A new type of slab mold
By transforming the crystallizer into a two-piece structure and simplifying the waterway structure, the existing crystallizer structure is solved and the problems of complex structure and inconvenient maintenance are improved, and the strength, stability and service life of the equipment are improved.
Patent Information
- Application Number
- CN202210596580.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-05-30
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2042-05-30
AI Technical Summary
The existing crystallizer has a complex and unstable structure, time-consuming and labor-intensive installation, inconvenient maintenance, and the complex waterway structure leads to high costs and easy corrosion.
The crystallizer is transformed into a two-piece structure, which is easy to disassemble and assemble, and the waterway structure is integrated to simplify the overall structure and facilitate maintenance.
It improves the strength and stability of the crystallizer, facilitates disassembly and assembly and maintenance, reduces costs, and extends the service life of the equipment.
Smart Images

Figure CN114769527B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of slab crystallizers, and more specifically to a novel slab crystallizer. Background Art
[0002] The crystallizer is a core component of continuous casting. As an important heat-conducting component for continuous casting from molten steel to solidified shell, the quality of the crystallizer copper plate directly affects indexes such as the surface quality of the cast slab and the drawing speed of the continuous caster. The molten steel flows through the crystallizer copper plate, crystallizes into a billet under the action of external cooling water, and is pulled out of the crystallizer by the dummy bar. Frequent billet drawing causes serious wear of the crystallizer copper plate and frequent replacement.
[0003] Existing crystallizers mostly have a "four-piece" structure, specifically including two sets of processing frames arranged oppositely. A back plate and a copper plate are arranged between the opposite surfaces of the two sets of processing frames, and the two sets of processing frames are fixedly installed through a left support and a right support arranged left and right. During the slab continuous casting process, the cooling water flows from the lower water tank to the copper plate, then to the upper water tank, and finally is discharged from the water outlet of the water tank to cool down the copper plate to prevent the copper plate from being damaged due to excessive temperature during the processing; to ensure the internal strength, multiple sets of reinforcing plates are usually added in the water tank, and water channels are opened on the reinforcing plates, resulting in a relatively complex internal structure of the water tank within the two sets of processing frames arranged oppositely. Since the inlet and outlet pipes of the water tank inside the crystallizer are connected to the pipes on the left and right supports through flanges, a corrugated pipe is also required in the middle, and the external leakage pipes need to be welded with stainless steel pipes to the left and right supports. The corrugated pipe used for connection is expensive, resulting in high costs and being prone to being bumped and corroded; in addition, the above-mentioned crystallizer has a complex and unstable structure, time-consuming and laborious to install, and not convenient for maintenance. Therefore, it is necessary to design a novel crystallizer to improve the above defects. Summary of the Invention
[0004] 1. Technical Problems to be Solved by the Invention
[0005] Aiming at the problems such as the complex structure of the existing crystallizer and its internal water tank, the present invention proposes a novel slab crystallizer. After fixing the fixed side of the crystallizer to the reference, the movable side of the crystallizer is installed, so as to transform the existing four-piece crystallizer into a two-piece one, thus facilitating disassembly and assembly; at the same time, the water channel structures of each part are integrally transformed, thereby simplifying the overall structure and facilitating equipment maintenance.
[0006] 2. Technical Solutions
[0007] To achieve the above object, the technical solution provided by the present invention is as follows:
[0008] A new type of slab mold, comprising a fixed plate fixed to a reference. On the upper surface of the fixed plate, a fixed side of the mold is fixedly installed. On the processing side of the fixed side of the mold, a movable side of the mold is movably installed. After fixing the fixed side of the mold to the reference, the movable side of the mold is then installed, so as to transform the existing four-piece mold into a two-piece mold, thereby improving the overall strength and stability, and facilitating disassembly and assembly. The fixed side and the movable side of the mold are connected and communicated through symmetrically arranged water inlet pipes and water outlet pipes on the left and right. At the left and right ends of the fixed side of the mold, a fixed side water inlet tank and a fixed side water outlet tank are respectively connected and communicated. The fixed side water inlet tank and the fixed side water outlet tank are fixedly installed on the upper surface of the fixed plate. At the left and right ends of the movable side of the mold, a movable side water inlet tank and a movable side water outlet tank are respectively movably installed. The movable side water inlet tank and the movable side water outlet tank are fixedly installed on the upper surface of the fixed plate, thereby correspondingly optimizing the internal structure of the mold water tank and making the water circuits inside the mold water tank integrated.
