movable component 2, i.e. the flip-top structure in this embodiment, can be kept in the closed position A1 by the locking part 104 and the locking buckle 182 engaging with each other. When the movable component 2, i.e. the flip-top structure in this embodiment, is in the open position A2, the movable component 2, i.e. the flip-top structure in this embodiment, is separated from the first drinking spout 181, and the locking part 104 and the locking buckle 182 are separated. At this time, the liquid holding medium in the container cavity can be discharged to the outside through the discharge channel 12.

[0048] like Figures 4-6As shown, in this embodiment, the locking member 4 includes a locking body 41 and a locking arm 42. The locking arm 42 extends from the locking body 41 toward the front of the handle ring rotation axis L1. The second locking part 104 protrudes from the rear side of the front part of the locking arm 42. The movable component 2, i.e., the flip structure in this embodiment, has an active area 271 for the second locking part 104 to extend out of the movable component 2, i.e., the flip structure in this embodiment. Two trigger parts 102 are respectively arranged on both sides of the locking body 41 along a line parallel to the handle ring rotation axis L1. The rear sides of the two trigger parts 102 are respectively formed with abutting surfaces 1021 for abutting against the driving part 101. During the process of the operator rotating the handle ring 3 in the first rotation direction M to switch from the minimum driving position Y3 to the second state X2, the driving part 101 pushes the abutting surface 1021 and, with the rotation of the driving shaft 31, pushes the trigger parts 102 to move forward toward the handle ring rotation axis L1, so as to drive the locking member 4 to move forward from the locked state B1 to the unlocked state B2. In other embodiments, the second locking part may protrude on the outer or inner side of the front part of the locking arm, and the first locking part may be provided on the side of the cover body corresponding to the second locking part.

[0049] In this embodiment, two locking arms 42 are provided. The two locking arms 42 extend from both sides of the locking body 41 towards the front of the handle ring rotation axis L1. Locking portions 104 protrude from the rear side of the front portion of each locking arm 42. The cover body 1 includes two locking portions 103 arranged corresponding to the two locking portions 104. These locking portions 103 and 104 are locked together to jointly lock the movable component 2, i.e., the flip-top structure in this embodiment, ensuring the movable component 2 remains stably in the locked state B1. In this embodiment, two locking buckles 182 are respectively located on both sides of the first drinking spout 181 and connected to it, improving the structural stability of the locking buckles 182. The two locking portions 104 are arranged corresponding to the two locking buckles 182. In other embodiments, the locking buckles 182 may be spaced apart from the first drinking spout or protrude outward from the outer wall of the first drinking spout. In other embodiments, only one locking arm, one locking portion, and one locking portion may be provided.

[0050] like Figure 6 As shown, in this embodiment, the movable component 2, i.e. the flip-top structure in this embodiment, is provided with a reset baffle 272 arranged behind the first drinking spout 181. The locking body 41 is arranged behind the reset baffle 272. The locking body 41 and the reset baffle 272 are arranged at intervals to form a reset area. The second reset member 7 is arranged in the reset area. The second reset member 7 is set as a compression spring. The front end of the second reset member 7 abuts against the reset baffle 272 and the rear end abuts against the locking body 41, so as to lock the movable component 2, i.e. the flip-top structure in this embodiment, in the closed position A1.

[0051] In this embodiment, when the handle 3 is in the carrying position Y2, the handle 3 does not trigger the locking member 4 to move. The operator can operate the movable component 2, i.e. the flip-top structure in this embodiment, while pulling the handle 3 to lift the container. This allows the movable component 2, i.e. the flip-top structure in this embodiment, to push the locking member 4 from the locked state B1 to the unlocked state B2 through the cover body 1, thus moving from the open position A2 to the closed position A1. After the movable component 2, i.e. the flip-top structure in this embodiment, enters the closed position A1, the locking member 4 is reset from the unlocked state B2 to the locked state B1 under the action of the second reset member 7, so as to keep the movable component 2, i.e. the flip-top structure in this embodiment, in the closed position A1, which facilitates the quick locking of the movable component 2, i.e. the flip-top structure in this embodiment.

