A slip casting device and a slip casting production line
By designing a grouting molding device, the pressurized structure and grouting components are used to realize the mold clamping and slurry injection of the molding components, which solves the problems of low efficiency of the grouting molding process and high labor intensity, and improves the production efficiency of the molding blank.
Patent Information
- Application Number
- CN202110147927.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-02-03
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2041-02-03
AI Technical Summary
The domestic grouting molding technology is traditional, inefficient and labor-intensive.
A grouting molding device is designed, including a frame, a pressurized structure, a grouting assembly and a plurality of molding components. The molding components are molded through the pressurized structure, and grout into the molded component after the molding is clamped through the grouting assembly to form a molded blank.
The grouting and forming efficiency is improved, the labor intensity of staff is reduced, and the grouting and production of multiple molding blanks can be carried out through a single mold clamp.
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Figure CN112792975B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of ceramic mud blank production, in particular to a slip casting molding device and a slip casting molding production line. Background Art
[0002] Ceramic products are closely related to people's daily lives. Whether it is daily-use ceramics such as bowls, plates, and bottles, or sanitary ceramics such as washbasins and toilets, as well as industrial ceramics such as plates and shells, they are all necessities for daily life and industrial production.
[0003] There are three main processes for ceramic clay blank forming: rolling forming, plastic compression forming (extrusion forming) and slip injection forming. Rolling forming is used for the production of cups, plastic compression forming is often used for the forming of plates, dishes and open shallow products, and slip injection forming is the most widely used process. In addition to being able to replace the above two processes, it is also the only process that can be used for the clay blank forming of hollow devices such as bottles and irregular shaped devices.
[0004] Domestic grouting molding mainly adopts the manual grouting process of gypsum mold, which is traditional, inefficient and labor-intensive. Summary of the invention
[0005] The object of the present invention is to provide a grouting molding device and a grouting molding production line, which can improve the efficiency of grouting molding and reduce the labor intensity of workers.
[0006] The embodiment of the present invention is achieved as follows:
[0007] In a first aspect, an embodiment of the present invention provides a grouting molding device, the grouting molding device comprising a frame, a pressurizing structure, a grouting component and a plurality of molding components;
[0008] The plurality of molding components are all slidably connected to the frame in the same direction;
[0009] The pressurizing structure is connected to the frame, and is used to apply external force to the multiple molding components so that any two adjacent molding components can be molded together;
[0010] The grouting component is used for injecting grout into the molded component after the mold is closed, so as to form a molded blank in the two molded components after the mold is closed.
[0011] In an optional embodiment, the pressurizing structure includes a pressurizing cylinder;
[0012] The cylinder body of the pressurizing oil cylinder is connected to the frame, and the movable end of the pressurizing oil cylinder is used to apply external force to the multiple molding components so that any two adjacent molding components can be molded together.
[0013] In an optional embodiment, along the sliding direction of the multiple forming assemblies relative to the frame, the movable end of the pressurizing cylinder is located at one end of the multiple forming assemblies.
[0014] In an optional embodiment, the forming assembly includes a hanger, a hanging wheel assembly, a fixing plate, a turning power assembly and a forming mold;
[0015] The hanging wheel assembly is connected to the hanger and is slidably matched with the frame;
[0016] The fixed plate is rotatably connected to the hanger; the molding die is connected to the fixed plate; the flipping power assembly is connected to the hanger and is used to drive the fixed plate to flip relative to the hanger, so that the molding assembly has a position where the molding die is molded with the molding die of the adjacent molding assembly, and the molding assembly has a position for demolding.
[0017] In an optional embodiment, when the molding assembly is in a mold-locking position with an adjacent molding assembly, the fixing plate is arranged vertically.
[0018] In an optional embodiment, when the forming assembly is in the position for stripping the blank, the fixing plate of the forming assembly is arranged horizontally.
[0019] In an optional embodiment, the molding die includes a first mold body and a second mold body;
[0020] The first mold body and the second mold body are both connected to the fixed plate and are respectively located on two sides of the fixed plate that are away from each other;
[0021] When a plurality of molding components are molded together, a first mold body of one molding component is molded together with a second mold body of an adjacent molding component.
[0022] In an optional embodiment, the grouting molding device further includes two slide rails, and the two slide rails are located on both sides of the frame;
[0023] The hanging wheel group comprises two hanging wheels which are arranged at an interval, and the two hanging wheels are respectively slidably matched with two slide rails.
