Enzyme paste preparation and processing equipment and processing method

The enzyme paste preparation and processing equipment uses scraper cutting, scraper separation and pressing frame shaping to solve the problems of adhesion and uneven cutting during the process of wrapping enzyme paste with glutinous rice paper, thereby improving production efficiency and product quality.

CN116654353BActive Publication Date: 2025-09-09JIANGXI RENREN HEALTH MICROECOLOGICAL TECH CO LTD
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Patent Information

Application Number
CN202310688890.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-12
Publication Date
2025-09-09
Estimated Expiration
2043-06-12

AI Technical Summary

Technical Problem

During the process of wrapping glutinous rice paper with enzyme paste, the enzyme paste easily sticks to the blade, resulting in uneven cutting, which affects product appearance and production efficiency.

Method used

Enzyme paste preparation and processing equipment is used. The enzyme paste is separated by a spatula through cutting and a scraper. The enzyme paste is cut into sections and wrapped with glutinous rice paper in combination with an extrusion die and a pressing frame for shaping. The extrusion wheel and drag roller are used to prevent the glutinous rice paper from breaking, and the inclined plate is used to correct the cutting position.

Benefits of technology

It improves the production efficiency and product quality of enzyme paste, avoids the adhesion of enzyme paste, ensures uniform cutting and complete rice paper wrapping, and enhances the applicability and adjustability of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of enzyme paste preparation and processing, and specifically to enzyme paste preparation and processing equipment and a processing method. The enzyme paste preparation and processing equipment comprises an operating table, a mounting frame, a supporting frame, a pressing portion and an extrusion portion. A plurality of mounting frames are fixed in sequence at equal intervals on the front and back of the right side of the table top on the operating table. The mounting frames are used to place glutinous rice paper rolls. The number and position of the supporting frames and the pressing portions correspond to the mounting frames. The supporting frame is fixed to the middle of the table top on the operating table, the pressing portion is fixed to the left side of the table top on the operating table, and an extrusion portion is provided on the upper side of the supporting frame. The extrusion portion is fixedly connected to the table top on the operating table. The enzyme paste preparation and processing equipment of the present invention cuts the semi-finished enzyme paste into sections in the form of a spatula, and can wrap glutinous rice paper on the cut enzyme paste sections, thereby increasing the production and processing efficiency of the enzyme paste. While wrapping the glutinous rice paper, the enzyme paste is shaped by two consecutive extrusions, thereby increasing the appearance of the enzyme paste product.
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Description

Technical Field

[0001] The present invention relates to the technical field of enzyme paste preparation and processing, and specifically relates to enzyme paste preparation and processing equipment and a processing method. Background Art

[0002] Enzyme paste is a fat paste product made from fruits, vegetables, or animal and plant tissues, which is fermented and concentrated. It is rich in ingredients that can effectively help the human body repair damaged cells, regulate immunity, balance endocrine system, improve metabolism, etc. It is a human catalyst.

[0003] During the production and preparation of enzyme paste, fruits, vegetables or animal and plant raw materials are first fermented to produce enzyme liquid, and the enzyme liquid is removed and concentrated. The concentrated liquid is then formulated according to product requirements, and the formulated concentrated liquid is then dried to produce a semi-finished product. Finally, the semi-finished product is sliced ​​and wrapped with rice paper before being bagged and shipped. Wrapping with rice paper can prevent the enzyme paste from getting damp and deteriorating, and rice paper appears in the packaging of most paste products. Generally, professional equipment is used for wrapping with rice paper. For example, the Chinese utility model with publication number: CN216468980U discloses a kelp paste packaging machine, which is used for wrapping kelp paste with rice paper. The kelp paste can be cut into blocks by a multi-stage cutting device, and the long strips of kelp paste can be cut into small pieces of kelp paste that can be fed into a bagging machine by a cutter on a die holder. The packaging machine can automatically cut larger pieces of kelp paste into strips, wrap them with rice paper, and cut them into small pieces of uniform quality suitable for bagging, thereby reducing manpower input and achieving high packaging efficiency.

[0004] However, the above utility model is only used for wrapping glutinous rice paper with kelp paste, and the following problems exist in the process of wrapping glutinous rice paper with enzyme paste: 1. The enzyme paste needs to be cut into segments of a certain size before wrapping the glutinous rice paper. When cutting the segments, the enzyme paste is easy to stick to the blade, and some debris will also adhere to the blade, affecting the continuous cutting of the enzyme paste and the quality of the cutting.

[0005] 2. When wrapping the glutinous rice paper, the enzyme paste segments may not be placed in the middle of the glutinous rice paper, resulting in incomplete wrapping of the enzyme paste segments. After wrapping the glutinous rice paper, there will be certain differences in the shape of the enzyme paste segments, affecting the product appearance. Summary of the Invention

[0006] The present invention adopts the following technical solution to solve the above-mentioned problem. An enzyme paste preparation and processing equipment includes an operating table, a mounting frame, a supporting frame, a pressing part and an extrusion part. A plurality of mounting frames are fixed in sequence at equal intervals on the front and back of the right side of the table top of the operating table. The mounting frames are used to place glutinous rice paper rolls. The number and position of the supporting frames and the pressing part correspond to the mounting frames. The supporting frame is fixed on the middle part of the table top of the operating table, and the pressing part is fixed on the left side of the table top of the operating table. The extrusion part is provided on the upper side of the supporting frame, and the extrusion part is fixedly connected to the table top of the operating table.