[0052] In this embodiment, an inclined guide surface 1041 is formed at the bottom of the second locking part 104. The height of the inclined guide surface 1041 gradually decreases from the rear end of the second locking part 104 towards the front end. When the movable component 2, i.e., the flip structure in this embodiment, rotates from the open position A2 to the closed position A1, the bottom of the second locking part 104 can move forward of the handle ring rotation axis L1 by rotating downward and being pushed by the second locking buckle 182. At the same time, the second locking buckle 182 slides from front to back along the inclined guide surface 1041 until it is correspondingly arranged behind the second locking part 104, and can be reset by the second reset member 7. The locking member 4 is pushed by force to move behind the handle ring rotation axis L1 and engage with the locking part 104 to the lower side of the locking buckle 182, locking the movable component 2, i.e. the flip structure in this embodiment, in the closed position A1. Thus, when the handle ring 3 is in the first state X1, especially in the storage position Y1 and the carrying position Y2, and in other positions between the storage position Y1 and the driving position Y3, the operator can switch the movable component 2, i.e. the flip structure in this embodiment, to the closed position A1 and lock it in the closed position A1 by the locking member 4, which facilitates closing the movable component 2, i.e. the flip structure in this embodiment.

[0053] Second embodiment: like Figures 7-8 As shown, as a second embodiment of this utility model, a handle cup lid that prevents accidental contact is also provided.

[0054] The second embodiment differs from the first embodiment in that: the movable component 2 is configured as a cap structure, and the cap body 1 includes a drinking spout structure 171 protruding from its top. A discharge channel 12 extends through the drinking spout structure 171. The movable component 2, i.e., the cap structure in this embodiment, is configured to selectively close the discharge channel 12 and can move between a closed position A1 (closing the drinking spout structure 171 to close the discharge channel 12) and an open position A2 (separating from the drinking spout structure 171 to open the discharge channel 12). The movable component 2, i.e., the cap structure in this embodiment, is movably connected to the cap body 1. When the movable component 2, i.e., the cap structure in this embodiment, is in the closed position, the outer surface of the cap body 1 and the outer surface of the movable component 2, i.e., the cap structure in this embodiment, surround each other to form a safety surface. The locking member 4 is arranged inside the safety surface, and pressing any position on the safety surface will not trigger the locking member 4 to move. In other words, when the active component 2, i.e. the flip structure in this embodiment, is in the closed position, pressing any position on the outer surface of the cover body 1 or any position on the outer surface of the active component 2, i.e. the cap structure in this embodiment, will not trigger the locking component 4 to move.

[0055] The second difference between the second embodiment and the first embodiment is that the locking member 4 is movably connected to the cover body 1. The locking member 4 can move between the locked state B1 and the unlocked state B2 relative to the cover body 1. In the locked state B1, the locking member 4 can lock the movable component 2, i.e., the cap structure in this embodiment, to the closed position A1 by locking the movable component 4 with each other. At this time, the movable component 2, i.e., the cap structure in this embodiment, is not allowed to move from the closed position A1 to the open position A2. In the unlocked state B2, the locking member 4 can separate from the movable component 2, i.e., the cap structure in this embodiment, to allow the movable component 2, i.e., the cap structure in this embodiment, to move from the closed position A1 to the open position A2.

[0056] The third difference between the second embodiment and the first embodiment is that: when the locking member 4 is in the locked state B1, the trigger part 102 is arranged above the handle ring rotation axis L1, and the second reset member 7 is arranged along the front-back direction of the handle ring rotation axis L1. When the handle ring 3 is in the driving position Y3, the trigger part 102 can move backward of the handle ring rotation axis L1 under the pushing force of the driving part 101, so as to drive the locking member 4 to move backward from the locked state B1 to the unlocked state B2, and the second reset member 7 is deformed and shortened by the rearward compression of the locking member 4; after the handle ring 3 is released, the second reset member 7 is released and can deform and extend forward under its elastic force, so as to push the locking member 4 to move forward and reset from the unlocked state B2 to the locked state B1.

