一种新型节能的双头矮汤炉

By incorporating a ceramic fiber insulation cylinder and a reflective heat insulation front baffle in the dual-burner low-profile soup stove, the problem of severe heat loss is solved, achieving higher thermal efficiency and energy-saving effects, while also improving safety and comfort during use.

CN224516843UActive Publication Date: 2026-07-17TIANJIN DATANG FORTUNE COMML KITCHEN

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
TIANJIN DATANG FORTUNE COMML KITCHEN
Filing Date
2025-07-07
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The double-headed low-profile soup stove has no heat insulation layer on the outer wall of the stove body, and the waste heat discharge channel has a straight-vent structure, which leads to serious heat loss. The cooling measures are not very effective and cannot effectively isolate high-temperature heat, resulting in heat waste.

Method used

A ceramic fiber insulation cylinder and a reflective insulation front baffle are installed on the main body of the low-profile boiler. The rear contact plate is insulated from the ceramic fiber insulation cylinder. The reflective insulation front baffle rotates around the burner to reduce heat loss through radiation and is kept warm by the ceramic fiber insulation cylinder when the burner is turned off.

Benefits of technology

It effectively reduces heat loss, improves thermal efficiency, enhances energy saving, avoids the risk of burns, and improves user comfort.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224516843U_ABST
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Abstract

本实用新型公开了一种新型节能的双头矮汤炉,涉及双头矮汤炉技术领域,包括矮汤炉主体,所述矮汤炉主体的上侧设置有两个燃烧器,所述矮汤炉主体的上端对应两个燃烧器的后侧均固定连接有后侧接触板,且后侧接触板与汤锅的后侧外壁相抵,所述后侧接触板的外侧固定连接有陶瓷纤维隔热筒,且陶瓷纤维隔热筒的外侧转动安装有反射隔热前挡板,通过陶瓷纤维隔热筒隔热,减少热量损失,反射隔热前挡板能够绕着燃烧器转动,将汤锅的前侧围挡,减少汤锅前侧的热量辐射流失,有效地解决了双头矮汤炉的炉体外壁未设置隔热层,导致热量散失严重的问题,提高了热效率,更加节能环保。
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Claims

1. A new energy-saving double-head low soup stove, comprising a low soup stove body (1), the upper side of the low soup stove body (1) is provided with two burners (2), characterized in that: The upper end of the main body (1) of the low soup stove is fixedly connected to the rear side of the two burners (2), and the rear contact plate (4) abuts against the rear outer wall of the soup pot. The outer side of the rear contact plate (4) is fixedly connected to a ceramic fiber heat insulation cylinder (5), and a reflective heat insulation front baffle (6) is rotatably installed on the outer side of the ceramic fiber heat insulation cylinder (5).

2. A novel energy efficient double head low soup boiler as claimed in claim 1, wherein: The upper side of the reflective heat insulation front baffle (6) is fixedly connected with an upper protrusion (7), and the upper protrusion (7) abuts against the upper side of the ceramic fiber heat insulation cylinder (5).

3. A novel energy efficient double head low soup boiler as claimed in claim 2, wherein: The inner walls of the reflective heat insulation front baffle (6) and the upper convex edge (7) are both fixedly connected with aluminum foil reflective layers (9).

4. A novel energy efficient double burner low profile soup kettle as claimed in claim 2, wherein: The upper end of the upper convex edge (7) is fixedly connected to the outer side of the opening and closing operation handle (8), and the outer wall of the opening and closing operation handle (8) is wrapped with a heat-insulating rubber sleeve.

5. A novel energy efficient double burner low profile soup kettle as claimed in claim 1, wherein: The bottom of the ceramic fiber heat insulation cylinder (5) is fixedly connected to a fixed bottom ring (3), and the upper end of the dwarf soup stove body (1) is fixedly connected to an annular guide rail (10) on the outside of the fixed bottom ring (3). The bottom of the reflective heat insulation front baffle (6) rotates in the gap between the fixed bottom ring (3) and the annular guide rail (10).

6. A novel energy-saving double-headed low-profile soup stove according to claim 5, characterized in that: The inner wall of the annular guide rail (10) is provided with a guide groove at the bottom, and the outer wall of the reflective heat insulation front baffle (6) is fixedly connected with a guide rail slider (11). The guide rail slider (11) is slidably inserted into the guide groove in the inner wall of the annular guide rail (10), and the upper and lower outer walls of the guide rail slider (11) are respectively fixedly connected with a semi-circular ball bearing array (12).