Casting machine for casting processing and capable of preventing molten material from dumping
Through the synergy between the material storage assembly and the casting assembly, gravity and suction cup fixation are used to solve the problem of pouring the casting machine equipment, and the stability and safety of the solvent are achieved.
Patent Information
- Application Number
- CN202510560597.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-30
- Publication Date
- 2025-08-08
AI Technical Summary
Traditional casting machine equipment lacks sufficient fixity and stability in casting processing, which can easily lead to the pouring of solvents, causing waste of materials and safety hazards.
The pressure plate under the gravity of the material storage assembly drives the V-shaped connecting rod to pull down, clamp the solvent barrel, combines the piston block of the casting assembly to extract the suction cup air, and uses the suction cup to absorb the ground fixing device to prevent pouring.
Effectively prevent the dissolving barrel from pouring during the pouring and pouring process, reduce material waste, improve safety, and prevent the dissolving material from spilling.
Smart Images

Figure CN120438588A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of pouring machines for casting processing, in particular to a pouring machine for casting processing which can prevent molten material from dumping. Background Art
[0002] The pouring machine is mainly used to introduce liquid metal into the mold cavity. It is an indispensable equipment in the foundry workshop. It can improve the success rate of castings and significantly reduce the waste of molten iron and the occurrence of burns. The main purpose of the pouring machine is to complete the pouring link in the casting process. That is, the liquid metal that has been smelted and meets the specified requirements is accurately introduced into the mold cavity through a specific pouring system. After cooling and solidification, the casting with the predetermined shape, size and performance is obtained. At present, traditional pouring machines are used in casting processing. Traditional pouring machines are not very fixed and stable. During the pouring process, the device is prone to tipping over, which will cause the molten material to tip over, resulting in material waste and may also cause safety accidents. Summary of the Invention
[0003] The purpose of the present invention is to provide a casting machine for preventing molten material from tipping over. Through the material storage component, under the action of the gravity of the molten material barrel, the pressure plate drives the V-shaped connecting rod to pull down, and drives the clamping plates on both sides to clamp and fix the molten material barrel, so as to prevent the construction workers from pouring the molten material into the molten material barrel and pouring the molten material, and then the piston block of the casting component rises through the piston rod in the pipeline to extract the air inside the suction cup, and the suction cup sucks the ground to fix the entire device, so as to prevent the entire device from tipping over and spilling the molten material during pouring.
[0004] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a casting machine for preventing molten material from dumping, comprising a material storage component, a pouring component fixedly connected to the bottom of the material storage component, the material storage component comprising a molten material barrel, a pressure plate fixedly installed at the lower end of the molten material barrel, springs fixedly installed on both sides of the lower end of the pressure plate, V-shaped connecting rods connected on both sides of the pressure plate, fixed blocks connected on one side of the V-shaped connecting rods, clamping plates fixedly installed on the fixed blocks, the pouring component comprising a motor, a threaded rod fixedly installed at the output end of the motor, a fixed ring fixedly installed on one side of the threaded rod, an inclined plate fixedly installed on the fixed ring, a half gear rotatably connected to the lower end of the threaded rod, a fixed rod fixedly installed on the lower end of the half gear, and adjustment frames fixedly installed on both sides of the fixed rod The wheelbase is shortened and the shifting mechanism is shortened to a speed of 1 / 2 second, and the shifting mechanism is shortened to a speed of 1 / 2 second, and the shifting mechanism is shortened to a speed of 2 / 3 second, and the shifting mechanism is shortened to a speed of 1 / 2 second, and the shifting mechanism is shortened to a speed of 1 / 2 second, and the shifting mechanism is shortened to a speed of 2 / 3 second, and the shifting mechanism is shortened to a speed of 1 / 2 second, and the
[0005] Preferably, one side of the spring is fixedly connected to the inclined plate, and the connection between the pressure plate and the V-shaped connecting rods on both sides and the connection between the V-shaped connecting rods and the fixed block are both provided with adjustment rods.
