Automatic wire drawing machine for long hair crisp
Patent Information
- Application Number
- CN201911014499.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2019-10-24
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2039-10-24
AI Technical Summary
[0003]龙须酥一般工艺为炒面、熬糖、冷却、拉白、拉丝、揉团等,制作工艺比较复杂,目前拉丝工序以人工为主,耗费体力大,生产效率低,产品成本高;也有人设计了机械拉丝机,如ZL201610516146.0,在转盘上方设置了上下运动的扩张装置,不仅占用了上方空间,给人以压抑感,且人与机械的配合比较紧张
[0020] This automatic dragon beard candy pulling machine uses two moving pulling rods driven by a reciprocating drive mechanism and two fixed pulling rods rotating with the rotating material table to achieve the pulling action under the control of the program. There is no need for manual intervention in folding and gathering, which can realize the automatic pulling action, improve work efficiency, and make it easier to ensure food hygiene.
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Figure CN110839740B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to an automatic string-drawing machine for dragon beard candy, belonging to the technical field of auxiliary machinery for food processing. Background Technology
[0002] Dragon Beard Candy is a traditional snack made from white sugar, wheat flour, butter, sesame seeds, and other ingredients using traditional techniques. It is milky white in color, with many fine strands, and is crisp, sweet, and melts in your mouth. It is a very distinctive tea-accompaniment snack.
[0003] The general process of making dragon beard candy involves frying the flour, boiling the sugar, cooling, whitening, stretching, and kneading. The process is quite complex. Currently, the stretching step is mainly done manually, which is physically demanding, inefficient, and costly. Mechanical stretching machines, such as ZL201610516146.0, have been designed, but these have a vertically moving expansion device above the turntable. This not only takes up space and creates a feeling of oppression, but also requires close coordination between the operator and the machine. Therefore, it is currently necessary to design an auxiliary device capable of stretching dragon beard candy into strands. Summary of the Invention
[0004] The purpose of this invention is to propose an automatic gluten-drawing machine for dragon beard candy that does not require manual intervention in folding and gathering.
[0005] The technical solution adopted in this invention is: an automatic gluten-drawing machine for dragon beard candy, including a frame, a lifting mechanism, a left and right reciprocating gluten-drawing mechanism, a rotating material table and a turntable support. The frame is placed on the ground, the turntable support is vertically fixed on the frame, the rotating material table is mounted on the turntable support, the lifting mechanism is mounted on the frame, and the left and right reciprocating gluten-drawing mechanism is mounted on the lifting mechanism and located directly above the rotating material table.
[0006] The reciprocating wire drawing mechanism includes a housing, a central transmission mechanism, a left-moving wire drawing mechanism, a right-moving wire drawing mechanism, a guide rod, and a reciprocating drive mechanism.
[0007] The housing is connected to the lifting mechanism. The central transmission mechanism is set in the housing and located in the middle of the housing. The left and right moving wire drawing mechanisms are connected to the central transmission mechanism and located on both sides of the central transmission mechanism. The guide rod is placed in the housing to guide the sliding of the left and right moving wire drawing mechanisms. The reciprocating drive mechanism is placed outside the housing and connected to the central transmission mechanism.
[0008] The central transmission mechanism includes an intermediate shaft, an intermediate bearing housing, a left coupling, and a right coupling. The intermediate shaft is installed in the intermediate bearing housing, which is fixed to the housing. The left coupling and the right coupling are respectively installed at the left and right ends of the intermediate shaft.
[0009] The left-moving wire drawing mechanism includes a first lead screw, a first lead screw nut, a left ring sleeve, and a left pull rod. One end of the first lead screw is connected to the left coupling, and the other end of the first lead screw is fixed to the housing through the left bearing seat. The first lead screw nut is installed in conjunction with the first lead screw. The left ring sleeve is fixedly sleeved on the first lead screw nut. A left ring groove is opened on the outer surface of the left ring sleeve. The left pull rod consists of a cylindrical first pull rod, a left shift fork at the upper end, and a left slider in the middle. The left shift fork is inserted into the left ring groove, and one end of the left pull rod extends out of the housing and into the rotating material table located below.
[0010] The right-moving wire drawing mechanism includes a second lead screw, a second lead screw nut, a right ring sleeve, and a right pull rod. One end of the second lead screw is connected to the right coupling, and the other end of the second lead screw is fixed to the housing through a right bearing seat. The second lead screw nut is installed in conjunction with the second lead screw. The right ring sleeve is fixedly sleeved on the second lead screw nut. A right ring groove is opened on the outer surface of the right ring sleeve. The right pull rod consists of a cylindrical second pull rod, a right shift fork at the upper end, and a right slider in the middle. The right shift fork is inserted into the right ring groove, and one end of the right pull rod extends out of the housing and into the rotating material table located below.
[0011] The first lead screw and the second lead screw have opposite thread directions;
[0012] The guide rod is positioned parallel to the first lead screw and the second lead screw directly below them. The left and right ends of the guide rod are fixed to the housing through bearing seats. The left and right sliders slide through the guide rod.
