Vacuum heat insulation cup with anti-scald flow guide opening structure
By introducing anti-splash and limiting components into the vacuum insulated thermos, the problems of difficult water flow speed control and splashing in the traditional thermos spout design are solved, achieving stable pouring and safe use.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-06
- Publication Date
- 2026-04-10
AI Technical Summary
The traditional insulated cup spout design makes it difficult to control the water flow speed when pouring, which can easily lead to splashing, dirtying the table or scalding the user.
It employs anti-splash components, including collars, slide rails, sliding blocks, connectors, and baffles. The water flow trajectory is controlled by a drive component, and combined with a limiting component and a fixing component, it ensures stable water flow and prevents splashing.
It effectively controls water flow speed and trajectory, avoids splashing, and improves user safety and cleanliness.
Smart Images

Figure CN224099119U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a vacuum heat -preserving cup technical field, concretely is a vacuum heat -preserving cup of anti -scalding flow guide mouth structure. BACKGROUND
[0002] With the demand of people to portable drink container safety and heat preservation performance promotion, vacuum heat -preserving cup becomes market mainstream.
[0003] Although the traditional vacuum cup realizes heat preservation through double -layer vacuum structure, but the flow guide mouth design generally exists the defect: when directly pouring, the water flow speed is difficult to control, and the water flow is easy to splash because of the cup body inclination angle, hand shaking or liquid impact, causes to soil the table, clothes or bag contents, even high temperature liquid is easy to splash and causes scalding user, therefore we propose a vacuum heat -preserving cup of anti -scalding flow guide mouth structure. UTILITY MODEL CONTENTS
[0004] The utility model is to provide a vacuum heat -preserving cup of anti -scalding flow guide mouth structure to solve the problem in the background art.
[0005] In order to achieve the above object, the utility model provides the following technical scheme: a vacuum heat -preserving cup of anti -scalding flow guide mouth structure, including cup body, the flow guide nozzle of cup body top arrangement and the cup cover of flow guide nozzle top arrangement, still including:
[0006] The splash -proof assembly includes a sleeve ring that is sleeved on the cup body, a sliding rail is arranged on the sleeve ring, a sliding block is slidably connected in the sliding rail, a connecting piece is connected to the sliding block, and a baffle is connected to the connecting piece.
[0007] The limiting assembly includes a first rotating shaft that is rotatably connected to the sliding rail, a torsion spring is rotatably connected to the first rotating shaft, a limiting plate is rotatably connected to the torsion spring, a clamping groove is formed in the limiting plate, and a plug-in plate is inserted into the clamping groove.
[0008] Further, one side of the sliding rail close to the plug-in plate is provided with a driving assembly, the driving assembly includes a supporting plate, a rotating rod is rotatably connected to the supporting plate, a rocker is connected to the bottom of the rotating rod, and the rotating rod is connected with the plug-in plate.
[0009] The above technical scheme is adopted: the driving assembly is arranged to drive the plug-in plate to rotate, so that the recess on the plug-in plate is separated from the clamping groove on the limiting plate.
[0010] Further, one side of the sleeve ring close to the sliding rail is provided with a fixing assembly, the fixing assembly includes a fixing seat, a limiting rod is connected to the fixing seat, and the limiting rod is connected with the sliding rail.
[0011] The technical scheme is as follows: the fixing assembly is arranged to fix the sliding rail on the sleeve.
[0012] Further, the cup body is provided with a portable assembly, the portable assembly comprises a connecting buckle, and a hanging rope is connected to the connecting buckle.
[0013] The technical scheme is as follows: the portable assembly is arranged to facilitate the user to carry the vacuum cup.
[0014] Further, the cup cover is provided with a sealing cover consistent in size with the flow guide nozzle, and a second rotating shaft is rotatably connected between the cup cover and the cup body.
[0015] The technical scheme is as follows: the second rotating shaft is arranged to facilitate the user to open the cup cover, and the sealing cover is arranged to seal the flow guide nozzle and prevent heat from being dissipated.
[0016] Further, the cup body is internally provided with a heat preservation layer.
[0017] The technical scheme is as follows: the heat preservation layer is arranged to preserve the water in the vacuum cup.
[0018] Compared with the prior art, the advantages and positive effects of the utility model are as follows:
[0019] In the utility model, the splash-proof assembly is arranged to control the flow rate and trajectory during pouring, avoid splashing caused by water flow impact or cup body shaking, and solve the problem that the traditional vacuum cup can be preserved through a double-layer vacuum structure, but the flow guide opening is generally defective: the water flow rate is difficult to control during direct pouring, and the water flow is easy to splash due to the cup body inclination angle, hand shaking or liquid impact, which causes the table, clothes or bag contents to be dirty, and even the high-temperature liquid is easy to splash, which causes the user to be scalded. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is a front view of a vacuum heat-insulated vacuum cup with a splash-proof flow guide opening structure.