[0006] Preferably, the inclined plate is provided with a groove, and the groove is adapted to the material storage assembly.
[0007] Preferably, both sides of the inclined plate are arc-shaped, and both sides of the inclined plate are slidably connected to the adjustment frame.
[0008] Preferably, a scale needle is provided on one side of the tilting plate, and an angle value is provided on one side of the adjustment frame, and the scale needle slides along the angle value on the adjustment frame on one side.
[0009] Preferably, bolts are fixedly mounted on the arc-shaped lower ends on both sides of the inclined plate, and fixing plates are mounted on the bolts to slide on the adjustment frame.
[0010] Preferably, one side of the arc on both sides of the inclined plate is connected to a pull rod, and the other side of the arc on both sides of the inclined plate is connected to a telescopic pressure rod.
[0011] Preferably, the connection between the first connecting block and the second connecting block is also provided with an adjusting rod connection, and the connection between the second connecting block and the piston rod is also provided with an adjusting rod connection.
[0012] Preferably, a fixing bracket is fixedly installed on each of the pipes, and one side of each of the fixing brackets is fixedly connected to the adjustment frame.
[0013] Preferably, the other side of the bevel gear set is mounted on the adjustment frame, and a protective frame is provided at the connection between the bevel gear set and the adjustment frame.
[0014] Compared with the prior art, the present invention has the following beneficial effects: 1. In the present invention, under the action of gravity of the molten material barrel, the pressure plate drives the V-shaped connecting rod to pull down to transmit power, and the V-shaped connecting rod drives the fixed block to pull down. The fixed block thereby drives the clamping plates on both sides to clamp and fix the molten material barrel, preventing the construction workers from tipping over when pouring and pouring the molten material into the molten material barrel, causing damage to the device and spilling the molten material; 2. In the present invention, the threaded rod is meshed with the half gear. The threaded rod moves on the half gear to generate an angle tilt. The tilting plate follows the threaded rod to tilt at an angle on the adjustment frame, so that the solution barrel follows the tilting plate to tilt at an angle, and the solution is poured. The scale needle follows the tilting plate to tilt at an angle value on the adjustment frame, which makes it easy for construction workers to clearly and intuitively observe how much the device is tilted during pouring, so as to adjust the tilt angle of the device. 3. In the present invention, when the inclined plate tilts, the first connecting block is driven to rise, the second connecting block follows the first connecting block to rise, the piston rod follows the second connecting block to rise, and the piston block also follows the piston rod to rise. The piston block rises through the piston rod in the pipeline, extracts the air inside the suction cup, and makes the suction cup stick to the ground, thereby fixing the entire device to prevent the entire device from tipping over and spilling the molten material during pouring. The rising side of the inclined plate will pull one side of the baffle to rise, and the other side of the baffle will drop and contact the wheel to prevent the wheel from moving. The inclined side of the inclined plate will press down the telescopic pressure rod, thereby assisting the other side of the baffle to drop and contact the wheel to prevent the wheel from moving, and also assisting the suction cup to fix the entire device. At the same time, the telescopic pressure rod also has some vibration reduction effect on the device, preventing the device from being overused and causing damage to the wheel 210. 4. When the tilting plate of the present invention tilts, it also drives the bevel gear set to transmit power. The bevel gear set drives the rotating rod to rotate. When the lifting rod follows the rotation of the rotating rod, it rises, so that the push plate follows the lifting rod to rise, and the push plate drives the protective plate to rise. When the molten material barrel is pouring, the protective plate prevents the molten material from splashing, which poses a safety hazard to the operator. When the construction personnel move the device to the designated work location, the push plate 224 is not in the rising state, and the push plate 224 contacts the ground. The push plate 224 detects and cleans the ground in front to prevent the device from tipping over during the movement, causing damage to the device and spilling of the molten material. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a schematic diagram of the overall right side structure of the present invention; Figure 2 It is a schematic diagram of the overall left side structure of the present invention; Figure 3 This is a schematic diagram of the structure of the material storage component of the present invention; Figure 4 This is a schematic diagram of the structure of the pouring assembly of the present invention; Figure 5 This is a schematic diagram of the structure of the adjustment frame of the present invention; Figure 6 This is a schematic diagram of the sucker structure of the present invention; Figure 7 It is a structural schematic diagram of the bevel gear set of the present invention.
