CN204176724U - A kind of hand-held carbon fibre heater - Google Patents

A kind of hand-held carbon fibre heater Download PDF

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Publication number
CN204176724U
CN204176724U CN201420575685.8U CN201420575685U CN204176724U CN 204176724 U CN204176724 U CN 204176724U CN 201420575685 U CN201420575685 U CN 201420575685U CN 204176724 U CN204176724 U CN 204176724U
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CN
China
Prior art keywords
carbon fiber
hand
fiber exothermic
held
exothermic part
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Expired - Fee Related
Application number
CN201420575685.8U
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Chinese (zh)
Inventor
陈滨
王浩
张雪芳
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BEIJING SINOBEL TECHNOLOGY Co Ltd
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BEIJING SINOBEL TECHNOLOGY Co Ltd
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Priority to CN201420575685.8U priority Critical patent/CN204176724U/en
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Publication of CN204176724U publication Critical patent/CN204176724U/en
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Abstract

The utility model relates to a kind of hand-held carbon fibre heater, it is characterized in that, described hand-held carbon fibre heater (100) comprise sealing insulation crust (101), be fixed on the carbon fiber exothermic part (102) in described insulation crust (101) and impel the supply unit (103) of described carbon fiber exothermic part (101) heating power, wherein, described insulation crust (101) comprises the annular seal space (104) being enough to hold described carbon fiber exothermic part (102) and described supply unit (103).The utility model structure is simple, easy to make, safety, environmental protection.