[0009] A further technical solution is that the fixed side of the mold includes a fixed frame body. The fixed frame body includes an upper water tank of the fixed frame body and a lower water tank of the fixed frame body arranged at intervals up and down. Between the upper water tank of the fixed frame body and the lower water tank of the fixed frame body, a water outlet of the fixed frame body and a water inlet of the fixed frame body are respectively opened left and right in the interval area. The fixed side water inlet tank and the fixed side water outlet tank are respectively connected and communicated with the fixed frame body through the water inlet of the fixed frame body and the water outlet of the fixed frame body. A vertical fixed side water inlet is opened at the connection between the fixed side water inlet tank and the fixed plate. A fixed side water inlet tank partition is horizontally arranged in the middle of the fixed side water inlet tank. The fixed side water inlet is connected and communicated with a circular pipe through hole I opened on the fixed side water inlet tank partition through a vertically installed circular pipe. The fixed side water inlet is externally connected to a water source. A vertical fixed side water outlet is opened at the connection between the fixed side water outlet tank and the fixed plate. A fixed side water outlet tank partition is horizontally arranged in the middle of the fixed side water outlet tank. The fixed side water outlet is connected and communicated with a circular pipe through hole II opened on the fixed side water outlet tank partition through a vertically installed circular pipe, so as to provide cooling water for the fixed side of the mold to cool the copper plate I installed on the inner side surface of the fixed frame body, and to separate the fixed side water inlet tank and the fixed side water outlet tank from the movable side water inlet tank and the movable side water outlet tank, so that the fixed side and the movable side of the mold form their respective closed circulation water circuits.
[0010] Further technical solution: on the upper surface of the lower water tank of the fixed frame body, a lower water tank inlet I is vertically opened near the water inlet II of the fixed frame body; on the lower surface of the upper water tank of the fixed frame body, an upper water tank outlet I is vertically opened near the water inlet I of the fixed frame body. The cooling water is discharged into the fixed frame body through the water inlet II of the fixed frame body by the fixed side inlet water tank, and then enters the lower water tank of the fixed frame body through the lower water tank inlet I. The cooling water flows from the lower water tank of the fixed frame body to the copper plate I to cool it, and finally is discharged through the fixed side outlet.
[0011] Further technical solution: the inner side surface of the fixed frame body is connected to the water inlet pipe and the water outlet pipe through the horizontally opened water inlet II and water outlet II. The water inlet II and the water outlet II are arranged in the interval area between the upper water tank and the lower water tank of the fixed frame body to ensure that the copper plate I and the copper plate II installed on the fixed frame body and the movable frame body are cooled simultaneously, so that the slab continuously cast between the two is uniformly heated, ensuring the processing accuracy.
[0012] Further technical solution: a fixed side water outlet through hole is horizontally opened at the connection between the fixed side outlet water tank and the movable side outlet water tank, and the fixed side water outlet through hole is communicated with the lower area of the fixed side outlet water tank partition arranged in the fixed side outlet water tank; a fixed side water inlet through hole is horizontally opened at the connection between the fixed side inlet water tank and the movable side inlet water tank, and the fixed side water inlet through hole is communicated with the lower area of the fixed side inlet water tank partition arranged in the fixed side inlet water tank; a movable side water inlet is vertically opened at the connection between the movable side inlet water tank and the fixed plate, and the movable side water inlet is externally connected to a water source. A movable side water outlet is vertically opened at the connection between the movable side outlet water tank and the fixed plate. The cooling water entering the movable side inlet water tank through the movable side water inlet is then discharged into the inside of the movable side of the mold through the water outlet II, so as to spray-cool the copper plate II installed on the inner side surface of the movable side of the mold. The water after the cooling process is discharged back into the movable side outlet water tank through the water outlet pipe and finally discharged through the movable side water outlet. During the process of water-cooling the copper plate II installed on the movable side of the mold, the cooling water borrows the lower free space between the fixed side inlet water tank and the fixed side outlet water tank for water circulation. Moreover, the water circuits of the fixed side and the movable side of the mold are independent of each other, making the water circuit structure of the whole device integrated and eliminating the need for additional externally connected corrugated pipes, improving the service life of the equipment.