[0057] The fourth difference between the second embodiment and the first embodiment is that: the cover body 1 includes a cover base and a cover member 30 mounted on the cover base for covering the locking member 4, and the connecting seat 15 is configured as a part of the cover base and the cover member 30. The cover member 30 includes a cover panel 30a covering the top and rear of the locking member 4, and two cover side plates 30b respectively arranged at intervals along the rotation axis L1 of the handle ring on both sides of the locking member 4 and respectively connected to both sides of the two cover panels 30a. The cover base includes a connecting plate 10a arranged on the lower side of the cover panel 30a, and two connecting plates 10b respectively arranged on the outer sides of the two cover side plates 30b. The two connecting seats 15 each include a connecting plate 10b and a cover side plate 30b respectively. A positioning block 30b1 protrudes from the outer side of the cover side plate 30b, and a positioning groove 10b1 is recessed on the inner side of the connecting plate 10b. After the cover 30 is connected to the cover base, it is positioned in the positioning groove 10b1 by the convex and concave fit of the positioning block 30b1, preventing the cover 30 from rotating relative to the cover body 1 with the handle ring 3. A pressing block protrudes from the inner side of the top wall of the cover panel 30a. After the cover 30 is connected to the cover base, the pressing block presses against the upper side of the locking member 4, preventing the locking member 4 from deflecting up and down during the movement, and improving the stability of the locking member 4 during the movement. In this embodiment, it is convenient to assemble or disassemble the locking member 4 and the second reset member 7 within the cover body 1. Furthermore, the drive shaft 31 and the positioning shaft 5 also serve as a connection structure between the cover member 30 and the cover base, achieving a multi-functional effect. The movable component 2, i.e., the cap structure in this embodiment, and the handle ring 3 are rotatably connected to the connecting seat 15 via the same connecting shaft, i.e., the drive shaft 31. This connecting shaft, i.e., the drive shaft 31, is arranged along the handle ring rotation axis L1, simplifying the structure and facilitating the mutual rotational connection between the upper cover structure, i.e., the cap structure in this embodiment, the handle ring 3, and the connecting seat 15. The outer surface of the cover member 30 is configured as a partial structure of the safety surface. That is, when the movable component 2, i.e., the cap structure in this embodiment, is in the closed position, and the handle ring 3 is in the carrying position Y2, pressing any position on the outer surface of the cover member 30 will not trigger the locking member 4 to move. In other embodiments, the connecting seat may only be configured as a partial structure of the cover base, or only as a partial structure of the cover member.

[0058] The fifth difference between the second embodiment and the first embodiment is that the movable component 2, i.e., the cap structure in this embodiment, includes a capping portion 24 for covering the drinking spout structure 171, an extension portion 25 extending downward from the capping portion 24, and two arm portions 26 extending from the capping portion 24 toward the rear of the cap body 1. The top of the cap body 1 is recessed with a receiving groove 13 arranged on the rear side of the drinking spout structure 171. The receiving groove 13 corresponds to the extension portion 25. A locking member 4 is arranged on the rear side of the receiving groove 13, and a locking channel 134 corresponding to the second locking member 104 is provided through the rear side wall of the receiving groove 13. The second locking member 104 is retractably arranged within the locking channel 134. When the movable component 2, i.e., the cap structure in this embodiment, is in the closed position A1, the extension portion 25 is housed in the receiving groove 13, and the capping portion 24 covers the drinking spout structure 171 to close the outlet channel 12. At this time, the liquid container in the receiving cavity cannot be discharged to the outside through the outlet channel 12. Locking part 103 is configured as a locking port 251 passing through the extension 25. Locking member 4 includes locking body 41, and locking part 2 104 protrudes from the front side of locking body 41. When locking member 4 is in locked state B1, locking part 2 104 can extend into locking port 251 to keep movable component 2, i.e., cap structure in this embodiment, in closed position A1. When cap structure is in open position A2, cap 24 is separated from drinking spout structure 171, and locking part 2 104 is separated from locking port 251. At this time, liquid containing medium in the receiving cavity can be discharged to the outside through discharge channel 12. Two triggering parts 102 are respectively protruding from both sides of locking body 41 along a line parallel to the rotation axis L1 of handle ring. The front side of the two triggering parts 102 respectively forms abutment surface 1021 for abutting against driving part 101. During the process of the operator rotating the handle ring 3 from the minimum drive position Y3 to the second state X2 along the first rotation direction M, the drive unit 101 pushes the abutment surface 1021 and, with the rotation of the drive shaft 31, pushes the trigger unit 102 to move behind the handle ring rotation axis L1, so as to drive the locking member 4 to move backward from the locked state B1 to the unlocked state B2. The rear ends of the two arm parts 26 are respectively provided with hinge shafts 275, and the hinge shafts 275 are provided with shaft channels 2751 along the handle ring rotation axis L1. The two hinge shafts 275 are rotatably connected to the two drive shafts 31 through the shaft channels 2751. There are two first reset members 6, and the two first reset members 6 are respectively arranged between the two hinge shafts 275 and the cover body 1, so that the handle ring 3 and the movable component 2, that is, the cap structure in this embodiment, are assembled with the cover body 1 through the same positioning shaft 5, which facilitates assembly. Two hinge shafts 275 are respectively arranged between the connecting plate 2 10b and the cover side plate 30b on both sides, and two first reset pieces 6 are respectively arranged between the two hinge shafts 275 and the connecting plate 2 10b. The structure is compact and ingenious.In other embodiments, only one arm may be provided; the hinge shaft may also be rotatably connected to the cover body or the positioning shaft, or rotatably connected to both the cover body and the handle ring.

