Potato cake forming machine
Patent Information
- Application Number
- CN202521583018.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-28
- Publication Date
- 2026-08-21
- Estimated Expiration
- 2035-07-28
AI Technical Summary
[0004]本实用新型的目的是解决马铃薯饼掉落至网状传送带的表面后在网状传送带上移动的过程中可能会与网状传送带的表面产生一定的粘性,从而导致马铃薯饼从传送带的表面掉落时部分表面存留在网状传送带的内部,影响马铃薯饼的完整性,导致马铃薯饼的使用效果下降的问题而提出的一种马铃薯饼成型机
[0006]上述部件所达到的效果为:使用马铃薯饼成型机时,将马铃薯泥原料加入料筒的内部,通过机体顶端的控制箱控制机体运作,使机体内部的驱动设备控制料筒内部的送料桨叶转动,通过送料桨叶推动料筒内部的薯泥向下料槽的方向移动输出,同时成型滚筒转动使外表面的出料槽移动至下料槽处时薯泥会进入出料槽内部,当成型滚筒外表面的出料槽转动至靠近切刀处时,切刀转动使一端贴合在成型滚筒的一端从而将出料槽内部的圆形薯泥饼切下,随后薯饼会进入输送网带的外表面,通过机体内部的驱动设备带动转辊转动控制输送网带移动,使薯饼通过输送网带的一端输出。
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Figure CN224654655U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of potato cake forming machines, and in particular to a potato cake forming machine. Background Technology
[0002] A potato cake forming machine is a device used to process mashed potatoes or potato fillings into cake-shaped food. The feeding paddle and forming roller operate synchronously to allow the mashed potatoes to enter the mold, ensuring a large amount of material is fed in and consistent forming pressure. Then, the roller rotates to one side of the conveyor belt and the unloading mechanism cuts the potato cakes into the mesh conveyor belt for transportation.
[0003] When making potato cakes using a potato cake forming machine, the potato cakes may become sticky to the surface of the mesh conveyor belt as they fall and move along the belt. This can cause some of the potato cake's surface to remain inside the mesh conveyor belt after falling off, affecting the integrity of the potato cake and reducing its usability. Utility Model Content
[0004] The purpose of this invention is to solve the problem that potato cakes may become sticky to the surface of the mesh conveyor belt after falling onto it, causing some of the potato cake surface to remain inside the mesh conveyor belt when it falls off, affecting the integrity of the potato cake and reducing its usability. Therefore, a potato cake forming machine is proposed.
[0005] To achieve the above objectives, the present invention adopts the following technical solution: a potato cake forming machine, comprising a machine body, a material cylinder at the top of the machine body, a feeding paddle rotatably disposed inside the material cylinder, a discharge groove at the bottom of the inner wall of the material cylinder, a forming roller rotatably disposed on one side of the outer surface of the machine body, a discharge groove being provided on the outer surface of the forming roller, the forming roller being located below the material cylinder, a cutter rotatably disposed on the outer surface of the machine body near the forming roller, two rotating rollers rotatably connected to one side of the machine body, a conveyor belt sleeved on the outer surface of the rotating rollers, and a drive device for driving the feeding paddle, forming roller, cutter, and rotating rollers to rotate inside the machine body.
[0006] The effect achieved by the above components is as follows: When using the potato cake forming machine, potato puree is added into the inside of the feed cylinder. The machine is operated by controlling the control box at the top of the machine body, which causes the drive device inside the machine body to control the rotation of the feeding paddle inside the feed cylinder. The feeding paddle pushes the potato puree inside the feed cylinder towards the lower feed trough for output. At the same time, the forming roller rotates, causing the discharge trough on the outer surface to move to the lower feed trough. When the discharge trough on the outer surface of the forming roller rotates to be close to the cutter, the cutter rotates and causes one end to adhere to one end of the forming roller, thereby cutting off the round potato cake inside the discharge trough. The potato cake then enters the outer surface of the conveyor belt. The drive device inside the machine body drives the rotating roller to rotate and controls the movement of the conveyor belt, so that the potato cake is output through one end of the conveyor belt.