[0016] In the figure: 1. Material storage assembly; 101. Material dissolving barrel; 102. Pressing plate; 103. Spring; 104. V-shaped connecting rod; 105. Fixing block; 106. Clamping plate; 107. Adjusting rod; 2. Casting assembly; 201. Motor; 202. Threaded rod; 203. Fixing ring; 204. Tilt plate; 206. Half gear; 207. Fixing rod; 208. Adjusting frame; 209. Axle; 210. Wheel; 2 11. Baffle; 212. Pull rod; 213. Telescopic pressure rod; 214. First connecting block; 215. Second connecting block; 216. Piston rod; 217. Piston block; 218. Pipe; 219. Suction cup; 220. Bevel gear set; 221. Rotating rod; 222. Lifting rod; 224. Push plate; 225. Protective plate; 226. Scale needle; 227. Bolt; 228. Fixing plate; 229. Fixing bracket. DETAILED DESCRIPTION
[0017] To make the purpose, technical solutions and advantages of the embodiments of the present invention more clear, 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. Therefore, the following detailed description of the embodiments of the present invention provided in the 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 making creative efforts are within the scope of protection of the present invention.
[0018] The present invention provides a casting machine for preventing molten material from tipping over, comprising a material storage component 1, the material storage component 1 being used to store and fix the molten material, a pouring component 2 being fixedly connected below the material storage component 1, the pouring component 2 being used to pour the molten material and fix the entire device to prevent the entire device from tipping over; See Figures 1 to 3 As shown, the material storage component 1 includes a molten material barrel 101, which is used to place and store molten material. A pressure plate 102 is fixedly installed at the lower end of the molten material barrel 101. When the construction workers place the molten material barrel 101 on the pressure plate 102, under the action of the gravity of the molten material barrel 101, the pressure plate 102 is pressed down. Springs 103 are fixedly installed on both sides of the lower end of the pressure plate 102. The downward pressure of the pressure plate 102 drives the spring to undergo elastic deformation. V-shaped connecting rods 104 are connected to both sides of the pressure plate 102. The pressure plate 102 drives the V-shaped connecting rod 104 to pull down to transmit power. A fixed block 105 is connected to one side of the V-shaped connecting rod 104. The V-shaped connecting rod 104 drives the fixed block 105 to pull down, and the fixing block 105 is fixedly installed with a clamping plate 106. The fixed block 105 thereby drives the clamping plates 106 on both sides to clamp and fix the molten material barrel 101, preventing the construction workers from tipping over when pouring and pouring the molten material into the molten material barrel 101. After the molten material barrel 1 is clamped and fixed by the clamping plates 106 on both sides, the required pouring molten material is poured into the molten material barrel 1. During the pouring process, the clamping plates 106 will not loosen the molten material barrel 1 as the molten material inside the molten material barrel 1 decreases. The clamping plates 106 clamp and fix according to the weight of the molten material barrel 1 itself. See Figures 4 and 5As shown, the casting assembly 2 includes a motor 201, which is the power source of the entire device and provides power output for the device. A threaded rod 202 is fixedly installed at the output end of the motor 201. When the construction personnel start the motor 201, the motor 201 drives the threaded rod 202 to rotate. A fixing ring 203 is fixedly installed on one side of the threaded rod 202. The fixing ring 203 is used to connect the fixed inclined plate 204 and the threaded rod 202. The inclined plate 204 is fixedly installed on the fixing ring 203. The inclined plate 204 follows the movement of the threaded rod 202 through the fixing ring 203. The lower end of the threaded rod 202 is rotatably connected to a half gear 206. The threaded rod 202 is meshed with the half gear 206. The threaded rod 202 moves on the half gear 206 to