[0007] A rectangular groove is provided at the left end of the support frame, and a drag roller is rotatably arranged in the rectangular groove. The transmission shaft passes through the drag roller in sequence and is installed on the support frame. The front end of the transmission shaft is connected to the drag motor through a coupling for transmission. A U-shaped frame is provided on the upper side of the rectangular groove, and the lower end of the U-shaped frame is fixedly connected to the support frame. A slide is slidably provided inside the U-shaped frame, and the lower end of the adjusting screw is rotatably connected to the slide, and the middle part of the adjusting screw is threadedly connected to the U-shaped frame. The extrusion wheel is symmetrically arranged on the lower side of the slide through the extrusion spring rod.

[0008] The pressing part includes a left frame, the left frame is fixed on the operating table, and a movable plate is provided inside the left frame for sliding up and down. A pressing electric push rod is fixed on the upper side of the left frame, and the ejecting end of the pressing electric push rod is fixedly connected to the movable plate. The cutting knife is penetrated by the cutting spring rod at the right end of the movable plate, and the pressing frame is fixed to the left end of the supporting frame. A rectangular through slot is opened in the middle of the pressing frame, and the shaping plate is symmetrically penetrated in the rectangular through slot by the reset spring rod. The slot block slides up and down in the rectangular through slot and is located between the opposite surfaces of the two shaping plates. A pushing spring is connected between the slot block and the lower side of the pressing frame. A half cylinder is provided for rotating outside the pressing frame, and an arc convex block is provided on the inner side of the half cylinder. The left end of the half cylinder passes through the left frame through a pin and is fixedly connected to the gear. A belt is wound around the multiple gears, and the output end of the rotating motor is connected to any one of the gears for transmission.

[0009] The extrusion part includes a vertical plate, which is symmetrically fixed on the operating table top front and back, and an enzyme bin is fixed between the two vertical plates. The enzyme bin is a hollow structure, and a bin door is provided at the upper end of the enzyme bin. The extrusion plate is passed through the bin door through a column, and an extrusion electric push rod is fixed on the bin door, and the ejection end of the extrusion electric push rod is fixedly connected to the extrusion plate. A plurality of mounting rings are fixed on the lower side of the enzyme bin in sequence, and the number and position of the mounting rings correspond to the support frame. The extrusion die is threadedly connected to the mounting ring, and there are multiple tool holders which are fixed on the lower side of the enzyme bin in sequence, and the number and position of the tool holders correspond to the mounting rings. Shovel blades are slidably provided on the tool holders, and the left ends of the shovel blades are fixedly connected to the collection frame. The L-shaped plate is fixed on the left side of the enzyme bin, and a shoveling electric push rod is fixed on the L-shaped plate, and the ejection end of the shoveling electric push rod is fixedly connected to the collection frame.

[0010] Furthermore, a plurality of support plates are arranged on the support frame, and a sliding groove is opened on the support plate. A sliding block is connected to the sliding groove through a downward pressure spring, and a pressure wheel is rotatably connected to the inner side of the sliding block.

[0011] Furthermore, the lower side surface of the movable plate is symmetrically hinged with wheel rods, and the lower end of the wheel rod is rotatably provided with a shaping roller. The lower side surface of the movable plate is symmetrically fixed with a support rod, which is an L-shaped structure. The horizontal and vertical sections of the support rod are in contact with the wheel rod, and a correction spring is connected between the support rod and the upper part of the wheel rod.

[0012] Furthermore, a push block is provided on the tool holder in a sliding position relative to the shovel blade, a scraper is provided on the left side of the push block for sliding up and down, a return spring is connected between the push block and the scraper, a slide rod is fixed on the right side of the push block, the right end of the slide rod passes through the tool holder, a nut is threaded on the right end of the slide rod, a return spring is passed through the slide rod, and the return spring is located between the push block and the tool holder.

[0013] Furthermore, a bracket is provided on the upper side of the scraper, the lower end of the bracket is fixedly connected to the blade holder, the scraper is slid up and down in the bracket, a return groove is opened on the front and rear side walls of the scraper, a one-way block is hinged on the left side of the return groove, and the front and rear ends of the scraper are respectively slidably set in the return groove.

[0014] Furthermore, a hanger is fixed symmetrically on the front and back sides of the lower side of the tool holder, the lower end of the hanger is rotatably connected to the middle part of the inclined plate, the shift rod is symmetrically arranged on the front and back sides of the lower side of the tool holder, a return spring is connected between the shift rod and the tool holder, the ends of the shift rod are respectively hinged to the middle part of the inclined plate, and a plurality of protrusions are distributed on the lower side of the shovel blade that cooperate with the upper end of the shift rod.

[0015] Furthermore, a shaping upper pressing die is detachably mounted on the middle portion of the movable plate.

