Disposable smoke cartridge and heating non-combustion cigarette comprising same
A heat-not-burn, disposable technology, which is applied in the field of disposable pods and heat-not-burn smoke using disposable pods, which can solve the problem of low heat generation of heating components, affecting the quality of smoke suction, and insufficient user satisfaction and other problems, to achieve high heating efficiency, good atomization effect, and uniform heating effect
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Embodiment 1
[0037] This embodiment provides a disposable cartridge and heat-not-burn smoke using the disposable cartridge. The structure of the pod is as follows figure 1 Shown: including the sealing film 1, the outer wall of the pod 2, the cavity 3 and the metal element 4 inside the cavity 3; the metal element is a spring-shaped helical coil made of 1.0mm diameter iron wire wound 20 turns, the helical coil Diameter 0.5cm, height 2.5cm.
[0038] This embodiment provides a heat-not-combust smoke using a disposable pod, the schematic diagram of which is shown in figure 2 As shown: including the housing 5, there is a housing chamber 6 and other components for placing disposable pods in the housing 5. The inner wall of the housing chamber 6 has an induction coil 7, and the induction coil 7 is passed an alternating current to make the helical coil generate Electric current, the inner wall of the accommodating cavity 6 is provided with a cone thorn 8, which is used to pierce the sealing fil...
Embodiment 2
[0053] The heat-not-burn smoke provided in this example is basically the same as that in Example 1, the difference lies in the structure of the metal elements in the disposable pod, which are iron sheets, closed triangular iron rings, closed cylindrical iron rings, See you separately image 3 , Figure 4 and Figure 5 . We respectively investigated the heating and atomization effects of different shapes of heating materials (Table 2). The metal components were all covered by shredded tobacco, and the amount of shredded tobacco was 2.00g.
[0054] The results show that if the area of the heating element is the same, the change of the shape has little effect on the heating efficiency, and the difference in the smoke effect is not obvious.
[0055] Table 2 Smoke generation of metal components of different shapes
[0056]
Embodiment 3
[0058] This example mainly investigates the heat generation of metal elements of different shapes. The structure of heating non-combustion smoke is the same as that of Example 1. Three iron wires, a single piece of iron sheet and a closed cylindrical iron ring are selected for the disposable pods. 2.00 g of cut tobacco, the metal element being completely covered by the cut tobacco.
[0059] The results show that although the total amount of heat released by heating the iron wire is the least, the surface temperature in contact with the smoking substance is high, so the amount of atomization released is the largest.
[0060] Table 3 Smoke Effects of Metal Components of Different Shapes
[0061]
[0062] The above experiments show that the iron wire or its winding into a helical coil is beneficial to fuming and atomization, and is suitable for electromagnetic induction heating of non-combustion smoke (low temperature smoke).
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