The present disclosure relates to the field of smoking sets, and particularly to an electromagnetic heating device and a smoking set having same.
Currently, with the increasing number of the smokers, tobacco cigarettes are widely applied to our daily life, it is difficult to avoid passive smoking. The traditional tobacco cigarettes need open fire to be lit to produce smoking smog, as used herein, the tobacco cigarette emits substantive amount of toxic materials to human beings. A majority of smokers know the detriment of smoking but can't self-control, so quitting smoking has been always up in the air.
In the recent years, a kind of low-temperature baked smoking set is appeared, with low-temperature baking to produce the smoking smog, greatly reducing generation of toxic materials. The low-temperature baked smoking set in the market generally includes a heating device, into which the tobacco cigarette is inserted; by relying on the heater heating the tobacco cigarette, the smoking set generates smoking smog.
Thus, the related smoking sets to the inventors have following disadvantages: the heating device in the related smoking set may evenly heat a disposable tobacco cigarette such that smelling and flavors in latter stage get diminished, therefore, during smoking one tobacco cigarette, the smelling and flavors are inconsistent in former and latter stages to influence the user experience of smoking.
In view of the drawbacks in the prior art, the present disclosure relates to an electromagnetic heating device and a smoking set having the same, with simple structures and available for sectional heating such that smelling and flavors will be consistent during tobacco cigarettes are drawn.
In order to solve the above technical problem, the present disclosure provides a heating device according to independent claim 1 whereas various embodiments of the heating device and improvements thereto are recited in the dependent claims. The heating device includes a heating compartment; an electromagnetic inductive coil wound around a periphery of the heating compartment; the electromagnetic inductive coil at least comprises a first inductive coil and a second inductive coil; the first inductive coil and the second inductive coil are wound around two parts of the periphery of the heating compartment, the first inductive coil and the second inductive coil extending in an axial direction of the heating compartment; turns of the first inductive coil is more than turns of the second inductive coil such that heating speeds of two parts of the periphery of the heating compartment are different.
As used herein, the electromagnetic inductive coil further includes a connective coil, respectively connected with the first inductive coil and the second inductive coil.
As used herein, the first inductive coil and the second inductive coil are made by one same electricity conductive wire.
As used herein, the heating device further includes a paramagnet, disposed outside the heating compartment and the electromagnetic inductive coil, extending along an axial direction of the spiral electromagnetic inductive coil; the paramagnet is configured for changing a direction of magnetic field lines of the electromagnetic inductive coil.
As used herein, the heating compartment further includes a metallic heating tube and a wire-wound supporter; the heating tube is configured for receiving aerosol-formed materials; the wire-wound supporter is sleeved outside the heating tube, the electromagnetic inductive coil is wound around the supporter; the paramagnet is disposed outside the supporter.
As used herein, the heating compartment includes a wire-wound supporter, a metallic heating tube and a base, the heating tube is configured for receiving aerosol-formed materials; the supporter is sleeved outside the heating tube and the base, the electromagnetic inductive coil is wound around the supporter; the paramagnet is disposed outside the supporter.
As used herein, the supporter includes a slot, the slot includes a first slot and a second slot, part of the first inductive coil is inserted into the first slot and part of the second inductive coil is inserted into the second slot.
As used herein, the paramagnet includes a pressing part, a first fixing part and a second fixing part; the first fixing part and the second fixing part are respectively disposed at two ends of the pressing part; the first fixing part is fixed with one end of the heating compartment, the second fixing part is fixed with the other end of the heating compartment; the pressing part and the heating compartment clamp the electromagnetic inductive coil therebetween.
As used herein, a number of the paramagnets is multiple, multiple paramagnets are evenly distributed around the heating compartment.
As used herein, the paramagnet is hollow and a tubular element with an open end, the paramagnet is sleeved on the heating compartment, the paramagnet and the heating compartment clamp the electromagnetic inductive coil therebetween.
As used herein, the paramagnet is made of at least one or more selected from a group of manganese ferrite, zinc ferrite, nickel-zinc ferrite and manganese-magnesium-zinc ferrite.
To solve the above problem, the present disclosure further provides a low-temperature baked smoking set having the heating device as described supra.
As used herein, the smoking set further includes a power supply module, the power supply module is coupled with the electromagnetic inductive coil in the heating device, the power supply module is configured for supplying an alternating current to the electromagnetic inductive coil.
Additional aspects and advantages of the present disclosure will be: the present disclosure relates to a heating device and a smoking set having same; as used herein, the heating device includes a heating compartment; an electromagnetic inductive coil wound around a periphery of the heating compartment; the electromagnetic inductive coil at least comprises a first inductive coil and a second inductive coil; the first inductive coil and the second inductive coil are wound around two parts of the periphery of the heating compartment, extending in an axial direction of the heating compartment; turns of the first inductive coil is more than turns of the second inductive coil such that heating speeds of two parts of the periphery of the heating compartment are different. The structure of the heating device and the smoking set as described supra are capable of sectional heating with a simple structure, which may make the smelling and flavoring consistent.
Many aspects of the present disclosure can be better understood with reference to the following drawings. The components in the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the present disclosure. Moreover, in the drawings, like reference numerals designate corresponding parts throughout the several views.
