Forming device for refractory material production
By setting up a release plate and a condensing device in the molding device for refractory material production, the problems of blank formation failure and mold wear during the molding process in the prior art are solved, and a more efficient production process and more consistent product quality are achieved.
Patent Information
- Application Number
- CN202420555855.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-21
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2034-03-21
AI Technical Summary
The existing automatic molding device for the production of refractory materials is prone to damage to the blank, aggravated mold wear, and low production efficiency during the demolding process.
A molding device for the production of refractory materials is designed, including a limit fence, a condensing device and a partition device. By setting a deforming plate and a condensing device, the molding process is simplified and the mold is not inverted.
The device simplifies the demolding process, reduces blanking failure and mold wear, and improves production efficiency and product consistency.
Smart Images

Figure CN222891435U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of refractory material production, in particular to a forming device for refractory material production. Background Art
[0002] Refractory materials refer to materials that can maintain good performance when used in high temperature environments. It has excellent wear resistance, corrosion resistance, high high temperature strength, good seismic resistance and other characteristics, so it is widely used in smelting, chemical industry, building materials, machinery and other fields. The emergence of refractory materials can be traced back to the early days of human civilization. At that time, people found that certain stones could withstand high temperature combustion and were used to make pottery kilns, iron furnaces, etc. to improve production efficiency and quality. With the development of smelting, chemical industry and other industries, the demand for refractory materials is increasing. Therefore, in the early 20th century, advanced foreign countries began to mass produce refractory materials. my country's refractory industry began in the 1930s. With the strong support of the country, after many technological innovations, it now has a certain production scale and international competitiveness. Not only does it produce some traditional graphite, dolomite, high alumina, silicate, silicon carbide and other series of varieties, but it also develops a series of new varieties such as high-end oven materials and high-end ceramic materials. With the continuous improvement of science and technology and industrialization, the variety and performance of refractory materials have been continuously upgraded. For example, the application of new materials such as high-purity alumina and high borosilicate aluminum has promoted the development of the refractory industry. The production and application of refractory materials will not only inject new impetus and momentum into my country's industrial development, but also enable my country's refractory industry to develop better in the international market.
[0003] The patent number CN217292729U in the prior art discloses an automatic forming device for refractory material production, including a forming body, a connecting groove is opened at the upper rear part of the forming body, and the upper rear part of the forming body is movably connected with a closing structure through the connecting groove, the upper left part and the upper right part of the forming body are both opened with forming grooves, the front lower part of the forming body is opened with a device groove, the front lower part of the forming body is fixedly connected with a forming structure, the forming structure is located in the device groove, and a switch is provided at the front right end of the forming body, and the switch is electrically connected to the forming structure.
[0004] However, the automatic forming device for refractory production in the prior art still has the following disadvantages:
[0005] 1. The above-mentioned refractory materials are loaded and pressed in a single mold during production, and after pressing, the mold needs to be inverted to demold and take out the refractory blank. Not only is it easy to damage the blank during the inversion, but it is also time-consuming and reduces production efficiency. The disadvantages are that the blank is easy to damage: during the inversion process, since the refractory blank has not been completely solidified, the blank is easy to deform or crack. This will result in a small number of finished products in the production process and increase the loss rate of the product. Increased mold wear: Frequent inversion will increase mold wear and reduce its life. Mold loss will increase production costs, and the mold needs to be replaced and maintained regularly. It takes a long time: the inversion process requires additional time and labor costs. The mold needs to be inverted after each pressing, and wait for the blank to solidify before demolding, which will extend the production cycle and reduce production efficiency. Utility Model Content
[0006] The technical problem to be solved by the utility model is to overcome the above technical defects and provide a forming device for producing refractory materials.
[0007] In order to solve the above problems, the technical solution of the utility model is: a forming device for refractory material production, comprising: a limiting enclosure, a condensing device and a partition device, the limiting enclosure is provided with blocks on the four end faces inside, the limiting enclosure is connected to the partition device inside, the partition device comprises a template, a T-shaped slide groove 1 is provided on the right side of the template, a T-shaped slide groove 2 is provided on the front side of the template, and card grooves are provided at the four corners of the template.
