CN211657885U - Dual-purpose cup for heating and warming - Google Patents
Dual-purpose cup for heating and warming Download PDFInfo
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- CN211657885U CN211657885U CN201922058887.0U CN201922058887U CN211657885U CN 211657885 U CN211657885 U CN 211657885U CN 201922058887 U CN201922058887 U CN 201922058887U CN 211657885 U CN211657885 U CN 211657885U
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- cooling
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- chamber
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Abstract
The utility model discloses a dual-purpose cup for heating and warming, which relates to the field of vacuum cups and comprises a cup cover, a cooling body and a vacuum cup bottle body; the cup cover is in threaded connection with the cooling body to form a cooling chamber, and the cooling body is in threaded connection with the vacuum cup body to form a heat preservation chamber; the valve seat with the fixed supporting sleeve is fixed at the bottom of the cooling body, a liquid flow channel from the heat preservation chamber to the cooling chamber is formed, the steel ball valve is arranged in the fixed supporting sleeve and is propped against the upper end of the valve seat, a flow channel connected with the liquid flow channel is arranged in the fixed supporting sleeve, the steel ball valve moves up and down along the fixed supporting sleeve under the action of self gravity, the opening and closing of the liquid flow channel are controlled, liquid in the heat preservation chamber is transferred to the cooling chamber through the liquid flow channel and the flow channel, and the cooling is performed through a plurality of heat dissipation ribs uniformly distributed on the periphery of the cooling body. The utility model discloses to cool down and two major functions integration in an organic whole that keep warm, effectively solve the problem that the thermos cup interior water temperature is too high and can not drink at once, improve the condition that the user sight was blockked when drinking water.
Description
Technical Field
The utility model relates to a field of thermos cup, concretely relates to dual-purpose cup of heat temperature.
Background
The thermos cup is a common drinking water device in daily life, and particularly in winter, due to cold weather, the body temperature can be maintained and cold can be effectively prevented when hot water is properly drunk. With the increasing living standard of people, new requirements are put forward for the functions of the vacuum cup. When the original vacuum thermos cup is just filled with boiled water, the user can not drink the vacuum thermos cup at once when the temperature of the vacuum thermos cup is very high, and the user experience is reduced due to the long waiting cooling process. The accelerated cooling process can be realized only by opening the cup cover or pouring boiled water into another container for cooling, the modes are inconvenient to use, and the vacuum cup loses the heat preservation effect. In addition, when a user drinks water, the user usually needs to raise the head and lean backwards to drink the water in the cup, so that the sight line is blocked, and the cup is inconvenient.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to overcome the not enough of prior art existence, and provide a dual-purpose cup of heat temperature, have heat, dual-purpose advantage of temperature to cup performance is perfect, easy operation, convenient to carry, has effectively solved the problem that the thermos cup interior water temperature is too high and can not drink at once, improves the condition that the user sight was blockked when drinking water simultaneously.
The purpose of the utility model is accomplished through following technical scheme: the dual-purpose cup for heating and warming mainly comprises a cup cover, a cooling body and a thermos cup body; the cup cover is in threaded connection with the cooling body, the cup cover and the cooling body are sealed through a sealing ring B to form a cooling chamber, the cooling body is in threaded connection with the vacuum cup bottle body, and the cup cover and the cooling body are sealed through a sealing ring A to form a heat preservation chamber; the valve seat with the fixed supporting sleeve is fixed at the bottom of the cooling body to form a liquid flow channel from the heat preservation chamber to the cooling chamber, the steel ball valve is arranged in the fixed supporting sleeve and is propped against the upper end of the valve seat, a flow channel connected with the liquid flow channel is arranged in the fixed supporting sleeve, and the steel ball valve moves up and down along the fixed supporting sleeve under the action of the gravity of the steel ball valve to realize the control of the opening and closing of the liquid flow channel, so that the liquid in the heat preservation chamber is transferred to the cooling chamber through the liquid flow channel and the flow channel and is cooled through a plurality of radiating ribs uniformly distributed on the; set up pipe A in the greenhouse, set up pipe B in the cooling room, two pipes all with cooling body fixed connection and intercommunication, form airflow channel A and airflow channel B for the atmospheric pressure in balanced cooling room and the heat preservation room.
