Multi-slot casting mold for metal production
By introducing a cooling box and a mold mechanism into the metal smelting mold, the cooling water is ensured to be in uniform contact with the mold forming shell, which solves the problem of uneven cooling rate in the existing mold, and achieves simultaneous mold release and efficient production.
Patent Information
- Application Number
- CN202420812367.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-18
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-04-18
AI Technical Summary
The existing multi-trough magnesium ingot casting molds for metal smelting have small contact area between small mold grooves and cold water, and uneven cooling rate, resulting in the problem that the molded metal cannot be demolded at the same time and the next casting is carried out.
A multi-slot metal production casting mold is designed, using a cooling box and a mold mechanism. There is a gap between the mold forming shell. The cold water in the cooling box can contact the outer wall of each mold forming shell at the same time, with the same contact area to ensure a uniform cooling rate.
The uniform cooling rate of metal in the mold forming shell is achieved, and it supports simultaneous demolding and next casting, which improves production efficiency.
Smart Images

Figure CN223070373U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of metal manufacturing, in particular to a casting mold for multi-slot metal production. Background Technique
[0002] Metal materials are usually divided into ferrous metals, non-ferrous metals and special metal materials. Metal materials are widely used in various fields of the national economy and national defense science and technology industries such as metallurgy, machinery, chemical industry, construction, aerospace, and weapons, as well as in all aspects of people's lives. Metals need to be smelted before use, and the smelted metals are often used in casting molds to form the required shapes. The patent with the publication number CN213614005U discloses a multi-slot magnesium ingot casting mold for metal smelting, including a base. A casting mold body is installed on the top wall of the base near the right side. A main mold groove is opened on the top wall of the casting mold body. A plurality of separation plates are fixedly installed on the inner wall of the main mold groove. The separation plates divide the main mold groove into a plurality of small mold grooves with the same size. A cooling cavity is also opened inside the casting mold body. A water storage tank is arranged on the left side of the casting mold body. A first water pump and a second water pump are arranged at the middle position of the bottom inner wall of the water storage tank. The water outlet end of the first water pump is connected with a water inlet pipe, and the end of the water inlet pipe extends into the cooling cavity. The water outlet end of the second water pump is connected with a water outlet pipe, and the end of the water outlet pipe extends into the cooling cavity. Although the multi-slot magnesium ingot casting mold for metal smelting can improve the cooling speed to a certain extent, accelerate the molding speed of the mold, and improve work efficiency, the multi-slot magnesium ingot casting mold for metal smelting relies on installing a plurality of separation plates on the inner wall of the main mold groove to divide the main mold groove into a plurality of small mold grooves with the same size. The small mold grooves except the small mold grooves on both sides have a small contact area with cold water and a low cooling rate. Moreover, due to the different cooling rates of the small mold grooves, the formed metal in the mold grooves cannot be demolded at the same time, nor can the next casting be carried out. Content of the Utility Model
[0003] 1. Technical Problems to be Solved
[0004] In view of the deficiencies of the prior art, the utility model provides a casting mold for multi-slot metal production. The casting mold includes a cooling box and a mold mechanism. The mold mechanism includes a fixing plate and a plurality of mold forming shells. There are gaps between the mold forming shells, so that the cold water in the cooling box can contact the outer walls of each mold forming shell at the same time and the contact area is the same. While ensuring the cooling rate of the formed metal in the mold forming shell, it can also make the cooling rate of the formed metal the same, so that the plurality of mold forming shells of the casting mold can be demolded at the same time, which is convenient for the next casting, and solves the problems raised in the background technique.
[0005] 2. Technical Solutions
[0006] A casting mold for metal production with multiple slots, including a base, the base is arranged parallel to the horizontal plane, a cooling box is fixedly arranged above the base, a cooling cavity is opened in the cooling box, and the top plate of the cooling box is penetrated by a mold mechanism and fixedly connected to the mold mechanism.
