A multi-functional surface product manufacturing equipment
Patent Information
- Application Number
- CN202521579995.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-28
- Publication Date
- 2026-09-01
- Estimated Expiration
- 2035-07-28
AI Technical Summary
然而,目前市场上的面制品生产设备功能比较单一,满足不了市场对面制品多样化的需求
[0018]这样,压面单机、叠面输送和接面输送和制皮输送组合,可实现圆皮、方皮的生产。
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Figure CN224698583U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a multifunctional noodle product production equipment, belonging to the technical field of food machinery and equipment. Background Technology
[0002] my country is the world's largest producer of flour products, and flour products have a large consumer market in the country. In recent years, with the rapid development of my country's economy and society and the acceleration of urbanization, the flour product market has developed rapidly, and the demand for diversified flour products has become increasingly widespread. Therefore, multifunctional flour product production equipment has great development prospects now and in the future. However, the flour product production equipment currently on the market has relatively single functions and cannot meet the market's diversified needs for flour products. Although there are some diversified flour product production equipment on the market, their degree of automation is low, and they generally require manual operation. Utility Model Content
[0003] The technical problem to be solved by this utility model is to overcome the problems existing in the prior art and provide a high-quality, multi-functional noodle product production equipment that can make noodles, dumpling wrappers, and wonton wrappers.
[0004] The technical solution of this utility model to solve its technical problem is as follows: A multi-functional noodle product production equipment includes a dough pressing machine, a dough stacking mechanism, a dough receiving mechanism, a noodle packaging and conveying mechanism, and a dough making mechanism. The dough pressing machine is connected to the input end of the dough stacking mechanism, the output end of the dough stacking mechanism is connected to the input end of the dough receiving mechanism or the noodle packaging and conveying mechanism, and the output end of the dough receiving mechanism is connected to the input end of the dough making mechanism.
[0005] This utility model selects different mechanisms to combine to achieve different functions. The combination of a single dough pressing machine, a dough stacking mechanism, and a dough receiving mechanism realizes the dough stacking function; the combination of a single dough pressing machine, a dough stacking mechanism, and a noodle packaging and conveying mechanism realizes the automatic packaging function of fresh noodles and semi-dried noodles; the combination of a single dough pressing machine, a dough stacking mechanism, a dough receiving mechanism, and a dough making mechanism realizes the rolling and cutting function of round and square dough sheets.
[0006] The further improved technical solution of this utility model is as follows: Preferably, the dough pressing machine includes a dough pressing frame and a dough pressing machine installed on the dough pressing frame. A conveyor unit is provided below the dough pressing machine. Powder sprinklers are provided at both ends of the conveyor unit. The rear end of the conveyor unit is connected to a stacking conveyor.
[0007] Preferably, the stacking mechanism includes a stacking frame and a stacking conveyor mounted on the stacking frame. The stacking conveyor is located below the stacking wall panel, and the stacking wall panel is mounted on the stacking frame. A dough sheet conveyor, a dough knife assembly, and a cutting knife assembly are mounted on the stacking wall panel. The dough knife assembly is located below the dough sheet conveyor, and the cutting knife assembly is located below the dough knife assembly. The rear end of the stacking conveyor is connected to a receiving conveyor.
[0008] With the above structure, during the dough stacking process, the dough sheet enters the dough knife assembly via the dough sheet conveyor for shredding to obtain strips of dough. The strips of dough then enter the dough knife assembly for cutting to obtain noodles. The noodles fall into the dough stacking conveyor, which uses a frequency converter to control the drive motor to rotate forward and backward to achieve the reciprocating motion of the conveyor belt, thereby driving the noodles on the dough stacking conveyor to achieve the dough stacking function. During the automatic noodle packaging process, the dough sheet enters the dough knife assembly via the dough sheet conveyor for shredding to obtain strips of dough. The strips of dough then enter the dough knife assembly for cutting to obtain noodles. The noodles then enter the noodle packaging conveyor via a hopper. During the dough sheet making process, the drive motor of the dough stacking conveyor rotates forward or backward to achieve the forward or reverse operation of the conveyor belt, transporting the dough sheet to the dough receiving mechanism. During the square dough sheet rolling and cutting process, the dough sheet enters the dough knife assembly via the dough sheet conveyor for sheet splitting to obtain strips of dough the width of the square dough sheet. The strips of dough are then transported to the dough receiving mechanism via the dough stacking conveyor.