[0059] Third embodiment: like Figures 9-12 As shown, as a third embodiment of this utility model, a handle cup lid that prevents accidental contact is also provided.

[0060] like Figure 9 As shown, the third embodiment differs from the second embodiment in that: the movable component 2 is configured as a suction nozzle structure, arranged above the outlet channel 12. This movable component 2, i.e., the suction nozzle structure in this embodiment, is designed to selectively close the outlet channel 12 and can move between the closed position A1 of closing the outlet channel 12 and the open position A2 of opening the outlet channel 12. The movable component 2, i.e., the suction nozzle structure in this embodiment, is movably connected to the cover body 1. When the movable component 2, i.e., the suction nozzle structure in this embodiment, is in the closed position, the outer surface of the cover body 1 and the outer surface of the movable component 2, i.e., the suction nozzle structure in this embodiment, surround each other to form a safety surface. The locking member 4 is arranged inside the safety surface, and pressing any position of the safety surface will not trigger the locking member 4 to move. That is to say, when the movable component 2, i.e., the suction nozzle structure in this embodiment, is in the closed position, pressing any position of the outer surface of the cover body 1 or any position of the outer surface of the movable component 2, i.e., the suction nozzle structure in this embodiment, will not trigger the locking member 4 to move.

[0061] like Figure 11 As shown, the second difference between the third embodiment and the second embodiment is that: a positioning channel 313 is provided through the drive shaft 31 and the lifting ring body 32 along the rotation axis L1 of the lifting ring. A positioning shaft 5 is detachably connected in the positioning channel 313. The positioning shaft 5 is used to improve the stability of the connection between the lifting ring 3 and the cover body 1 and to prevent the drive shaft 31 from being disconnected from the cover body 1.

[0062] like Figure 9 , Figure 10As shown, the third difference between the third embodiment and the second embodiment is that: the receiving groove 13 is correspondingly arranged with the movable component 2, i.e., the suction nozzle structure in this embodiment; the rear side wall of the receiving groove 13 is set as a rear baffle 131; and the left and right side walls of the receiving groove 13 are respectively set as side baffles 132. The locking member 4 is arranged on the rear side of the rear baffle 131, and a locking channel 134 corresponding to the locking part 104 is provided through the rear baffle 131. The locking part 104 is telescopically arranged in the locking channel 134. The movable component 2, i.e., the suction nozzle structure in this embodiment, includes a rotating wheel part 21 and a suction nozzle part 22 connected to the rotating wheel part 21. The suction nozzle structure is provided with a drinking channel 23 that passes through the rotating wheel part 21 and the suction nozzle part 22. The rotating wheel part 21 is rotatably connected to the front of the cover body 1. The movable component 2, i.e., the spout structure in this embodiment, also includes rotating shafts 211 protruding from both sides of the rotating wheel 21 along the rotation axis L2 of the movable component, i.e., the rotation axis of the spout structure in this embodiment. The two rotating shafts 211 extend into the rotating shaft holes on the side baffles 132 and are rotatably connected to the cover body 1. When the spout structure is in the closed position A1, the spout structure is housed in the receiving groove 13, and the spout part 22 is arranged facing the rear of the cover body 1. The outlet channel 12 is closed by the outer wall of the rotating wheel 21. At this time, the liquid holding medium in the cup's receiving cavity cannot be discharged to the outside through the outlet channel 12. The locking part 103 is set as the spout opening 231 at the free end of the drinking channel 23. When the locking member 4 is in the locked state B1, the spout structure can be held in the closed position A1 by the locking part 204 extending into the spout opening 231. When the active component 2, i.e., the spout structure in this embodiment, is in the open position A2, the locking part 2 104 separates from the spout opening 231, and the drinking channel 23 can connect with the outlet channel 12. At this time, the liquid container in the cup's receiving cavity can be discharged to the outside through the outlet channel 12 and the drinking channel 23. In this embodiment, the spout opening 231 serves as both part of the drinking channel 23 and as the locking part 1 103, resulting in a simple and ingenious structural design. In other embodiments, the spout structure can also be movably connected to the lid body using a soft straw or other structures, and the locking part 1 can also be a separate structure located on the outer wall of the spout or the rotating wheel, or in other parts.

