加热测试装置

By designing a heating test device, the shortcomings of heating parameter testing for low-temperature non-combustible tobacco products were solved, enabling convenient adjustment and accurate testing of tobacco heating parameters, thereby improving user experience and R&D efficiency.

CN224518625UActive Publication Date: 2026-07-17SHENZHEN SMISS TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN SMISS TECH CO LTD
Filing Date
2025-08-07
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The lack of a dedicated device for testing the heating parameters of low-temperature non-combustible smoke appliances in the existing technology makes research and development testing inconvenient.

Method used

A heating test device was designed, including a heating component and a test component. Through an electrically connected switch module and a communication-connected processor, the heating temperature, power and time can be controlled. Combined with a human-computer interaction module, parameters can be set and adjusted to realize the heating test of cigarettes.

Benefits of technology

It provides convenient testing methods, enabling adjustments to heating parameters based on user experience to ensure the heating effect of low-temperature non-combustible smoke appliances and improve the accuracy and efficiency of R&D testing.

✦ Generated by Eureka AI based on patent content.

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Abstract

本申请涉及一种加热测试装置,包括加热组件和测试组件,加热组件包括加热管和贴设于加热管的发热件,加热管具有容纳被加热物的加热腔,加热腔的一端形成有出气口;测试组件包括电池、开关模块、人机交互模块和处理器,电池电连接于开关模块,人机交互模块和处理器,开关模块电连接于发热件,处理器通信连接于人机交互模块和开关模块,使得可以在人机交互模块输入加热参数,由处理器控制开关模块按照上述参数控制发热件对烟支进行加热,在加热的同时由测试人员品吸烟支,对烟支的加热参数是否合适进行判断,然后可再根据品吸感受随时调整改变加热参数,从而能够方便进行测试,测试结果为低温不燃烧烟具的研发测试提供了有力的依据。
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Claims

1. A heating test device, characterized by, include: A heating assembly, comprising a heating tube and a heating element attached to the heating tube, the heating tube having a heating cavity for accommodating an object to be heated, and an air outlet being formed at one end of the heating cavity; The test component includes a battery, a switch module, a human-machine interaction module, and a processor. The battery is electrically connected to the switch module, the human-machine interaction module, and the processor. The switch module is electrically connected to the heating element. The processor is communicatively connected to the human-machine interaction module and the switch module.

2. The heated test device of claim 1, wherein, The heating test device further includes a support assembly, which includes a bracket and a base mounted on the bracket. The test assembly is mounted on the bracket, and one end of the heating assembly is mounted on the base. The bracket has an air inlet, and the base has a venting groove that connects the heating chamber and the air inlet.

3. The heated test device of claim 2, wherein, The support assembly further includes a support member, which is disposed on the side of the base opposite to the air inlet and in the heating chamber; the support member has an inner cavity that opens toward one side of the base, and the side wall of the support member has an air passage hole that connects the inner cavity and the heating chamber.

4. The heated test device of claim 3, wherein, The support member has multiple protrusions spaced apart around its central axis at the edge of the opening away from itself. The gap between two adjacent protrusions connects to the air passage, and all the protrusions form a cavity that connects to the heating chamber.

5. The heated test device of claim 1, wherein, The heating element is connected to an electrode lead, and the battery is electrically connected to the heating element through the electrode lead. A fixing ring is fitted on the heating element at the position where the electrode lead is connected, and the inner wall of the fixing ring abuts against the electrode lead to clamp the electrode lead to the surface of the heating element.

6. The heated test device of claim 5, wherein, The heating assembly also includes a heat insulation component, which is sleeved on and attached to the heating element.

7. The heated test device of claim 1, wherein, The test component also includes a temperature acquisition module, which is communicatively connected to the heating element and the processor.

8. The heated test device of claim 1, wherein, The test assembly also includes a boost module, which is electrically connected to the battery and communicatively connected to the switch module.

9. The heated test device of claim 1, wherein, The test component also includes a storage module, which is communicatively connected to the processor.

10. The heated test device of claim 9, wherein, The test component also includes a data transmission module, which is communicatively connected to the storage module.