一种感应加热设备

The design of the support mechanism and overload protection unit solves the problem of damage to the induction coil caused by bending deformation and overload, thus improving service life and safety.

CN224521215UActive Publication Date: 2026-07-17ZHEJIANG CHENGCHANG MASCH PARTS CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG CHENGCHANG MASCH PARTS CO LTD
Filing Date
2025-04-25
Publication Date
2026-07-17

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Abstract

本实用新型属于感应加热技术领域,尤其涉及一种感应加热设备,包括:加热设备主体,加热设备主体上设置有控制面板,加热设备主体的底部设置有散热孔板;工作台,工作台设置在加热设备主体的前侧;感应线圈,感应线圈的两端为电连接端,感应线圈设置在加热设备主体的前侧并位于工作台的上方;还包括:支撑机构,支撑机构设置在工作台上并位于感应线圈的下方,支撑机构用于支撑感应线圈;过载保护部,过载保护部串联设置在感应线圈的电连接端;其中,感应线圈可通过控制面板进行控制,相对于现有技术,本实用新型提高了感应线圈的使用寿命。
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Claims

1. An induction heating device, comprising: The heating device body (1) is provided with a control panel (2) and a heat dissipation perforated plate (3) is provided at the bottom of the heating device body (1). A workbench (4) is provided on the front side of the heating equipment body (1); An induction coil (5) is provided, with both ends of the induction coil (5) being electrical connection terminals. The induction coil (5) is located on the front side of the heating equipment body (1) and above the workbench (4). Its characteristic is that it further includes: A support mechanism (6) is provided on the workbench (4) and located below the induction coil (5). The support mechanism (6) is used to support the induction coil (5). Overload protection unit (7), which is connected in series at the electrical connection terminal of the induction coil (5); The induction coil (5) can be controlled via the control panel (2).

2. An inductive heating apparatus as claimed in claim 1, characterised in that The support mechanism (6) also includes: A slide (60) is provided on the surface of the worktable (4) and extends in a direction parallel to the length of the worktable (4); A slider, wherein there are several sliders, and the sliders are slidably disposed on the slide groove (60); A support base (62) is disposed on the slider; A fixing post (63) is provided on the support base (62), and a screw hole (64) is provided on the fixing post (63); The movable column (65) has an external thread (66) at its bottom end that mates with the screw hole (64), and a support platform (67) at its top end. The movable column (65) is movably connected to the fixed column (63) through the engagement of the external thread (66) and the screw hole (64).

3. An inductive heating apparatus as claimed in claim 2, characterised in that The overload protection unit (7) also includes: A connecting sleeve (70) is connected in series at the electrical connection end of the induction coil (5). A cavity (71) is provided inside the connecting sleeve (70). Lead-out ends (72) that are electrically connected to the induction coil (5) are provided at both ends of the connecting sleeve (70). A fuse wire (73) is disposed in a cavity (71). The fuse wire (73) is in the shape of a shuttle and a retraction cavity (74) is provided inside the fuse wire (73). The two ends of the fuse (73) are electrically connected to two leads (72) respectively, and the cavity (71) is filled with magnesium powder.

4. An inductive heating apparatus as claimed in claim 1, characterised in that Also includes: The first protective plate (8) is vertically mounted on the workbench (4) and located in front of the induction coil (5); The second protective plate (9) has one end rotatably connected to the top of the first protective plate (8), and the second protective plate (9) can be rotated to a horizontal position and remain in a horizontal state. When the second protective plate (9) is in a horizontal state, the second protective plate (9) is located above the induction coil (5).

5. The inductive heating apparatus of claim 1, wherein Also includes: Cooling water chamber (10), the cooling water chamber (10) is disposed in the induction coil (5) and extends along the extension of the induction coil (5); A cooling water pipe is provided in the cooling water chamber (10).