[0009] Preferably, the noodle packaging and conveying mechanism includes a noodle conveyor, a bucket elevator, an automatic noodle packaging machine, a baffle conveyor, and a disc receiving device. The input end of the noodle conveyor is located below the cutter assembly, and its output end is connected to the input end of the bucket elevator. The output end of the bucket elevator is connected to the input end of the automatic noodle packaging machine, the output end of the automatic noodle packaging machine is connected to the input end of the baffle conveyor, and the output end of the baffle conveyor is connected to the disc receiving device.
[0010] Preferably, the face-joining mechanism includes a face-joining frame and a face-joining conveyor mounted on the face-joining frame.
[0011] With the above structure, during the dough stacking and finishing process, the stacked dough sheets are transported to the receiving mechanism, and the dough is finished off manually from the receiving mechanism.
[0012] Preferably, the leather-making mechanism includes a leather-making frame and a round leather rolling machine, a square leather rolling machine, a rolling conveyor, a leather-making conveyor, a residual leather crusher, and a leather-receiving conveyor mounted on the leather-making frame. The rolling conveyor is located below the round leather rolling machine and the square leather rolling machine, the leather-receiving conveyor is located in front of the rolling conveyor, the leather-making conveyor is located behind the rolling conveyor, the residual leather crusher is located above the leather-making conveyor, and the leather-receiving conveyor is located below the leather-making conveyor.
[0013] Preferably, the noodle pressing machine, the noodle stacking mechanism, and the noodle packaging and conveying mechanism form a first combination for the production and packaging of fresh noodles and semi-dried noodles.
[0014] In this way, the combination of noodle pressing machine, noodle stacking machine and noodle packaging conveyor can realize the production and automatic packaging of fresh noodles and semi-dried noodles.
[0015] Preferably, the pressing machine, the stacking mechanism, and the joining mechanism form a second assembly for stacking surfaces.
[0016] In this way, the combination of single pressing machine, stacking conveyor, and joint conveyor can realize the stacking function.
[0017] Preferably, the pressing machine, the stacking mechanism, the joining mechanism, and the leather making mechanism form a third assembly for the production of round and square leather.
[0018] In this way, the combination of single pressing machine, stacking conveyor, jointing conveyor and leather making conveyor can realize the production of round and square leather.
[0019] The advantages of this utility model are that it can produce a variety of noodle products, such as fresh noodles, semi-dried noodles, layered noodles, round wrappers, and square wrappers, by combining different mechanisms. It achieves multi-purpose functionality, compact structure, high degree of automation, diversified functions, significantly reduced investment costs, and significantly improved equipment efficiency. Attached Figure Description
[0020] Figure 1 This is the main assembly view of this utility model.
[0021] Figure 2 This is a top view of the assembly of this utility model.
[0022] Figure 3 This is a structural schematic diagram of the medium-pressure surface unit of this utility model.
[0023] Figure 4 This is a schematic diagram of the overlapping mechanism and the contact mechanism in this utility model.
[0024] Figure 5 This is a schematic diagram of the noodle packaging and conveying mechanism in this utility model.
[0025] Figure 6 This is a schematic diagram of the leather-making mechanism in this utility model.
[0026] Figure 7 This is a diagram of the equipment assembly for the overlapping process in this utility model.
[0027] Figure 8 This is a diagram showing the equipment assembly for the noodle packaging process in this utility model.