Further, the bowl cover includes body, sealing washer, upper cover and drink mouth sealing washer, the upper cover is fixed on the body through the hollow pin of taking the torsional spring to can be around the upset of hollow pin bounce under the effect of torsional spring, the button that the lower extreme is connected with the pressure spring is connected to in the pinhole of body through the cylindric lock.
Further, sliding connection has the hasp on the upper cover, and the hasp lower extreme supports in the button upper end, and is fixed with the button screens, and the arch of upper cover front end is detained the button upper end, makes the upper cover fixed by the button screens.
Furthermore, a water outlet is formed in the body, and the drinking spout sealing ring is coated on the bottom of the upper cover and props against the water outlet to seal the water outlet.
Furthermore, a vacuum heat-insulating layer consisting of a shell, an inner container and a middle sole is arranged in the vacuum cup bottle body, the heat-insulating chamber is positioned in the inner container, and the steel bottom is pressed at the bottom of the vacuum cup bottle body.
Preferably, the valve seat is formed by pressing a silica gel material, the upper end of the valve seat is provided with a fitting part which is obliquely turned up by 45 degrees, and the steel ball valve is guaranteed to be fitted with the valve seat under the action of self weight, so that a liquid flow channel is sealed.
Preferably, the upper part of the conduit A is provided with a pressure reducing hole for discharging the air pressure generated in the heat preservation chamber to the temperature reduction chamber through the conduit A and the conduit B.
Preferably, the bottom of the conduit A and the top of the conduit B are sleeved with protective sleeves.
Preferably, the upper part of the thermos cup body is provided with a water level line for indicating the water amount filled in the heat preservation chamber.
The utility model has the advantages that: the design of the cooling chamber and the heat preservation chamber integrates the cooling function and the heat preservation function into a whole and can be realized on the same heat preservation cup; the temperature of boiled water in the temperature reduction chamber is maintained while the temperature of boiled water in the temperature reduction chamber is reduced, the two chambers are not influenced mutually, the cooled water can be drunk by directly opening the cup cover, and the required amount of water can be drunk without raising the head and bending backwards, so that the sight line cannot be blocked; the portable multifunctional desk is convenient to carry and simple to operate, and the use experience of a user is greatly improved.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic diagram of the utility model after being inverted.
Fig. 3 is a schematic structural view of the cup lid.
Fig. 4 is a schematic structural view of the thermos cup body.
Fig. 5 is a schematic diagram of the position of the steel ball valve when the liquid flow passage is opened and closed.
Fig. 6 is a structural sectional view of the cooling body.
Fig. 7 is a front view of the cooling body.
Fig. 8 is a top view of fig. 7.
Fig. 9 is a state diagram when the water is filled.
FIG. 10 is a view showing a state in which boiled water flows into the temperature decreasing chamber.
Fig. 11 is a state diagram of the cooling process.
Description of reference numerals: the vacuum insulation cup comprises a cup cover 1, a cooling body 2, a cooling chamber 3, a fixed support sleeve 4, a steel ball valve 5, a valve seat 6, a liquid flow channel 7, a heat preservation chamber 8, a thermos cup bottle body 9, a guide pipe A10, a pressure reduction hole 11, a seal ring A12, a guide pipe B13, a seal ring B14, an upper cover 15, a bulge 15-1, a lock catch 16, a button 17, a cylindrical pin 18, a pressure spring 19, a body 20, a hollow pin 21 with a torsion spring, a drinking spout seal ring 22, a joint part 23, a flow channel 24, an air flow channel A25, an air flow channel B26, a fixed support sleeve lowest position 27, a heat dissipation rib 28, a cooling chamber liquid level highest line 29, a shell 30, an inner container 31, a vacuum insulation layer 32, a middle sole 33, a steel.