The structure and operating principle of the above heating element with temperature control and the low-temperature baked smoking set having same are illustrated below, mainly shown from
Referring to
More specifically, with reference to
The above electromagnetic inductive coil 110 may be made of electricity-conductive materials, with a relatively good electricity-conductivity and cheap price such as copper wires and aluminum wires etc. The electromagnetic inductive coil 110 is wound around outside the heating compartment 120 along a certain direction, configured for heating the heating compartment 120. According to law of electromagnetic induction, when the electromagnetic induction coil 110 is supplied with alternating current, inside of the electromagnetic induction coil 110 generates an alternating magnetic flux. The alternating magnetic flux generates an induced electromotive force in the heating compartment 120, and when the magnetic field lines in the electromagnetic field are passing through the heating compartment 120, the magnetic field lines are cut by the heating compartment 120, the heating compartment 120 generates an inductive current, that is, the vertex current to heat the heating compartment 120.
As used herein, as shown in
Understandable, in some embodiments, the connecting coil 113 may be omitted; the first inductive coil 111 and the second inductive coil 112 can be made of one same electricity conductive wire.
Understandable, in some embodiments, outside the electromagnetic inductive coil 110 may be coated with an insulating layer (not shown), the insulating layer is configured to avoid electricity leakage through the electromagnetic inductive layer 110. The insulating layer is made of insulating materials, such as synthetic resins, epoxy resins, phenolic resins, 4250 plastic, polyimide plastic and energy-concentrated plastic etc.
The above heating compartment 120 includes a wire-wound supporter 121 and a heating tube 122. The wire-wound supporter 121 is sleeved on the heating tube 122, the electromagnetic inductive coil 110 is wound around the wire-wound supporter 121, the paramagnet 130 is disposed on the wire-wound supporter 121, the paramagnet 130 is configured to change the magnetic field lines of the electromagnetic inductive coil 110.
As used herein, with reference to
Understandable, in some embodiments, the slot 1210 may be omitted; the electromagnetic inductive coil 110 may be wound around the supporter 121 in other ways, such as coating high temperature resistant glue etc.
The above heating tube 122 is a hollow cylinder, made of metallic conductor, preferably permeability magnetic materials, with consequently better effect of induction heating, such as powdered iron core, Fe—Ni 50 alloys, Fe—Si—Al compositions and Fe—Ni—Mo compositions etc. The heating tube 122 has a glossy surface, leading to a better effect of electromagnetic induction heating. The heating tube 122 has a receiving chamber (not shown) therein, the receiving chamber is configured for receiving the aerosol-formed materials, as used herein, the aerosol-formed materials may be at least one or more tobacco bar or flake selected from a group of tobacco shreds, tobacco sheets and tobacco powders etc.
Understandable, in some embodiments, as shown in
Understandable, in some embodiments, as shown in
The above paramagnet 130 is made of at least one or more selected from a group of manganese ferrite, zinc ferrite, nickel-zinc ferrite and manganese-magnesium-zinc ferrite. The paramagnet 130 is barrel-shaped dowel joint element with an end opened. The paramagnet 130 is sleeved on the heating compartment 120. The paramagnet 130 and the heating compartment 120 clamp the electromagnetic inductive coil 110 therebetween.
Understandable, in some embodiments, as shown in
In the embodiment, as shown in
The heating device 100 in accordance with the embodiment includes the electromagnetic inductive coil 110 and the heating compartment 120. By arranging different turns of the electromagnetic inductive coils 111 at two ends of the heating compartment 120, the heating speeds of two ends of the heating compartment 120 are different, so that the heating device 100 in the embodiment has simple structure and is available for sectional heating, so the smelling during smoking keep consistent. Moreover, the paramagnet 130 is sleeved on the heating compartment 120 so that the direction of electromagnetic field lines of the electromagnetic inductive coil 110 is changed, thus improving efficiency of heating by electromagnetic induction.
Understandable, in some embodiments, as shown in
The above shell 210 may be a plastic shell, preferably some plastic shells with good thermal insulation and heat preservation, such as polycarbonate, polyurethane and polyimide etc. The shell 210 is configured for receiving the heating device 100.
In some embodiments, the shell 210 is made by a metallic shell, covering with a plastic membrane to contribute to heat insulation and thermal preservation.
As used herein, the above smoking set 200 further includes a power supply module 220; the power supply module 220 is coupled with the electromagnetic inductive coil 110 to supply an alternative current for the electromagnetic inductive coil 110, so the electromagnetic inductive coil 110 is capable of heating. Optionally, as shown in
The smoking set 100 in accordance with the present disclosure, includes a heating device 100 for improving the heating efficiency of the electromagnetic induction, effectively improving the user experience, and effectively improving the heating efficiency, as well as improving utilization rate of energy, with a simple structure and low price.
Terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. Variations may be made to the embodiments and methods without departing from the spirit of the disclosure. Accordingly, it is appropriate that the appended claims be construed broadly and in a manner consistent with the scope of the disclosure.
Number | Date | Country | Kind |
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201721823986.8 | Dec 2017 | CN | national |
201721838946.0 | Dec 2017 | CN | national |