[0028] Figure 9This is a diagram showing the equipment assembly for the round and square skin processing of this utility model.
[0029] In the diagram: 1. Single dough pressing machine, 101. Dough pressing machine, 102. Conveyor unit, 103. Powder spreading machine, 104. Dough pressing machine frame, 2. Stacking mechanism, 201. Dough sheet conveyor, 202. Dough cutter assembly, 203. Cutting knife assembly, 204. Stacking wall panel, 205. Stacking conveyor, 206. Stacking machine frame, 3. Dough receiving mechanism, 301. Dough receiving conveyor, 302. Dough receiving machine frame, 4. Noodle packaging and conveying mechanism, 401. Noodle conveyor, 402. Bucket elevator, 403. Automatic noodle packaging machine, 404. Baffle conveyor, 405. Disc receiving device, 406. Dividing hopper, 5. Leather making mechanism, 501. Round leather tumbling machine, 502. Square leather tumbling machine, 503. Roller mold conveyor, 504. Leather making conveyor, 505. Residual leather breaking machine, 506. Leather receiving conveyor, 507. Leather making frame. Detailed Implementation
[0030] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments. However, the present invention is not limited to the examples given.
[0031] like Figure 1 and Figure 2 As shown, a multi-functional noodle product production equipment includes a dough pressing machine 1, a dough stacking mechanism 2, a dough receiving mechanism 3, a noodle packaging and conveying mechanism 4, and a dough making mechanism 5. The dough pressing machine 1 is connected to the input end of the dough stacking mechanism 2, the output end of the dough stacking mechanism 2 is connected to the input end of the dough receiving mechanism 3 or the noodle packaging and conveying mechanism 4, and the output end of the dough receiving mechanism 3 is connected to the input end of the dough making mechanism 5.
[0032] like Figure 3 As shown, the dough pressing machine 1 includes a dough pressing frame 104 and a dough pressing machine 101 mounted on the dough pressing frame 104. A conveyor unit 102 is arranged below the dough pressing machine 101. Powder sprinklers 103 are respectively arranged at both ends of the conveyor unit 102. The rear end of the conveyor unit 102 is connected to the stacking conveyor 205. The dough pressing machine 101 includes a pair of pressure rollers, and the conveyor unit 102 consists of an upper conveyor and a lower conveyor, with the upper and lower conveyors operating in opposite directions. During operation, the dough strip is rolled and pressed by the rollers of the dough press 101. The pressed dough strip falls onto the upper conveyor, which conveys the dough strip to the left. The powder spreader 103 located at the end of the upper conveyor performs the powder spreading operation. After powder spreading, the dough strip is conveyed to the lower conveyor. At this time, the dough strip is flipped over, and the lower conveyor conveys the dough strip to the right. The powder spreader 103 located at the end of the lower conveyor performs the powder spreading operation on the flipped dough strip, realizing the double-sided powder spreading function of the dough.