[0007] Preferably, the outer surface of the machine body is provided with an oiling device, which includes a frame plate. The top of the frame plate is bolted to the outer surface of the machine body below the conveyor belt. An oil box is fixedly connected to the bottom of the frame plate. A sponge block is provided inside the oil box. A servo motor is provided on one side of the frame plate. A shaft is rotatably connected to one side of the frame plate. The output end of the servo motor is connected to one end of the shaft through a coupling. A groove plate is fixedly connected to the outer surface of the shaft. A sliding plate is slidably connected inside the groove plate. A plurality of brush strips are provided at one end of the sliding plate.
[0008] The effect achieved by the above components is as follows: By setting the brush strips, when using the potato cake forming machine, edible oil can be added to the inside of the oil box. Then, a sponge block is added to the inside of the oil box so that the sponge block absorbs the edible oil. While the machine is operating, the servo motor on one side of the frame plate is controlled to operate. The servo motor drives the shaft to rotate clockwise, which in turn drives the trough plate and the sliding plate inside the trough plate to rotate. When the brush strip at one end of the sliding plate rotates to the oil box, it will contact the top of the sponge block, so that the outer surface of the brush strip is covered with edible oil. When the shaft continues to rotate, and the trough plate moves away from the oil box and closer to the bottom surface of the conveyor belt, the brush strip at one end of the sliding plate will brush the edible oil onto the surface of the conveyor belt. When the potato cake falls onto the surface of the conveyor belt, by having the potato cake covered with edible oil, the stickiness between the potato cake and the conveyor belt can be minimized, so that some of the potato cake will remain on the outer surface of the conveyor belt when it is output.
[0009] Preferably, one end of the sliding plate is provided with two first springs, and the two ends of the first springs are fixedly connected to one end of the sliding plate and one end of the inner wall of the groove plate, respectively.
[0010] The effect achieved by the above components is as follows: when the shaft rotates, the brush strip at one end of the sliding plate will squeeze the sliding plate into the trough and compress the first spring when it comes into contact with the sponge block or the surface of the conveyor belt inside the oil box. The push of the first spring can make the brush strip at one end of the sliding plate contact the surface of the sponge block or the conveyor belt for a longer time when it rotates near the oil box and the conveyor belt.
[0011] Preferably, positioning blocks are fixedly connected to both sides of the sliding plate. The outer surface of the positioning blocks is cross-shaped, and the two positioning blocks slide on both sides of the inner wall and the outer surface of the groove plate, respectively.
[0012] The effect achieved by the above components is that by setting the positioning block, the angle between the sliding plate and the slot plate can be further restricted, thus preventing the angle between the sliding plate and the slot plate from deviating.
[0013] Preferably, one side of the frame is provided with a squeezing component that can squeeze the edible oil inside the sponge block upwards so that the brush strip at one end of the sliding plate can absorb it.
[0014] Preferably, the extrusion assembly includes a rotating shaft, one end of which is rotatably connected to one side of a frame plate. The outer surfaces of the rotating shaft and the shaft rod are respectively provided with pulleys, and belts are fitted onto the outer surfaces of the pulleys. When the shaft rod rotates, the rotating shaft can be driven to rotate via the pulleys and belts. A push rod is fixedly connected to one end of the rotating shaft. A connecting rod is rotatably connected to one side of the frame plate. A push plate is rotatably connected to one side of the connecting rod. A stop block is fixedly connected to one side of the connecting rod. Two round rods are fixedly connected to the top of the push plate. The round rods slide at the bottom of the inner wall of the oil box. A pressure plate is provided at the top of the round rods, located below the sponge block. Several limiting blocks are fixedly connected to the top of the inner wall of the oil box. Two second springs are provided at the top of the push plate, with their upper and lower ends fixedly connected to the top of the push plate and the bottom of the oil box, respectively.