Description

A kind of hand-held carbon fibre heater
Technical field
The utility model relates to a kind of daily firing equipment, particularly relates to a kind of hand-held heating installation, specifically refers to a kind of hand-held carbon fibre heater.
Background technology
In the winter of severe cold, people usually cause lacking practice and skill pernio because temperature is lower, make troubles to live and work.For this reason, there is various product for hand heating on the market.The most original hand heating product is the hot-water bottle be made up of plastic cement, warms oneself in bag by being filled with by the hot water of high temperature.Because the temperature retention time of hot-water bottle is short, and need constantly more heat-exchanging water, it is very inconvenient to use, and is therefore eliminated gradually.Along with the development of technology, the hand heating installation main on the market to present stage is electric hot-water bag, to the electric hot-water bag electrified regulation of heat transfer medium (normally water) being housed to obtain heat.This product can heat repeatedly, does not also need more heat-exchanging water, will facilitate many relative to traditional hot-water bottle.But there is larger potential safety hazard in this series products.
The operation principle of electric hot-water bag is by the resistance wire energising being arranged on electric hot-water bag inside, by resistance wire, the water in bag is heated to uniform temperature, thus provides heat for people.Along with the prolongation of time, constantly repeatedly easily in airtight bag, producing gas in heating process, and in use people often ignore bleeding, therefore, gas is constantly assembled in bag, will blast when exceeding the pressure that sack can bear, or even explode in heating process, very dangerous.In addition, warm oneself for a long time and constantly must charge to electric hot-water bag as acquisition, when people are in the environment not having power supply to provide, such as field, electric hot-water bag just can not play the function of heating, and its scope of application is restricted.
Based on the problems referred to above, people are badly in need of obtaining the hand heating installation that a kind of security performance is high, easy to use, be not subject to environment restriction.
Utility model content
For the deficiency of prior art, the utility model provides a kind of hand-held carbon fibre heater, it is characterized in that, described hand-held carbon fibre heater comprise sealing insulation crust, be fixed on the carbon fiber exothermic part in described insulation crust and impel the supply unit of described carbon fiber exothermic part heating power, wherein, described insulation crust comprises the annular seal space being enough to hold described carbon fiber exothermic part and described supply unit.
According to a preferred embodiment, be formed with the locating dowel for fixing and/or support described carbon fiber exothermic part at the housing surface of described insulation crust.
According to a preferred embodiment, multiple described locating dowel is distributed in described annular seal space, and described locating dowel comprises the locating slot matched with described carbon fiber exothermic part, and described locating slot is arranged on top or the side of described locating dowel, thus in the mounted state, remain on described carbon fiber exothermic part in described locating slot to arrange with the non-contacting mode of described insulation crust.
According to a preferred embodiment, the notch edges of described locating slot is formed with elastic block piece.
According to a preferred embodiment, described carbon fiber exothermic part is in the cable-shaped of flexibility and flexibly be distributed in described annular seal space, and described carbon fiber exothermic part comprises the insulation sheath of carbon fiber exothermic wire and coated described carbon fiber exothermic wire.
According to a preferred embodiment, conducting connecting part is provided with at the incision position of described carbon fiber exothermic part, and described conducting connecting part is closely coated on outside described carbon fiber exothermic wire, thus described carbon fiber exothermic part is connected to described supply unit by described conducting connecting part conduction.
According to a preferred embodiment, described supply unit is provided with the conductive interface with described conducting connecting part Corresponding matching, and described conducting connecting part to conduct electricity with described conductive interface with pluggable mode and is connected.
According to a preferred embodiment; described carbon fiber exothermic part is tabular or stratiform; in tabular or the described carbon fiber exothermic part of stratiform comprise carbon fiber heating layer and be arranged on the protective layer of described carbon fiber heating layer both sides; wherein; described carbon fiber heating layer surface is provided with electrode, thus described carbon fiber exothermic part is connected to described supply unit by described electrodes conduct.
According to a preferred embodiment, described carbon fiber exothermic part comprises many carbon fiber heating rods, is arranged on the power lead at described carbon fiber heating rod two ends and connects the insulating joint of described carbon fiber heating rod and described wire, wherein, be provided with metal connecting piece in described insulating joint, and described metal connecting piece is inserted into the end of described carbon fiber heating rod in the mode running through described power lead.
According to a preferred embodiment, described hand-held carbon fibre heater also comprises decorative layer, and described decorative layer is removably disposed in the surface of described insulation crust.