[0013] In a preferred embodiment of the present invention, the frame includes a horizontal base placed on the ground and a vertical support fixed perpendicular to the horizontal base. Both the horizontal base and the vertical support are fixedly connected by two parallel square steel pipes and several horizontally arranged crossbars in the middle. A left back plate and a right back plate are also fixedly provided on the upper part of the vertical support.
[0014] In a preferred embodiment of the present invention, the lifting mechanism includes a lifting cylinder, a guide assembly, and a cantilever. The cylinder body of the lifting cylinder is hinged to a horizontal bar on a vertical support, and the piston of the lifting cylinder is hinged to the guide assembly. The guide assembly includes a sliding plate, multiple sliders, and two parallel guide rods. The two parallel guide rods are respectively installed on the front sides of the left and right back plates. The multiple sliders are fitted onto the two guide rods. The sliding plate is fixedly connected to the sliders. The cantilever is horizontally positioned, with one end of the cantilever mounted on the sliding plate and the other end of the cantilever fixed with an end plate for mounting a left and right reciprocating wire drawing mechanism. The end plate is fixedly connected to the housing.
[0015] In a preferred embodiment of the present invention, the housing is a cuboid formed by a front panel, a back panel, a top panel, a bottom panel, and left and right end panels. The end panels are connected to the back panel, and the middle bearing seat, the left bearing seat, the right bearing seat, and the two bearing seats are all fixed to the back panel.
[0016] In a preferred embodiment of the present invention, the turntable support is fixedly installed at the middle position of the horizontal base. The turntable support includes a vertical tube, a lower end plate, a central tube, and a support plate. The lower end plate is fixed on the horizontal base, the vertical tube is vertically fixed on the lower end plate, the central tube is vertically fixed on the top of the vertical tube, and the support plate is horizontally fixed on the top of the central tube. Multiple reinforcing ribs are installed between the back of the support plate and the outer wall of the central tube.
[0017] In a preferred embodiment of the present invention, the rotating material platform includes a material basin, two wire rods, a central shaft, a central gear, a reduction motor, and a drive gear. The material basin consists of a horizontally arranged disc-shaped material platform and a basin wall fixed around the periphery of the material platform. The two wire rods are vertically fixed at intervals on the material platform and are symmetrical with the center line of the material platform. The central shaft is installed at the center position on the back of the material platform and is inserted into a central tube. The outer diameter of the central shaft is slidably fitted with the inner hole of the central tube. The central gear is fixed on the back of the material platform and passes through the central shaft. The central gear meshes with the drive gear. The drive gear is installed on the motor shaft of the reduction motor. The reduction motor is installed on the outer wall of the central tube through a first motor bracket.
[0018] In a preferred embodiment of the present invention, the reciprocating drive mechanism includes a drive motor, a driving pulley, a synchronous belt, and a driven pulley. The drive motor is mounted on the housing via a second motor bracket. The driving pulley is fixed on the motor shaft of the drive motor. The driven pulley is fixed on the right coupling within the central transmission mechanism. The synchronous belt is sleeved on the driving pulley and the driven pulley.
[0019] The beneficial effects of this invention are:
[0020] This automatic dragon beard candy pulling machine uses two moving pulling rods driven by a reciprocating drive mechanism and two fixed pulling rods rotating with the rotating material table to achieve the pulling action under the control of the program. There is no need for manual intervention in folding and gathering, which can realize the automatic pulling action, improve work efficiency, and make it easier to ensure food hygiene. Attached Figure Description
[0021] Figure 1 It is the main body of the automatic dragon beard candy stretching machine Figure 1 (The lifting mechanism in the picture is in the raised state).
[0022] Figure 2 It is the main body of the automatic dragon beard candy stretching machine Figure 1 (The lifting mechanism in the picture is in the lowering state).
[0023] Figure 3 This is an assembly diagram of the frame, lifting mechanism, and turntable support.
[0024] Figure 4 This is an assembly diagram of the turntable support and rotating material table. Figure 1 .
[0025] Figure 5 This is an assembly diagram of the turntable support and rotating material table. Figure 2 .
[0026] Figure 6 This is a schematic diagram of the reciprocating wire drawing mechanism (the front panel of the housing is hidden in the diagram).
[0027] Figure 7 This is a top view of the rotating platform in its initial position, i.e., the feeding state.
[0028] Figure 8 Is Figure 7 Based on this, the top view of the rotating platform when the left and right pull rods move outward and the wire is pulled, and the rotating platform rotates clockwise to a 90° position.
[0029] Figure 9 Is Figure 8 Based on this, with the left and right levers remaining stationary, the top view of the rotating platform when it rotates clockwise to 180° is shown.
[0030] Figure 10 Is Figure 9 Based on this, the left and right pull rods move inward, and the rotating platform rotates clockwise to 270°. This is a top view of the rotating platform.
