CN214525402U - Manually operated temperature adjustable liquid supply device - Google Patents

Manually operated temperature adjustable liquid supply device Download PDF

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Publication number
CN214525402U
CN214525402U CN202120434235.7U CN202120434235U CN214525402U CN 214525402 U CN214525402 U CN 214525402U CN 202120434235 U CN202120434235 U CN 202120434235U CN 214525402 U CN214525402 U CN 214525402U
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China
Prior art keywords
base
assembly
valve rod
container
subassembly
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CN202120434235.7U
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Chinese (zh)
Inventor
邓玉佳
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Ningbo Beilun Hengyong Mould Co ltd
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Ningbo Beilun Hengyong Mould Co ltd
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Abstract

The utility model discloses a manually operation can adjust temperature supply device, supply the liquid device include the base, can dismantle connect in the container subassembly of base, install in at least one case subassembly and rotatable coupling of container subassembly in the base and with case subassembly assorted switch module. The valve core assembly comprises a valve rod, a connecting valve rod and an elastic resetting piece, the valve rod is connected with the container assembly in a sliding mode, the elastic resetting piece is connected with the container assembly, a liquid outlet channel is configured on the valve rod, and the switch assembly is located in the extending direction of the valve rod. The container assembly is provided with a liquid storage space, and the valve rod is driven by the switch assembly to communicate the liquid outlet channel with the liquid storage space. The stock solution space of ware subassembly can save liquid such as beer, and liquid can follow the valve rod when the case subassembly is opened and flow into the switch module, then flows out along the switch module, and the circulation is smooth and easy and use is convenient.