[0033] like Figure 4As shown, the dough stacking mechanism 2 includes a dough stacking frame 206 and a dough stacking conveyor 205 mounted on the dough stacking frame 206. The dough stacking conveyor 205 is located below the dough stacking wall panel 204, which is mounted on the dough stacking frame 206. A dough sheet conveyor 201, a dough cutter assembly 202, and a cutting knife assembly 203 are mounted on the dough stacking wall panel 204. The dough cutter assembly 202 is located below the dough sheet conveyor 201, and the cutting knife assembly 203 is located below the dough cutter assembly 202. The rear end of the dough stacking conveyor 205 is connected to a receiving conveyor 301. The dough cutter assembly 202 is a shredder or a dough separating knife. During the dough stacking process, the dough cutter assembly 202 is a shredder. The dough sheet enters the dough cutter assembly 202 via the dough sheet conveyor 201 for shredding to obtain strips of dough. The strips of dough then enter the dough cutter assembly 203 for cutting to obtain noodles. The dough stacking conveyor 205 uses a frequency converter to control the forward and reverse rotation of the drive motor to achieve the reciprocating motion of the conveyor belt, which in turn drives the noodles on the dough stacking conveyor 205 to reciprocate to achieve the dough stacking function. After the dough stacking is completed, the drive motor of the dough stacking conveyor 205 rotates forward or reverse to achieve the forward or reverse motion of the conveyor belt, conveying the stacked dough sheet to the dough receiving mechanism 3. During the automatic noodle packaging process, the dough sheet enters the dough cutter assembly 202 via the dough sheet conveyor 201 for shredding to obtain strips of dough. The strips of dough then enter the dough cutter assembly 203 for cutting to obtain noodles. The noodles then enter the noodle packaging conveyor 4 via the portioning hopper. During the round and square dough rolling process, the drive motor of the stacking conveyor 205 rotates forward or reverse to make the conveyor belt move in the forward or reverse direction, conveying the dough to the dough receiving mechanism 3, and then into the dough making mechanism 5 for round and square dough rolling. Before square dough rolling, the dough knife assembly 202 is replaced with a dough slitting knife. The dough is conveyed to the dough slitting knife through the dough conveyor 201, which cuts the dough into long strips of the required square dough specifications. These strips fall directly into the stacking conveyor 205 without going through the cutting knife assembly 203.
[0034] The dough receiving mechanism 3 includes a dough receiving frame 302 and a dough receiving conveyor 301 mounted on the dough receiving frame 302. During the dough stacking and finishing process, the previously stacked dough sheets are conveyed to the dough receiving mechanism 3, and then the dough is manually finished off from the dough receiving mechanism 3.
[0035] like Figure 5As shown, the noodle packaging and conveying mechanism 4 includes a noodle conveyor 401, a bucket elevator 402, an automatic noodle packaging machine 403, a baffle conveyor 404, and a disc receiving device 405. The input end of the noodle conveyor 401 is located below the cutter assembly 203, and its output end is connected to the input end of the bucket elevator 402. The output end of the bucket elevator 402 is connected to the input end of the automatic noodle packaging machine 403, the output end of the automatic noodle packaging machine 403 is connected to the input end of the baffle conveyor 404, and the output end of the baffle conveyor 404 is connected to the disc receiving device 405. There are two sets of each of the noodle conveyor 401, bucket elevator 402, automatic noodle packaging machine 403, and baffle conveyor 404, and one set of the disc receiving device 405. The noodle conveyor 205 and the noodle conveyor 401 are connected by a dividing hopper 406, and the noodle conveyor 401 and the bucket elevator 402 are connected by a transition trough. The noodle conveyor 401 consists of two sets of belt conveyors arranged symmetrically in a V-shape. The outlet of the bucket elevator 402 is equipped with a discharge chute, and the inlet of the automatic noodle packaging machine 403 is equipped with a feed hopper, which is located below the discharge chute. The baffle conveyor 404 consists of a belt conveyor and baffles, with baffles installed on both sides of the conveyor belt. The automatic noodle packaging machine 403 adopts the 420B automatic packaging machine from Haomingda Company. The disc receiving device 405 includes a motor, a rotating shaft, and a disc. The output shaft of the motor is connected to one end of the rotating shaft, and the other end of the rotating shaft is equipped with a disc. The motor drives the rotating shaft to rotate the disc to receive the packaged noodles conveyed by the baffle conveyor 404.
[0036] like Figure 6 As shown, the leather processing mechanism 5 includes a leather processing frame 507 and a round leather rolling machine 501, a square leather rolling machine 502, a rolling machine conveyor 503, a leather processing conveyor 504, a residual leather crusher 505, and a receiving leather conveyor 506 mounted on the leather processing frame 507. The rolling machine conveyor 503 is located below the round leather rolling machine 501 and the square leather rolling machine 502. The receiving leather conveyor 501 is located in front of the rolling machine conveyor 503. The leather processing conveyor 504 is located behind the rolling machine conveyor 503. The residual leather crusher 505 is located above the leather processing conveyor 504. The receiving leather conveyor 506 is located below the leather processing conveyor 504.