[0013] Further technical solution: The movable side of the mold is connected to the movable side water inlet tank through a movable side water inlet tank connecting groove and a movable side water inlet tank connecting block that are engaged and connected. The movable side water inlet tank connecting groove is fixedly installed on the outer side surface of the movable side water inlet tank, and the movable side water inlet tank connecting block is fixedly installed on the outer side surface of the movable side of the mold; the movable side of the mold is connected to the movable side water outlet tank through a movable side water outlet tank connecting groove and a movable side water outlet tank connecting block that are engaged and connected. The movable side water outlet tank connecting groove is fixedly installed on the outer side surface of the movable side water outlet tank, and the movable side water outlet tank connecting block is fixedly installed on the outer side surface of the movable side of the mold, making the disassembly and assembly simple, fast, time-saving and labor-saving.
[0014] Further technical solution: The movable side of the mold includes a movable frame body. The movable frame body includes an upper water tank of the movable frame body and a lower water tank of the movable frame body that are arranged at intervals up and down. A plurality of groups of upper water tank inlets are horizontally and equidistantly arranged on the upper part of the upper water tank of the movable frame body, and a plurality of groups of lower water tank outlets are horizontally and equidistantly arranged on the lower part of the lower water tank of the movable frame body; a movable side water inlet is provided at the connection between the movable side water inlet tank and the fixing plate, and a movable side water outlet is provided at the connection between the movable side water outlet tank and the fixing plate to provide cooling water for the movable side of the mold.
[0015] Further technical solution: The movable frame body is communicated with the water inlet pipe and the water outlet pipe through a horizontally opened water outlet I and a water inlet I. The water outlet I and the water inlet I are arranged in the interval area between the upper water tank of the movable frame body and the lower water tank of the movable frame body.
[0016] Further technical solution: A vertically opened upper water tank water outlet is provided on the lower surface of the upper water tank of the movable frame body on the side close to the water inlet, and a vertically opened lower water tank water inlet is provided on the upper surface of the lower water tank of the movable frame body on the side close to the water outlet to realize the connection between the upper water tank of the movable frame body and the lower water tank of the movable frame body and ensure the circulating flow of cooling water inside it.
[0017] Further technical solution: A back plate I and a copper plate I are sequentially and vertically installed on the inner side surface of the fixed frame body.
[0018] Further technical solution: A back plate II and a copper plate II are sequentially and vertically installed on the inner side surface of the movable frame body.
[0019] 3. Beneficial effects
[0020] Adopting the technical solution provided by the present invention, compared with the prior art, it has the following beneficial effects:
[0021] (1)A new type of slab mold of the present invention transforms the existing four-piece mold into a two-piece mold by fixing the fixed side of the mold to a reference and then installing the movable side of the mold, which facilitates disassembly and assembly. At the same time, the waterway structures of all parts are integrally transformed to simplify the overall structure and facilitate equipment maintenance.
[0022] (2)In a new type of slab mold of the present invention, the fixed side of the mold includes a fixed frame body. Water entering from the water inlet of the fixed side flows into the fixed frame body through the water inlet of the fixed frame body to spray and cool the copper plate I installed on the inner surface of the fixed frame body. The water flow then flows into the fixed side outlet water tank from the outlet of the fixed frame body and is discharged through the fixed side water outlet to provide cooling water for the fixed side of the mold to cool the copper plate I, thereby further optimizing the internal structure of the mold water tank.