Description

Manually operated temperature adjustable liquid supply device
Technical Field
The utility model belongs to the technical field of the confession liquid device technique and specifically relates to a manually operation can adjust temperature supply liquid device.
Background
In outdoor parties or bars and the like where a large amount of beer needs to be served, there are beer serving apparatuses in which a beer barrel containing beer and a switch assembly connected to the beer barrel are provided. The user rotates the switch assembly to deliver beer to the beer mug. However, the beer keg is usually provided with only one switch assembly, and the infusion efficiency is low. In addition, the beer barrel cannot keep warm or cool, which results in poor drinking taste of beer, and thus needs to be improved.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a manually operation can adjust the temperature supply device.
The utility model discloses the technical scheme who adopts: the utility model provides a manually operation can adjust temperature supplies liquid device, include the base, can dismantle connect in the container subassembly of base, install in at least one case subassembly and the rotatable coupling of container subassembly in the base and with case subassembly assorted switch module, the case subassembly include sliding connection in the valve rod of container subassembly, connect the valve rod and the elasticity of container subassembly resets, the valve rod disposes liquid outlet channel, switch module is located the extending direction of valve rod, the container subassembly disposes the stock solution space, the valve rod is in under the switch module drive will liquid outlet channel with the stock solution space intercommunication.
Optionally, the valve element assembly further comprises a sealing ring mounted at one end of the valve rod and an abutting member mounted at the other end of the valve rod, the sealing ring is connected to the container assembly in a sealing manner, the elastic resetting member abuts against the abutting member, and the abutting member abuts against the switch assembly.
Optionally, the valve stem passes out of the abutment and is inserted into the switch assembly.
Optionally, the valve rod includes the body of rod, certainly the convex sealed end of periphery wall of the body of rod, certainly the terminal surface of the body of rod to the blind hole that sealed end direction extended and certainly the lateral wall of the body of rod communicates to at least one drainage hole of blind hole, the sealing washer cover is located the body of rod is injectd in sealed end, sealed end butt in the container subassembly, the butt piece is fixed in the body of rod is kept away from the drainage hole.
Optionally, the container assembly is connected to the base by plugging.
Optionally, the container assembly includes a bottom wall, an upper annular wall and a lower annular wall surrounding the bottom wall, a fastening portion disposed on the lower annular wall, and a guide portion disposed on the bottom wall, the valve core assembly is mounted on the guide portion, the lower annular wall is sleeved on the base, and the base is connected to the fastening portion in a clamping manner.
Optionally, the container assembly further comprises a top cover for closing the opening of the liquid storage space, and the top cover is provided with a storage space.
Optionally, the base includes the chassis, the interval distributes in two and more than the foot portion of chassis and install in the joint subassembly of chassis, the container subassembly install in the chassis, joint subassembly joint connect in the container subassembly.
Optionally, the chassis is provided with installation space, the base still includes the cooling box, the cooling box is located installation space, the container subassembly overlap in the cooling box.
Optionally, the switch assembly includes a conduit slidably connected to the base and a handle rotatably connected to the base, one end of the handle is rotatably connected to the conduit, and the other end of the handle extends obliquely to the base.
After the structure is adopted, compared with the prior art, the utility model the advantage that has is: the container assembly is detachably connected with the base, so that the container assembly can be flexibly replaced, and the use efficiency is improved. The stock solution space of container subassembly can save liquid such as beer, and liquid can follow the valve rod inflow switch subassembly when the case subassembly is opened, then flows out along the switch subassembly, and the circulation is smooth and easy and it is convenient to use. The switch components are arranged in a plurality of ways, so that the liquid supply device can output multiple paths simultaneously, and the output efficiency is improved.
Drawings
The invention will be further described with reference to the following figures and examples:
FIG. 1 is a schematic view of a liquid supply apparatus according to the present invention.
FIG. 2 is a schematic view of the bottom structure of the liquid supply device of the present invention.
Fig. 3 is a schematic structural diagram of the valve core assembly of the present invention.
Fig. 4 is a schematic structural view of the switch assembly of the present invention mounted on the base.
Fig. 5 is a schematic structural diagram of the switch assembly of the present invention.
Fig. 6 is a schematic structural view of the liquid supply device of the present invention with a top cover.
In the figure: a container assembly 10; a bottom wall 11; an upper annular wall 12; a lower annular wall 13; a top cover 14; a valve core assembly 20; a valve stem 21; a rod body 211; a blind hole 212; a drainage hole 213; a sealed end 214; a resilient return member 22; a seal ring 23; an abutment 24; a switch assembly 30; a conduit 31; a connecting shaft 311; a handle 32; a base 40; a chassis 41; a leg portion 42; a clamping assembly 43; a cooling box 44.