Hand-held carbon fibre heater of the present utility model is with universally acknowledged far infrared heating product: carbon fiber, and as thermal source, security performance is good, heat conduction efficiency is high; By far-infrared radiation form heat radiation heating, environment friendly and pollution-free; The more important thing is that the infrared ray of carbon fiber institute radiation can warm up body dredging collateral, accelerates blood circulation, regulate neural and internal system, hot body immunity is provided, is extremely conducive to health.Hand-held carbon fibre heater structure of the present utility model is simple, adopts carbon fiber exothermic part of the prior art, and draw materials conveniently, preparation process is also very simple.Meanwhile, supply unit of the present utility model can be battery, can storing electrical energy, can realize heating of charging whenever and wherever possible.
Accompanying drawing explanation
Fig. 1 is the structure chart of hand-held carbon fibre heater of the present utility model;
Fig. 2 is the structure chart of hand-held carbon fibre heater of the present utility model;
Fig. 3 is the partial sectional view of hand-held carbon fibre heater of the present utility model;
Fig. 4 is the structure chart of hand-held carbon fibre heater of the present utility model;
Fig. 5 is the partial sectional view of hand-held carbon fibre heater of the present utility model;
Fig. 6 is the structure chart of hand-held carbon fibre heater of the present utility model;
Fig. 7 is the partial sectional view of hand-held carbon fibre heater of the present utility model;
Fig. 8 is the partial sectional view of hand-held carbon fibre heater of the present utility model;
Fig. 9 is the partial sectional view of hand-held carbon fibre heater of the present utility model;
Figure 10 is the partial top view of hand-held carbon fibre heater of the present utility model; With
Figure 11 is the partial sectional view of hand-held carbon fibre heater of the present utility model.
Reference numerals list
100: hand-held carbon fibre heater 101: insulation crust 102: carbon fiber exothermic part
103: supply unit 104: annular seal space 105: locating dowel
106: locating slot 107: elastic block piece 201: carbon fiber exothermic wire
202: insulation sheath 203: conducting connecting part 204: conductive interface
205: carbon fiber heating layer 206: protective layer 207: electrode
208: carbon fiber heating rod 209: power lead 210: insulating joint
211: metal connecting piece
Detailed description of the invention
The utility model is illustrated below in conjunction with accompanying drawing.
Fig. 1, Fig. 2, Fig. 4 and Fig. 6 are several preferred embodiments of the present utility model, and it all illustrates hand-held carbon fibre heater 100 of the present utility model.Hand-held carbon fibre heater 100 comprise sealing insulation crust 101, be fixed on the carbon fiber exothermic part 102 in insulation crust 101 and impel the supply unit 103 of carbon fiber exothermic part 101 heating power.Insulation crust 101 comprises the annular seal space 104 being enough to hold carbon fiber exothermic part 102 and supply unit 103.Insulation crust 101 is made by insulating polymer material, and matter is firmly not yielding, can the device of effective protective housing inside.Insulation crust 101 is formed in the mode of injection mo(u)lding, can be designed to by surface of shell as required variously be easy to contour curve practical and attractive in appearance.And insulation crust 101 can be various shape, as circular, square, oval etc., the moulding of various cartoon figure can also be designed to, be made hand-held warmer 100 not only practicality but also attractive in appearance.Supply unit 103 can be battery, also can be the electric installation or the conversion equipment that hand-held carbon fibre heater 100 are linked into extraneous power supply.
Specifically, supply unit 103 comprises battery and/or control device.When supply unit 103 is simple batteries, its working method is: first battery is full of electricity, then provides electric energy by the battery being full of electricity for carbon fiber exothermic part, makes it generate heat.This working method can control the duty of carbon fiber exothermic part whenever and wherever possible.User carries out on/off control to battery according to the actual requirements, and deenergization device when not needing to warm oneself, needs to switch on power when heating device, so not only easy to use but also economize energy.In addition, simultaneously the another kind of embodiment of supply unit 103 comprises battery and control device.Battery and control device are independent of each other on circuit is connected.Carbon fiber exothermic part 102 directly can carry out electrified regulation by control device, and after carbon fiber heating temperature reaches design temperature, control device disconnects the connection between warmer 100 and extraneous power supply, and user just can warm oneself.
See pure expansiveness schematic diagram 8 and Fig. 9, be formed for locating dowel 105 that is fixing and/or support carbon fiber exothermic part 102 at the housing surface of insulation crust 101.The housing surface of insulation crust 101 is formed with multiple locating dowel 105 be distributed in annular seal space 104.Because multiple locating dowel structure is identical, illustrate that a locating dowel is described herein.Locating dowel 105 comprises the locating slot 106 matched with carbon fiber exothermic part 102.Locating slot 106 is arranged on top or the side of locating dowel 105, thus in the mounted state, remains on carbon fiber exothermic part 102 in locating slot 106 to arrange with the non-contacting mode of insulation crust 101.Carbon fiber exothermic part 102 is arranged in the mode not contacting insulation crust 101 under the effect of locating dowel, carbon fiber exothermic part 102 is made to keep roughly consistent with the spacing of insulation crust housing surface, insulation crust 101 being made to be heated evenly to during phase all directions infrared radiation, be unlikely to local temperature too high or too low.