[0023] (3)During the process of spraying and cooling the copper plate II installed on the movable side of the mold in a new type of slab mold of the present invention, the cooling water entering the movable side inlet water tank through the movable side water inlet flows into the interval area between the fixed side inlet water tank through the fixed side water inlet through hole, and then is discharged into the interior of the movable side of the mold through the outlet II to conduct water cooling on the copper plate II installed on the inner surface of the movable side of the mold. The water after the cooling process is discharged back into the movable side outlet water tank through the water outlet pipe and finally discharged through the movable side water outlet. The cooling water borrows the empty space at the lower part of the fixed side inlet water tank and the fixed side outlet water tank for water circulation, making the waterway structure of the entire device integrated and eliminating the need for additional externally connected corrugated pipes, improving the service life of the equipment.
[0024] (4)In a new type of slab mold of the present invention, a fixed side inlet water tank partition is horizontally arranged in the middle of the fixed side inlet water tank. The fixed side water inlet is connected to the circular pipe through hole I opened on the fixed side inlet water tank partition through a vertically installed circular pipe. A fixed side outlet water tank partition is horizontally arranged in the middle of the fixed side outlet water tank. The fixed side water outlet is connected to the circular pipe through hole II opened on the fixed side outlet water tank partition through a vertically installed circular pipe to separate the fixed side inlet water tank and the fixed side outlet water tank from the movable side inlet water tank and the movable side outlet water tank, so that the fixed side of the mold and the movable side of the mold form their respective closed circulating waterways.
[0025] (5)A new type of slab mold of the present invention is connected between the movable side of the mold and the water inlet tank on the movable side through a movable side water inlet tank connection groove and a movable side water inlet tank connection block that are snap-connected. The movable side water inlet tank connection groove is fixedly installed on the outer side surface of the movable side water inlet tank, and the movable side water inlet tank connection block is fixedly installed on the outer side surface of the movable side of the mold. The movable side of the mold is connected to the water outlet tank on the movable side through a snap-connected movable side water outlet tank connection groove and a movable side water outlet tank connection block. The movable side water outlet tank connection groove is fixedly installed on the outer side surface of the movable side water outlet tank, and the movable side water outlet tank connection block is fixedly installed on the outer side surface of the movable side of the mold, making the disassembly and assembly simple, fast, time-saving and labor-saving. BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Figure 1 is a schematic three-dimensional structure diagram of the combined state of the mold of the present invention;
[0027] Figure 2 is Figure 1 the schematic bottom view;
[0028] Figure 3 is Figure 1 the schematic internal structure diagram of the mold;
[0029] Figure 4 is Figure 2 the rear view;
[0030] Figure 5 is Figure 1 the schematic three-dimensional structure diagram of the fixed side of the mold in;
[0031] Figure 6 is Figure 5 the schematic bottom view;
[0032] Figure 7 is Figure 1 the schematic structure diagram of the fixed side of the mold in after removing the back plate and copper plate;
[0033] Figure 8 is the schematic structure diagram of the disassembled state of the movable side of the mold of the present invention;
[0034] Figure 9 is Figure 8 the front view of the main body of the movable side of the mold in.
[0035] In the figure: 1 - fixed side of the mold; 11 - main body of the fixed frame; 12 - back plate I; 13 - copper plate I; 1101 - upper water tank of the main body of the fixed frame; 1102 - lower water tank of the main body of the fixed frame; 1103 - outlet I of the upper water tank; 1104 - inlet I of the lower water tank; 1105 - outlet of the fixed frame body; 1106 - inlet of the fixed frame body; 111 - fixing plate; 2 - fixed side inlet water tank; 21 - fixed side water inlet; 22 - fixed side water inlet through hole; 23 - partition of the fixed side inlet water tank; 231 - round pipe through hole I; 3 - fixed side outlet water tank; 31 - fixed side water outlet; 32 - fixed side water outlet through hole; 33 - partition of the fixed side outlet water tank; 331 - round pipe through hole II; 4 - movable side of the mold; 41 - main body of the movable frame; 411 - upper water tank of the main body of the movable frame; 412 - lower water tank of the main body of the movable frame; 413 - outlet II of the upper water tank; 414 - inlet II of the lower water tank; 415 - inlet of the upper water tank; 416 - outlet of the lower water tank; 42 - back plate II; 43 - copper plate II; 5 - movable side inlet water tank; 51 - movable side water inlet; 52 - connecting groove of the movable side inlet water tank; 53 - connecting block of the movable side inlet water tank; 6 - movable side outlet water tank; 61 - movable side water outlet; 62 - connecting groove of the movable side outlet water tank; 63 - connecting block of the movable side outlet water tank; 7 - water inlet pipe; 71 - outlet I; 72 - inlet II; 8 - water outlet pipe; 81 - inlet I; 82 - outlet II. Detailed implementation mode
[0036] To further understand the content of the present invention, the invention will be described in detail with reference to the accompanying drawings.