[0008] Furthermore, a stripping plate 1 is provided in the T-shaped slide groove 1, and the stripping plate 1 is slidably connected to the T-shaped slide groove 1; a stripping plate 2 is provided in the T-shaped slide groove 2, and the stripping plate 2 is slidably connected to the T-shaped slide groove 2, and the stripping plate 2 penetrates the stripping plate 1.
[0009] Furthermore, the lower end surface of the partition device is connected to a condensation device, and the condensation device includes a condensation box, and the condensation box is fixedly connected to the partition device. A condensation tube is provided inside the condensation box, and the condensation tube is fixedly connected to the condensation box.
[0010] Furthermore, condensers are provided at both ends of the condenser tube, the condenser is fixedly connected to the condenser tube, and a support shell is provided outside the condenser, the support shell is fixedly connected to the condenser.
[0011] Furthermore, the upper end surface of the support shell is fixedly connected to the condensation box, and the lower end surface of the support shell is provided with a bottom plate, and the bottom plate is fixedly connected to the support shell.
[0012] The advantages of the utility model compared with the existing technology are:
[0013] 1. The molding device for refractory material production of the utility model is provided with a condensing device and a demolding plate. After the material is formed, the demolding plate can be taken out to remove the material. This has the advantage of simplifying the demolding process: by providing the demolding plate, the demolding plate can be taken out directly after the material is formed, without the need to invert the mold. This can avoid the problem of damage to the billet due to inverting the mold, and improve the quality and output of the finished product. Improve production efficiency: The simplification of the demolding process reduces time and labor costs. There is no need to wait for the billet to solidify before demolding, which can reduce the production cycle and improve production efficiency. Reduce mold wear: By reducing the number of inverting molds, the degree of mold wear can be reduced and the service life of the mold can be extended. Reduce the cost of mold replacement and maintenance. Improve product consistency: Since the demolding process is more stable and controllable, the consistency of the finished product is higher, and problems such as size inconsistency and shape changes caused by demolding are reduced. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a stereoscopic diagram of a forming device for producing refractory materials according to the utility model.
[0015] Figure 2 It is a stereoscopic diagram of a condensing device of a molding device for producing refractory materials according to the utility model.
[0016] Figure 3 It is a disassembled diagram of a forming device for producing refractory materials according to the utility model.
[0017] As shown in the figure: 1. Limit enclosure; 101. Block; 2. Condensation device; 201. Condensation box; 202. Condensation tube; 203. Condenser; 3. Partition device; 301. Template; 302. T-type slide groove 1; 303. T-type slide groove 2; 304. Slot; 305. Stripping template 1; 306. Stripping template 2; 4. Support shell; 5. Bottom plate. DETAILED DESCRIPTION
[0018] The specific implementation of the utility model is further described below in conjunction with the accompanying drawings, wherein the same parts are represented by the same reference numerals.
[0019] It should be noted that the words "front", "rear", "left", "right", "up" and "down" used in the following description refer to directions in the drawings, and the words "inside" and "outside" refer to directions toward or away from the geometric center of a specific component, respectively.
[0020] In order to make the contents of the present invention more clearly understood, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention.
[0021] like Figures 1 to 3As shown in the figure, the technical solution of the utility model is: a forming device for refractory material production, including: a limiting enclosure 1, a condensing device 2 and a partition device 3, the limiting enclosure 1 is connected to the four end faces inside the card block 101, the card block 101 is used to fix the limiting enclosure 1, the limiting enclosure 1 is connected to the partition device 3, the partition device 3 includes a template 301, the template 301 is used to place refractory materials, the template 301 is connected to a T-shaped slide groove 1 302 on the right side, the template 301 is connected to a T-shaped slide groove 2 303 on the front side, and the template 301 is connected to card grooves 304 at the four corners.
[0022] like Figures 1 to 3 As shown in the figure, the T-shaped slide groove 1 302 is connected to the stripping plate 1 305, the stripping plate 1 305 is slidably connected to the T-shaped slide groove 1 302, the T-shaped slide groove 2 303 is connected to the stripping plate 2 306, the stripping plate 2 306 is slidably connected to the T-shaped slide groove 2 303, the stripping plate 2 306 penetrates the stripping plate 1 305, and the stripping plate 1 305 and the stripping plate 2 306 cooperate to form a groove for placing the refractory material.