[0021] Figure 2 It is a side view of a vacuum heat-insulated vacuum cup with a splash-proof flow guide opening structure.
[0022] Figure 3 It is an exploded view of a vacuum heat-insulated vacuum cup with a splash-proof flow guide opening structure.
[0023] Figure 4 It is Figure 3 It is an enlarged view of A in the middle.
[0024] Figure 5 It is an internal structure diagram of a vacuum heat-insulated vacuum cup with a splash-proof flow guide opening structure.
[0025] Reference numerals in the drawings:
[0026] 1, cup body; 2, cup cover; 3, flow guide nozzle;
[0027] 4, splash-proof assembly; 41, collar; 42, sliding rail; 43, sliding block; 44, connecting piece; 45, baffle;
[0028] 5, thermal insulation layer;
[0029] 6, limiting assembly; 61, first rotating shaft; 62, torsion spring; 63, limiting plate; 64, plug; 65, clamping groove;
[0030] 7, drive assembly; 71, support plate; 72, rotating rod; 73, rocker;
[0031] 8, fixing assembly; 81, fixing seat; 82, limiting rod;
[0032] 9, portable assembly; 91, connecting buckle; 92, hanging rope;
[0033] 10, second rotating shaft. DETAILED DESCRIPTION
[0034] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0035] As shown in Figures 1-4 The present application provides a technical solution: a vacuum heat-insulated vacuum cup with an anti-scalding flow guide structure, comprising a cup body 1, a flow guide nozzle 3 arranged on the top of the cup body 1, and a cup cover 2 arranged on the top of the flow guide nozzle 3, further comprising:
[0036] A splash-proof assembly 4, the splash-proof assembly 4 comprises a collar 41 arranged on the cup body 1, the collar 41 is provided with a sliding rail 42, the sliding rail 42 is slidably connected with a sliding block 43, the sliding block 43 is connected with a connecting piece 44, and the connecting piece 44 is connected with a baffle 45;
[0037] A limiting assembly 6, the limiting assembly 6 comprises a first rotating shaft 61 rotatably connected with the sliding rail 42, the first rotating shaft 61 is rotatably connected with a torsion spring 62, the torsion spring 62 is rotatably connected with a limiting plate 63, the limiting plate 63 is provided with a clamping groove 65, and a plug 64 is inserted into the clamping groove 65, and the plug 64 is provided with a recess;
[0038] The one side of the slide rail 42 close to the plug plate 64 is provided with a driving assembly 7, the driving assembly 7 includes a support plate 71, the support plate 71 is rotatably connected with a rotating rod 72, the bottom of the rotating rod 72 is connected with a rocker 73, the rotating rod 72 is connected with the plug plate 64;
[0039] Specifically, when the user needs to pour water, the sliding block 43 is slid upward in the slide rail 42, the connecting piece 44 and the baffle 45 are driven to rise during the sliding process until the baffle 45 is raised to the two sides of the flow guide nozzle 3, then the limiting plate 63 is rotated to be attached to the surface of the slide rail 42 through the torsion spring 62, then the plug plate 64 is inserted into the clamping groove 65 formed in the limiting plate 63, then the recess formed in the plug plate 64 is clamped and limited with the clamping groove 65, when the pouring of water is finished, the rocker 73 is shaken to drive the rotating rod 72 to rotate on the support plate 71, the plug plate 64 is rotated to separate the recess therefrom from the clamping groove 65, and then the limiting plate 63 is bounced back to the original position.