[0037] Embodiment 1
[0038] A new type of slab mold in this embodiment, as Figure 1 shown, includes a fixing plate 111 fixed to the reference. The upper surface of the fixing plate 111 is fixedly installed with the fixed side 1 of the mold; the processing side of the fixed side 1 of the mold is movably installed with the movable side 4 of the mold. After fixing the fixed side 1 of the mold to the reference, the movable side 4 of the mold is installed. After installation, the whole is hoisted to the vibrating table for fixing, so as to transform the existing four-piece mold into a two-piece mold, thereby improving the overall strength and stability and facilitating disassembly and assembly; the fixed side 1 of the mold and the movable side 4 of the mold are connected and communicated through the symmetrically arranged water inlet pipe 7 and water outlet pipe 8 on the left and right; the left and right ends of the fixed side 1 of the mold are respectively connected and arranged with a fixed side inlet water tank 2 and a fixed side outlet water tank 3, and the fixed side inlet water tank 2 and the fixed side outlet water tank 3 are fixedly installed on the upper surface of the fixing plate 111; the left and right ends of the movable side 4 of the mold are respectively movably installed with a movable side inlet water tank 5 and a movable side outlet water tank 6, and the movable side inlet water tank 5 and the movable side outlet water tank 6 are fixedly installed on the upper surface of the fixing plate 111.
[0039] In this embodiment, the fixed-side water inlet tank 2 provides cooling water for the fixed side 1 of the mold, thereby cooling the copper plate I13 vertically installed on the inner side of the fixed side 1 of the mold. The cooling water in the fixed side 1 of the mold is then discharged through the fixed-side water outlet tank 3, thereby optimizing the internal structure of the mold water tank and integrating each water circuit inside the mold water tank.
[0040] Embodiment 2
[0041] A new type of slab mold in this embodiment has the same basic structure as that in Embodiment 1. The differences and improvements are as follows: As Figures 4 - 7 shown, the fixed side 1 of the mold includes a fixed frame body. The fixed side 1 of the mold includes a fixed frame body 11. The fixed frame body 11 includes a fixed frame body upper water tank 1101 and a fixed frame body lower water tank 1102 arranged at intervals up and down. The interval area between the fixed frame body upper water tank 1101 and the fixed frame body lower water tank 1102 is provided with a fixed frame body water outlet 1105 and a fixed frame body water inlet 1106 on the left and right. The fixed-side water inlet tank 2 and the fixed-side water outlet tank 3 are respectively connected to the fixed frame body 11 through the fixed frame body water inlet 1106 and the fixed frame body water outlet 1105; a fixed-side water inlet 21 is vertically opened at the connection between the fixed-side water inlet tank 2 and the fixed plate 111. A fixed-side water inlet tank partition 23 is horizontally arranged in the middle of the fixed-side water inlet tank 2. The fixed-side water inlet 21 is connected to a circular pipe through hole I231 opened on the fixed-side water inlet tank partition 23 through a vertically installed circular pipe. The fixed-side water inlet 21 is externally connected to a water source. A fixed-side water outlet 31 is vertically opened at the connection between the fixed-side water outlet tank 3 and the fixed plate 111. A fixed-side water outlet tank partition 33 is horizontally arranged in the middle of the fixed-side water outlet tank 3. The fixed-side water outlet 31 is connected to a circular pipe through hole II331 opened on the fixed-side water outlet tank partition 33 through a vertically installed circular pipe, so as to separate the fixed-side water inlet tank 2 and the fixed-side water outlet tank 3 from the movable-side water inlet tank 5 and the movable-side water outlet tank 6, so that the fixed side 1 of the mold and the movable side 4 of the mold form their own closed circulating water circuits.