Detailed Description
The following description is only a preferred embodiment of the present invention, and does not limit the scope of the present invention.
In an embodiment, as shown in fig. 1 to 4, the present invention discloses a manually operated temperature-adjustable liquid supply device, which comprises a base 40, a container assembly 10 detachably connected to the base 40, at least one valve core assembly 20 installed on the container assembly 10, and a switch assembly 30 rotatably connected to the base 40 and matched with the valve core assembly 20. The valve core assembly 20 comprises a valve rod 21 connected with the container assembly 10 in a sliding mode, and an elastic resetting piece 22 connecting the valve rod 21 and the container assembly 10, wherein the valve rod 21 is provided with a liquid outlet channel. The switch assembly 30 is located in the extending direction of the valve rod 21, the container assembly 10 is configured with a liquid storage space, and the valve rod 21 is driven by the switch assembly 30 to communicate the liquid outlet channel with the liquid storage space.
The container assembly 10 is detachably connected with the base 40, so that the container assembly 10 can be flexibly replaced, and the use efficiency is improved. The switch assemblies 30 correspond to the valve core assemblies 20 one by one, and each switch assembly 30 controls one valve core assembly 20 to form an independent control structure. For example, if three valve core assemblies 20 are provided, the base 40 is provided with three switch assemblies 30 and corresponds to each valve core assembly 20. The switch assemblies 30 are arranged in a plurality, so that the liquid supply device can output multiple paths simultaneously, and the output efficiency is improved.
The liquid storage space of the container assembly 10 can store liquid such as beer, the valve rod 21 is connected to the container assembly 10 in a sliding mode, and in the initial state, the valve rod 21 is connected to the container assembly 10 in an abutting and sealing mode under the elastic force of the elastic resetting piece 22, so that the container assembly 10 is in the sealing state. When the switch assembly 30 overcomes the elastic force of the elastic reset piece 22 to push the valve rod 21 to move, liquid can flow into the switch assembly 30 along the valve rod 21 when the valve core assembly 20 is opened, then flow out along the switch assembly 30, and the flow is smooth and the use is convenient.
The valve core assembly 20 controls the time and the posture of the liquid circulation through the valve rod 21 and the elastic resetting piece 22, wherein the valve rod 21 can realize the connection and the sealing with the container assembly 10 through the structure of the valve rod 21. Optionally, the valve core assembly 20 may further enhance the effectiveness of the seal with the container assembly 10 and the ease of installation by providing other components. The valve core assembly 20 further includes a sealing ring 23 mounted at one end of the valve rod 21 and an abutting member 24 mounted at the other end of the valve rod 21, the sealing ring 23 is connected to the container assembly 10 in a sealing manner, the elastic restoring member 22 abuts against the abutting member 24, and the abutting member 24 abuts against the switch assembly 30. The container assembly 10 is provided with a slide channel to which the valve stem 21 is slidably connected. The sealing ring 23 is sleeved on the valve rod 21 and sealed at the opening or the hole wall of the sliding channel to prevent liquid from leaking along the gap between the sliding channel and the valve rod 21, and the sealing performance is good.
The abutment 24 is fixed to the valve stem 21, and the elastic return 22 is configured as a spring. The elastic restoring member 22 is sleeved on the valve rod 21, one end of the elastic restoring member abuts against the abutting member 24, and the other end of the elastic restoring member abuts against the container assembly 10, so that the valve rod 21 and the container assembly 10 are in a normally closed state. Alternatively, the abutment 24 may be detachably connected to the valve stem 21, e.g., the abutment 24 may be threadedly connected to the valve stem 21; the abutment 24 is in locking connection with the valve stem 21 by a fastener; the abutment 24 is clip-connected to the valve stem 21 or the like. Optionally, the abutment 24 is provided with a positioning groove, in which one end of the resilient return 22 is defined.
Further, the valve rod 21 penetrates through the abutting piece 24 and is inserted into the switch assembly 30, so that the switch assembly 30 and the valve rod 21 are high in matching and positioning accuracy and are tightly combined.
As shown in fig. 1 and 3, optionally, the valve stem 21 includes a stem body 211, a sealing end 214 protruding from an outer peripheral wall of the stem body 211, a blind hole 212 extending from an end surface of the stem body 211 toward the sealing end 214, and at least one drainage hole 213 communicating from a sidewall of the stem body 211 to the blind hole 212, the sealing ring 23 is sleeved on the stem body 211 and is limited at the sealing end 214, the sealing end 214 abuts against the container assembly 10, and the abutting member 24 is fixed on the stem body 211 and is far away from the drainage hole 213. The valve stem 21 is a hollow tube structure, wherein the sealing end 214 is located at the bottom of the blind hole 212 and closes the opening of the sliding channel to form a closed structure. The sealing end 214 is combined with the sealing ring 23 to form an elastic sealing structure, so that the sealing effect is improved.