[0024] In an optional embodiment, the flipping power assembly includes a flipping cylinder and a swing arm, the cylinder body of the flipping cylinder is connected to the hanger, the movable end of the flipping cylinder is hinged to one end of the swing arm, and the other end of the swing arm is connected to the fixed plate.
[0025] In a second aspect, an embodiment of the present invention provides a grouting molding production line, which includes a mold splitting device, a blank receiving trolley, a blank feeding line, and the above-mentioned grouting molding device;
[0026] The mold separation device is connected to the frame and is used to drive any one of the molding components to move so that any two adjacent molding components can be separated from each other;
[0027] The blank receiving trolley is movably arranged relative to the frame along the sliding direction of the multiple forming components, and is used to transfer the formed blanks output by the grouting forming device to the lower blank line.
[0028] The beneficial effects of the embodiments of the present invention include:
[0029] The grouting molding device includes a frame, a pressurizing structure, a grouting assembly, and a plurality of molding assemblies. During the grouting molding process, the grouting molding device applies external force to the plurality of molding assemblies through the pressurizing structure, so that any two adjacent molding assemblies can be molded together, and then the grouting assembly is used to inject grout into the molded molding assemblies, so that a molded blank can be formed in the two molded assemblies after the mold is molded together. In such a grouting molding method, the action of the pressurizing structure can drive the plurality of molding assemblies to perform a mold-closing action, so that the grouting production of a plurality of molding blanks can be performed through a single mold closing, thereby improving the production efficiency of the molding blanks. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings required for use in the embodiments are briefly introduced below. It should be understood that the following drawings only show certain embodiments of the present invention and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other related drawings can be obtained based on these drawings without creative work.
[0031] Figure 1 It is a structural schematic diagram of the grouting molding device from a first viewing angle in an embodiment of the present invention;
[0032] Figure 2 It is a structural schematic diagram of the grouting molding device from a second viewing angle in an embodiment of the present invention;
[0033] Figure 3 It is a structural schematic diagram of a molding assembly in a first viewing angle in an embodiment of the present invention;
[0034] Figure 4 is a structural schematic diagram of a molding assembly in a second viewing angle in an embodiment of the present invention;
[0035] Figure 5 for Figure 1 The enlarged schematic diagram of point V in the middle;
[0036] Figure 6 is a schematic structural diagram of a molding assembly from a third viewing angle in an embodiment of the present invention;
[0037] Figure 7 is a structural schematic diagram of a molding assembly in a fourth viewing angle in an embodiment of the present invention;
[0038] Figure 8 It is a structural schematic diagram of the first perspective when the forming assembly is in the blank removal position in the embodiment of the present invention;
[0039] Fig. 9 It is a structural schematic diagram of a second viewing angle when the forming assembly is in a position for stripping the blank in an embodiment of the present invention;
[0040] Fig.10 It is a structural schematic diagram of a grouting molding production line in an embodiment of the present invention.
[0041] Icons: 100- grouting molding device; 10- molding blank; 110- frame; 120- pressurized structure; 130- molding assembly; 121- pressurized cylinder; 131- hanger; 132- hanging wheel group; 133- fixed plate; 134- flipping power assembly; 135- molding mold; 136- first mold body; 137- second mold body; 138- slide rail; 139- hanging wheel; 141- flip cylinder; 142- swing arm; 200- grouting molding production line; 210- mold separation device; 220- blank receiving trolley; 230- blank lower line. DETAILED DESCRIPTION
[0042] In order to make the purpose, technical solutions and advantages of the embodiments of the present invention clearer, 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. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Generally, the components of the embodiments of the present invention described and shown in the drawings here can be arranged and designed in various different configurations.
[0043] Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the invention claimed for protection, but merely represents selected embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0044] It should be noted that similar reference numerals and letters denote similar items in the following drawings, and therefore, once an item is defined in one drawing, further definition and explanation thereof is not required in subsequent drawings.
[0045] In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inside", "outside", etc. indicate positions or positional relationships based on the positions or positional relationships shown in the accompanying drawings, or the positions or positional relationships in which the product of the invention is usually placed when in use. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific position, be constructed and operated in a specific position, and therefore cannot be understood as limiting the present invention. In addition, the terms "first", "second", "third", etc. are only used to distinguish the description, and cannot be understood as indicating or implying relative importance.