[0042] In this embodiment, the water entering from the fixed-side water inlet 21 flows into the fixed frame body 11 through the fixed frame body water inlet 1106 to cool the copper plate I13 installed on the inner side of the fixed frame body 11 by passing water; the water flow then flows into the fixed-side water outlet tank 3 from the fixed frame body water outlet 1105 and is discharged through the fixed-side water outlet 31 to provide cooling water for the fixed side 1 of the mold to cool the copper plate I13.
[0043] Embodiment 3
[0044] A new type of slab mold in this embodiment has the same basic structure as that in Embodiment 2. The differences and improvements are as follows: AsFigure 4 , 7 As shown, on the upper surface of the lower water tank 1102 of the fixed frame body near the water inlet II 1106 of the fixed frame body, a lower water tank water inlet I 1104 is vertically opened; on the lower surface of the upper water tank 1101 of the fixed frame body near the water outlet 1105 of the fixed frame body, an upper water tank water outlet I 1103 is vertically opened.
[0045] In this embodiment, the cooling water is discharged into the fixed frame body 11 through the fixed side water inlet tank 2 via the water inlet II 1106 of the fixed frame body. The cooling water then enters the lower water tank 1102 of the fixed frame body through the lower water tank water inlet I 1104. The cooling water flows from the lower water tank 1102 of the fixed frame body to the copper plate I 13 to cool it. The cooling water flows into the upper water tank 1101 of the fixed frame body from above through the gap between the copper plate I 13 and the fixed frame body 11, and is discharged into the fixed side water outlet tank 3 through the upper water tank water outlet I 1103 and the water outlet 1105 of the fixed frame body in sequence, and finally discharged through the fixed side water outlet 31.
[0046] Embodiment 4
[0047] A new type of slab crystallizer in this embodiment has the same basic structure as that in Embodiment 3. The differences and improvements are as follows: As Figure 1 shown, as Figures 8 - 9 shown, a fixed side water outlet through hole 32 is horizontally opened at the connection between the fixed side water outlet tank 3 and the movable side water outlet tank 6. The fixed side water outlet through hole 32 is communicated with the lower region of the fixed side water outlet tank partition 33 arranged in the fixed side water outlet tank 3; a fixed side water inlet through hole 22 is horizontally opened at the connection between the fixed side water inlet tank 2 and the movable side water inlet tank 5. The fixed side water inlet through hole 22 is communicated with the lower region of the fixed side water inlet tank partition 23 arranged in the fixed side water inlet tank 2. The water circuits of the fixed side 1 and the movable side 4 of the crystallizer are independent of each other, making the water circuit structure of the whole device integrated; a movable side water inlet 51 is vertically opened at the connection between the movable side water inlet tank 5 and the fixing plate 111, and the movable side water inlet 51 is externally connected to a water source. A movable side water outlet 61 is vertically opened at the connection between the movable side water outlet tank 6 and the fixing plate 111. The inner side surface of the fixed frame body 11 is communicated with the water inlet pipe 7 and the water outlet pipe 8 through the horizontally opened water inlet II 72 and the water outlet II 82. The water inlet II 72 and the water outlet II 82 are arranged in the interval area between the upper water tank 1101 and the lower water tank 1102 of the fixed frame body to ensure that the copper plate I 13 and the copper plate II 43 installed on the fixed frame body 11 and the movable frame body 41 are cooled simultaneously, so that the slab continuously cast between them is heated evenly and the processing accuracy is ensured.