[0037] The rolling die conveyor 503 includes a rolling die conveying side frame, a round leather drive roller, a round leather drive roller gear, a square leather drive roller, a rolling die conveying drive roller, and a rolling die conveying belt. The rolling die conveying side frame is fixedly connected to the leather making machine frame 507 by bolts. Rolling die conveying passive rollers are respectively installed at both ends of the rolling die conveying side frame. The rolling die conveying passive rollers are connected to the rolling die conveying drive rollers via the rolling die conveying belt, and a tensioning pulley is abutted on the outgoing belt. Both the round leather drive rollers and the square leather drive rollers are mounted on the rolling die conveying side frame, and their shafts are movably connected to the rolling die conveying side frame via bearings to allow free rotation of the round leather drive rollers and square leather drive rollers. There are two sets of round leather drive rollers, and each set of round leather drive rollers has a round leather drive roller gear at its shaft end. The rolling die conveying drive roller and any set of round leather drive rollers are respectively connected to the rolling die drive motor via a conveyor belt. Specifically, the rolling die drive motor is installed inside the leather making machine frame 507. The output end of the rolling die drive motor is connected to a central drive shaft through a coupling. Each end of the central drive shaft is equipped with a drive pulley. One drive pulley is connected to the driven pulley of the round leather drive roller through a conveyor belt, and the other drive pulley is connected to the driven pulley of the rolling die conveying drive roller through a conveyor belt.
[0038] The round leather rolling machine 501 includes a round leather rolling mechanism frame, an adjusting handwheel mounted on the frame, and a round leather rolling die. The round leather rolling mechanism frame is mounted on the leather making machine frame 507 and can be disassembled and replaced as a whole. The round leather rolling die is cylindrical and is mounted on the frame via the adjusting handwheel. Specifically, the two ends of the round leather rolling die are movably connected to bearing seats via bearings, allowing the round leather rolling die to rotate freely. The bearing seats are connected to the lower end of the adjusting handwheel. A round leather rolling die gear is provided at the shaft end of the round leather rolling die, and the round leather rolling die gear meshes with the round leather drive roller gear. Thus, when the rolling die drive motor drives the round leather drive roller to rotate via the conveyor belt, the round leather rolling die is rotated through the meshing between the round leather rolling die gear and the round leather drive roller gear. A set of die pieces is provided on the outer circumference of the round leather rolling die. The die pieces can be annular protrusions, with the outward-facing ends of the protrusions sharp enough to form cutters. When the round skin rolling die rotates, it drives the die plates on it to rotate as well, causing the die plates to contact the skin on the rolling die conveyor 503, thus rolling and cutting out round skin. A shaft hole is provided at the end of the round skin rolling die mechanism frame, and a bushing is installed in the shaft hole. The adjusting handwheel includes a handwheel and an adjusting rod. The handwheel is installed at the upper end of the adjusting rod, and the lower end of the adjusting rod is connected to a bearing seat. The end bearing of the round skin rolling die is located in the bearing seat. The adjusting rod is located inside the bushing, and its outer surface has an external thread. The inner wall of the bushing has an internal thread that mates with the external thread, so that the adjusting rod and the bushing are connected by a threaded engagement. Rotating the handwheel controls the up-and-down movement of the adjusting rod relative to the bushing, which in turn moves the round skin rolling die up and down via the bearing seat. The distance the round skin rolling die moves up and down is controlled by the adjusting handwheel. There are two adjusting handwheels and two sets of round skin rolling dies, with each adjusting handwheel corresponding to one set of round skin rolling dies. During round leather cutting, one set of round leather dies is raised by adjusting the handwheel and does not participate in the cutting process; the other set of round leather dies is lowered by adjusting the handwheel, and simultaneously driven by the dies drive motor to rotate, thus performing round leather cutting. When changing the size of the round leather to be cut, it is necessary not only to adjust the handwheel to control the raising or lowering of the dies, but also to replace the round leather drive roller corresponding to the dies to be used and connect it to the dies drive motor. The round leather cutting machine 501 cuts several round leathers from the whole sheet of dough, which are then conveyed to the leather making conveyor 504 and the scrap leather crusher 505. At this time, the front end of the scrap leather after the round leathers are produced is manually fed into the scrap leather conveyor of the scrap leather crushing mechanism 505. Under the action of traction, the subsequent scrap leathers automatically enter the scrap leather conveyor and are then conveyed to the scrap leather crushing blade and cutting blade assembly for crushing. The round leathers produced by cutting fall onto the leather making conveyor belt of the leather making conveyor 504 under the action of gravity.