[0007] Preferably, the mold mechanism includes a fixing plate, a mold forming shell and a mold cavity. The fixing plate is arranged parallel to the base, the fixing plate penetrates the top plate of the cooling box, the fixing plate is penetrated by a plurality of uniformly distributed mold forming shells and the mold forming shells are fixedly connected to the fixing plate. There is a gap between the mold forming shells, and a mold cavity is opened downward on the top surface of the mold forming shell.
[0008] Preferably, the upper end of the outer side wall of the cooling box is penetrated by a water outlet pipe and the cooling box is fixedly connected to the water outlet pipe. The water outlet pipe is communicated with the cooling cavity. The lower end of the outer side wall of the cooling box is penetrated by a connecting pipe and the cooling box is fixedly connected to the connecting pipe. The connecting pipe is communicated with the cooling cavity.
[0009] Preferably, one end of the connecting pipe away from the cooling cavity is connected to a filter box, and the filter box is connected to a water inlet pipe.
[0010] Preferably, a cavity is opened in the filter box, a filter element is arranged in the cavity opened in the filter box, the filter element is arranged perpendicular to the horizontal plane, the connecting pipe penetrates through one side wall of the filter box and is communicated with the cavity opened in the filter box, and the water inlet pipe penetrates through the side wall of the filter box away from the connecting pipe and is communicated with the cavity opened in the filter box.
[0011] 3. Beneficial effects
[0012] Compared with the prior art, the present utility model has the following beneficial effects:
[0013] The casting mold includes a cooling box and a mold mechanism. The mold mechanism includes a fixing plate and a plurality of mold forming shells. There is a gap between the mold forming shells. Therefore, the cold water in the cooling box can contact the outer walls of each mold forming shell at the same time and the contact area is the same. While ensuring the cooling rate of the formed metal in the mold forming shell, the cooling rate of the formed metal can also be the same. Description of the drawings
[0014] Figure 1 It is a three-dimensional structure diagram of the present utility model;
[0015] Figure 2 It is a three-dimensional structure diagram of the mold mechanism of the present utility model;
[0016] Figure 3 It is a side sectional structure diagram of the present utility model;
[0017] Figure 4Schematic cross-sectional structure diagram of the utility model
[0018] Figure 5 Partial cross-sectional structure diagram of the utility model
[0019] In the figure: 1, base; 2, cooling box; 3, mold mechanism; 4, filter box; 201, connecting pipe; 202, water outlet pipe; 203, cooling cavity; 204, water inlet pipe; 301, fixing plate; 302, mold forming shell; 303, mold cavity; 401, filter element Specific implementation mode
[0020] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments in the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative work shall fall within the protection scope of the present utility model
[0021] Embodiment
[0022] Refer to Figures 1-5 as shown
[0023] A casting mold for multi-slot metal production includes a base 1, the base 1 is arranged parallel to the horizontal plane, a cooling box 2 is fixedly arranged above the base 1, a cooling cavity 203 is opened in the cooling box 2, the top plate of the cooling box 2 is penetrated by a mold mechanism 3 and fixedly connected to the mold mechanism 3. The mold mechanism 3 includes a fixing plate 301, a mold forming shell 302 and a mold cavity 303. The fixing plate 301 is arranged parallel to the base 1, the fixing plate 301 penetrates the top plate of the cooling box 2, the fixing plate 301 is penetrated by a plurality of uniformly distributed mold forming shells 302 and the mold forming shells 302 are fixedly connected to the fixing plate 301. There are gaps between the mold forming shells 302, and a mold cavity 303 is opened downward on the top surface of the mold forming shell 302
[0024] There is cold water in the cooling cavity 203 opened in the cooling box 2. The casting mold includes a cooling box 2 and a mold mechanism 3. The mold mechanism 3 includes a fixing plate 301 and a plurality of mold forming shells 302. There are gaps between the mold forming shells 302. Therefore, the cold water in the cooling box 2 can contact the outer walls of each mold forming shell 302 at the same time and the contact area is the same. While ensuring the cooling rate of the formed metal in the mold forming shell 302, the cooling rate of the formed metal can also be the same, so that the plurality of mold forming shells 302 of the casting mold can be demolded at the same time, which is convenient for the next casting