generate an angle of inclination. A fixing rod 207 is fixedly installed at the lower end of the half gear 206. The fixing rod 207 is used to fix the half gear 206. Adjustment frames 208 are fixedly installed on both sides of the fixing rod 207. The inclined plate 2 04 The following threaded rod 202 is tilted at an angle in the adjustment frame 208, so that the molten material barrel 101 is tilted at an angle following the tilting plate 204 to perform solution casting. Two sets of axles 209 are fixedly installed inside the adjustment frame 208. The axles 209 are used for fixed connection. Wheels 210 are rotatably installed on the axles 209. The wheels 210 are used for movement, which makes it convenient for construction workers to move the device to a designated work site. Baffles 211 are installed inside the adjustment frame 208. Baffles 211 are used to block the wheels 210 from moving. Pull rods 212 are fixedly installed on one side of the baffles 211. The pull rods 212 are used to fix the baffles 211 and control the baffles to block the wheels 210. Telescopic pressure rods 213 are fixedly installed on the other side of the baffles 211. Telescopic pressure rods 213 are used to fix the baffles 211 and control the baffles to block the wheels 210. At the same time, the telescopic pressure rods 213 also have some vibration reduction effects on the device to prevent the device from being overused and causing damage to the wheels 210. See Figures 6 and 7As shown, the two sides of the inclined plate 204 are fixedly connected with the first connecting block 214. When the device is performing solution casting, the inclined inclined plate 204 is tilted, driving the first connecting block 214 to rise. One side of the first connecting block 214 is connected to the second connecting block 215. The second connecting block 215 follows the first connecting block 214 to rise, transmit power and adjust to maintain a vertical state. One side of the second connecting block 215 is connected to the piston rod 216. The piston rod 216 is adjusted to maintain a vertical state through the second connecting block 215, and the piston rod 216 follows the first connecting block 214 to rise. The two connecting blocks 215 rise, and a piston block 217 is connected to one side of the piston rod 216. The piston block 217 also rises with the piston rod 216 for pumping air. The outer surface of the piston block 217 is fixedly installed with a pipe 218. The pipe 218 provides a place for the piston block 217 to move and pump air. The lower end of the pipe 218 is fixedly connected with a suction cup 219. The piston block 217 rises in the pipe 218 through the piston rod 216, and the air inside the suction cup 219 is pumped out, so that the suction cup 219 is sucked to the ground, thereby fixing the entire device to prevent the entire device from being crushed during pouring. The device is tilted, and the molten material is scattered. A bevel gear set 220 is fixedly installed inside one side of the tilting plate 204. When the tilting plate 204 tilts, the bevel gear set 220 is driven to transmit power. A rotating rod 221 is fixedly installed on the other side of the bevel gear set 220. The bevel gear set 220 drives the rotating rod 221 to rotate. A lifting rod 222 is fixedly installed on the rotating rod 221. When the lifting rod 222 rotates with the rotating rod 221, it rises. A push plate 224 is fixedly installed on one side of the lifting rod 222. The push plate 224 follows the lifting rod 22 2 rises, and two sets of protective plates 225 are connected to the push plate 224, so that the push plate 224 drives the protective plates 225 to rise. When the molten material barrel 101 is pouring, the protective plates 225 prevent the molten material from splashing, which poses a safety hazard to the operators. When the construction workers move the device to the designated work site, the push plate 224 is not in the rising state, and the push plate 224 contacts the ground. The push plate 224 detects and cleans the ground in front, cleans some stones or dropped molten material, and prevents the device from tipping over and causing damage to the device and spilling of molten material during the movement.