[0015] The effect achieved by the above components is as follows: When the oil brushing device is working, the shaft can drive the rotating shaft to rotate in the same direction through the pulley and belt drive during the rotation process. When the trough plate rotates to the oil box, the push rod at one end of the rotating shaft will enter the surface of the stop block at one end of the connecting rod and move on the surface of the stop block, pushing the stop block to control the connecting rod to rotate towards one end of the push plate, so that the push plate compresses the second spring and pushes the pressure plate through the round rod to squeeze the sponge block, so that the edible oil inside the sponge block overflows to the surface, making it easier for the brush strip at one end of the sliding plate to adhere, thus improving the practicality of the oil brushing device. After the shaft drives the trough plate away from the top of the oil box, the push rod will move away from the outer surface of the stop block. The second spring returns to its original state and pushes the push plate to move downward, causing the connecting rod to rotate and drive the stop block back to its original position.
[0016] Preferably, a rectangular groove is provided on one side of the oil box, and a guide plate is fixedly connected to the outer surface of the oil box near the rectangular groove, with the guide plate forming a certain angle with the oil box.
[0017] The effect achieved by the above components is as follows: when the shaft drives the groove plate and the sliding plate to rotate away from the oil box, the edible oil adsorbed on the surface of the brush strip at one end of the sliding plate will drip into the outer surface of the guide plate and enter the interior of the oil box through the rectangular groove for recycling, thus avoiding the waste of edible oil dripping onto the ground.
[0018] Preferably, a baffle is fixedly connected to the top of the oil box.
[0019] The effect achieved by the above components is that when the pressure plate squeezes the sponge block, the cooking oil overflowing from the top of the oil box will be blocked by the baffle and will not run out.
[0020] Compared with the prior art, the advantages and positive effects of this utility model are as follows:
[0021] In this invention, by setting up an oil brushing device, when using the potato cake forming machine, the servo motor operates simultaneously to drive the shaft and the groove plate to rotate, so that the brush strip at one end of the sliding plate brushes the edible oil onto the surface of the conveyor belt. When the potato cake falls onto the surface of the conveyor belt, by making the potato cake stick to the surface of the conveyor belt, the stickiness between the potato cake and the conveyor belt can be avoided as much as possible, so that some of the potato cake will remain on the outer surface of the conveyor belt when it is output. Attached Figure Description
[0022] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0023] Figure 2 This is a three-dimensional structural diagram of the material cylinder of this utility model;
[0024] Figure 3 This is a three-dimensional structural diagram of the forming roller of this utility model;
[0025] Figure 4 This is a three-dimensional structural diagram of the frame plate of this utility model;
[0026] Figure 5 This is a partial cross-sectional three-dimensional structural diagram of the groove plate of this utility model;
[0027] Figure 6 This is a partial cross-sectional three-dimensional structural diagram of the oil box of this utility model.