As shown in fig. 4 and 5, drainage apertures 213 are located at the sidewall of shaft 211, near sealed end 214. When the valve rod 21 is driven by the switch assembly 30 to extend into the liquid storage space, the sealing end 214 is inserted into the liquid storage space and the opening of the drainage hole 213 is located in the liquid storage space, so that the liquid can smoothly flow. The other end of the rod 211 is connected to the switch assembly 30 in a plugging manner, wherein the switch assembly 30 includes a conduit 31 slidably connected to the base 40 and a handle 32 rotatably connected to the base 40. The handle 32 has one end rotatably connected to the guide tube 31 and the other end extending obliquely toward the base 40.
The conduit 31 is configured as a tubular structure, and one end of the rod 211 is inserted into the conduit 31, so that the two are detachably connected and the continuity of liquid circulation can be maintained. Optionally, one end of the conduit 31 is provided with a tapered hole to facilitate insertion of the shaft 211. The handle 32 is pivotally connected to the base 40 to form a lever structure. The conduit 31 is located at one end of the handle 32 so as to slide along the base 40 during rotation and pushing of the handle 32, which in turn pushes the valve stem 21 to move the opening cartridge assembly 20.
The handle 32 is rotatably coupled to the guide tube 31, wherein the outer circumferential wall of the guide tube 31 is provided with a protruding coupling shaft 311. The handle 32 is sleeved on the connecting shaft 311 to drive the connecting shaft 311 to move, so that the connection is convenient. The free end of the handle 32 extends through the base 40 for easy manual manipulation by a user. Optionally, the free end of the handle 32 extends obliquely toward the top side of the container assembly 10.
The container assembly 10 is detachably connected to the base 40, and optionally, the container assembly 10 is connected to the base 40 in an inserting manner, so that the container assembly and the base are convenient to disassemble and assemble. Optionally, the container assembly 10 includes a bottom wall 11, an upper annular wall 12 and a lower annular wall 13 surrounding the bottom wall 11, a snap portion disposed on the lower annular wall 13, and a guide portion disposed on the bottom wall 11, and the valve core assembly 20 is mounted on the guide portion. The lower annular wall 13 is sleeved on the base 40, and the base 40 is connected with the buckling part in a clamping mode. The container assembly 10 is a thin-walled structural member defining a liquid storage space between the upper annular wall 12 and the bottom wall 11. The lower annular wall 13 and the bottom wall 11 form an insertion space therebetween, and the base 40 is inserted into the lower annular wall 13 so as to be connected in an insertion fit manner. Further, the base 40 is snap-fit with the snap-fit portion to improve the tightness of the combination of the base 40 and the snap-fit portion, thereby preventing the base 40 from being separated from the container assembly 10. Wherein, buckle portion includes the interval distribution in joint boss or the joint groove of annular wall 13 down.
As shown in fig. 2 and 4, the base 40 includes a bottom frame 41, two or more leg portions 42 spaced apart from the bottom frame 41, and a latch assembly 43 mounted on the bottom frame 41, wherein the container assembly 10 is mounted on the bottom frame 41, and the latch assembly 43 is connected to the container assembly 10 in a latch manner. The leg portion 42 is used for adjusting the overall height of the liquid supply device and for providing a space for placing a receiving container such as a beer mug. For example, the number of the leg parts 42 is three, and the three leg parts 42 are uniformly distributed in a triangular structure to improve the stability of the support. A switch assembly 30 is disposed between two adjacent leg portions 42 to enlarge the liquid outlet range of the liquid supply device, and users do not interfere with each other.
The clamping assembly 43 comprises a clamping frame which is rotatably connected to the bottom frame 41 and a spring part which is elastically connected with the clamping frame and the bottom frame 41, the clamping frame overcomes elastic force elastic deformation of the spring part when the bottom frame 41 is sleeved with the lower annular wall 13, the resetting buckle is connected to the buckling part under the elastic force action of the spring part, the container assembly 10 is prevented from being separated, and the locking effect is good.
Further, the chassis 41 is provided with an installation space, the base 40 further includes a cooling box 44, the cooling box 44 is located in the installation space, and the container assembly 10 is superposed on the cooling box 44. The cooling box 44 has a housing structure and is used for accommodating an ice-water mixture or ice cubes. The cooling box 44 is attached to the bottom wall 11 to reduce the temperature of the liquid in the container assembly 10, so that the liquid such as beer in the container assembly 10 has good taste, can adapt to the environment such as the outdoor environment, and has good practicability.
As shown in fig. 1 and 6, the container assembly 10 further includes a top cover 14, the top cover 14 is used for closing the opening of the liquid storage space, and the top cover 14 is provided with a storage space. A cap 14 is removably attached to the upper annular wall 12 to close the opening of the reservoir space to facilitate the addition of liquid and the cleaning of the container assembly 10. The top cover 14 is provided with a storage space, so that utensils such as wineglasses and the like can be prevented, and the use flexibility of the liquid supply device is improved.
The above-described embodiments are merely exemplary embodiments of the present application and are not intended to limit the present application, and any modification, equivalent replacement, or improvement made within the spirit and principle of the present application should be included in the scope of the present application. Other structures and principles are the same as those of the prior art, and are not described in detail herein.