[0019] In an optional embodiment, one side of the spring 103 is fixedly connected to the inclined plate 204, and the connection between the pressure plate 102 and the V-shaped connecting rods 104 on both sides and the connection between the V-shaped connecting rods 104 and the fixed block 105 are all provided with an adjusting rod 107. The adjusting rod 107 is used to connect the pressure plate 102, the V-shaped connecting rod 104, the fixed block 105 and adjust the movement between them.
[0020] In an optional embodiment, a groove is provided on the inclined plate 204 , and the groove is adapted to the material storage component 1 , and the groove provides a movement space for the material storage component 1 .
[0021] In an optional embodiment, both sides of the inclined plate 204 are designed to be arc-shaped, and both sides of the inclined plate 204 are slidably connected to the adjustment frame 208, so as to facilitate the sliding of the inclined plate 204 in the adjustment frame 208 and adjust the angle of the device during casting.
[0022] In an optional embodiment, a scale needle 226 is provided on one side of the inclined plate 204, and an angle value is provided on one side adjustment frame 208. The scale needle 226 slides on the angle value on the one side adjustment frame 208. When the construction personnel start the motor 201, the motor 201 drives the threaded rod 202 to rotate, and the threaded rod 202 is engaged with the half gear 206. The threaded rod 202 moves on the half gear 206, resulting in an angle tilt. The inclined plate 204 follows the threaded rod 202 to tilt at an angle in the adjustment frame 208, so that the molten material barrel 101 follows the inclined plate 204 to tilt at an angle, and the solution is poured. The scale needle 226 follows the inclined plate 204 to tilt at an angle value on the adjustment frame 208, so that the construction personnel can clearly and intuitively observe how much the device is tilted during pouring.
[0023] In an optional embodiment, bolts 227 are fixedly installed on the arc-shaped lower ends on both sides of the tilting plate 204, and fixed plates 228 are installed on the bolts 227 to slide on the adjustment frame 208. The bolts 227 are used to fix the tilting plate 204 and the adjustment frame 208.
[0024] In an optional embodiment, the inclined plate 204 is connected to one side of the arc on both sides with a pull rod 212, and the other side of the arc on both sides of the inclined plate 204 is connected to a telescopic pressure rod 213. When the construction personnel start the motor 201, the motor 201 drives the threaded rod 202 to rotate, and the threaded rod 202 is engaged with the half gear 206. The threaded rod 202 moves on the half gear 206 to generate an angle tilt. The inclined plate 204 follows the threaded rod 202 to tilt at an angle in the adjustment frame 208, so that the molten material barrel 101 follows The inclined plate 204 is tilted at an angle. When the solution is poured, the rising side of the inclined plate 204 will pull one side of the baffle 211 to rise, and the other side of the baffle 211 will drop and contact the wheel 210, preventing the wheel 210 from moving. The inclined side of the inclined plate 204 will press down the telescopic pressure rod 213, thereby assisting the other side of the baffle 211 to drop and contact the wheel 210, preventing the wheel 210 from moving, and also assisting the suction cup 219 to fix the entire device. At the same time, the telescopic pressure rod 213 also has some vibration reduction effect on the device.
[0025] In an optional embodiment, an adjusting rod 107 is also provided at the connection between the first connecting block 214 and the second connecting block 215, and an adjusting rod 107 is also provided at the connection between the second connecting block 215 and the piston rod 216. The adjusting rod 107 is used to adjust the movement between the first connecting block 214, the second connecting block 215, the second connecting block 215, the piston rod 216 and them.
[0026] In an optional embodiment, a fixing frame 229 is fixedly installed on the pipeline 218, and one side of the fixing frame 229 is fixedly connected to the adjustment frame 208. The fixing frame 229 is used to fix the pipeline 218 and support the movement of the internal device of the pipeline.