[0016] In addition, the present invention provides a method for preparing and processing an enzyme paste, the steps of which are as follows: Step 1, fermenting fruits, vegetables or animal and plant raw materials to prepare enzyme liquid, and removing impurities and concentrating the enzyme liquid.

[0017] Step 2: The concentrated liquid is prepared according to the needs of the enzyme paste product, and the prepared concentrated liquid is dried to prepare the enzyme paste semi-finished product.

[0018] Step three, the enzyme paste semi-finished product is cut into segments and wrapped with glutinous rice paper through the enzyme paste preparation and processing equipment. First, the glutinous rice paper roll is placed on the mounting frame, and the starting end of the glutinous rice paper roll is led out and laid flat on the support frame. The slide plate is driven downward by rotating the adjusting screw so that the extrusion wheel presses the glutinous rice paper onto the drag roller. The extrusion spring rod has elasticity to prevent the glutinous rice paper from being over-pressed and broken. The drag motor is started to rotate the drag roller. The drag roller extracts the glutinous rice paper from the glutinous rice paper roll and drives it to move to the left. Enzyme paste is added to the extrusion part, and the extrusion part is started to extrude the enzyme paste and cut it into segments. The enzyme paste segments fall one by one on the flattened glutinous rice paper and are driven to move to the left. The pressing part is started, and the pressing part cuts the glutinous rice paper with the enzyme paste segments and wraps the cut glutinous rice paper around the outside of the enzyme paste. At the same time, the enzyme paste is shaped to improve the product appearance of the enzyme paste.

[0019] Step 4: Wrap the enzyme paste in rice paper and pack it in bags for shipment.

[0020] The beneficial effects of the present invention are: 1. The enzyme paste preparation and processing equipment of the present invention cuts the semi-finished enzyme paste into segments by means of a spatula, and can wrap glutinous rice paper on the enzyme paste segments, thereby increasing the production and processing efficiency of the enzyme paste; and while wrapping the glutinous rice paper, the enzyme paste is shaped by two consecutive extrusions, thereby improving the appearance of the enzyme paste product.

[0021] 2. The enzyme paste preparation and processing equipment of the present invention can adjust the size of the enzyme paste segments by adjusting the operating speed of the shoveling electric push rod, and can change the shape of the extruded enzyme paste by replacing the extrusion die, thereby increasing the applicability of the present invention.

[0022] 3. The enzyme paste preparation and processing equipment of the present invention separates the enzyme paste adhered to the oblique edge of the scraper by moving the scraper downward, so as to prevent the enzyme paste segments from adhering to the scraper and affecting the next scraping. The enzyme paste residue adhered to the side of the scraper is scraped up and collected by the scraper, thereby increasing the scraping effect of the scraper.

[0023] 4. When the enzyme paste segments deviate while falling, they will come into contact with the inclined plate. The inclined plate can correct the enzyme paste segments so that they fall accurately in the middle of the rice paper. The reciprocating flipping can prevent the enzyme paste segments from sticking to the inclined plate.

[0024] 5. After the enzyme paste segments are wrapped with glutinous rice paper, the two rollers contact the pressing frame and move in opposite directions, thereby closing the left and right ends of the glutinous rice paper wrapped around the outside of the enzyme paste segments, thereby increasing the effect of the glutinous rice paper wrapping the enzyme paste segments. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] The present invention will be further described below with reference to the accompanying drawings and examples.

[0026] Figure 1 It is a first three-dimensional structural schematic diagram of the enzyme paste preparation and processing equipment of the present invention.

[0027] Figure 2 It is a front planar structural schematic diagram of the enzyme paste preparation and processing equipment of the present invention.

[0028] Figure 3 It is a schematic top plan view of the structure of the enzyme paste preparation and processing equipment of the present invention.

[0029] Figure 4 It is a second three-dimensional structural schematic diagram of the enzyme paste preparation and processing equipment of the present invention.

[0030] Figure 5 The present invention is a schematic diagram of the cutaway structure of the enzyme chamber and chamber door of the enzyme paste preparation and processing equipment.

[0031] Figure 6 The present invention is a schematic diagram of the three-dimensional structure of the collection frame, the knife holder and the scraper of the enzyme paste preparation and processing equipment.

[0032] Figure 7 yes Figure 6 Schematic diagram of the local enlarged structure marked as A.

[0033] Figure 8 The present invention is a schematic diagram of the three-dimensional structure of the tool holder, inclined plate and shift lever of the enzyme paste preparation and processing equipment.

[0034] Figure 9 It is a schematic diagram of the right-side planar structure of the extrusion part of the enzyme paste preparation and processing equipment of the present invention.

[0035] Figure 10 The present invention is a schematic diagram of the three-dimensional structure of the drag roller, the extrusion wheel and the pressing wheel of the enzyme paste preparation and processing equipment.

[0036] Figure 11 It is a schematic diagram of the partial cross-section structure of the pressing part of the enzyme paste preparation and processing equipment of the present invention.