[0025] The upper end of the outer side wall of the cooling box 2 is penetrated by the water outlet pipe 202, and the cooling box 2 is fixedly connected to the water outlet pipe 202. The water outlet pipe 202 is communicated with the cooling cavity 203. The lower end of the outer side wall of the cooling box 2 is penetrated by the connecting pipe 201, and the cooling box 2 is fixedly connected to the connecting pipe 201. The connecting pipe 201 is communicated with the cooling cavity 203. One end of the connecting pipe 201 far away from the cooling cavity 203 is connected to the filter box 4, the filter box 4 is connected to the water inlet pipe 204. A cavity is formed in the filter box 4, and a filter element 401 is arranged in the cavity formed in the filter box 4. The filter element 401 is arranged perpendicular to the horizontal plane. The connecting pipe 201 penetrates through one side wall of the filter box 4 and is communicated with the cavity formed in the filter box 4. The water inlet pipe 204 penetrates through the side wall of the filter box 4 far away from the connecting pipe 201 and is communicated with the cavity formed in the filter box 4;
[0026] When the casting mold is working, cold water enters the cooling cavity 203 of the cooling box 2 from the water inlet pipe 204 through the filter box and the connecting pipe 201 to cool down the mold forming shell 302. A filter element 401 is arranged in the filter box 4. When the cold water passes through the filter box, the filter element 401 filters the cold water to prevent larger impurity particles in the cold water from entering the cooling box 2, reducing the cleaning frequency of the cooling box 2. The water inlet pipe 204 is communicated with an external water inlet pipe 204, and the water outlet pipe 202 is communicated with an external drain pipe.
[0027] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A casting mold for metal production with multiple slots, including a base (1), the base (1) is arranged parallel to the horizontal plane, and it is characterized in that: Above the base (1), a cooling box (2) is fixedly arranged. A cooling cavity (203) is formed in the cooling box (2). The top plate of the cooling box (2) is penetrated by a die mechanism (3) and fixedly connected to the die mechanism (3). The upper end of the outer side wall of the cooling box (2) is penetrated by a water outlet pipe (202), and the cooling box (2) is fixedly connected to the water outlet pipe (202). The water outlet pipe (202) is communicated with the cooling cavity (203). The lower end of the outer side wall of the cooling box (2) is penetrated by a connecting pipe (201), and the cooling box (2) is fixedly connected to the connecting pipe (201). The connecting pipe (201) is communicated with the cooling cavity (203). The die mechanism (3) includes a fixing plate (301), a die forming shell (302) and a die cavity (303). The fixing plate (301) is arranged parallel to the base (1). The fixing plate (301) penetrates the top plate of the cooling box (2). The fixing plate (301) is penetrated by a plurality of uniformly distributed die forming shells (302), and the die forming shells (302) are fixedly connected to the fixing plate (301). There are gaps between the die forming shells (302). A die cavity (303) is formed downward on the top surface of the die forming shell (302).
2. The casting mold for metal production with multiple slots according to claim 1, characterized in that: One end of the connecting pipe (201) far from the cooling cavity (203) is connected to a filter box (4), and the filter box (4) is connected to a water inlet pipe (204).
3. A casting mold for metal production with multiple slots according to claim 2, characterized in that: A cavity is formed in the filter box (4). A filter element (401) is arranged in the cavity formed in the filter box (4). The filter element (401) is arranged perpendicular to the horizontal plane. The connecting pipe (201) penetrates one side wall of the filter box (4) and is communicated with the cavity formed in the filter box (4). The water inlet pipe (204) penetrates the side wall of the filter box (4) far from the connecting pipe (201) and is communicated with the cavity formed in the filter box (4).
Citation Information
Patent Citations
Multislot magnesium ingot casting mold for metal smelting
CN213614005U