Detailed Description
The present invention will be described in detail with reference to the accompanying drawings:
example (b): as shown in attached figure 1, the dual-purpose cup for heating and warming mainly comprises a cup cover 1, a cooling body 2 and a thermos cup body 9; the cup cover 1 is in threaded connection with the cooling body 2, the cooling chamber 3 is formed by sealing the cup cover 1 and the cooling body 2 through a sealing ring B14, the cooling body 2 is in threaded connection with the vacuum cup body 9, and the sealing ring A12 is used for sealing the cooling body and the vacuum cup body to form a heat preservation chamber 8; the valve seat 6 with the fixed supporting sleeve 4 is fixed at the bottom of the cooling body 2 to form a liquid flow channel 7 from the heat preservation chamber 8 to the cooling chamber 3, the steel ball valve 5 is arranged in the fixed supporting sleeve 4 and is propped against the upper end of the valve seat 6, a flow channel 24 connected with the liquid flow channel 7 is arranged in the fixed supporting sleeve 4, and the steel ball valve 5 moves up and down along the fixed supporting sleeve 4 under the action of self gravity to realize the control of opening and closing of the liquid flow channel 7, so that the liquid in the heat preservation chamber 8 is transferred to the cooling chamber 3 through the liquid flow channel 7 and the flow channel 24 and is cooled through a plurality of radiating ribs 28 uniformly distributed at the periphery of the cooling body 2; a conduit A10 is arranged in the heat preservation chamber 8, a conduit B13 is arranged in the cooling chamber 3, and the two conduits 10 and 13 are both fixedly connected and communicated with the cooling body 2 to form an air flow channel A25 and an air flow channel B26 which are used for balancing the air pressure in the cooling chamber 3 and the heat preservation chamber 8; the cup cover 1 comprises a body 20, a sealing ring 14, an upper cover 15 and a drinking nozzle sealing ring 22, wherein the upper cover 15 is fixed on the body 20 through a hollow pin 21 with a torsion spring and can bounce and turn around the hollow pin under the action of the torsion spring, and a button 17 with a lower end connected with a compression spring 19 is connected into a pin hole of the body 20 through a cylindrical pin 18; a water outlet 37 is formed in the body 20, and the drinking spout sealing ring 22 covers the bottom of the upper cover 15 and abuts against the water outlet 37 to seal the water outlet 37; the upper cover 15 is connected with a lock catch 16 in a sliding manner, the lower end of the lock catch 16 abuts against the upper end of the button 17 to clamp and fix the button 17, and a bulge 15-1 at the front end of the upper cover 15 is buckled into the upper end of the button 17 to clamp and fix the upper cover 15 by the button 17; the vacuum insulation cup is characterized in that a vacuum insulation layer 32 consisting of a shell 30, an inner container 31 and a middle sole 33 is arranged in the vacuum cup body 9, the insulation chamber 8 is positioned in the inner container 31, and a steel bottom 34 is pressed at the bottom of the vacuum cup body 9.
As the preferred technical scheme, the valve seat 6 is formed by pressing silica gel materials, the upper end of the valve seat 6 is provided with a joint part 23 which is obliquely turned upwards by 45 degrees, and the steel ball valve 5 is ensured to be jointed with the valve seat 6 under the action of self weight, so that the liquid flow channel 7 is sealed.
Preferably, the upper part of the conduit A10 is provided with a pressure reducing hole 11 for discharging the air pressure generated in the heat preservation chamber 8 to the temperature reduction chamber 3 through the conduit A10 and the conduit B13, and the highest position of the liquid level in the temperature reduction chamber 3 is consistent with the highest line 29 of the liquid level in the temperature reduction chamber.
Preferably, the bottom of the conduit A10 and the top of the conduit B13 are sleeved with protective sleeves 35.
Preferably, a water level line 36 is arranged at the upper part of the thermos bottle body 9 and is used for indicating the water amount filled in the heat preservation chamber 8.