Claims (10)

1. The utility model provides a manually operation can adjust temperature supplies liquid device, its characterized in that, including the base, can dismantle connect in the container subassembly of base, install in at least one case subassembly of container subassembly and rotatable coupling in the base and with case subassembly assorted switch module, the case subassembly include sliding connection in the valve rod of container subassembly, connect the valve rod and the elasticity of container subassembly resets, the valve rod disposes out liquid channel, switch module is located the extending direction of valve rod, the container subassembly disposes the stock solution space, the valve rod will under the switch module drive go out liquid channel with the stock solution space intercommunication.
2. The liquid supply device of claim 1, wherein the valve core assembly further comprises a sealing ring mounted at one end of the valve rod and an abutting member mounted at the other end of the valve rod, the sealing ring is connected to the container assembly in a sealing manner, the elastic reset member abuts against the abutting member, and the abutting member abuts against the switch assembly.
3. The liquid supply apparatus as claimed in claim 2, wherein the valve stem extends through the abutment member and is inserted into the switch assembly.
4. The liquid supply apparatus as claimed in claim 2, wherein the valve rod includes a rod body, a sealing end protruding from an outer peripheral wall of the rod body, a blind hole extending from an end surface of the rod body toward the sealing end, and at least one drainage hole communicating from a sidewall of the rod body to the blind hole, the sealing ring is sleeved on the rod body and is limited at the sealing end, the sealing end abuts against the container assembly, and the abutting member is fixed to the rod body and away from the drainage hole.
5. The liquid supply apparatus of claim 1, wherein the container assembly is plug connected to the base.
6. The liquid supply device as claimed in claim 5, wherein the container assembly includes a bottom wall, an upper annular wall and a lower annular wall surrounding the bottom wall, a fastening portion disposed on the lower annular wall, and a guiding portion disposed on the bottom wall, the valve core assembly is mounted on the guiding portion, the lower annular wall is sleeved on the base, and the base is connected with the fastening portion in a clamping manner.
7. The liquid supply apparatus as claimed in claim 5, wherein the container assembly further comprises a top cover for closing an opening of the liquid storage space, the top cover being provided with a storage space.
8. The liquid supply device of claim 1, wherein the base comprises a bottom frame, two or more leg portions spaced apart from each other on the bottom frame, and a clamping assembly mounted on the bottom frame, the container assembly is mounted on the bottom frame, and the clamping assembly is clamped to the container assembly.
9. The liquid supply device of claim 8, wherein the chassis is provided with an installation space, the base further comprises a cooling box, the cooling box is located in the installation space, and the container assembly is superposed on the cooling box.
10. The liquid supply apparatus as claimed in claim 1, wherein the switch assembly comprises a conduit slidably connected to the base and a handle rotatably connected to the base, wherein one end of the handle is rotatably connected to the conduit and the other end extends obliquely to the base.
CN202120434235.7U 2021-02-27 2021-02-27 Manually operated temperature adjustable liquid supply device Active CN214525402U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120434235.7U CN214525402U (en) 2021-02-27 2021-02-27 Manually operated temperature adjustable liquid supply device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120434235.7U CN214525402U (en) 2021-02-27 2021-02-27 Manually operated temperature adjustable liquid supply device

Publications (1)

Publication Number Publication Date
CN214525402U true CN214525402U (en) 2021-10-29

Family

ID=78259173

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120434235.7U Active CN214525402U (en) 2021-02-27 2021-02-27 Manually operated temperature adjustable liquid supply device

Country Status (1)

Country Link
CN (1) CN214525402U (en)

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