[0063] like Figure 10 As shown, the fourth difference between the third embodiment and the second embodiment is that the second buckle 112 is disposed on the outside of the cover body 1, corresponding to the first buckle 321.

[0064] Fourth embodiment: like Figure 13 As shown, as a fourth embodiment of this utility model, a handle cup lid that prevents accidental contact is also provided.

[0065] The fourth embodiment differs from the third embodiment in that: when the locking member 4 is in the locked state B1, the trigger part 102 is arranged behind the handle ring rotation axis L1, and the second reset member 7 is arranged along the vertical direction of the handle ring rotation axis L1. When the handle ring 3 is in the driving position Y3, the trigger part 102 can move downwards along the handle ring rotation axis L1 under the pushing force of the driving part 101, so as to drive the locking member 4 to rotate downwards from the locked state B1 to the unlocked state B2, and the second reset member 7 is deformed and shortened by the downward compression of the locking member 4; after the handle ring 3 is released, the second reset member 7 is released and can deform and extend upwards under its elastic force, so as to push the locking member 4 to rotate upwards and reset from the unlocked state B2 to the locked state B1.

[0066] In this embodiment, when the trigger part 102 moves downward toward the handle ring rotation axis L1, it drives the second locking part 104 to rotate toward the rear of the cover body 1 until it separates from the first locking part 103. The locking body rotation axis L3 is arranged in front of and below the handle ring rotation axis L1, and the trigger part 102 is arranged behind the locking body rotation axis L3. When the drive part 101 rotates around the locking body rotation axis L3 in the first rotation direction M, it pushes the trigger part 102 to move downward, thereby driving the second locking part 104 on the locking member 4 to rotate rearward around the locking body rotation axis L3, so that the second locking part 104 disengages from the first locking part 103.

[0067] Fifth embodiment: like Figure 14 As shown, as the fifth embodiment of this utility model, a handle cup lid that prevents accidental contact is also provided.

[0068] The fifth embodiment differs from the third embodiment in that: when the locking member 4 is in the locked state B1, the trigger part 102 is arranged below the handle ring rotation axis L1, and the second reset member 7 is arranged along the front-rear direction of the handle ring rotation axis L1. When the handle ring 3 is in the driving position Y3, the trigger part 102 can move forward towards the handle ring rotation axis L1 under the pushing force of the driving part 101, so as to drive the locking member 4 to move forward from the locked state B1 to the unlocked state B2, and the second reset member 7 is deformed and shortened by the forward compression of the locking member 4; after the handle ring 3 is released, the second reset member 7 is released and can deform and extend backward under its elastic force, so as to push the locking member 4 to move backward from the unlocked state B2 back to the locked state B1. In this embodiment, when the trigger part 102 moves forward towards the handle ring rotation axis L1, it drives the second locking part 104 to move forward towards the cover body 1 until it separates from the first locking part 103.

[0069] The second difference between the fifth embodiment and the third embodiment is that: the locking part 103 is located on the side of the movable component 2, i.e., the suction structure in this embodiment; the locking part 103 is set as a locking buckle 221 on the side of the movable component 2, i.e., the suction structure in this embodiment. When the locking member 4 is in the locked state B1, the movable component 2, i.e., the suction structure in this embodiment, can be held in the closed position A1 by the locking part 104 and the locking buckle 221 engaging with each other. When the movable component 2, i.e., the suction structure in this embodiment, is in the open position A2, the locking part 104 separates from the locking buckle 221, and the drinking channel 23 can be connected to the outlet channel 12. At this time, the liquid container in the receiving cavity can be discharged to the outside through the outlet channel 12 and the drinking channel 23. The locking channel 134 is located on the side partition 132.