[0037] Figure 12 The present invention is a schematic diagram of the three-dimensional structure of the half cylinder, shaping plate and slot block of the enzyme paste preparation and processing equipment.

[0038] Figure 13 It is a schematic diagram of the three-dimensional structure of the tool holder of the enzyme paste preparation and processing equipment of the present invention.

[0039] In the figure: 1. operating table; 2. mounting frame; 3. supporting frame; 31. drag roller; 311. transmission shaft; 312. drag motor; 313. U-shaped frame; 314. slide plate; 315. adjusting screw; 316. extrusion wheel; 317. extrusion spring rod; 32. support plate; 321. downward pressure spring; 322. sliding block; 323. pressing wheel; 4. pressing part; 41. left mounting frame; 411. moving plate; 412. pressing electric push rod; 413. cutting knife; 414. cutting spring rod; 42. pressing frame; 421. shaping plate; 422. return spring rod; 423. slot block; 424. half cylinder; 425. gear; 426. rotating motor; 427. pushing spring; 43. wheel rod; 431. Roller; 432. Support rod; 433. Correction spring; 5. Extrusion unit; 51. Vertical plate; 52. Enzyme chamber; 521. Chamber door; 522. Extrusion plate; 523. Column; 524. Extrusion push rod; 525. Mounting ring; 526. Extrusion die; 53. Tool holder; 531. Shovel; 532. Collection frame; 533. L-shaped plate; 534. Shoveling push rod; 54. Push block; 541. Scraper; 542. Return spring; 543. Slide rod; 544. Nut; 545. Return spring; 55. Bracket; 551. Scraper; 552. One-way block; 56. Hanger; 561. Inclined plate; 562. Dial; 563. Return spring; 57. Upper die; 6. Air nozzle. DETAILED DESCRIPTION

[0040] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. 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.

[0041] like Figure 1 、 Figure 2 and Figure 3 As shown, an enzyme paste preparation and processing equipment and processing method include an operating table 1, a mounting frame 2, a supporting frame 3, a pressing portion 4 and an extrusion portion 5. A plurality of mounting frames 2 are fixed in sequence at equal intervals on the front and back of the right side of the upper surface of the operating table 1. The mounting frames 2 are used to place glutinous rice paper rolls. The number and position of the supporting frames 3 and the pressing portion 4 correspond to those of the mounting frames 2. The supporting frame 3 is fixed to the middle of the upper surface of the operating table 1, and the pressing portion 4 is fixed to the left side of the upper surface of the operating table 1. An extrusion portion 5 is provided on the upper side of the supporting frame 3, and the extrusion portion 5 is fixedly connected to the upper surface of the operating table 1.

[0042] like Figure 10 As shown, a rectangular groove is provided at the left end of the support frame 3, and a drag roller 31 is rotatably arranged in the rectangular groove. The transmission shaft 311 passes through the drag roller 31 in sequence and is installed on the support frame 3. The front end of the transmission shaft 311 is connected to the drag motor 312 for transmission through a coupling. A U-shaped frame 313 is provided on the upper side of the rectangular groove, and the lower end of the U-shaped frame 313 is fixedly connected to the support frame 3. A slide plate 314 is slidingly provided inside the U-shaped frame 313, and the lower end of the adjusting screw 315 is rotatably connected to the slide plate 314. The middle part of the adjusting screw 315 is threadedly connected to the U-shaped frame 313, and the extrusion wheel 316 is symmetrically arranged on the lower side of the slide plate 314 through the extrusion spring rod 317.

[0043] The enzyme paste preparation and processing equipment can cut the semi-finished enzyme paste into sections and wrap the enzyme paste sections with glutinous rice paper, which can increase the production and processing efficiency of the enzyme paste. When working, first place the glutinous rice paper roll on the mounting frame 2, and lead the starting end of the glutinous rice paper roll out and lay it flat on the support frame 3. By rotating the adjusting screw 315, the slide 314 is driven downward, so that the extrusion wheel 316 presses the glutinous rice paper onto the drag roller 31. The extrusion spring rod 317 has elasticity to prevent the glutinous rice paper from being overly pressurized and broken. The drag motor 312 is started to drag The roller 31 rotates, dragging the roller 31 to pull the glutinous rice paper out of the glutinous rice paper roll and drive it to move to the left, add enzyme paste into the extrusion part 5, start the extrusion part 5 to extrude the enzyme paste and cut it into segments, the enzyme paste segments fall one by one on the flattened glutinous rice paper and are driven to move to the left, start the pressing part 4, the pressing part 4 cuts the glutinous rice paper with the enzyme paste segments, and wraps the cut glutinous rice paper around the outside of the enzyme paste, while shaping the enzyme paste to improve the appearance of the enzyme paste product. After shaping, the enzyme paste segments wrapped in the glutinous rice paper are taken out to complete the processing.

[0044] It should be noted that, see Figure 6 As shown, after the enzyme paste is wrapped in glutinous rice paper, the material is unloaded by blowing air from the air nozzle 6 so that the enzyme paste segment wrapping operation can be carried out continuously. In other embodiments, the material can also be unloaded by grabbing one by one by a robot.