[0028] Legend: 1. Machine body; 2. Oil brushing device; 3. Material cylinder; 4. Feeding paddle; 5. Discharge chute; 6. Forming roller; 7. Discharge chute; 8. Cutter; 9. Rotary roller; 10. Conveyor belt; 21. Frame plate; 22. Oil box; 23. Sponge block; 24. Shaft; 25. Groove plate; 26. Sliding plate; 27. First spring; 28. Positioning block; 29. Extrusion assembly; 291. Rotary shaft; 292. Push rod; 293. Connecting rod; 294. Stop block; 295. Push plate; 296. Round rod; 297. Pressure plate; 298. Second spring; 299. Limiting block; 210. Servo motor; 211. Rectangular groove; 212. Guide plate; 213. Baffle frame. Detailed Implementation
[0029] Example 1, such as Figure 1-3 As shown, a potato cake forming machine includes a body 1, a material cylinder 3 at the top of the body 1, a feeding paddle 4 rotatably mounted inside the material cylinder 3, a discharge trough 5 at the bottom of the inner wall of the material cylinder 3, a forming roller 6 rotatably mounted on one side of the outer surface of the body 1, a discharge trough 7 on the outer surface of the forming roller 6, and the forming roller 6 is located below the material cylinder 3. A cutter 8 rotatably mounted on the outer surface of the body 1 near the forming roller 6, and two rotating rollers 9 rotatably connected to one side of the body 1, with a conveyor belt 10 sleeved on the outer surface of the rotating rollers 9. A drive device (not shown in the figure) is installed inside the body 1 to drive the feeding paddle 4, forming roller 6, cutter 8, and rotating rollers 9 to rotate. When using the potato cake forming machine, potato puree is added into the material cylinder 3, and the machine is controlled by a control box at the top of the body 1. 1. Operation: The drive device inside the machine body 1 controls the rotation of the feeding paddle 4 inside the material cylinder 3. The feeding paddle 4 pushes the potato mash inside the material cylinder 3 towards the downward material trough 5 for output. At the same time, the forming roller 6 rotates, causing the discharge trough 7 on its outer surface to move to the downward material trough 5. When the discharge trough 7 on the outer surface of the forming roller 6 rotates to be close to the cutter 8, the cutter 8 rotates so that one end is attached to one end of the forming roller 6, thereby cutting off the round potato cake inside the discharge trough 7. Then the potato cake will enter the outer surface of the conveyor belt 10. The drive device inside the machine body 1 drives the rotating roller 9 to rotate and controls the movement of the conveyor belt 10, so that the potato cake is output through one end of the conveyor belt 10 (the potato cake machine in this utility model is the Ganyun GY-RBJ-1500i multi-functional forming machine).
[0030] Reference Figure 1-5As shown in this embodiment: an oil brushing device 2 is provided on the outer surface of the machine body 1. The oil brushing device 2 includes a frame plate 21. The top of the frame plate 21 is bolted to the outer surface of the machine body 1 below the conveyor belt 10. An oil box 22 is fixedly connected to the bottom of the frame plate 21. A sponge block 23 is provided inside the oil box 22. A servo motor 210 is provided on one side of the frame plate 21. A shaft 24 is rotatably connected to one side of the frame plate 21. The output end of the servo motor 210 is connected to one end of the shaft 24 through a coupling. A groove plate 25 is fixedly connected to the outer surface of the shaft 24. A sliding plate 26 is slidably connected inside the groove plate 25. Several brush strips are provided at one end of the sliding plate 26. By setting the brush strips, when using the potato cake forming machine, edible oil can be added to the inside of the oil box 22, and then a sponge block 23 can be added to the inside of the oil box 22. The sponge block 23 absorbs cooking oil. While the machine body 1 is operating, the servo motor 210 on one side of the frame plate 21 is operated. The servo motor 210 drives the shaft 24 to rotate clockwise. The shaft 24 drives the trough plate 25 and the sliding plate 26 inside the trough plate 25 to rotate. When the brush strip at one end of the sliding plate 26 rotates to the oil box 22, it will contact the top of the sponge block 23, so that the outer surface of the brush strip is covered with cooking oil. When the shaft 24 continues to rotate, and the trough plate 25 moves away from the oil box 22 and gets closer to the bottom surface of the conveyor belt 10, the brush strip at one end of the sliding plate 26 will brush the cooking oil onto the surface of the conveyor belt 10. When the potato cake falls onto the surface of the conveyor belt 10, the presence of cooking oil on the potato cake can minimize the stickiness between the potato cake and the conveyor belt 10, preventing some of the potato cake from remaining on the outer surface of the conveyor belt 10 during output.