[0046] In addition, the terms "horizontal", "vertical" and the like do not mean that the components are required to be absolutely horizontal or suspended, but can be slightly tilted. For example, "horizontal" only means that its direction is more horizontal than "vertical", and does not mean that the structure must be completely horizontal, but can be slightly tilted.
[0047] In the description of the present invention, it is also necessary to explain that, unless otherwise clearly specified and limited, the terms "set", "install", "connect", and "connect" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two elements. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0048] Please refer to Figure 1-Figure 7 , Figure 1 and Figure 2 The structure of the grouting molding device in the embodiment of the present invention is shown. Figure 3-Figure 9 The structure of the molding assembly in the embodiment of the present invention is shown;
[0049] This embodiment provides a grouting molding device 100 , which includes a frame 110 , a pressurizing structure 120 , a grouting component, and a plurality of molding components 130 .
[0050] The plurality of molding assemblies 130 are slidably connected to the frame 110 along the same direction.
[0051] The pressurizing structure 120 is connected to the frame 110 , and is used to apply external force to the plurality of molding assemblies 130 so that any two adjacent molding assemblies 130 are molded together.
[0052] The grouting assembly is used to inject grout into the molded assembly 130 to form a molded blank 10 in the two molded assemblies 130 after the mold is closed.
[0053] It should be noted that, firstly, when setting the molding components 130, the number of the molding components 130 can be adjusted according to actual needs, so that in this way, the number of molding blanks 10 that can be produced by one mold closing can be adjusted.
[0054] Secondly, when the pressure structure 120 is set, the function of the pressure structure 120 is to drive the multiple molding components 130 to slide relative to the frame 110, and then when the multiple molding components 130 slide to the position of abutting each other, the multiple molding components 130 are pressed and pressed to maintain the mold-closing state between the multiple molding components 130, that is, the pressure structure 120 has the function of driving the molding components 130 to move and the function of keeping the multiple molding components 130 in the mold-closing state during the operation. Similarly, when it is necessary to separate the multiple molding components 130, the pressure structure 120 needs to cancel the pressing effect on the molding components 130 and be spaced from the multiple molding components 130 to leave space for the multiple molding components 130 to slide on the frame 110, so as to facilitate the removal of the molded blank 10.
[0055] In addition, when setting up the grouting component, the function of the grouting component is to inject slurry into the molding component 130 after the mold is closed, so the grouting component can adopt the structure in the prior art; the molding process of the slurry in the molding component 130 after the mold is closed is the same as the prior art, so it will not be repeated here.
[0056] The working principle of the grouting molding device 100 is:
[0057] The grouting molding device 100 includes a frame 110, a pressurizing structure 120, a grouting assembly, and a plurality of molding assemblies 130. During the grouting molding process, the grouting molding device 100 applies external force to the plurality of molding assemblies 130 through the pressurizing structure 120, so that any two adjacent molding assemblies 130 can be molded together, and then the grouting assembly is used to inject grout into the molded molding assemblies 130, so that the molded blanks 10 can be formed in the two molded molding assemblies 130 after the molds are closed. In such a grouting molding method, the action of the pressurizing structure 120 can drive the plurality of molding assemblies 130 to perform a mold closing action, so that the grouting production of a plurality of molding blanks 10 can be performed through a single mold closing, thereby improving the production efficiency of the molding blanks 10.
[0058] For further information, please refer to Figure 1 and Figure 2In this embodiment, when the pressurizing structure 120 is provided, the pressurizing structure 120 includes a pressurizing oil cylinder 121; specifically, the cylinder body of the pressurizing oil cylinder 121 is connected to the frame 110, and the movable end of the pressurizing oil cylinder 121 is used to apply external force to the multiple molding assemblies 130 so that any two adjacent molding assemblies 130 are molded. And along the sliding direction of the multiple molding assemblies 130 relative to the frame 110, the movable end of the pressurizing oil cylinder 121 is located at one end of the multiple molding assemblies 130.
[0059] In this arrangement, since the movable end of the pressurizing oil cylinder 121 is located at one end of the multiple molding components 130, that is, along the sliding direction of the molding components 130, the movable end of the pressurizing oil cylinder 121 is located at one end of all the molding components 130, so that through the movement of the movable end of the pressurizing oil cylinder 121, after abutting against the molding component 130 close to the pressurizing oil cylinder 121, with the movement of the movable end, the multiple molding components 130 can be abutted in sequence, thereby completing the mold closing action. In this way, the multiple molding components 130 can be molded by the action of the pressurizing oil cylinder 121, thereby improving the working efficiency of the grouting molding device 100.