[0070] The fifth embodiment differs from the third embodiment in that: a positioning channel 313 is provided through the drive shaft 31 and the lifting ring body 32 along the rotation axis L1 of the lifting ring. The two ends of the lifting ring are connected by a positioning shaft 5 connected within the two positioning channels 313. The positioning shaft 5 includes a shaft part 52, a limiting head 53 connected to the outer end of the shaft part 52, a shaft part 54, and a limiting head 55 connected to the outer end of the shaft part 54. The inner ends of the shaft part 52 and the shaft part 54 are connected to each other. The connection can be fixed by welding or by threaded connection or other detachable connection. After connection, the limiting head 53 and the limiting head 55 are respectively limited to the outer walls of the two ends of the lifting ring body 32 to prevent the lifting ring 3 from detaching from the cover body 1.

[0071] As another embodiment of this utility model, a handle cup lid that prevents accidental contact is also provided. The main difference between this embodiment and the first, second, third, fourth and fifth embodiments is that when the locking member 4 is in the locked state B1, the trigger part 102 is arranged in front of the handle ring rotation axis L1. When the handle ring 3 is in the driving position Y3, the trigger part 102 can move upward towards the handle ring rotation axis L1 under the pushing force of the driving part 101, so as to drive the locking member 4 from the locked state B1 to the unlocked state B2. For example, the second reset member 7 is arranged in the vertical direction along the rotation axis L1 of the handle ring. When the handle ring 3 is in the driving position Y3, the trigger part 102 can move upward toward the rotation axis L1 of the handle ring under the pushing force of the driving part 101, so as to drive the locking member 4 to rotate upward from the locked state B1 to the unlocked state B2. The second reset member 7 is deformed and shortened by the upward compression of the locking member 4. When the trigger part 102 moves upward toward the rotation axis L1 of the handle ring, the second locking part 104 is driven to rotate downward toward the cover body 1 until it is separated from the first locking part 103. After the handle ring 3 is released, the second reset member 7 is released and can deform and extend downward under its elastic force, so as to push the locking member 4 to rotate downward from the unlocked state B2 to reset to the locked state B1.

[0072] In other embodiments, the first reset member 6 may also be configured as a rubber band, tension spring, compression spring, elastic silicone or other elastic member capable of providing reset force, and the second reset member 7 may also be replaced by elastic silicone or other elastic member with reset function.

[0073] Sixth embodiment: like Figure 15 As shown, in the sixth embodiment of this utility model, a handle cup is also provided, including a cup body 9 with a receiving cavity and a handle cup lid connected to the cup body 9 as described in the first embodiment above. Because this embodiment of the handle cup is equipped with the handle cup lid provided by this utility model, it can also prevent external objects from pressing and triggering the locking mechanism, greatly improving safety during carrying. Furthermore, the movable component 2 can be unlocked by rotating the handle ring 3, making operation easier and less strenuous. In other embodiments, the handle unlocking cup lid can also be configured as the handle cup lid described in other embodiments above.

[0074] In summary, the above description is only a preferred embodiment of the present utility model. All equivalent changes and modifications made within the scope of the patent application of the present utility model shall fall within the scope of the patent of the present utility model.

Claims

1. A mistake touch prevention handle cup cover, characterized in that, include: The lid body can be connected to the cup body and has an outlet channel that can communicate with the receiving cavity inside the cup body. An active component, movably connected to the cover body and configured to selectively close the outlet channel, is movable between a closed position where the outlet channel is closed and an open position where the outlet channel is not closed; A locking element is movably connected to the cover body or the movable component and configured to selectively hold the movable component in the closed position; The locking element is movable relative to the cover body or the movable component between a locked state and an unlocked state, and in the locked state, the locking element is able to hold the movable component in the closed position. A handle ring is rotatably connected to the cover body, and the handle ring can be rotated to switch from a first state that keeps the locking member in a locked state to a second state that releases the locking member; When the movable component is in the closed position, the outer surface of the cover body and the outer surface of the movable component form a safety surface. The locking element is arranged inside the safety surface, and pressing any position of the safety surface will not trigger the locking element to move.

2. The handle cup lid of claim 1, wherein: The locking element includes a trigger portion, and the handle ring includes a driving portion arranged corresponding to the trigger portion. When the handle ring is in the driving position, it is in a first state. When the handle ring is in the driving position, the driving portion can abut against the trigger portion and can rotate with the handle ring along a first rotation direction, applying a pushing force arranged along the first rotation direction or along the tangential direction of the first rotation direction to the trigger portion, so as to trigger the locking element to move from the locked state to the unlocked state. Both the trigger portion and the driving portion are located inside the safety surface.