[0031] Reference Figure 2-5 As shown in this embodiment: two first springs 27 are provided at one end of the sliding plate 26. The two ends of the first springs 27 are fixedly connected to one end of the sliding plate 26 and one end of the inner wall of the trough plate 25, respectively. When the shaft 24 rotates, the brush strip at one end of the sliding plate 26 contacts the surface of the sponge block 23 inside the oil box 22 or the conveyor belt 10, which will squeeze the sliding plate 26 to slide into the interior of the trough plate 25 and compress the first springs 27. The push of the first springs 27 can make the brush strip at one end of the sliding plate 26 contact the surface of the sponge block 23 or the conveyor belt 10 for a longer time when it rotates near the oil box 22 and the conveyor belt 10. Positioning blocks 28 are fixedly connected to both sides of the sliding plate 26. The outer surface of the positioning blocks 28 is cross-shaped. The two positioning blocks 28 slide on both sides of the inner wall and the outer surface of the trough plate 25, respectively. By setting the positioning blocks 28, the angle between the sliding plate 26 and the trough plate 25 can be further restricted to avoid the angle between the sliding plate 26 and the trough plate 25 from being skewed.
[0032] Reference Figure 2-6As shown in this embodiment: a squeezing assembly 29 is provided on one side of the frame plate 21 to squeeze the edible oil inside the sponge block 23 upwards for easy adsorption by the brush strip at one end of the sliding plate 26. The squeezing assembly 29 includes a rotating shaft 291, one end of which is rotatably connected to one side of the frame plate 21. A pulley is provided on the outer surface of the rotating shaft 291 and the outer surface of the shaft rod 24, respectively. A belt is fitted on the outer surface of the pulley. When the shaft rod 24 rotates, it can drive the rotating shaft 291 to rotate through the pulley and belt transmission. One end of the rotating shaft 291 is fixed. A push rod 292 is connected to the frame plate 21. A connecting rod 293 is rotatably connected to one side of the frame plate 21. A push plate 295 is rotatably connected to one side of the connecting rod 293. A stop block 294 is fixedly connected to one side of the connecting rod 293. Two round rods 296 are fixedly connected to the top of the push plate 295. The round rods 296 slide at the bottom of the inner wall of the oil box 22. A pressure plate 297 is provided at the top of the round rods 296. The pressure plate 297 is located below the sponge block 23. Several limit blocks 299 are fixedly connected to the top of the inner wall of the oil box 22. Two limit blocks 299 are provided at the top of the push plate 295. A second spring 298 is fixedly connected at its upper and lower ends to the top of the push plate 295 and the bottom of the oil box 22, respectively. When the oil brushing device 2 is working, the shaft 24 rotates, which drives the rotating shaft 291 to rotate in the same direction through the pulley and belt drive. When the slot plate 25 rotates to a position close to the oil box 22, the push rod 292 at one end of the rotating shaft 291 enters the surface of the stop block 294 at one end of the connecting rod 293 and moves on the surface of the stop block 294, pushing the stop block 294 to control the connecting rod 293 towards the push plate 295. One end rotates, causing the push plate 295 to compress the second spring 298 and push the pressure plate 297 through the round rod 296 to squeeze the sponge block 23, causing the edible oil inside the sponge block 23 to overflow onto the surface, making it easier for the brush strip at one end of the sliding plate 26 to adhere, thus improving the practicality of the oil brushing device 2. After the shaft 24 drives the groove plate 25 away from the top of the oil box 22, the push rod 292 will move away from the outer surface of the stop block 294. The second spring 298 returns to its original state and pushes the push plate 295 downward, causing the connecting rod 293 to rotate and drive the stop block 294 back to its original position.
[0033] Reference Figure 2-6 As shown in this embodiment: A rectangular groove 211 is provided on one side of the oil box 22. A guide plate 212 is fixedly connected to the outer surface of the oil box 22 near the rectangular groove 211. The guide plate 212 and the oil box 22 form a certain angle. When the shaft 24 drives the groove plate 25 and the sliding plate 26 to rotate away from the oil box 22, the edible oil adsorbed on the surface of the brush strip at one end of the sliding plate 26 will drip into the outer surface of the guide plate 212 and enter the interior of the oil box 22 through the rectangular groove 211 for recycling, so as to avoid the edible oil dripping onto the ground and causing waste. A baffle 213 is fixedly connected to the top of the oil box 22. When the pressure plate 297 squeezes the sponge block 23, the edible oil overflowing from the top of the oil box 22 will be blocked by the baffle 213 and will not run out.