[0060] For further information, please refer to Figure 1-Figure 9 , Figure 3 , Figure 4 , Figure 6 and Figure 7 The structure of the fixed plate in the mold closing position according to the embodiment of the present invention is shown. Figure 8 and Fig. 9 The structure of the fixed plate in the embodiment of the present invention when it is in the position of stripping the blank is shown;
[0061] In this embodiment, when two adjacent molding components 130 are molded together, it means that along the sliding direction of the molding component 130, the two adjacent molding components 130 abut against each other, thereby forming a cavity for accommodating the slurry, thereby performing the grouting molding step. Therefore, when the molding component 130 is set, the molding component 130 includes a hanger 131, a hanging wheel group 132, a fixed plate 133, a flipping power component 134 and a molding mold 135.
[0062] It should be noted that the function of the forming mold 135 is to produce a forming blank 10 of a preset shape. Therefore, the specific shape of the forming mold 135 needs to be set according to the actual shape of the blank to be formed.
[0063] When the hanging wheel set 132 is provided, the function of the hanging wheel set 132 is to enable the molding assembly 130 to be slidably matched with the frame 110 , so the hanging wheel set 132 is connected to the hanger 131 and is slidably matched with the frame 110 .
[0064] When the fixed plate 133 is set, the fixed plate 133 is rotatably connected to the hanger 131; and the molding die 135 is connected to the fixed plate 133; the flip power assembly 134 is connected to the hanger 131, and is used to drive the fixed plate 133 to flip relative to the hanger 131, so that the molding assembly 130 has a position where the molding die 135 is molded with the molding die 135 of the adjacent molding assembly 130, and the molding assembly 130 has a position for stripping. It should be noted that when the flip power assembly 134 and the fixed plate 133 are set, since the molding die 135 is connected to the fixed plate 133, and the fixed plate 133 is rotatably connected to the hanger 131, thus, by driving the rotation of the fixed plate 133 relative to the hanger 131 by the flip power assembly 134, the angle of the molding die 135 relative to the hanger 131 and the frame 110 can be adjusted, so that the mold closing efficiency of the molding assembly 130 and the stripping efficiency of the molding blank 10 can be improved through such a setting method.
[0065] For further information, please refer to Figure 1-Figure 9 When the molding assembly 130 is in the mold-closing position with the adjacent molding assembly 130, the fixing plate 133 is vertically arranged, that is, the surface of the fixing plate 133 for mounting the molding mold 135 is parallel to the vertical plane. In this state, the molding molds 135 on the two adjacent molding assemblies 130 can be molded;
[0066] When the molding assembly 130 is in the demoulding position, the fixing plate 133 of the molding assembly 130 is arranged horizontally, that is, the surface of the fixing plate 133 used to install the molding mold 135 is parallel to the horizontal plane. In this state, the molding blank 10 in the molding mold 135 can be easily separated from the molding mold 135. It should be noted that such a setting method makes the direction in which the molding blank 10 is separated from the molding mold 135 perpendicular to the horizontal plane during the demoulding process of the grouting molding mold 135, so that the molding blank 10 can be demoulded under the action of gravity, and in this process, it is also convenient for the molding mold 135 to be dehydrated, thereby further saving time and cost and improving the working efficiency of the grouting molding mold 135.
[0067] Further, in this embodiment, when the molding die 135 is provided, the molding die 135 includes a first mold body 136 and a second mold body 137; specifically, the first mold body 136 and the second mold body 137 are both connected to the fixed plate 133, and are respectively located on two mutually opposite sides of the fixed plate 133. In this arrangement, molds are respectively provided on both sides of the fixed plate 133, so when multiple molding assemblies 130 are molded, the first mold body 136 of one molding assembly 130 is molded with the second mold body 137 of the adjacent molding assembly 130. That is, when multiple molding components 130 are successively abutted against each other under the action of the pressurizing structure 120, along the sliding direction of the molding components 130 relative to the frame 110, the first mold body 136 of one molding component 130 is molded with the second mold body 137 of the molding component 130 adjacent to one side, and the second mold body 137 of the molding component 130 is molded with the first mold body 136 of the molding component 130 adjacent to the other side, thereby improving the working efficiency of the grouting molding device 100 through such an arrangement.