[0045] like Figure 2 and Figure 10 As shown, a plurality of support plates 32 are arranged on the support frame 3, and a sliding groove is opened on the support plate 32. A sliding block 322 is connected to the sliding groove through a downward pressure spring 321, and a pressing wheel 323 is rotatably connected to the inner side of the sliding block 322. When the glutinous rice paper is spread flat on the support frame 3, the downward pressure spring 321 pushes the pressing wheel 323 to adhere to the upper side of the glutinous rice paper through elastic force, so as to avoid wrinkles when the glutinous rice paper moves. The pressing wheel 323 can roll freely, which can reduce the friction between the glutinous rice paper and the glutinous rice paper, so that the glutinous rice paper passes more smoothly.

[0046] like Figure 2 、 Figure 4 、 Figure 5 and Figure 13As shown, the extrusion part 5 includes a vertical plate 51, which is symmetrically fixed on the table top of the operating table 1. An enzyme bin 52 is fixed between the two vertical plates 51. The enzyme bin 52 is a hollow structure. A bin door 521 is provided on the upper end of the enzyme bin 52. The extrusion plate 522 is passed through the upper end through the column 523. An extrusion electric push rod 524 is fixed on the bin door 521. The ejection end of the extrusion electric push rod 524 is fixedly connected to the extrusion plate 522. A plurality of mounting rings 525 are fixed on the lower side of the enzyme bin 52 in sequence. The number of the mounting rings 525 is 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45, 46, 47, 48, 49, 50, 51, 52, 53, 54, 55, 56, 57, 58, 59, 60, 61, 62, 63, 64, 65, 77, 78, 80, 81, 82, 83, 84, 85, 86, 87, 88, 89, 90, 91, 92, 9 The position corresponds to the support frame 3, the extrusion die 526 is threadedly connected to the mounting ring 525, there are multiple tool holders 53 and they are fixed in sequence on the lower side of the enzyme bin 52, the number and position of the tool holders 53 correspond to the mounting ring 525, and the tool holders 53 are respectively slidably provided with scrapers 531, and the left ends of the scrapers 531 are fixedly connected to the collection frame 532, and the L-shaped plate 533 is fixed on the left side of the enzyme bin 52, and a shoveling electric push rod 534 is fixed on the L-shaped plate 533, and the ejection end of the shoveling electric push rod 534 is fixedly connected to the collection frame 532.

[0047] The extrusion part 5 can extrude the enzyme paste and cut it into segments. When working, first open the warehouse door 521 and add enzyme paste into the enzyme warehouse 52, then close the warehouse door 521 so that the extrusion plate 522 is pressed against the upper side of the enzyme paste, start the extrusion electric push rod 524 to push the extrusion plate 522 downward, and the enzyme paste in the enzyme warehouse 52 will be squeezed out from the lower end of the extrusion die 526, start the shoveling electric push rod 534 to push the collection frame 532 to drive the shovel 531 to move back and forth left and right, and the shovel 531 will cut off the enzyme paste squeezed out of the extrusion die 526 when moving to the right. After the enzyme paste is cut, it will fall on the glutinous rice paper and be driven to move to the left. The size of the enzyme paste segment can be adjusted by adjusting the speed of the shoveling electric push rod 534, and the shape of the extruded enzyme paste can be changed by replacing the extrusion die 526, thereby increasing the applicability of the present invention.

[0048] It should be noted that the door 521 can be opened by hingedly rotating at one end, or by removing the door 521 as a whole, so as to open the enzyme chamber 52 and remove the extrusion plate 522 so as to add enzyme paste into the enzyme chamber 52.

[0049] like Figure 5 and Figure 6As shown, a push block 54 is provided on the tool holder 53 to slide relative to the scraper 531, and a scraper 541 is provided on the left side of the push block 54 to slide up and down. A return spring 542 is connected between the push block 54 and the scraper 541, and a slide rod 543 is fixed on the right side of the push block 54. The right end of the slide rod 543 passes through the tool holder 53, and a nut 544 is threaded on the right end of the slide rod 543. A return spring 545 is passed through the slide rod 543, and the return spring 545 is located between the push block 54 and the tool holder 53. When the scraper 531 moves to the right to cut the enzyme paste, the scraper 531 continues to move to the right and will contact the scraper 541, and the oblique edge at the end of the scraper 531 will contact the oblique edge on the upper side of the scraper 541. The surface cooperation causes the scraper 541 to move downward and pull the return spring 542. The scraper 541 moves downward to separate the enzyme paste adhered to the oblique edge of the scraper 531, preventing the enzyme paste segments from adhering to the scraper 531 and affecting the next scraping. The scraper 531 continues to move to the right to push the push block 54 and compress the return spring 545. The movement of the push block 54 can prevent the scraper 531 and the scraper 541 from being damaged by the reciprocating contact and impact. After the scraper 531 is separated from the scraper 541, the return spring 542 can drive the scraper 541 to return to its original position, and the return spring 545 drives the push block 54 to return to its original position. The initial position of the push block 54 can be adjusted by rotating the nut 544, thereby increasing the applicability of the present invention.