[0040] Further, as shown in Figure 2 and Figure 5 : the cup cover 2 is provided with a sealing cover consistent with the size of the flow guide nozzle 3, the second rotating shaft 10 is rotatably connected between the cup cover 2 and the cup body 1, the cup body 1 is internally provided with a heat preservation layer 5, the cup cover 2 is rotated through the second rotating shaft 10 to expose the inside of the cup body 1, and then water can be drunk;
[0041] In the above scheme, the slide rail 42 cannot be connected and limited with the cup body 1, as shown in Figure 3 : the one side of the sleeve ring 41 close to the slide rail 42 is provided with a fixing assembly 8, the fixing assembly 8 includes a fixing seat 81, the fixing seat 81 is connected with a limiting rod 82, the limiting rod 82 is connected with the slide rail 42, and the fixing assembly 8 is used for fixing the slide rail 42 on the sleeve ring 41;
[0042] In the above scheme, when the user is exercising, it is inconvenient to carry the thermos cup, as shown in Figure 2 : the cup body 1 is provided with a portable assembly 9, the portable assembly 9 includes a connecting buckle 91, the connecting buckle 91 is connected with a hanging rope 92, and in the process of exercising, the hanging rope 92 is only needed to be hung on the wrist or arm to conveniently carry the thermos cup;
[0043] The working principle of the utility model provides: as shown in Figures 1-5As shown: when the user needs to pour water, rotate the cup cover 2 through the second rotating shaft 10 to expose the inside of the cup body 1, then slide the sliding block 43 upwards in the slide rail 42, and drive the connecting piece 44 and the baffle 45 to rise during the sliding process until the baffle 45 is raised to the two sides of the flow guide nozzle 3, then rotate the limiting plate 63 through the torsion spring 62 to be attached to the surface of the slide rail 42, then insert the plug plate 64 into the clamping groove 65 opened on the limiting plate 63, then the recess opened on the plug plate 64 will be clamped and limited with the clamping groove 65, when the pouring is finished, shake the rocker 73 to drive the rotating rod 72 to rotate on the supporting plate 71, the rotating rod 72 drives the plug plate 64 to rotate to separate the recess on the plug plate 64 from the clamping groove 65, and then the limiting plate 63 can be bounced back to the original position, and during the movement process, only the hanging rope 92 needs to be hung on the wrist or arm to facilitate carrying, and the heat preservation layer 5 in the thermos cup can heat the water inside.
[0044] The above is only the preferred embodiment of the present application, and does not limit the present application in any form. Although the preferred embodiment of the present application has been disclosed above, it is not intended to limit the present application. Any skilled person in the art can make some changes or modifications to the above-mentioned technical content without departing from the technical solution of the present application, and equivalent embodiments with equivalent changes can be obtained. The implementation schemes in the above embodiments can be further combined or replaced. Any simple modification, equivalent change and modification of the above embodiments according to the technical essence of the present application still belong to the scope of the present application.
Claims
1. A vacuum heat-insulated vacuum cup with an anti-scalding and flow-guiding structure, comprising a cup body (1), a flow-guiding nozzle (3) arranged on the top of the cup body (1), and a cup cover (2) arranged on the top of the flow-guiding nozzle (3), characterized in that, Also include: The splash-proof assembly (4) includes a sleeve (41) sleeved on the cup body (1), a sliding rail (42) is arranged on the sleeve (41), a sliding block (43) is slidably connected in the sliding rail (42), a connecting piece (44) is connected on the sliding block (43), and a baffle (45) is connected on the connecting piece (44); The limiting assembly (6) includes a first rotating shaft (61) rotatably connected on the sliding rail (42), a torsion spring (62) rotatably connected on the first rotating shaft (61), and a limiting plate (63) rotatably connected on the torsion spring (62), a clamping groove (65) is formed on the limiting plate (63), and an insertion plate (64) is inserted in the clamping groove (65), and a recess is formed on the insertion plate (64).
2. The vacuum insulated cup with anti-scalding and flow guiding structure according to claim 1, characterized in that: The sliding rail (42) is provided with a driving assembly (7) on one side close to the insertion plate (64), the driving assembly (7) includes a support plate (71), a rotating rod (72) rotatably connected on the support plate (71), a rocker (73) connected at the bottom of the rotating rod (72), and the rotating rod (72) is connected with the insertion plate (64).
3. The vacuum insulated cup with anti-scalding and flow guiding structure according to claim 1, characterized in that: The sleeve (41) is provided with a fixing assembly (8) on one side close to the sliding rail (42), the fixing assembly (8) includes a fixing seat (81), a limiting rod (82) connected on the fixing seat (81), and the limiting rod (82) is connected with the sliding rail (42).
4. The vacuum insulated cup with anti-scalding and flow guiding structure according to claim 1, characterized in that: The cup body (1) is provided with a portable assembly (9), the portable assembly (9) includes a connecting buckle (91), and the connecting buckle (91) is connected with a hanging rope (92).
5. The vacuum insulated cup with anti-scalding and flow guiding structure according to claim 1, characterized in that: The cup cover (2) is provided with a sealing cover with the same size as the flow guide nozzle (3), and the cup cover (2) and the cup body (1) are rotatably connected with a second rotating shaft (10).
6. The vacuum insulated cup with anti-scalding and flow guiding structure according to claim 1, characterized in that: The cup body (1) is provided with a heat preservation layer (5) inside.