CN210569169U - Double-layer water heat accumulation type electromagnetic heating stove sleeve - Google Patents
Double-layer water heat accumulation type electromagnetic heating stove sleeve Download PDFInfo
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- CN210569169U CN210569169U CN201921676530.2U CN201921676530U CN210569169U CN 210569169 U CN210569169 U CN 210569169U CN 201921676530 U CN201921676530 U CN 201921676530U CN 210569169 U CN210569169 U CN 210569169U
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Abstract
The utility model provides a double-deck water heat accumulation formula electromagnetism heating stove sleeve, include: a sleeve; the two fixing plates are respectively covered at the top end and the lower end of the sleeve and form an accommodating space; the cover plates are respectively covered on one sides of the two fixing plates far away from the sleeve; the heating water liner is accommodated in the accommodating space and connected to the fixing plate, a water flow channel is formed between the heating water liner and the sleeve at intervals, and the heating water liner is provided with water through holes penetrating through the water flow channel; the heating coil is wound on the outer side of the sleeve and forms electromagnetic coupling with the heating water liner; the three-way valve is positioned at the bottom end of the sleeve, and one through pipe simultaneously penetrates through the bottom end of the sleeve and is communicated with the bottom end of the heating water liner; the water outlet pipe simultaneously penetrates through the fixing plate and the cover plate which are positioned at the top end of the sleeve and is communicated with the accommodating space. Compared with the prior art, the utility model discloses a double-deck water heat accumulation formula electromagnetism heating stove sleeve is energy-conserving, stable and safe.
Description
Technical Field
The utility model relates to a water tank heating technical field especially relates to a double-deck water heat accumulation formula electromagnetism heating stove sleeve.
Background
The water tank is heated by solar energy, electricity and the like, and when the electricity heating mode is generally used, a resistance rod is inserted into the water tank. However, the method has the hidden danger of electric leakage, and the quartz glass tube surface outside the resistance rod is electrified, so that the hidden danger of electric shock exists, and the heating stability is not enough. Thus, a single layer water heating jacket was present. But when the single-layer water type heating sleeve is heated, because the electric wire in the sleeve generates noise when being heated, rest and work are influenced.
Therefore, there is a need to provide a new double-layer water heat accumulating type electromagnetic heating furnace sleeve to solve the above problems.
SUMMERY OF THE UTILITY MODEL
The utility model discloses the technical problem that needs to solve provides an energy-conserving, stable and safe double-deck water heat accumulation formula electromagnetism heating stove sleeve.
In order to solve the technical problem, the utility model provides a double-deck water heat accumulation formula electromagnetism heating stove sleeve, include:
the sleeve is made of insulating materials, and two ends of the sleeve are open and are hollow;
the two fixing plates are respectively covered at the top end and the lower end of the sleeve to form fixing, and the fixing plates and the sleeve enclose an accommodating space;
the cover plates comprise two cover plates which are respectively covered on one sides of the two fixing plates far away from the sleeve and are fixed;
the heating water liner is made of a magnetic conductive material, is accommodated in the accommodating space and is fixedly connected to the fixing plate through screws, and a water flow channel is formed between the heating water liner and the sleeve at intervals; the heating water liner is provided with water through holes penetrating through the heating water liner;
the heating coil is wound on the outer side of the sleeve and extends along the axial direction of the sleeve, and the heating coil and the heating water container form electromagnetic coupling;
the three-way valve is positioned at the bottom end of the sleeve, and one through pipe of the three-way valve simultaneously penetrates through the fixing plate and the cover plate which are positioned at the bottom end of the sleeve and is communicated with the bottom end of the heating water liner;
and the water outlet pipe simultaneously penetrates through the fixing plate and the cover plate which are positioned at the top end of the sleeve and is communicated with the accommodating space.
Preferably, double-deck water heat accumulation formula electromagnetism heating stove sleeve still establish including the cover connect in the clamp of outlet pipe, the clamp with the outlet pipe forms can dismantle the connection.
Preferably, waterproof silica gel pads are arranged between the fixing plate and the cover plate and between the fixing plate and the sleeve.
Preferably, the sleeve is made of an insulating epoxy plate.
Preferably, the fixing plate is made of stainless steel material.
Preferably, the heating water liner is made of 430 stainless steel materials.