[0050] It should be noted that the elastic force of the return spring 545 is greater than the elastic force of the return spring 545 ; the initial position of the push block 54 is at one side of the lower end portion of the extrusion die 526 .

[0051] like Figure 6 and Figure 7 As shown, a bracket 55 is provided on the upper side of the scraper 531, and the lower end of the bracket 55 is fixedly connected to the blade holder 53. The scraper 551 is slidably arranged in the bracket 55 up and down. A return groove is provided on the front and rear side walls of the scraper 531, and a one-way block 552 is hinged on the left side of the return groove. The front and rear ends of the scraper 551 are respectively slidably arranged in the return groove. When the scraper 531 moves to the right, the scraper 551 scrapes up the enzyme paste residue adhered to the side of the scraper 531 and accumulates it on the scraper 551. On the left side, as the scraper 531 moves, the enzyme paste residue will be gradually sent into the collection frame 532, and the front and rear ends of the scraper 551 pass through the one-way block 552 and move to the left end of the return chute. At this time, the scraper 531 completes the cutting and moves to the left. The end of the scraper 551 moves obliquely upward along the one-way block 552, so that the scraper 551 is scraped upward, preventing the enzyme paste residue adhering to the scraper 531 from being scraped to the right side of the scraper 551 and making it inconvenient to collect, thereby increasing the scraping effect of the scraper 551.

[0052] like Figure 8 and Figure 9As shown, the lower side of the tool holder 53 is symmetrically fixed with a hanger 56, and the lower end of the hanger 56 is rotatably connected to the middle of the inclined plate 561. The detent rod 562 is symmetrically arranged on the lower side of the tool holder 53. A return spring 563 is connected between the detent rod 562 and the tool holder 53. The ends of the detent rod 562 are respectively hinged to the middle of the inclined plate 561. A plurality of protrusions that match the upper end of the detent rod 562 are distributed on the lower side of the scraper 531. When the tool holder 53 reciprocates left and right, the protrusions on the lower side are sequentially connected to the upper end of the detent rod 562. When the block is in contact with the top of the lever 562, the lever 562 moves downward and pulls the return spring 563. When the block is out of contact with the top of the lever 562, the return spring 563 drives the lever 562 to move upward and reset, thereby causing the lever 562 to move up and down reciprocatingly, thereby causing the inclined plate 561 to flip back and forth. When the enzyme paste segment deviates during the fall, it will contact the inclined plate 561. The inclined plate 561 can correct the enzyme paste segment so that it falls accurately in the middle of the glutinous rice paper. The reciprocating flipping can prevent the enzyme paste segment from sticking to the inclined plate 561.

[0053] like Figure 2 、 Figure 11 and Figure 12 As shown, the pressing portion 4 includes a left rack 41, which is fixed on the table top of the operating table 1. A movable plate 411 is provided inside the left rack 41 for sliding up and down. A pressing electric push rod 412 is fixed on the upper side of the left rack 41. The ejection end of the pressing electric push rod 412 is fixedly connected to the movable plate 411. The cutting knife 413 is passed through the right end of the movable plate 411 by the cutting spring rod 414. The pressing frame 42 is fixed to the left end of the supporting frame 3. A rectangular through groove is provided in the middle of the pressing frame 42. The shaping plate 421 is passed through symmetrically front and back by the reset spring rod 422. It is arranged in a rectangular through groove, and the groove block 423 is slidingly arranged in the rectangular through groove and is located between the opposite surfaces of the two shaping plates 421. A pushing spring 427 is connected between the groove block 423 and the lower side of the pressure covering frame 42. A half cylinder 424 is rotatably sleeved on the outer side of the pressure covering frame 42, and an arc-shaped protrusion is arranged on the inner side of the half cylinder 424. The left end of the half cylinder 424 passes through the left frame 41 through a pin shaft and is fixedly connected to the gear 425. A belt is wound around the multiple gears 425, and the output end of the rotating motor 426 is connected to any one of the gears 425 for transmission.

[0054] The pressing part 4 can cut the glutinous rice paper, then wrap the glutinous rice paper on the enzyme paste segment, and shape the enzyme paste segment to improve its product appearance. During operation, when the glutinous rice paper with the enzyme paste segment is conveyed to the pressing frame 42, the pressing electric push rod 412 is started to push the movable plate 411 downward to a certain height, so that the cutting knife 413 cuts the glutinous rice paper, and then the rotating motor 426 is started to drive the half cylinder 424 to rotate. When the half cylinder 424 rotates to one side, the lower end of the groove block 423 gradually separates from the arc-shaped protrusion, thereby The push spring 427 pushes the groove block 423 downward, and the enzyme paste on the glutinous rice paper will move downward with the groove block 423. When the arc-shaped protrusion contacts the end of the return spring rod 422 on the same side, it will push the shaping plate 421 to move inward, thereby squeezing and shaping one side of the enzyme paste segment. When the half-cylinder 424 rotates, one side of the glutinous rice paper can be lifted up and covered to the other side as it rotates. The rotating motor 426 can drive the half-cylinder 424 to rotate 180 degrees back and forth, respectively, so that the front and back sides of the glutinous rice paper are wrapped on the enzyme paste segment.