[0027] In an optional embodiment, the other side of the bevel gear set 220 is mounted on the adjustment frame 208 , and a protective frame is provided at the connection between the bevel gear set 220 and the adjustment frame 208 , and the protective frame is used to protect and support the operation of the bevel gear set 220 .
[0028] Working principle: The construction workers place the molten material barrel 101 on the pressure plate 102. Under the action of the gravity of the molten material barrel 101, the pressure plate 102 is pressed down. The downward pressure of the pressure plate 102 drives the spring to undergo elastic deformation. The pressure plate 102 drives the V-shaped connecting rod 104 to pull down to transmit power. The V-shaped connecting rod 104 drives the fixed block 105 to pull down. The fixed block 105 thereby drives the clamping plates 106 on both sides to clamp and fix the molten material barrel 101 to prevent the construction workers from dumping when pouring and pouring the molten material into the molten material barrel 101. When the construction workers start the motor 201, the motor 201 drives the threaded rod 202 to rotate. The threaded rod 202 is meshed and connected with the half gear 206. The threaded rod 202 moves on the half gear 206. The tilting plate 204 follows the threaded rod 202 to tilt at an angle in the adjustment frame 208, so that the molten material barrel 101 follows the tilting plate 204 to tilt at an angle, and the solution is poured. The scale needle 226 follows the tilting plate 204 to tilt at an angle value of the adjustment frame 208, so that the construction personnel can clearly and intuitively observe how much the device is tilted during pouring. When the tilting plate 204 tilts, the first connecting block 214 is driven to rise, and the second connecting block 215 follows the first connecting block 214 to rise. The piston rod 216 is adjusted to maintain a vertical state through the second connecting block 215, and the piston rod 216 follows the second connecting block 215 to rise, and the piston block 217 also follows the piston rod 216 to rise. The plug 217 rises in the pipe 218 through the piston rod 216, extracting the air inside the suction cup 219, so that the suction cup 219 sticks to the ground, thereby fixing the entire device to prevent the entire device from tipping over and the molten material from spilling during pouring. The wheel 210 is used for movement, which makes it convenient for construction workers to move the device to the designated work site. At the same time, when the device is poured, the rising side of the inclined plate 204 will pull one side of the baffle 211 to rise, and the other side of the baffle 211 will drop and contact the wheel 210, preventing the wheel 210 from moving. The inclined side of the inclined plate 204 will press down the telescopic pressure rod 213, thereby assisting the other side of the baffle 211 to drop and contact the wheel 210, preventing the wheel 210 from moving, and also assisting the suction cup 219 to fix the entire device. When the telescopic pressure rod 213 is tilted, it also has some vibration-reducing effect on the device. When the tilting plate 204 is tilted, it also drives the bevel gear set 220 to transmit power. The bevel gear set 220 drives the rotating rod 221 to rotate. When the lifting rod 222 follows the rotation of the rotating rod 221, it rises, so that the push plate 224 follows the lifting rod 222 to rise, and the push plate 224 drives the protective plate 225 to rise. When the molten material barrel 101 is pouring, the protective plate 225 prevents the molten material from splashing, which poses a safety hazard to the operators. When the construction workers move the device to the designated work site, the push plate 224 that is not in the rising state can detect and clean the opposite side in front, clean up some stones or dropped molten material, and prevent the device from tipping over during the movement.