Compared with the prior art, in the double-layer water heat accumulation type electromagnetic heating furnace sleeve provided by the utility model, a water flow channel is formed between the sleeve and the heating water liner at intervals to serve as a first layer heating space, and a second layer heating space is formed inside the heating water liner, so that a double-layer water heating structure is formed, the heating efficiency is high, and the stability is good; the electromagnetic coupling is formed between the heating coil wound on the sleeve and the heating water liner arranged in the sleeve, so that water in the double-layer water heating structure is heated, water scales are not easy to form on the magnetized water, the power is not attenuated, 100% water and electricity separation is realized, no noise is generated, the safety is good, the electric energy is fully utilized, and the energy consumption loss is reduced to the maximum extent.
Drawings
Fig. 1 is a perspective structural schematic view of a double-layer water heat accumulation type electromagnetic heating stove sleeve of the utility model;
FIG. 2 is a schematic view of a portion of the structure of FIG. 1;
fig. 3 the utility model discloses double-deck water heat accumulation formula electromagnetic heating stove telescopic structure schematic diagram.
Detailed Description
The present invention will be further explained with reference to the drawings and the embodiments.
Referring to fig. 1-3, the present invention provides a double-layer water heat accumulating type electromagnetic heating furnace sleeve 100, comprising: the heating device comprises a sleeve 1, a fixing plate 2, a cover plate 3, a heating water liner 4, a heating coil 5, a three-way valve 6, a water outlet pipe 7 and a clamp 8.
The sleeve 1 is made of an insulating material, and is hollow with both ends open. In this embodiment, the sleeve 1 is made of an insulating epoxy plate.
The two fixing plates 2 are respectively covered at the top end and the lower end of the sleeve 1 to form a fixing structure, and the fixing plates 2 and the sleeve 1 jointly enclose an accommodating space. In the present embodiment, the fixing plate 2 is made of stainless steel.
The cover plate 3 comprises two fixing plates 2 which are respectively covered on one side of the sleeve 1 far away from the fixing plates and fixed. In this embodiment, the cover plate 3 and the fixing plate 2 are fixed through screws, so that the disassembly and maintenance are convenient.
More excellent, all be equipped with waterproof silica gel pad 9 between fixed plate 2 and the apron 3, and fixed plate 2 with between the sleeve 1, realize more reliable sealed effect, avoid leaking.
The heating water container 4 is made of a magnetic conductive material, and the heating water container 4 is contained in the containing space and is fixedly connected to the fixing plate 2 through screws. In this embodiment, the bottom end of the heating water bladder 4 abuts against the fixing plate 2 located at the bottom end of the sleeve 1, and the top end of the heating water bladder 4 is spaced from the fixing plate 2 located at the top end of the sleeve 1 and is fixedly connected with the fixing plate 2 located at the top end of the sleeve 1 through screws. In this embodiment, the heating water tank 4 is made of 430 stainless steel.
The heating water liner 4 and the sleeve 1 form a water flow channel 10 at intervals, namely a first layer of water heating structure is formed; the interior of the heating water liner 4 is of a hollow structure, namely a second layer of water heating structure is formed; meanwhile, the heating water liner 4 is provided with a water passing hole 41 penetrating through the heating water liner, the water passing hole 41 communicates the inside of the heating water liner 4 with the water flow channel 10, namely, the water passing hole 41 communicates the first layer water heating structure with the second layer water heating structure, so that a double-layer water heating structure is formed.
The heating coil 5 is wound on the outer side of the sleeve 1 and extends along the axial direction of the sleeve 1, and the heating coil 5 and the heating water container 4 form electromagnetic coupling. The water is magnetized by electromagnetic heating, and the magnetized water is not easy to scale, so that the power of the heating water liner 4 is not attenuated, 100 percent of water and electricity can be separated, no noise hazard is caused, the safety is high, and the heating stability is good; the electromagnetic heating structure makes full use of electric energy, reduces loss to the maximum extent and achieves the aims of energy conservation and environmental protection.
The three-way valve 6 is located at the bottom end of the sleeve 1, and one of the pipes of the three-way valve 6 simultaneously penetrates through the fixing plate 2 and the cover plate 3 which are located at the bottom end of the sleeve 1 and is communicated with the bottom end of the heating water liner 4 to be used as cold water at the water inlet end to enter.
The water outlet pipe 7 penetrates through the fixing plate 2 and the cover plate 3 at the top end of the sleeve 1 at the same time, is communicated with the accommodating space and serves as a water outlet end, and heated water flows out of the water outlet end.