[0034] Working principle: When using the potato cake forming machine, first add edible oil to the inside of the oil box 22 on one side of the frame plate 21, and insert a sponge block 23 into the oil box 22 to absorb the edible oil. Then, add the mashed potato raw material into the inside of the feeding cylinder 3. The machine body 1 is controlled by the control box at the top of the machine body 1, which controls the drive device inside the machine body 1 to rotate the feeding paddle 4 inside the feeding cylinder 3. The feeding paddle 4 pushes the mashed potato inside the feeding cylinder 3 to move towards the lower feeding trough 5 for output. At the same time, the forming roller 6 rotates, and when the discharge trough 7 on the outer surface moves to the lower feeding trough 5, the mashed potato will enter the discharge trough 7. When the 7th rotation reaches the position close to the cutter 8, the cutter 8 rotates so that one end fits against one end of the forming roller 6, thereby cutting off the round potato cake inside the discharge trough 7. The potato cake then enters the outer surface of the conveyor belt 10. The drive device inside the machine body 1 drives the rotating roller 9 to rotate, controlling the movement of the conveyor belt 10, so that the potato cake is output through one end of the conveyor belt 10. Simultaneously, the servo motor 210 on one side of the frame plate 21 operates, driving the shaft 24 to rotate clockwise. The shaft 24 then drives the trough plate 25 and the sliding plate 26 inside the trough plate 25 to rotate. When the brush strip at one end of the sliding plate 26 rotates to the oil box 22, it will... The top of the sponge block 23 contacts the surface, and during the rotation of the shaft 24, the pulley and belt drive can drive the rotating shaft 291 to rotate in the same direction. When the trough plate 25 rotates to near the oil box 22, the push rod 292 at one end of the rotating shaft 291 will enter the surface of the stop block 294 at one end of the connecting rod 293 and move on the surface of the stop block 294, pushing the stop block 294 to control the connecting rod 293 to rotate towards one end of the push plate 295, so that the push plate 295 compresses the second spring 298 and pushes the pressure plate 297 through the round rod 296 to squeeze the sponge block 23, causing the edible oil inside the sponge block 23 to overflow onto the surface and stick the edible oil to the outer surface of the brush strip. The shaft 24 continues to rotate. When the trough plate 25 is moved away from the oil box 22 and closer to the bottom surface of the conveyor belt 10, the brush strip at one end of the sliding plate 26 will brush the cooking oil onto the surface of the conveyor belt 10. When the potato cake falls onto the surface of the conveyor belt 10, the presence of cooking oil on the potato cake can minimize the stickiness between the potato cake and the conveyor belt 10, preventing some of the potato cake from remaining on the outer surface of the conveyor belt 10 during output. When the shaft 24 drives the trough plate 25 and the sliding plate 26 to rotate away from the oil box 22, the cooking oil adsorbed on the surface of the brush strip at one end of the sliding plate 26 will drip into the outer surface of the guide plate 212 and enter the interior of the oil box 22 through the rectangular groove 211 for recycling.
[0035] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model in any other way. Any person skilled in the art may use the disclosed technical content to make changes or modifications to create equivalent embodiments for application in other fields. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of this utility model, without departing from the scope of the utility model's technical solution, still fall within the protection scope of this utility model's technical solution. In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. For those skilled in the art, the specific meaning of the above terms in this utility model can be understood through specific circumstances.