3. The handle cup lid of claim 2, wherein: The handle ring is in a first state when it rotates from the storage position to the driving position along the first rotation direction. The storage position is the position where the handle ring is stored outside the lid body or the movable component. There is also a carrying position between the storage position and the driving position. The carrying position is the position where the handle is raised to lift the cup. The locking mechanism is not triggered when the handle ring rotates along the first rotation direction or along the second rotation direction opposite to the first rotation direction between the storage position and the driving position.

4. The handle cup lid of claim 3, wherein: A storage seat is arranged on the outside of the cover body or movable component. The storage seat is configured to prevent the handle ring from crossing the storage seat and rotating relative to the cover body in a second rotation direction. The outer surface of the storage seat is set as a partial structure of a safety surface.

5. The handle cup lid according to claim 4, characterized in that: The handle also includes a lifting ring portion, which is constructed as a non-closed ring structure. Both ends of the lifting ring portion are rotatably connected to the cover body along the rotation axis of the handle. The driving part is connected to the end of the lifting ring portion and can rotate around the rotation axis of the handle as the lifting ring portion rotates. When the handle is in the storage position, at least a portion of the handle rests on the storage base. When the handle is in the carrying position, the side of the handle that is away from the axis of rotation of the handle is arranged at intervals above the storage base. When the handle is in the driving position, the side of the handle part away from the rotation axis of the handle is arranged at intervals on the side of the storage base, and the driving part abuts against the trigger part and can rotate with the handle part along the first rotation direction, and push the trigger part to move along the tangential direction of the first rotation direction, so as to drive the locking member to move from the locked state to the unlocked state.

6. The handle-handled cup lid according to claim 5, characterized in that, The lifting ring portion includes: The main body of the lifting ring is constructed into a non-closed ring structure; Two drive shafts are respectively connected to both ends of the lifting ring body and are arranged coaxially with the rotation axis of the lifting ring. The two drive shafts are rotatably connected to both sides of the cover body. The drive unit is provided in two parts, and the two drive units are respectively protruding from the ends or sides of the two drive shafts. The locking member is provided with two trigger parts corresponding to the two drive units. When the handle ring is in the driving position, the two driving parts abut against the corresponding trigger parts and can rotate along the first rotation direction with the two driving shafts. They synchronously push the corresponding trigger parts to move along the tangential direction of the first rotation direction, so as to jointly drive the locking member to move from the locked state to the unlocked state.

7. The handle cup lid according to claim 6, characterized in that: The storage base is arranged on the front side of the handle ring rotation axis, and the cover body includes two connecting seats arranged on the rear side of the storage base. The two connecting seats are arranged at intervals along the handle ring rotation axis and form an interval area between the two connecting seats. The trigger part is arranged in the interval area. The two drive shafts are respectively configured as convex shaft structures formed by the inner sidewalls protruding from the two ends of the self-lifting ring body. The two connecting seats are respectively provided with shaft channels one corresponding to the drive shafts along the rotation axis of the handle ring. The two drive shafts extend into the shaft channels one and are rotatably connected to the two connecting seats. After connection, the drive part is arranged in the interval area.

8. The handle cup lid according to claim 7, characterized in that: The locking element is disposed within the cover body, the cover body includes a cover base and a cover element mounted on the cover base for covering the locking element, the connecting seat is configured as a partial structure of the cover base or the cover element, or the connecting seat is configured as a partial structure of the cover base and the cover element, and the outer surface of the cover element is configured as a partial structure of the safety surface.

9. The handle cup lid according to any one of claims 5-8, characterized in that: When the locking element is in the locked state The triggering part is arranged above the rotation axis of the handle ring. Under the pushing force of the driving part, the triggering part can move behind the rotation axis of the handle ring to drive the locking member from the locked state to the unlocked state; or, The triggering part is arranged below the rotation axis of the handle ring. Under the pushing force of the driving part, the triggering part can move forward towards the rotation axis of the handle ring, thereby moving the locking member from the locked state to the unlocked state; or, The triggering part is arranged behind the rotation axis of the handle ring. Under the pushing force of the driving part, the triggering part can move downwards along the rotation axis of the handle ring, thereby moving the locking member from the locked state to the unlocked state; or, The trigger part is arranged in front of the rotation axis of the handle ring. The trigger part can move upward towards the rotation axis of the handle ring under the pushing force of the drive part, so as to drive the locking member from the locked state to the unlocked state.

10. A cup with a handle, characterized in that: It includes a cup body having a receiving cavity and a handle cup lid as described in any one of claims 1-9 attached to the cup body.