[0023] like Figures 1 to 3 As shown in the figure, the lower end face of the partition device 3 is connected to the condensation device 2, and the condensation device 2 includes a condensation box 201, which is fixedly connected to the partition device 3. The condensation box 201 is used to place the condensation tube 202. The condensation tube 202 is connected inside the condensation box 201, and the condensation tube 202 is fixedly connected to the condensation box 201. The condensation tube 202 provides space for the flow of refrigerant.
[0024] like Figures 1 to 3 As shown in the figure, both ends of the condenser tube 202 are connected to the condenser 203, and the condenser 203 is fixedly connected to the condenser tube 202. The condenser 203 performs refrigeration work. The outer side of the condenser 203 is connected to the supporting shell 4, and the supporting shell 4 is fixedly connected to the condenser 203. The upper end surface of the supporting shell 4 is fixedly connected to the condensation box 201, and the lower end surface of the supporting shell 4 is connected to the bottom plate 5, and the bottom plate 5 is fixedly connected to the supporting shell 4. The supporting shell 4 is used to protect the condenser 203 and at the same time, the supporting shell 4 firmly supports the equipment.
[0025] In specific use, first place the equipment in a suitable position, then insert the stripper plate 1 305 into the template 301, and then insert the stripper plate 2 306 into the template 301, place the limiting enclosure 1 on the template 301 so that the card block 101 is inserted into the card slot 304 for fixation, and then pour the liquefied refractory material into the stripper plate 1 305 and the stripper plate 2 306, and then start the condenser 203 to make the condensate in the condenser tube 202 flow for cooling, and after the refractory material is cooled and solidified, pick up the limiting enclosure 1, pull out the stripper plate 1 305 and the stripper plate 2 306, and then take out the solidified refractory material.
[0026] The above description of the utility model and its implementation methods is not restrictive. The drawings show only one implementation method of the utility model, and the actual structure is not limited thereto. In short, if ordinary technicians in this field are inspired by it and design structural methods and embodiments similar to the technical solution without creativity without departing from the purpose of the invention of the utility model, they should all fall within the protection scope of the utility model.
Claims
1. A forming device for refractory material production, characterized in that: include: A limiting enclosure (1), a condensing device (2) and a partition device (3); The limiting enclosure (1) is provided with clamping blocks (101) on the four end surfaces thereof, the limiting enclosure (1) is internally connected to a partition device (3), the partition device (3) comprising a template (301), a T-shaped slide groove 1 (302) being provided on the right side of the template (301), a T-shaped slide groove 2 (303) being provided on the front side of the template (301), and clamping grooves (304) being provided at the four corners of the template (301).
2. A forming device for producing refractory materials according to claim 1, characterized in that: The T-shaped slide groove 1 (302) is provided with a stripping plate 1 (305), and the stripping plate 1 (305) is slidably connected to the T-shaped slide groove 1 (302). The T-shaped slide groove 2 (303) is provided with a stripping plate 2 (306), and the stripping plate 2 (306) is slidably connected to the T-shaped slide groove 2 (303). The stripping plate 2 (306) penetrates the stripping plate 1 (305).
3. A forming device for producing refractory materials according to claim 1, characterized in that: The lower end surface of the partition device (3) is connected to the condensation device (2), and the condensation device (2) comprises a condensation box (201), and the condensation box (201) is fixedly connected to the partition device (3). A condensation tube (202) is provided inside the condensation box (201), and the condensation tube (202) is fixedly connected to the condensation box (201).
4. A forming device for producing refractory materials according to claim 3, characterized in that: Condensers (203) are provided at both ends of the condenser tube (202), and the condenser (203) is fixedly connected to the condenser tube (202). A support shell (4) is provided on the outside of the condenser (203), and the support shell (4) is fixedly connected to the condenser (203).
5. A forming device for producing refractory materials according to claim 4, characterized in that: The upper end surface of the support shell (4) is fixedly connected to the condensation box (201), and the lower end surface of the support shell (4) is provided with a bottom plate (5), and the bottom plate (5) is fixedly connected to the support shell (4).
Citation Information
Patent Citations
Automatic forming device for refractory material production
CN217292729U