[0048] In this embodiment, the cooling water that enters the movable-side water inlet tank 5 through the movable-side water inlet 51 flows through the fixed-side water inlet through-hole 22 into the interval area between the fixed-side water inlet tank 2 and 111, and then is discharged into the interior of the movable side 4 of the mold through the water outlet II 82, so as to conduct water cooling on the copper plate II 43 installed on the inner side of the movable side 4 of the mold. The water after the cooling process is discharged back into the interval area between the fixed-side water outlet tank 3 and the fixing plate 111 through the water inlet pipe 7 via the water inlet II 72, and then flows into the movable-side water outlet tank 6 through the fixed-side water outlet through-hole 32, and finally is discharged through the movable-side water outlet 61. During the process of spraying water cooling on the copper plate II 43 installed on the movable side 4 of the mold, the cooling water borrows the empty space at the lower part of the fixed-side water inlet tank 2 and the fixed-side water outlet tank 3 for water circulation, making the waterway structure of the whole device integrated, and there is no need to externally connect a corrugated pipe additionally, which improves the service life of the equipment.
[0049] Embodiment 5
[0050] A new type of slab mold in this embodiment has the same basic structure as that in Embodiment 4. The differences and improvements are as follows: As Figure 1 shown, the movable side 4 of the mold is connected to the movable-side water inlet tank 5 through the engaging movable-side water inlet tank connection groove 52 and movable-side water inlet tank connection block 53. The movable-side water inlet tank connection groove 52 is fixedly installed on the outer side surface of the movable-side water inlet tank 5, and the movable-side water inlet tank connection block 53 is fixedly installed on the outer side surface of the movable side 4 of the mold; the movable side 4 of the mold is connected to the movable-side water outlet tank 6 through the engaging movable-side water outlet tank connection groove 62 and movable-side water outlet tank connection block 63. The movable-side water outlet tank connection groove 62 is fixedly installed on the outer side surface of the movable-side water outlet tank 6, and the movable-side water outlet tank connection block 63 is fixedly installed on the outer side surface of the movable side 4 of the mold, making the disassembly and assembly simple, fast, time-saving and labor-saving.
[0051] The above schematically describes the present invention and its embodiments. This description is not restrictive. What is shown in the drawings is only one of the embodiments of the present invention, and the actual structure is not limited thereto. Therefore, if those of ordinary skill in the art are inspired by it and design similar structural modes and embodiments without creative efforts without departing from the purpose of the present invention, they shall fall within the protection scope of the present invention.
Claims
1. A new type of slab mold, characterized in that: it includes a fixed plate (111) fixed to a reference, and a fixed side of the mold (1) is fixedly installed on the upper surface of the fixed plate (111); a movable side of the mold (4) is movably installed on the processing side of the fixed side of the mold (1), and the fixed side of the mold (1) and the movable side of the mold (4) are connected and communicated through a water inlet pipe (7) and a water outlet pipe (8) symmetrically arranged on the left and right; fixed side water inlet tanks (2) and fixed side water outlet tanks (3) are respectively connected and communicated at the left and right ends of the fixed side of the mold (1), and the fixed side water inlet tanks (2) and the fixed side water outlet tanks (3) are fixedly installed on the upper surface of the fixed plate (111); movable side water inlet tanks (5) and movable side water outlet tanks (6) are respectively movably installed at the left and right ends of the movable side of the mold (4), and the movable side water inlet tanks (5) and the movable side water outlet tanks (6) are fixedly installed on the upper surface of the fixed plate (111); the fixed side of the mold (1) includes a fixed frame body (11), the fixed frame body (11) includes a fixed frame body upper water tank (1101) and a fixed frame body lower water tank (1102) arranged at intervals up and down, a fixed frame body water outlet (1105) and a fixed frame body water inlet (1106) are respectively opened left and right in the interval area between the fixed frame body upper water tank (1101) and the fixed frame body lower water tank (1102), and the fixed side water inlet tank (2) and the fixed side water outlet tank (3) are respectively connected and communicated with the fixed frame body (11) through the fixed frame body water inlet (1106) and the fixed frame body water outlet (1105); a fixed side water inlet (21) is vertically opened at the connection between the fixed side water inlet tank (2) and the fixed plate (111), a fixed side water inlet tank partition (23) is horizontally arranged in the middle of the fixed side water inlet tank (2), and the fixed side water inlet (21) is connected and communicated with a circular pipe through hole I (231) opened on the fixed side water inlet tank partition (23) through a vertically installed circular pipe; the fixed side water inlet (21) is externally connected to a water source, a fixed side water outlet (31) is vertically opened at the connection between the fixed side water outlet tank (3) and the fixed plate (111), a fixed side water outlet tank partition (33) is horizontally arranged in the middle of the fixed side water outlet tank (3), and the fixed side water outlet (31) is connected and communicated with a circular pipe through hole II (331) opened on the fixed side water outlet tank partition (33) through a vertically installed circular pipe; a lower water tank water inlet I (1104) is vertically opened at a position on the upper surface of the fixed frame body lower water tank (1102) close to the fixed frame body water inlet (1106); an upper water tank water outlet I (1103) is vertically opened at a position on the lower surface of the fixed frame body upper water tank (1101) close to the fixed frame body water outlet (1105); The inner side of the fixed frame body (11) is communicated with the water inlet pipe (7) and the water outlet pipe (8) through the horizontally opened water inlet II (72) and water outlet II (82). The water inlet II (72) and the water outlet II (82) are arranged in the interval area between the upper water tank (1101) and the lower water tank (1102) of the fixed frame body. A fixed side water outlet through hole (32) is horizontally opened at the connection between the fixed side water outlet tank (3) and the movable side water outlet tank (6). The fixed side water outlet through hole (32) is communicated with the lower area of the fixed side water outlet tank partition (33) arranged in the fixed side water outlet tank (3). A fixed side water inlet through hole (22) is horizontally opened at the connection between the fixed side water inlet tank (2) and the movable side water inlet tank (5). The fixed side water inlet through hole (22) is communicated with the lower area of the fixed side water inlet tank partition (23) arranged in the fixed side water inlet tank (2). A movable side water inlet (51) is vertically opened at the connection between the movable side water inlet tank (5) and the fixing plate (111). The movable side water inlet (51) is externally connected to a water source. A movable side water outlet (61) is vertically opened at the connection between the movable side water outlet tank (6) and the fixing plate (111). The movable side (4) of the mold includes a movable frame body (41). The movable frame body (41) includes an upper water tank (411) and a lower water tank (412) of the movable frame body which are arranged at intervals up and down. A plurality of groups of upper water tank inlets (415) are horizontally and equidistantly opened at the upper part of the upper water tank (411) of the movable frame body. A plurality of groups of lower water tank outlets (416) are horizontally and equidistantly opened at the lower part of the lower water tank (412) of the movable frame body. The movable frame body (41) is communicated with the water inlet pipe (7) and the water outlet pipe (8) through the horizontally opened water outlet I (71) and water inlet I (81). The water outlet I (71) and the water inlet I (81) are arranged in the interval area between the upper water tank (411) and the lower water tank (412) of the movable frame body.
2. A novel slab mold according to claim 1, characterized in that: The movable side (4) of the mold and the movable side water inlet tank (5) are connected through a snap-fitting movable side water inlet tank connection groove (52) and a movable side water inlet tank connection block (53). The movable side water inlet tank connection groove (52) is fixedly installed on the outer side surface of the movable side water inlet tank (5). The movable side water inlet tank connection block (53) is fixedly installed on the outer side surface of the movable side (4) of the mold. The movable side (4) of the mold and the movable side water outlet tank (6) are connected through a snap-fitting movable side water outlet tank connection groove (62) and a movable side water outlet tank connection block (63). The movable side water outlet tank connection groove (62) is fixedly installed on the outer side surface of the movable side water outlet tank (6). The movable side water outlet tank connection block (63) is fixedly installed on the outer side surface of the movable side (4) of the mold.
3. A novel slab mold according to claim 2, characterized in that: On one side of the lower surface of the upper water tank (411) of the movable frame body near the water inlet (71), a vertical upper water tank water outlet (413) is provided. On one side of the upper surface of the lower water tank (412) of the movable frame body near the water outlet (81), a vertical lower water tank water inlet (414) is provided.
Citation Information
Patent Citations
Novel slab crystallizer
CN217647449U