[0029] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A pouring machine for casting processing to prevent molten material from dumping, comprising a material storage component (1), characterized in that: A pouring assembly (2) is fixedly connected to the lower portion of the material storage assembly (1); The material storage assembly (1) includes a dissolving material barrel (101), a pressing plate (102) is fixedly installed at the lower end of the dissolving material barrel (101), springs (103) are fixedly installed on both sides of the lower end of the pressing plate (102), both sides of the pressing plate (102) are connected to V-shaped connecting rods (104), one side of the V-shaped connecting rod (104) is connected to a fixing block (105), and a clamping plate (106) is fixedly installed on each of the fixing blocks (105); The casting assembly (2) comprises a motor (201), a threaded rod (202) is fixedly mounted on the output end of the motor (201), a fixed ring (203) is fixedly mounted on one side of the threaded rod (202), an inclined plate (204) is fixedly mounted on the fixed ring (203), a half gear (206) is rotatably connected to the lower end of the threaded rod (202), a fixed rod (207) is fixedly mounted on the lower end of the half gear (206), an adjustment frame (208) is fixedly mounted on both sides of the fixed rod (207), two sets of axles (209) are fixedly mounted inside the adjustment frame (208), wheels (210) are rotatably mounted on the axles (209), baffles (211) are mounted inside the adjustment frame (208), a pull rod (212) is fixedly mounted on one side of the baffle (211), and a telescopic pressure rod is fixedly mounted on the other side of the baffle (211). (213), first connecting blocks (214) are fixedly connected to both sides of the tilting plate (204), one side of the first connecting block (214) is connected to a second connecting block (215), one side of the second connecting block (215) is connected to a piston rod (216), one side of the piston rod (216) is connected to a piston block (217), a pipe (218) is fixedly installed on the outer surface of the piston block (217), and a suction cup (219) is fixedly connected to the lower end of the pipe (218), a bevel gear set (220) is fixedly installed inside one side of the tilting plate (204), a rotating rod (221) is fixedly installed on the other side of the bevel gear set (220), a lifting rod (222) is fixedly installed on the rotating rod (221), a push plate (224) is fixedly installed on one side of the lifting rod (222), and two sets of protective plates (225) are connected to the push plate (224).
2. A pouring machine for casting that prevents molten material from dumping according to claim 1, characterized in that: One side of the spring (103) is fixedly connected to the inclined plate (204), and the connection between the pressure plate (102) and the V-shaped connecting rods (104) on both sides and the connection between the V-shaped connecting rods (104) and the fixed block (105) are both provided with adjustment rods (107).
3. A pouring machine for casting that prevents molten material from dumping according to claim 1, characterized in that: The inclined plate (204) is provided with a groove, and the groove is adapted to the material storage assembly (1).
4. A pouring machine for casting that prevents molten material from dumping according to claim 1, characterized in that: Both sides of the inclined plate (204) are configured to be arc-shaped, and both sides of the inclined plate (204) are slidably connected to the adjustment frame (208).
5. A pouring machine for casting that prevents molten material from dumping according to claim 4, characterized in that: A scale needle (226) is provided on one side of the tilting plate (204), and an angle value is provided on one side of the adjustment frame (208), and the scale needle (226) slides on the angle value on the one side of the adjustment frame (208).
6. A pouring machine for casting that prevents molten material from dumping according to claim 4, characterized in that: Bolts (227) are fixedly mounted on the arc-shaped lower ends of both sides of the tilting plate (204), and the bolts (227) are each mounted with a fixing plate (228) that slides on the adjustment frame (208).
7. A pouring machine for casting that prevents molten material from dumping according to claim 6, characterized in that: One side of the arc on both sides of the inclined plate (204) is connected to a pull rod (212), and the other side of the arc on both sides of the inclined plate (204) is connected to a telescopic pressure rod (213).
8. A pouring machine for casting that prevents molten material from dumping according to claim 1, characterized in that: The connection between the first connecting block (214) and the second connecting block (215) is also provided with an adjusting rod (107), and the connection between the second connecting block (215) and the piston rod (216) is also provided with an adjusting rod (107).
9. A pouring machine for casting that prevents molten material from dumping according to claim 1, characterized in that: A fixing frame (229) is fixedly mounted on each of the pipes (218), and one side of each of the fixing frames (229) is fixedly connected to the adjustment frame (208).
10. A pouring machine for casting that prevents molten material from dumping according to claim 1, characterized in that: The other side of the bevel gear set (220) is mounted on the adjustment frame (208), and a protective frame is provided at the connection between the bevel gear set (220) and the adjustment frame (208).