Modularized vaporizer
The present invention relates to a modularized vaporizer, which enables a fuel module, a heating module, or a vaporizing module to be coupled and separated, in a drawer manner, to and from a body portion housing since a fuel module chamber, a heating module chamber, or a vaporizing module chamber is provided in the body portion housing. The modularized vaporizer reduces the carbonization of fuel or an absorbent member since the fuel or a surface of the absorbent member is uniformly heated (irradiation) by heating energy (light, beam, or heat) emitted (irradiation) from a heating member of the heating module.
1. A modularized vaporizer comprising a suction portion and a body portion, wherein the body portion comprises:
a body portion housing;
a fuel module that stores a fuel and includes an open surface to receive a light energy;
a heating module coupled to the body portion housing and disposed apart from the fuel module, wherein the heating module includes a heating member that emits the light energy;
a circuit that controls the heating module by adjusting the light energy to be emitted in a continuous wave or a pulse wave to cause the fuel to be maintained between a vaporization temperature and an ignition temperature thereof;
a vaporization space disposed between the heating module and the fuel module, wherein a vapor is released into the vaporization space by the light energy emitted from the heating module toward the fuel module through the vaporization space; and
an air current pipe which is a path for transferring the vapor released in the vaporization space to the suction portion,
wherein the body portion housing includes at least one module chamber to accommodate the fuel module or the heating module, and each of the at least one module chamber includes a first open surface and a second open surface across the body portion housing, and
wherein the fuel module or the heating module is pushed into the first open surface of the module chamber to be coupled therewith, and is pushed from the second open surface of the module chamber to be separated therefrom.
2. The modularized vaporizer of claim 1 , wherein the suction portion and the body portion are configured to be separated from each other,
wherein a fuel module chamber is formed within the body portion housing and configured to receive the fuel module when the suction portion is separated from the body portion, and
wherein an open surface is provided at one side of the fuel module chamber to receive the light energy.
3. The modularized vaporizer of claim 1 , wherein the heating member includes a light emitting diode.
4. The modularized vaporizer of claim 1 , wherein the body portion comprises a module chamber that accommodates an absorbent member module in which the fuel is absorbed.
5. The modularized vaporizer of claim 1 , wherein an inlet is formed in one surface of the fuel module,
wherein an inlet stopper is formed on a surface of the module chamber that accommodates the fuel module, and
wherein the inlet stopper is configured to close the inlet of the fuel module when the fuel module is coupled to the module chamber that accommodates the fuel module.
6. The modularized vaporizer of claim 1 , wherein each of the at least one module chamber comprises one or more magnets.
7. The modularized vaporizer of claim 1 , wherein the open surface of the fuel module, which receives the light energy, comprises a light transmitting member that discharges the vapor, or an absorbent member, and
wherein the fuel module includes a fuel support and an elastic member that is coupled to the fuel support, and the fuel support is configured to push the fuel toward the open surface of the fuel module.
8. The modularized vaporizer of claim 1 , wherein the fuel module includes a fuel support, which abuts the fuel and an inner sidewall of the fuel module,
wherein an absorbent member is provided in the open surface of the fuel module or the fuel in contact with the open surface of the fuel module, and
wherein the fuel in the fuel module comes into contact with the absorbent member as the fuel is vaporized due to attraction generated while the fuel is vaporized through the absorbent member by the light energy emitted toward the absorbent member and a pressure inside the fuel module, and the fuel support in contact with the fuel is pulled by the fuel toward the absorbent member while maintaining a contact with the fuel.
9. The modularized vaporizer of claim 1 , further comprising:
a control button disposed in the body portion housing.
10. The modularized vaporizer of claim 1 , wherein the heating module comprises a plurality of light energy generation portions,
wherein the light energy generation portions are formed to face the fuel at a slant angle, or light energy generated by some of the light energy generation portions reaches the fuel via a reflector, and
wherein a plurality of light energies are emitted toward a particular part of the fuel.
11. The modularized vaporizer of claim 4 , wherein the absorbent member module comprises:
a fuel transfer aperture through which the fuel of the fuel module moves to an absorbent member;
an external air current aperture through which outside air flows in; and
an internal air current aperture through which the air flowing in through the external air current aperture flows out to the absorbent member,
wherein the internal air current aperture is blocked from the fuel module and the fuel transfer aperture, and the absorbent member is inserted into an open surface of the internal air current aperture, and
wherein the fuel of the fuel module or the fuel transfer aperture continuously flows into the absorbent member due to a flowing force of the air flowing in through the external air current aperture that passes the absorbent member through the internal air current aperture due to a suction force of the suction portion and being discharged into the vaporization space.
12. The modularized vaporizer of claim 4 , wherein the fuel module or the absorbent member module comprises a light reflecting plate to allow the light energy generated by the heating module to pass through an absorbent member or the fuel and to be subsequently reflected by the light reflecting plate and emitted toward the absorbent member or the fuel.