According to a preferred embodiment, the notch edges of locating slot 106 is formed with elastic block piece 107, avoids the carbon fiber exothermic part 102 be arranged in locating slot 106 to skid off from locating slot, is securely fixed in further in locating slot 106.Elastic deformation can be there is under external force in elastic block piece 107.In installation process, carbon fiber exothermic part 102 is entered in locating slot 106 by extruding elastic block piece 107.
Embodiment 1
See Fig. 1 and Fig. 2, carbon fiber exothermic part 102 is the cable-shaped of flexibility and flexibly is distributed in annular seal space 104.Carbon fiber exothermic part 102 comprises the insulation sheath 202 of carbon fiber exothermic wire 201 and coated carbon fiber exothermic wire 201.Under the present embodiment, carbon fiber exothermic part is carbon fiber cable, Fig. 1 and Fig. 2 respectively illustrates two kinds of different arrangement modes of carbon fiber cable, but it will be recognized by those skilled in the art that the arrangement mode of carbon fiber cable is not confined to shown in figure.The arrangement mode of carbon fiber cable designs according to the shape of annular seal space 104 and size.The carbon fiber exothermic part 102 of cable form can S-type, U-shaped, Ω type, ellipse, circle, square or spirality arrangement.
See pure expansiveness schematic diagram 3, be provided with conducting connecting part 203 at the incision position of carbon fiber exothermic part 102.Conducting connecting part 203 is closely coated on outside carbon fiber exothermic wire 201, thus carbon fiber exothermic part 102 is connected to supply unit 103 by conducting connecting part 203 conduction.Supply unit 103 is provided with the conductive interface 204 with conducting connecting part 203 Corresponding matching.Be provided with not shown conductive layer in conductive interface 204, this conductive layer is and the sheet metal of conductive interface 204 form fit or the metal paste being coated in conductive interface 204 inner surface.Conducting connecting part 203 to conduct electricity with conductive interface 204 with pluggable mode and is connected.Conducting connecting part 203 can be made up of conducting metal, conductivity ceramics or conducting polymer composite, preferred conducting metal.
Embodiment 2
See another preferred embodiment of the carbon fiber exothermic part 102 shown in pure expansiveness schematic diagram 4.Carbon fiber exothermic part 102 is in tabular or stratiform.In tabular or the carbon fiber exothermic part 102 of stratiform comprise carbon fiber heating layer 205 and be arranged on the protective layer 206 of carbon fiber heating layer 205 both sides.Carbon fiber heating layer 205 is carbon cloths that carbon fiber felt or carbon fiber and other fibers mixture are formed.Participate in Fig. 5, carbon fiber heating layer 205 surface is provided with electrode 207, thus carbon fiber exothermic part 102 is connected to supply unit 103 by electrode 207 conduction.Protective layer 206 is insulation, and itself and carbon fiber pressing form an entirety.
Carbon fiber hot body under the present embodiment, its installment state as shown in figure 11.The side of the carbon fiber exothermic part 102 of tabular or stratiform is inserted in the locating slot 106 of locating dowel 105.Locating dowel 105 be symmetrically distributed in carbon fiber exothermic part 102 both sides or be distributed in carbon fiber exothermic part 102 surrounding or in the distribution triangular in shape of the outside of carbon fiber exothermic part.
Embodiment 3
See another preferred embodiment of the carbon fiber exothermic part 102 shown in pure expansiveness schematic diagram 6.Carbon fiber exothermic part 102 comprises many carbon fiber heating rods 208, is arranged on the power lead 209 at carbon fiber heating rod 208 two ends and connects the insulating joint 210 of carbon fiber heating rod 208 and wire 209.See Fig. 7, in insulating joint 210, be provided with metal connecting piece 211.Metal connecting piece 211 is inserted into the end of carbon fiber heating rod 208 in the mode running through power lead 209.
According to a preferred embodiment, many carbon fiber heating rods 208 are arranged in mode parallel each other.
According to the preferred embodiment do not shown in figure, hand-held carbon fibre heater 100 also comprises decorative layer.Decorative layer is removably disposed in the surface of insulation crust 101.Decorative layer is the flexible skin with shades of colour and/or pattern.Decorative layer is the cover keeping with insulation crust 101 mating, and can dismantle and clean.Decorative layer not only has decoration function can also protect insulation crust, makes its surface clean, pollution-free, and decorative layer also has the effect of insulation simultaneously, can extend the heating duration of warmer.
It should be noted that; above-mentioned specific embodiment is exemplary; under above-mentioned instruction of the present utility model, those skilled in the art can carry out various improvement and distortion on the basis of above-described embodiment, and these improve or distortion drops in protection domain of the present utility model.It will be understood by those skilled in the art that specific descriptions are above to explain the purpose of this utility model, not for limiting the utility model.Protection domain of the present utility model is by claim and equivalents thereof.