[0055] It should be noted that when the arc-shaped protrusion separates from the end of the return spring rod 422 on the same side, the return spring rod 422 drives the shaping plate 421 to move outward and reset. The initial position of the shaping plate 421 is in contact with the front and rear inner walls of the rectangular through groove respectively.

[0056] like Figure 11 As shown, the lower side of the movable plate 411 is symmetrically hinged with wheel rods 43, and the lower end of the wheel rod 43 is rotatably provided with a shaping roller 431. The lower side of the movable plate 411 is symmetrically fixed with a supporting rod 432, which is an L-shaped structure. The horizontal and vertical sections of the supporting rod 432 are in contact with the wheel rod 43. A correction spring 433 is connected between the supporting rod 432 and the upper part of the wheel rod 43. The middle part of the movable plate 411 is detachably installed with a shaping upper die 57 to complete the enzyme paste cutting. After the segment is wrapped with glutinous rice paper, the pressing electric push rod 412 is started to continue to move downward. After the two rollers 431 come into contact with the pressing frame 42, they will move in opposite directions, thereby closing the left and right ends of the glutinous rice paper wrapped around the outside of the enzyme paste segment. The upper pressing mold 57 can reshape the enzyme paste segment to increase the effect of the glutinous rice paper wrapping the enzyme paste segment. The supporting rod 432 can keep the movable plate 411 tilted at a certain angle, so that the rollers 431 can move in opposite directions after contacting the pressing frame 42.

[0057] In addition, the present invention provides a method for preparing and processing an enzyme paste, the steps of which are as follows: Step 1, fermenting fruits, vegetables or animal and plant raw materials to prepare enzyme liquid, and removing impurities and concentrating the enzyme liquid.

[0058] Step 2: The concentrated liquid is prepared according to the needs of the enzyme paste product, and the prepared concentrated liquid is dried to prepare the enzyme paste semi-finished product.

[0059] Step 3: Cut the semi-finished enzyme paste into sections and wrap it with glutinous rice paper through the enzyme paste preparation and processing equipment. First, place the glutinous rice paper roll on the mounting frame 2, and lead the starting end of the glutinous rice paper roll out and lay it flat on the support frame 3. By rotating the adjusting screw 315, the slide 314 is driven downward, so that the extrusion wheel 316 presses the glutinous rice paper onto the drag roller 31. The extrusion spring rod 317 has elasticity to prevent the glutinous rice paper from being broken by excessive pressure. Start the drag motor 312 to drag The roller 31 rotates, dragging the roller 31 to pull the glutinous rice paper out of the glutinous rice paper roll and drive it to move to the left, add enzyme paste into the extrusion part 5, start the extrusion part 5 to extrude the enzyme paste and cut it into segments, the enzyme paste segments fall one by one on the flattened glutinous rice paper and are driven to move to the left, start the pressing part 4, the pressing part 4 cuts the glutinous rice paper with the enzyme paste segments, and wraps the cut glutinous rice paper around the outside of the enzyme paste, while shaping the enzyme paste to improve the appearance of the enzyme paste product.

[0060] Step 4: Wrap the enzyme paste in rice paper and pack it in bags for shipment.