[0039] The square dough rolling mechanism 502 includes a square dough rolling mechanism frame, a square dough drive motor, and square dough rolling cutters. The square dough rolling mechanism frame is bolted to the dough making machine frame 507. The square dough drive motor is mounted on the square dough rolling mechanism frame and connected to the power input shaft of the square dough rolling cutter. There are two sets of square dough rolling cutters, which are mounted on a cutter holder connected to the power input shaft. The square dough drive motor drives the cutter holder to rotate via the power input shaft, causing the square dough rolling cutters to contact the dough on the rolling conveyor 503, thus achieving square dough rolling and cutting. During square dough rolling and cutting, the strip-shaped dough is conveyed by the rolling conveyor 503 to the bottom of the square dough rolling machine 502. The square dough drive motor drives the square dough rolling cutters to rotate, cutting the strip-shaped dough into square wonton wrappers.
[0040] The leather-making conveyor 504 includes a leather-making conveyor side frame, a leather-making conveyor belt, and a leather-making conveyor drive roller. The leather-making conveyor side frame is fixedly connected to the leather-making machine frame 507 by bolts. Both ends of the leather-making conveyor side frame are equipped with leather-making conveyor driven rollers. The leather-making conveyor drive roller is connected to a leather-making conveyor drive motor. The leather-making conveyor belt covers the surface of the leather-making conveyor drive roller and extends to the leather-making driven roller, with a tensioning pulley abutting on the return belt. The rolled round or square leather is conveyed to the leather-making conveyor 504 via the rolling die conveyor 504. The leather-making conveyor 504 then conveys the round or square leather to the receiving conveyor 506. The round or square leather is conveyed to its tail end by the leather-making conveyor 504, flips, and falls onto the receiving conveyor 506. The receiving conveyor 506 pauses operation, and after the round or square leather is stacked to a certain height on the receiving conveyor 506, operation resumes, conveying the round or square leather to subsequent equipment.
[0041] The waste leather crushing mechanism 505 includes a waste leather conveyor, waste leather crushing blades, a cutting blade assembly, and a waste leather crushing output conveyor. The waste leather conveyor is installed on the waste leather crushing wall panel of the leather processing machine frame 507. The input end of the waste leather conveyor is connected to the output end of the rolling die conveyor 503. A set of waste leather crushing blades is located below the output end of the waste leather conveyor. Below the waste leather crushing blades is a cutting blade assembly. Below the cutting blade assembly is the waste leather crushing output conveyor. The output end of the waste leather crushing output conveyor is equipped with a collection and concentration frame. The waste leather crushing blade includes a pair of interlocking toothed rollers. A set of blades is formed on the surface of the toothed rollers. One of the toothed rollers is connected to the waste leather crushing blade motor through a gearbox. The round leather scraps produced by the round leather rolling machine 501 are manually fed into the scrap conveyor. The scraps are then conveyed to the scrap shredder, where they are shredded into long strips. The strips fall into the cutting assembly below and are cut into small pieces. The small pieces fall into the scrap output conveyor and are then output into the collection box.