Claims (10)

1. a hand-held carbon fibre heater, it is characterized in that, described hand-held carbon fibre heater (100) comprise sealing insulation crust (101), be fixed on the carbon fiber exothermic part (102) in described insulation crust (101) and impel the supply unit (103) of described carbon fiber exothermic part (101) heating power, wherein, described insulation crust (101) comprises the annular seal space (104) being enough to hold described carbon fiber exothermic part (102) and described supply unit (103).
2. hand-held carbon fibre heater as claimed in claim 1, it is characterized in that, be formed with the locating dowel (105) for fixing and/or support described carbon fiber exothermic part (102) at the housing surface of described insulation crust (101).
3. hand-held carbon fibre heater as claimed in claim 2, it is characterized in that, multiple described locating dowel (105) is distributed in described annular seal space (104), and described locating dowel (105) comprises the locating slot (106) matched with described carbon fiber exothermic part (102), and
Described locating slot (106) is arranged on top or the side of described locating dowel (105), thus in the mounted state, remain on described carbon fiber exothermic part (102) in described locating slot (106) to arrange with described insulation crust (101) non-contacting mode.
4. hand-held carbon fibre heater as claimed in claim 3, it is characterized in that, the notch edges of described locating slot (106) is formed with elastic block piece (107).
5. hand-held carbon fibre heater as claimed in claim 4, it is characterized in that, described carbon fiber exothermic part (102) is in the cable-shaped of flexibility and flexibly be distributed in described annular seal space (104), and described carbon fiber exothermic part (102) comprises the insulation sheath (202) of carbon fiber exothermic wire (201) and coated described carbon fiber exothermic wire (201).
6. hand-held carbon fibre heater as claimed in claim 5, it is characterized in that, conducting connecting part (203) is provided with at the incision position of described carbon fiber exothermic part (102), and described conducting connecting part (203) is closely coated on described carbon fiber exothermic wire (201) outside, thus described carbon fiber exothermic part (102) is connected to described supply unit (103) by described conducting connecting part (203) conduction.
7. hand-held carbon fibre heater as claimed in claim 6, it is characterized in that, described supply unit (103) is provided with the conductive interface (204) with described conducting connecting part (203) Corresponding matching, and described conducting connecting part (203) to conduct electricity with described conductive interface (204) with pluggable mode and is connected.
8. hand-held carbon fibre heater as claimed in claim 4; it is characterized in that; described carbon fiber exothermic part (102) is in tabular or stratiform; in tabular or the described carbon fiber exothermic part (102) of stratiform comprise carbon fiber heating layer (205) and be arranged on the protective layer (206) of described carbon fiber heating layer (205) both sides; wherein; described carbon fiber heating layer (205) surface is provided with electrode (207), thus described carbon fiber exothermic part (102) is connected to described supply unit (103) by described electrode (207) conduction.
9. hand-held carbon fibre heater as claimed in claim 4, it is characterized in that, described carbon fiber exothermic part (102) comprises many carbon fiber heating rods (208), is arranged on the power lead (209) at described carbon fiber heating rod (208) two ends and connects the insulating joint (210) of described carbon fiber heating rod (208) and described wire (209), wherein
Be provided with metal connecting piece (211) in described insulating joint (210), and described metal connecting piece (211) is inserted into the end of described carbon fiber heating rod (208) in the mode running through described power lead (209).
10. the hand-held carbon fibre heater as described in one of claim 1 to 9, is characterized in that, described hand-held carbon fibre heater also comprises decorative layer, and described decorative layer is removably disposed in the surface of described insulation crust (101).
CN201420575685.8U 2014-10-03 2014-10-03 A kind of hand-held carbon fibre heater Expired - Fee Related CN204176724U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420575685.8U CN204176724U (en) 2014-10-03 2014-10-03 A kind of hand-held carbon fibre heater

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420575685.8U CN204176724U (en) 2014-10-03 2014-10-03 A kind of hand-held carbon fibre heater

Publications (1)

Publication Number Publication Date
CN204176724U true CN204176724U (en) 2015-02-25

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201420575685.8U Expired - Fee Related CN204176724U (en) 2014-10-03 2014-10-03 A kind of hand-held carbon fibre heater

Country Status (1)

Country Link
CN (1) CN204176724U (en)

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CF01 Termination of patent right due to non-payment of annual fee
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Granted publication date: 20150225

Termination date: 20181003