That is, cold water flows into the interior of the heating water container 4 through the three-way valve 6, and simultaneously part of the water flows to the water flow channel 10 through the water holes 41 from the interior of the heating water container 4, and the cold of the two parts flows to the top end along the bottom end of the sleeve 1 simultaneously, and when passing through the heating coil 5, the heating water container 4 heats the water, and the heated water flows to the water outlet pipe 7 through the water flow channel 10.
The clamp 8 with the outlet pipe 7 forms and can dismantle the connection, conveniently with outside water setting be connected and dismantle.
The utility model discloses a double-deck water heat accumulation formula electromagnetic heating stove sleeve 100's power can design as required.
Compared with the prior art, in the double-layer water heat accumulation type electromagnetic heating furnace sleeve provided by the utility model, a water flow channel is formed between the sleeve and the heating water liner at intervals to serve as a first layer heating space, and a second layer heating space is formed inside the heating water liner, so that a double-layer water heating structure is formed, the heating efficiency is high, and the stability is good; the electromagnetic coupling is formed between the heating coil wound on the sleeve and the heating water liner arranged in the sleeve, so that water in the double-layer water heating structure is heated, water scales are not easy to form on the magnetized water, the power is not attenuated, 100% water and electricity separation is realized, no noise is generated, the safety is good, the electric energy is fully utilized, and the energy consumption loss is reduced to the maximum extent.
The above only is the embodiment of the present invention, not limiting the scope of the present invention, all the equivalent structures or equivalent processes of the present invention are used in the specification and the attached drawings, or directly or indirectly applied to other related technical fields, and the same principle is included in the protection scope of the present invention.
Claims (6)
1. The utility model provides a double-deck water heat accumulation formula electromagnetism heating stove sleeve which characterized in that includes:
the sleeve is made of insulating materials, and two ends of the sleeve are open and are hollow;
the two fixing plates are respectively covered at the top end and the lower end of the sleeve to form fixing, and the fixing plates and the sleeve enclose an accommodating space;
the cover plates comprise two cover plates which are respectively covered on one sides of the two fixing plates far away from the sleeve and are fixed;
the heating water liner is made of a magnetic conductive material, is accommodated in the accommodating space and is fixedly connected to the fixing plate through the screw, and a water flow channel is formed between the heating water liner and the sleeve at intervals; the heating water liner is provided with water through holes penetrating through the heating water liner;
the heating coil is wound on the outer side of the sleeve and extends along the axial direction of the sleeve, and the heating coil and the heating water container form electromagnetic coupling;
the three-way valve is positioned at the bottom end of the sleeve, and one through pipe of the three-way valve simultaneously penetrates through the fixing plate and the cover plate which are positioned at the bottom end of the sleeve and is communicated with the bottom end of the heating water liner;
and the water outlet pipe simultaneously penetrates through the fixing plate and the cover plate which are positioned at the top end of the sleeve and is communicated with the accommodating space.
2. A double-deck water heat accumulation formula electromagnetism heating stove sleeve of claim 1, characterized in that, the double-deck water heat accumulation formula electromagnetism heating stove sleeve still includes the clamp of cover setting connection in the outlet pipe, the clamp with the outlet pipe forms detachable connection.
3. A double-deck water heat accumulating type electromagnetic heating stove sleeve according to claim 1, wherein waterproof silicone gaskets are provided between the fixing plate and the cover plate and between the fixing plate and the sleeve.
4. A double-deck water heat accumulating type electromagnetic heating stove sleeve according to claim 1, wherein the sleeve is made of an insulating epoxy plate.
5. A double-deck water heat accumulating type electromagnetic heating stove sleeve according to claim 1, wherein the fixing plate is made of a stainless steel material.
6. A double-deck water heat accumulating type electromagnetic heating stove sleeve as claimed in claim 1, wherein the heating water tank is made of 430 stainless steel material.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921676530.2U CN210569169U (en) | 2019-09-30 | 2019-09-30 | Double-layer water heat accumulation type electromagnetic heating stove sleeve |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201921676530.2U CN210569169U (en) | 2019-09-30 | 2019-09-30 | Double-layer water heat accumulation type electromagnetic heating stove sleeve |
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CN210569169U true CN210569169U (en) | 2020-05-19 |
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CN201921676530.2U Active CN210569169U (en) | 2019-09-30 | 2019-09-30 | Double-layer water heat accumulation type electromagnetic heating stove sleeve |
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CN (1) | CN210569169U (en) |
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2019
- 2019-09-30 CN CN201921676530.2U patent/CN210569169U/en active Active
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