[0042] The second assembly, consisting of a single pressing machine 1, a stacking mechanism 2, and a joining mechanism 3, is used for stacking (see...). Figure 7 The first assembly, consisting of a noodle pressing machine 1, a noodle stacking mechanism 2, and a noodle packaging and conveying mechanism 4, is used for the production and packaging of fresh and semi-dried noodles (see...). Figure 8 The third assembly, consisting of a dough pressing machine 1, a dough stacking mechanism 2, a dough joining mechanism 3, and a leather making mechanism 5, is used for the production of round and square leather (see...). Figure 9 ).
[0043] The layering process is achieved through a combination of a single dough press 1, a layering mechanism 2, and a receiving mechanism 3. In actual operation, the dough sheet is rolled by the dough press 101 and then fed into the conveyor group 102. Manual operation connects the dough sheet output from the conveyor group 102 to the receiving conveyor 201. The dough sheet is then conveyed by the receiving conveyor 201 to the noodle cutter assembly 202, where it is cut into strips. The formed noodles fall onto the layering conveyor 205, where the cutter assembly 203 cuts the noodles to the required length. The layering conveyor 205 uses the forward and reverse rotation of its motor to achieve the reciprocating motion of the conveyor, thus completing the layering process. After the layering process is completed, the noodles are conveyed to the receiving conveyor 3 at the rear, where a person manually collects the noodles.
[0044] The automatic noodle packaging process is completed through a single noodle pressing machine 1, a stacking mechanism 2, and a packaging conveyor mechanism 4. During operation, the dough sheet is rolled by the pressing machine and falls onto the lower conveyor assembly 102, which outputs the dough sheet backward. The conveyed dough sheet is manually fed into the dough sheet conveyor 201, which then transports it to the noodle cutting assembly 202, where it is cut into strips. The resulting noodles fall into the stacking conveyor 205, where the cutting assembly 203 cuts them to the required length. After cutting, the noodles are divided into two portions by the dividing hopper 406 and fall into the lower noodle conveyor 401. The noodle conveyor 401 transports the noodles upward into the bucket elevator 402, which then transports them to the automatic noodle packaging 403, completing the packaging process. The packaged noodles then fall into the baffle conveyor 404, which transports the packaged noodles to the disc receiving device 405.
[0045] The round and square dough sheet rolling and cutting process is achieved through a dough pressing machine 1, a dough stacking mechanism 2, a dough receiving mechanism 3, and a dough making mechanism 5. During round dough sheet rolling and cutting, the dough sheet is rolled by the dough pressing machine 1 and falls onto the conveyor group 102. As the round dough sheet passes through the conveyor group 102, the flour sprinkler 103 sprinkles flour evenly on both sides to prevent sticking when the dough sheets are stacked later. After flouring, the dough sheet is conveyed by the dough stacking conveyor 2 and the dough receiving conveyor 3 into the rolling die conveyor 503 of the dough making mechanism 5. At this time, the round dough rolling die mechanism 501 starts working, rolling the dough sheet out into a round shape. The rolled dough sheet then enters the dough making conveyor 504 and finally flips over to fall onto the dough receiving conveyor 506. After being stacked to a certain height, the round dough sheets are output. The remaining dough sheets after rolling and cutting need to be manually pulled into the dough sheet crusher 505 to be crushed into many small pieces for reuse.
[0046] During the square dough rolling and cutting process, the dough knife assembly 202 on the stacking mechanism 2 must first be replaced with a dough stripping knife. After the dough is rolled by the dough press 1, it falls onto the conveyor assembly 102. At this time, as the round dough passes through the conveyor assembly 102, the flour sprinkler 103 sprinkles flour evenly on both sides to prevent the dough from sticking together when stacking later. After the flour is sprinkled, the dough conveyor 201 on the stacking mechanism 2 conveys the dough to the dough stripping knife, which cuts the dough into several strips (according to the square dough specifications). The dough strips cut by the dough stripping knife are sent to the rolling mold conveyor 503 through the stacking conveyor 205 and the receiving conveyor 301. At this time, the square dough rolling mold mechanism 502 works to complete the square dough rolling and cutting process. After the square dough is rolled and cut, it is conveyed to the dough making conveyor 504 and finally flipped onto the receiving conveyor 506. The square dough is then stacked to a certain height and output.