Claims
1. A potato cake forming machine, comprising a machine body (1), characterized in that: The top of the machine body (1) is provided with a material cylinder (3), and a feeding paddle (4) is rotatably provided inside the material cylinder (3). A discharge groove (5) is opened at the bottom of the inner wall of the material cylinder (3). A forming roller (6) is rotatably provided on one side of the outer surface of the machine body (1). A discharge groove (7) is opened on the outer surface of the forming roller (6). The forming roller (6) is located below the material cylinder (3). A cutter (8) is rotatably provided on the outer surface of the machine body (1) near the forming roller (6). Two rotating rollers (9) are rotatably connected to one side of the machine body (1). A conveyor belt (10) is sleeved on the outer surface of the rotating rollers (9). A drive device for driving the feeding paddle (4), forming roller (6), cutter (8) and rotating rollers (9) to rotate is provided inside the machine body (1). An oil brushing device (2) is provided on the outer surface of the body (1). The oil brushing device (2) includes a frame plate (21). The top of the frame plate (21) is installed on the outer surface of the body (1) below the conveyor belt (10) by bolts. An oil box (22) is fixedly connected to the bottom of the frame plate (21). A sponge block (23) is provided inside the oil box (22). A servo motor (210) is provided on one side of the frame plate (21). A shaft (24) is rotatably connected to one side of the frame plate (21). The output end of the servo motor (210) is connected to one end of the shaft (24) through a coupling. A groove plate (25) is fixedly connected to the outer surface of the shaft (24). A sliding plate (26) is slidably connected inside the groove plate (25). A number of brush strips are provided at one end of the sliding plate (26).
2. The potato cake forming machine according to claim 1, characterized in that: Two first springs (27) are provided at one end of the sliding plate (26), and the two ends of the first springs (27) are fixedly connected to one end of the sliding plate (26) and one end of the inner wall of the groove plate (25), respectively.
3. The potato cake forming machine according to claim 2, characterized in that: The sliding plate (26) is fixedly connected to two sides of positioning blocks (28). The outer surface of the positioning blocks (28) is cross-shaped. The two positioning blocks (28) slide on the inner wall and outer surface of the groove plate (25) respectively.
4. A potato cake forming machine according to claim 3, characterized in that: One side of the frame plate (21) is provided with a squeezing component (29) that can squeeze the edible oil inside the sponge block (23) upwards so that the brush strip at one end of the sliding plate (26) can be adsorbed.
5. A potato cake forming machine according to claim 4, characterized in that: The extrusion assembly (29) includes a rotating shaft (291), one end of which is rotatably connected to one side of the frame plate (21). The outer surface of the rotating shaft (291) and the outer surface of the shaft rod (24) are respectively provided with pulleys, and a belt is fitted onto the outer surface of the pulleys. When the shaft rod (24) rotates, it can drive the rotating shaft (291) to rotate via the pulleys and belt. One end of the rotating shaft (291) is fixedly connected to a push rod (292). One side of the frame plate (21) is rotatably connected to a connecting rod (293), and one side of the connecting rod (293) is rotatably connected to a push plate (295). A stop block (294) is fixedly connected to one side. Two round rods (296) are fixedly connected to the top of the push plate (295). The round rods (296) slide at the bottom of the inner wall of the oil box (22). A pressure plate (297) is provided at the top of the round rods (296). The pressure plate (297) is located below the sponge block (23). Several limiting blocks (299) are fixedly connected to the top of the inner wall of the oil box (22). Two second springs (298) are provided at the top of the push plate (295). The upper and lower ends of the second springs (298) are fixedly connected to the top of the push plate (295) and the bottom of the oil box (22), respectively.
6. A potato cake forming machine according to claim 5, characterized in that: A rectangular groove (211) is provided on one side of the oil box (22), and a guide plate (212) is fixedly connected to the outer surface of the oil box (22) near the rectangular groove (211). The guide plate (212) and the oil box (22) form a certain angle.
7. A potato cake forming machine according to claim 6, characterized in that: A baffle (213) is fixedly connected to the top of the oil box (22).