The utility model discloses a theory of operation: when the thermos cup is used, the thermos cup bottle body 9 is filled with boiled water to a water level line 36, the cup cover 1 and the cooling body 2 are screwed, the cooling body 2 and the thermos cup bottle body 9 are screwed (as shown in figure 9), then the whole thermos cup is inverted, the steel ball valve 5 moves downwards along the fixed support sleeve 4 to the lowest position 27 of the fixed support sleeve under the action of the gravity of the steel ball valve, the liquid flow channel 7 is opened, the boiled water is transferred from the heat preservation chamber 8 to the cooling chamber 3 through the liquid flow channel 7 and the flow channel 24 until the cooling chamber 3 is filled with water (as shown in figure 10), and the air pressure difference generated by the two chambers in the boiling water transfer process is balanced by the air flow channel A25 and the air flow channel B35; after the cooling chamber 3 is filled with boiled water, the whole vacuum cup is placed upright, the steel ball valve 5 returns to the position (shown in figure 11) attached to the valve seat 6 under the action of gravity, so that the liquid flow channel 7 is closed, the air pressure generated in the heat preservation chamber 8 is discharged to the cooling chamber 3 through the pressure reduction hole 11 on the guide pipe A10 and the guide pipe B13 at the moment, the air pressure between the two chambers is balanced, the liquid level height in the cooling chamber 3 is consistent with the highest liquid level line 29 of the cooling chamber, the boiled water cannot flow back to the heat preservation chamber 8 from the cooling chamber 3 (namely, the boiled water is respectively arranged in the cooling chamber 3 and the heat preservation chamber 8, the heat preservation is not influenced during the cooling), the temperature is reduced through a plurality of radiating ribs 28 uniformly distributed on the periphery of the cooling body 2, and the water in the cooling chamber;
when the cup cover 1 is in a covering state, the upper cover 15 is buckled into the upper end of the button 17 through the front bulge 15-1 (the position a in figure 3) to be clamped and fixed, and meanwhile, the upper end of the button 17 (the position b in figure 3) is clamped and fixed by the lock catch 16; when the cup cover 1 needs to be opened, the lock catch 16 is firstly pulled upwards to be separated from the position b, the lower end of the button 17 is pressed to be separated from the position a, the upper cover 15 and the drinking spout sealing ring 22 coated at the bottom of the upper cover are upwards turned under the action of the hollow pin 21 with the torsion spring, so that the water outlet 37 is opened, and drinking water can be obtained; as the cooling chamber 3 is filled with boiled water when the boiled water is transferred from the heat preservation chamber 8 to the cooling chamber 3 (the liquid level is consistent with the highest line 29 of the liquid level of the cooling chamber), a user can drink water with required amount without raising the head and tilting backwards during drinking water, and the sight line during drinking water cannot be blocked.
It should be understood that equivalent substitutions or changes to the technical solution and the inventive concept of the present invention should be considered to fall within the scope of the appended claims for the skilled person.
Claims (9)
1. A dual-purpose cup of heat temperature which characterized in that: mainly comprises a cup cover (1), a cooling body (2) and a thermos cup body (9); the cup cover (1) is in threaded connection with the cooling body (2), the cooling chamber (3) is formed by sealing the cup cover and the cooling body through a sealing ring B (14), the cooling body (2) is in threaded connection with the vacuum cup body (9), and the sealing ring A (12) is used for sealing the cooling body and the vacuum cup body to form a heat preservation chamber (8); the valve seat (6) with the fixed support sleeve (4) is fixed at the bottom of the cooling body (2) to form a liquid flow channel (7) from the heat preservation chamber (8) to the cooling chamber (3), the steel ball valve (5) is arranged in the fixed support sleeve (4) and is propped against the upper end of the valve seat (6), a flow channel (24) connected with the liquid flow channel (7) is arranged in the fixed support sleeve (4), and the steel ball valve (5) moves up and down along the fixed support sleeve (4) under the action of self gravity to realize the control of opening and closing of the liquid flow channel (7), so that the liquid in the heat preservation chamber (8) is transferred to the cooling chamber (3) through the liquid flow channel (7) and the flow channel (24), and is cooled through a plurality of radiating ribs (28) uniformly distributed on the periphery of the cooling body (2); a guide pipe A (10) is arranged in the heat preservation chamber (8), a guide pipe B (13) is arranged in the cooling chamber (3), the two guide pipes (10 and 13) are fixedly connected and communicated with the cooling body (2) to form an airflow channel A (25) and an airflow channel B (26) for balancing the air pressure in the cooling chamber (3) and the heat preservation chamber (8).