[0047] In addition to the embodiments described above, this utility model may have other implementations. All technical solutions formed by equivalent substitution or equivalent transformation fall within the protection scope claimed by this utility model.
Claims
1. A multi-functional noodle product manufacturing equipment, characterized in that: It includes a dough pressing machine, a dough stacking mechanism, a dough receiving mechanism, a noodle packaging and conveying mechanism, and a dough making mechanism. The dough pressing machine is connected to the input end of the dough stacking mechanism, the output end of the dough stacking mechanism is connected to the input end of the dough receiving mechanism or the noodle packaging and conveying mechanism, and the output end of the dough receiving mechanism is connected to the input end of the dough making mechanism.
2. The multifunctional dough product manufacturing equipment according to claim 1, characterized in that: The single dough pressing machine includes a dough pressing frame and a dough pressing machine installed on the dough pressing frame. A conveyor unit is set below the dough pressing machine. Powder sprinklers are set at both ends of the conveyor unit. The rear end of the conveyor unit is connected to a stacking conveyor.
3. The multifunctional dough product production equipment according to claim 1, characterized in that: The stacking mechanism includes a stacking frame and a stacking conveyor mounted on the stacking frame. The stacking conveyor is located below the stacking wall panel. A dough sheet conveyor, a dough knife assembly, and a cutting knife assembly are mounted on the stacking wall panel. The dough knife assembly is located below the dough sheet conveyor, and the cutting knife assembly is located below the dough knife assembly. The rear end of the stacking conveyor is connected to a receiving conveyor.
4. The multifunctional dough product production equipment according to claim 1, characterized in that: The noodle packaging and conveying mechanism includes a noodle conveyor, a bucket elevator, an automatic noodle packaging machine, a baffle conveyor, and a disc receiving device. The input end of the noodle conveyor is located below the cutter assembly, and its output end is connected to the input end of the bucket elevator. The output end of the bucket elevator is connected to the input end of the automatic noodle packaging machine, the output end of the automatic noodle packaging machine is connected to the input end of the baffle conveyor, and the output end of the baffle conveyor is connected to the disc receiving device.
5. The multifunctional dough product manufacturing equipment according to claim 1, characterized in that: The face-joining mechanism includes a face-joining frame and a face-joining conveyor mounted on the face-joining frame.
6. The multifunctional noodle product production equipment according to claim 5, characterized in that: The leather processing mechanism includes a leather processing frame and, mounted on the frame, a round leather rolling machine, a square leather rolling machine, a rolling conveyor, a leather processing conveyor, a residual leather crusher, and a leather receiving conveyor. The rolling conveyor is located below the round leather rolling machine and the square leather rolling machine. The leather receiving conveyor is located in front of the rolling conveyor. The leather processing conveyor is located behind the rolling conveyor. The residual leather crusher is located above the leather processing conveyor. The leather receiving conveyor is located below the leather processing conveyor.
7. The multifunctional noodle product production equipment according to claim 1, characterized in that: The noodle pressing machine, the noodle stacking mechanism, and the noodle packaging and conveying mechanism constitute the first combination for the production and packaging of fresh noodles and semi-dried noodles.
8. The multifunctional noodle product production equipment according to claim 1, characterized in that: The pressing machine, the stacking mechanism, and the joining mechanism form a second assembly for stacking surfaces.
9. The multifunctional dough product production equipment according to claim 1, characterized in that: The pressing machine, stacking mechanism, leather receiving mechanism, and leather making mechanism together form the third assembly for the production of round and square leather.