[0068] For further information, please refer to Figure 1-Figure 5 The grouting molding device 100 further includes two slide rails 138, both of which are located on both sides of the frame 110; and the suspension wheel assembly 132 includes two suspension wheels 139 arranged at intervals, and the two suspension wheels 139 are respectively slidably matched with the two slide rails 138. That is, when the two slide rails 138 are arranged, the two slide rails 138 are relatively located outside the frame 110. In this arrangement, when the two suspension wheels 139 are respectively matched with the two slide rails 138, the frame 110 can be relatively located between the two suspension wheels 139, thereby improving the stability of the sliding match between the molding assembly 130 and the frame 110.
[0069] As can be seen from the above content, in order to enable the molding die 135 to have a mold closing position and a blank removal position relative to the hanger 131, the flip power assembly 134 is required to drive the fixed plate 133 to rotate relative to the hanger 131, so the flip power assembly 134 includes a flip cylinder 141 and a swing arm 142. The cylinder body of the flip cylinder 141 is connected to the hanger 131, the movable end of the flip cylinder 141 is hinged to one end of the swing arm 142, and the other end of the swing arm 142 is connected to the fixed plate 133. Therefore, through the movement of the movable end of the flip cylinder 141, the swing arm 142 can be driven to swing relative to the hanger 131, thereby driving the fixed plate 133 to rotate relative to the hanger 131, and then adjusting the angle of the molding die 135 relative to the hanger 131.
[0070] Please refer to Figure 1-Figure 9 In summary, the working process of the grouting molding device 100 is as follows:
[0071] The turning power assembly 134 drives the fixing plate 133 to rotate relative to the hanger 131, so that the plurality of molding assemblies 130 rotate to a position where the molding dies 135 of the adjacent molding assemblies 130 are molded together;
[0072] The pressurizing structure 120 is actuated, so that the multiple molding components 130 all move in the same direction and abut against each other, thereby closing the mold;
[0073] The grouting component injects slurry into the molded component 130 after the mold is closed, and the slurry forms a molded blank 10 in the molded component 130 after the mold is closed;
[0074] After the grouting is completed, the blank is removed after forming.
[0075] Please refer to Figure 1-Figure 10 , Fig.10 The structure of the grouting molding production line in an embodiment of the present invention is shown. Based on the above-mentioned grouting molding device 100, the embodiment of the present invention provides a grouting molding production line 200. The grouting molding production line 200 includes a mold splitting device 210, a blank receiving trolley 220, a lower blank line 230 and the above-mentioned grouting molding device 100.
[0076] The mold separation device 210 is connected to the frame 110 and is used to drive any one of the molding assemblies 130 to move so that any two adjacent molding assemblies 130 can be separated from each other;
[0077] The blank receiving trolley 220 is movably arranged relative to the frame 110 along the sliding direction of the plurality of molding assemblies 130 , and is used to transfer the molded blanks 10 outputted from the slip casting molding device 100 to the lower blank line 230 .
[0078] In summary, the working process of the grouting molding production line 200 is as follows:
[0079] The turning power assembly 134 drives the fixing plate 133 to rotate relative to the hanger 131, so that the plurality of molding assemblies 130 rotate to a position where the molding dies 135 of the adjacent molding assemblies 130 are molded together;
[0080] The pressurizing structure 120 is actuated, so that the multiple molding components 130 all move in the same direction and abut against each other, thereby closing the mold;
[0081] The grouting component injects slurry into the molded component 130 after the mold is closed, and the slurry forms a molded blank 10 in the molded component 130 after the mold is closed;
[0082] After grouting is completed, the blank is removed after forming;
[0083] The pressurizing structure 120 moves in a direction opposite to the mold closing direction of the plurality of molding components 130 to leave a space for mold separation;
[0084] The mold separation device 210 moves relative to the frame 110, moves to one end of all the molding assemblies 130 along the sliding direction of the molding assembly 130 relative to the frame 110, and is used to drive the molding assembly 130 located at the end to move, so that the molding assembly 130 is separated from the adjacent molding assembly 130, and drives the molding assembly 130 to the separation position;
[0085] The turning power assembly 134 drives the fixed plate 133 to rotate relative to the hanger 131, so that the mold assembly 130 after mold separation is turned from the hanging vertical state to the horizontal state of the blank removal position;
[0086] The blank receiving trolley 220 moves relative to the frame 110 along the sliding direction of the forming assembly 130 to the bottom of the forming assembly 130 after mold separation, that is, to the bottom of the blank separation position;
[0087] The blank joining device completes the blank joining;
[0088] After the blank receiving device has loaded the blank, it pushes the received formed blank 10 to the lower blank line 230, and the lower blank line 230 transports the blank to the next station;
[0089] The mold separation device 210 repeats the mold separation step, and the blank joining device repeats the blank joining step, until all the molded blanks 10 output by the molding components 130 are transported to the lower blank line 230;
[0090] All molding components 130 are dehydrated;
[0091] Enter the next grouting cycle.