2. A hot and warm dual-purpose cup according to claim 1, characterized in that: the cup cover (1) comprises a body (20), a sealing ring B (14), an upper cover (15) and a drinking nozzle sealing ring (22), wherein the upper cover (15) is fixed on the body (20) through a hollow pin (21) with a torsion spring and can bounce and overturn around the hollow pin under the action of the torsion spring, and a button (17) with the lower end connected with a pressure spring (19) is connected into a pin hole of the body (20) through a cylindrical pin (18).
3. A hot and warm dual-purpose cup according to claim 2, characterized in that: the upper cover (15) is connected with a lock catch (16) in a sliding mode, the lower end of the lock catch (16) abuts against the upper end of the button (17) to fix the button (17) in a clamping mode, and a bulge (15-1) at the front end of the upper cover (15) is buckled into the upper end of the button (17) to enable the upper cover (15) to be fixed in the clamping mode through the button (17).
4. A hot and warm dual-purpose cup according to claim 2, characterized in that: a water outlet (37) is formed in the body (20), and the drinking spout sealing ring (22) covers the bottom of the upper cover (15) and pushes against the water outlet (37) to seal the water outlet (37).
5. A hot and warm dual-purpose cup according to claim 1, characterized in that: the vacuum heat preservation chamber is characterized in that a vacuum heat preservation layer (32) composed of a shell (30), an inner container (31) and a middle sole (33) is arranged in the vacuum cup body (9), the heat preservation chamber (8) is located in the inner container (31), and a steel bottom (34) is pressed at the bottom of the vacuum cup body (9).
6. A hot and warm dual-purpose cup according to claim 1, characterized in that: valve seat (6) adopt the silica gel material suppression to form, and valve seat (6) upper end sets up laminating portion (23) of 45 upsets in the slant, guarantees that steel ball valve (5) keep laminating with valve seat (6) under the dead weight effect to form sealedly to flow channel (7).
7. A hot and warm dual-purpose cup according to claim 1, characterized in that: the upper part of the conduit A (10) is provided with a pressure reducing hole (11) for discharging the air pressure generated in the heat preservation chamber (8) to the temperature reduction chamber (3) through the conduit A (10) and the conduit B (13).
8. A hot and warm dual-purpose cup according to claim 1, characterized in that: the bottom of the conduit A (10) and the top of the conduit B (13) are sleeved with protective sleeves (35).
9. A hot and warm dual-purpose cup according to claim 1, characterized in that: the upper part of the vacuum cup body (9) is provided with a water level line (36) for indicating the water amount filled in the heat preservation chamber (8).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201922058887.0U CN211657885U (en) | 2019-11-25 | 2019-11-25 | Dual-purpose cup for heating and warming |
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CN201922058887.0U CN211657885U (en) | 2019-11-25 | 2019-11-25 | Dual-purpose cup for heating and warming |
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CN211657885U true CN211657885U (en) | 2020-10-13 |
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CN201922058887.0U Active CN211657885U (en) | 2019-11-25 | 2019-11-25 | Dual-purpose cup for heating and warming |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112401608A (en) * | 2020-11-30 | 2021-02-26 | 湖北众堃科技股份有限公司 | Intelligent cup with safety base |
-
2019
- 2019-11-25 CN CN201922058887.0U patent/CN211657885U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112401608A (en) * | 2020-11-30 | 2021-02-26 | 湖北众堃科技股份有限公司 | Intelligent cup with safety base |
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