[0061] 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 alterations 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. An enzyme paste preparation and processing equipment, comprising an operating table (1), a mounting frame (2), a support frame (3), a pressing portion (4) and an extrusion portion (5), characterized in that: A plurality of mounting racks (2) are fixed in sequence at equal intervals on the front and rear sides of the upper surface of the operating table (1), the mounting racks (2) are used to place glutinous rice paper rolls, the number and position of the supporting racks (3) and the pressing portion (4) correspond to those of the mounting racks (2), the supporting rack (3) is fixed to the middle of the upper surface of the operating table (1), the pressing portion (4) is fixed to the left side of the upper surface of the operating table (1), an extrusion portion (5) is provided on the upper side of the supporting rack (3), and the extrusion portion (5) is fixedly connected to the upper surface of the operating table (1); The support frame (3) has a rectangular groove at its left end, a drag roller (31) is rotatably arranged in the rectangular groove, a transmission shaft (311) passes through the drag roller (31) in sequence and is mounted on the support frame (3), a front end of the transmission shaft (311) is connected to a drag motor (312) through a coupling for transmission, a U-shaped frame (313) is arranged on the upper side of the rectangular groove, the lower end of the U-shaped frame (313) is fixedly connected to the support frame (3), a slide plate (314) is slidably arranged inside the U-shaped frame (313), the lower end of the adjusting screw (315) is rotatably connected to the slide plate (314), the middle part of the adjusting screw (315) is threadedly connected to the U-shaped frame (313), and an extrusion wheel (316) is symmetrically arranged on the lower side of the slide plate (314) through an extrusion spring rod (317); The pressing portion (4) comprises a left rack (41), which is fixed on the table of the operating table (1). A movable plate (411) is provided inside the left rack (41) for sliding up and down. A pressing electric push rod (412) is fixed on the upper side of the left rack (41). The ejecting end of the pressing electric push rod (412) is fixedly connected to the movable plate (411). A cutting knife (413) is passed through the right end of the movable plate (411) via a cutting spring rod (414). The pressing frame (42) is fixed on the left end of the supporting frame (3). A rectangular through slot is provided in the middle of the pressing frame (42). The shaping plate (421) is moved forward and backward by a reset spring rod (422). The slot block (423) is arranged in the rectangular slot and slides up and down in the rectangular slot and is located between the opposite surfaces of the two shaping plates (421). A push spring (427) is connected between the slot block (423) and the lower side of the pressure covering frame (42). A half cylinder (424) is rotatably sleeved on the outer side of the pressure covering frame (42). An arc-shaped protrusion is provided on the inner side of the half cylinder (424). The left end of the half cylinder (424) passes through the left frame (41) through a pin shaft and is fixedly connected to the gear (425). A belt is wound around the plurality of gears (425). The output end of the rotating motor (426) is connected to any one of the gears (425) for transmission. The extrusion part (5) includes a vertical plate (51), which is symmetrically fixed on the table of the operating table (1) in front and back. An enzyme bin (52) is fixed between the two vertical plates (51). The enzyme bin (52) is a hollow structure. A bin door (521) is provided at the upper end of the enzyme bin (52). The extrusion plate (522) is passed through the bin door (521) through a column (523). An extrusion electric push rod (524) is fixed on the bin door (521). The ejection end of the extrusion electric push rod (524) is fixedly connected to the extrusion plate (522). A plurality of mounting rings (525) are fixed in sequence on the lower side of the enzyme bin (52). The mounting rings (525) The number and position of the extrusion die (526) correspond to those of the support frame (3), the extrusion die (526) is threadedly connected to the mounting ring (525), there are multiple knife racks (53) and they are fixed in sequence on the lower side of the enzyme bin (52), the number and position of the knife racks (53) correspond to those of the mounting ring (525), and the knife racks (53) are slidably provided with scrapers (531), the left ends of the scrapers (531) are fixedly connected to the collection frame (532), the L-shaped plate (533) is fixed to the left side of the enzyme bin (52), and a scraping electric push rod (534) is fixed on the L-shaped plate (533), and the ejection end of the scraping electric push rod (534) is fixedly connected to the collection frame (532); A push block (54) is provided on the tool holder (53) in a sliding manner relative to the scraper (531), a scraper (541) is provided on the left side of the push block (54) for sliding up and down, a return spring (542) is connected between the push block (54) and the scraper (541), a slide rod (543) is fixed on the right side of the push block (54), the right end of the slide rod (543) passes through the tool holder (53), a nut (544) is threadedly sleeved on the right end of the slide rod (543), a return spring (545) is provided on the slide rod (543), and the return spring (545) is located between the push block (54) and the tool holder (53).

2. The enzyme paste preparation and processing equipment according to claim 1, characterized in that: A plurality of support plates (32) are arranged on the support frame (3), and a sliding groove is provided on the support plate (32). A sliding block (322) is connected in the sliding groove via a downward pressure spring (321), and a pressing wheel (323) is rotatably connected on the inner side surface of the sliding block (322).

3. The enzyme paste preparation and processing equipment according to claim 1, characterized in that: The lower side surface of the movable plate (411) is symmetrically hinged with wheel rods (43) on the left and right sides, and a shaping roller (431) is rotatably provided at the lower end of the wheel rod (43). A supporting rod (432) is fixed symmetrically on the lower side surface of the movable plate (411). The supporting rod (432) is an L-shaped structure. The horizontal and vertical sections of the supporting rod (432) are in contact with the wheel rod (43), and a position correction tension spring (433) is connected between the supporting rod (432) and the upper part of the wheel rod (43).

4. The enzyme paste preparation and processing equipment according to claim 1, characterized in that: A bracket (55) is provided on the upper side of the scraper (531), and the lower end of the bracket (55) is fixedly connected to the blade holder (53). The scraper (551) is slidably arranged in the bracket (55) up and down. A return-shaped sliding groove is provided on the front and rear side walls of the scraper (531), and a one-way block (552) is hinged on the left side of the return-shaped sliding groove. The front and rear ends of the scraper (551) are respectively slidably arranged in the return-shaped sliding groove.

5. The enzyme paste preparation and processing equipment according to claim 1, characterized in that: A hanger (56) is fixed symmetrically on the lower side of the tool holder (53), and the lower end of the hanger (56) is rotatably connected to the middle of the inclined plate (561). A shift rod (562) is symmetrically arranged on the lower side of the tool holder (53). A pull-back spring (563) is connected between the shift rod (562) and the tool holder (53). The ends of the shift rod (562) are respectively hinged to the middle of the inclined plate (561). A plurality of protrusions matching the upper end of the shift rod (562) are distributed on the lower side of the scraper (531).

6. The enzyme paste preparation and processing equipment according to claim 1, characterized in that: A shaping upper pressing die (57) is detachably mounted on the middle portion of the movable plate (411).

Citation Information

Patent Citations

  • Food oblate covering machine

    CN205738301U

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    CN216468980U