[0092] Further, based on the above content, in this embodiment, during the operation of the grouting molding production line 200, in order to enable the mold separation device 210 to drive the molding component 130 to move to the predetermined position for demolding, and to enable the billet receiving trolley 220 to move relative to the frame 110 to the position for receiving the billet output by the molding component 130; that is, to ensure that the grouting molding production line 200 can complete the steps of mold separation, billet removal and billet receiving, the grouting molding production line 200 also includes a positioning device, which is connected to the mold separation device 210 and is used to determine the positions of the molding component 130 and the billet receiving trolley 220.
[0093] The above are only specific embodiments of the present invention and are not intended to limit the present invention. For those skilled in the art, the present invention may have various modifications and variations. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A slip casting forming device, characterized in that: the slip casting forming device includes a frame, a pressurizing structure, a slip casting assembly and a plurality of forming assemblies; the plurality of forming assemblies are all slidably connected to the frame in the same direction; the pressurizing structure is connected to the frame, and the pressurizing structure is used to apply an external force to the plurality of forming assemblies so that any two adjacent forming assemblies are closed; the slip casting assembly is used to inject slurry into the forming assemblies after closing the mold, so as to form a formed blank in the two forming assemblies after closing the mold; the pressurizing structure includes a pressurizing oil cylinder; the cylinder body of the pressurizing oil cylinder is connected to the frame, and the movable end of the pressurizing oil cylinder is used to apply an external force to the plurality of forming assemblies so that any two adjacent forming assemblies are closed; the forming assembly includes a suspension bracket, a suspension wheel set, a fixing plate, a turning power assembly and a forming mold; the suspension wheel set is connected to the suspension bracket and is slidably matched with the frame; the fixing plate is rotatably connected to the suspension bracket; the forming mold is connected to the fixing plate; the turning power assembly is connected to the suspension bracket and is used to drive the fixing plate to turn relative to the suspension bracket so that the forming assembly has a position where the forming mold of the forming assembly is closed with the forming mold of the adjacent forming assembly, and a position where the forming assembly is demolded.
2. The slip casting forming device according to claim 1, characterized in that: along the sliding direction of the plurality of forming assemblies relative to the frame, the movable end of the pressurizing oil cylinder is located at one end of the plurality of forming assemblies.
3. The slip casting forming device according to claim 1, characterized in that: when the forming assembly is in a position where it is closed with the adjacent forming assembly, the fixing plate is vertically arranged.
4. The slip casting forming device according to claim 1 or 3, characterized in that: when the forming assembly is in a demolding position, the fixing plate of the forming assembly is horizontally arranged.
5. The slip casting forming device according to claim 1, characterized in that: the forming mold includes a first mold body and a second mold body; the first mold body and the second mold body are both connected to the fixing plate and are respectively located on two opposite sides of the fixing plate; when the plurality of forming assemblies are closed, the first mold body of one of the forming assemblies is closed with the second mold body of the adjacent forming assembly.
6. The slip casting forming device according to claim 1, characterized in that: the slip casting forming device further includes two slide rails, and the two slide rails are both located on both sides of the frame; the suspension wheel set includes two suspension wheels arranged at intervals, and the two suspension wheels are respectively slidably matched with the two slide rails.
7. The slip casting forming device according to claim 1, characterized in that: the turning power assembly includes a turning cylinder and a swing arm, the cylinder body of the turning cylinder is connected to the suspension bracket, the movable end of the turning cylinder is hinged to one end of the swing arm, and the other end of the swing arm is connected to the fixing plate.
8. A slip casting forming production line, characterized in that: The slip casting production line includes a mold splitting device, a blank receiving trolley, a blank discharging line, and a slip casting device as described in any one of claims 1-7; The mold splitting device is connected to the frame and is used to drive any one of the molding components to move so that any two adjacent molding components are split; The blank receiving trolley is movably arranged relative to the frame along the sliding direction of the plurality of molding components and is used to transfer the molded blank output by the slip casting device to the blank discharging line.
Citation Information
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