石材加热单元以及石材固化装置

By using an electrically heated stone heating unit with heat-conducting strips and a support seat with a limiting structure, the problems of complex structure and high energy consumption in existing technologies are solved, achieving a more environmentally friendly and efficient stone heating effect.

CN224510215UActive Publication Date: 2026-07-17SHANDONG CHANGTENG JUYUAN NEW MATERIAL TECHNOLOGY CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANDONG CHANGTENG JUYUAN NEW MATERIAL TECHNOLOGY CO LTD
Filing Date
2025-06-25
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing stone heating equipment is complex in structure, expensive, energy-intensive, and not environmentally friendly, with significant heat loss.

Method used

The stone heating unit using electric heating includes a support frame and a support base. The support base is composed of heat-conducting strips, which are connected by a limiting structure. Heat exchange is carried out using an electric heating layer, eliminating the need for heat-conducting oil medium.

Benefits of technology

It achieves simpler, more environmentally friendly, and more efficient heating, with uniform heating effect, reduced energy consumption and costs, and improved production efficiency and product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型公开了一种石材加热单元,包括支撑框;托举座,其与支撑框固接并托举压制成型后的板材坯料;加热层,其与电控装置电连接并与托举座的底面贴合固接进行热交换。托举座包括若干导热板条,导热板条之间平整拼接。还提供一种石材固化装置,包括总框架;总框架上设有若干上下对应的石材加热单元,每上下相邻的两个石材加热单元之间设有空隙。每个石材加热单元可以加热固化至少一张板材坯料,采用电加热的方式作为热源,能够省去大量的配套设备,成本优势非常明显,也无污染,能耗低。改进后的结构更加紧凑。每个加热单元可以实现独立控温,温度控制也更加精确,板材坯料成型效果好,标准化程度高,质量才可控。
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Claims

1. A stone heating unit, comprising a support frame (101); characterized in that Also includes: The support seat (102) is fixed to the support frame (101) and supports the pressed plate blank (4). The heating layer (103) is electrically connected to the electronic control device and is fixedly attached to the bottom surface of the support (102) for heat exchange. The support base (102) includes a plurality of heat-conducting strips, which are flatly spliced ​​together with each other; The heat-conducting strip is a heat-conducting profile with a cavity (1021), and the cavity (1021) extends through the axial direction of the heat-conducting strip.

2. The stone heating unit of claim 1, wherein: Each pair of adjacent heat-conducting plates is mutually limited and connected by a limiting structure; the limiting structure includes a lateral protrusion (1042) provided on the side edge of one of the heat-conducting plates, and a lateral recess (1041) provided on the side edge of the other heat-conducting plate and adapted to and engaged with the lateral protrusion (1042).

3. The stone heating unit of claim 2, wherein: The heating layer (103) includes a heating wire layer, and the upper and lower surfaces of the heating wire layer are respectively provided with an insulating layer.

4. The stone heating unit of claim 3, wherein: The heating layer (103) is bonded to the bottom surface of the support base (102).

5. A stone curing device, the technical solution of which includes at least one general frame (200). Its features are: The overall frame (200) is provided with a plurality of stone heating units as described in any one of claims 1-4, and a gap (3) for accommodating the slab blank is provided between each two adjacent stone heating units.

6. The stone solidification apparatus of claim 5, wherein: Each pair of adjacent total frames (200) are arranged side by side.