[0031] Figure 11 Is Figure 10 Based on this, the left and right pull rods are moved outward to pull the wire, and the rotating table is rotated clockwise to 360°. This is a top view of the rotating table. Detailed Implementation
[0032] The technical solution of the present invention will be described in detail below, but the scope of protection of the present invention is not limited to the embodiments described.
[0033] To make the content of this invention clearer and easier to understand, the following description is in conjunction with the appendix. Figures 1-11 The specific implementation methods will be further described below.
[0034] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.
[0035] Example 1
[0036] like Figure 1 and 2As shown, the automatic glutinous rice candy drawing machine in this embodiment includes a frame 100, a lifting mechanism 200, a left-right reciprocating drawing mechanism 300, a rotating material table 400, and a turntable support 500. The frame 100 is placed on the ground, the turntable support 500 is vertically fixed on the frame 100, the rotating material table 400 is mounted on the turntable support 500, the lifting mechanism 200 is mounted on the frame 100, and the left-right reciprocating drawing mechanism 300 is mounted on the lifting mechanism 200 and located directly above the rotating material table 400.
[0037] like Figure 3 As shown, the frame 100 includes a horizontal base 101 placed on the ground and a vertical support 102 fixed perpendicularly to the horizontal base 101. The horizontal base 101 and the vertical support 102 are each fixedly connected by two parallel square steel pipes and several horizontally arranged crossbars 106 in the middle. A left back plate 103 and a right back plate 104 are also fixedly installed on the upper part of the vertical support 102. The left back plate 103 and the right back plate 104 are used to fix and install two parallel guide rods 202 inside the lifting mechanism 200.
[0038] like Figure 3 As shown, the lifting mechanism 200 includes a lifting cylinder 201, a guide assembly, and a cantilever 205. The cylinder body of the lifting cylinder 201 is hinged to the crossbar 106 on the vertical support 102, and the piston part of the lifting cylinder 201 is hinged to the guide assembly. The guide assembly includes a slide plate 204, multiple sliders 203, and two parallel guide rods 202. The two parallel guide rods 202 are respectively installed on the front side of the left back plate 103 and the right back plate 104. The multiple sliders 203 are fitted onto the two guide rods 202. The slide plate 204 is fixedly connected to the sliders 203. The cantilever 205 is horizontally arranged. One end of the cantilever 205 is installed on the slide plate 204, and the other end of the cantilever 205 is fixed with an end plate 206 for installing the left and right reciprocating wire drawing mechanism 300. The end plate 206 is fixedly connected to the inner housing 310 of the left and right reciprocating wire drawing mechanism 300.
[0039] like Figure 3 As shown, the turntable support 500 is fixedly installed at the middle position of the horizontal base 101. The turntable support 500 includes a riser 501, a lower end plate 502, a central tube 503, and a support plate 504. The lower end plate 502 is fixed on the horizontal base 101, the riser 501 is vertically fixed on the lower end plate 502, the central tube 503 is vertically fixed on the top of the riser 501, and the support plate 504 is horizontally fixed on the top of the central tube 503. Multiple reinforcing ribs 505 are installed between the back of the support plate 504 and the outer wall of the central tube 503. The reinforcing ribs 505 are used to improve the rigidity between the support plate 504 and the central tube 503.
[0040] like Figure 4 and 5As shown, the rotating material platform 400 includes a material basin, two wire rods 403, a central shaft, a central gear 405, a reduction motor 406, and a drive gear 408. The material basin consists of a horizontally arranged disc-shaped material platform 401 and a basin wall 402 fixed around the periphery of the material platform 401. The two wire rods 403 are vertically fixed at intervals on the material platform 401, and the two wire rods 403 are symmetrical with the center line of the material platform 401. The central shaft is installed at the center position on the back of the material platform 401 and is inserted into the central tube 503. The outer diameter of the central shaft is slidably fitted with the inner hole of the central tube 503. The central gear 405 is fixed on the back of the material platform 401, and the central shaft passes through the central gear 405. The central gear 405 meshes with the drive gear 408. The drive gear 408 is installed on the motor shaft of the reduction motor 406. The reduction motor 406 is installed on the outer wall of the central tube 503 through a first motor bracket 407.
[0041] like Figure 6 As shown, the reciprocating wire drawing mechanism 300 includes a housing 310, a central transmission mechanism, a left moving wire drawing mechanism 320, a right moving wire drawing mechanism 330, a guide rod 351, and a reciprocating drive mechanism 360. The central transmission mechanism is disposed in the housing 310 and located in the middle of the housing 310. The left moving wire drawing mechanism 320 and the right moving wire drawing mechanism 330 are connected to the central transmission mechanism and located on both sides of the central transmission mechanism. The guide rod 351 is placed in the housing 310 to guide the sliding of the left moving wire drawing mechanism 320 and the right moving wire drawing mechanism 330. The reciprocating drive mechanism 360 is placed outside the housing 310 and connected to the central transmission mechanism.
[0042] The housing 310 is connected to the lifting mechanism 200. The housing 310 is a cuboid formed by the front panel, the back panel 311, the top panel 312, the bottom panel 313 and the left and right end panels. The end panel 206 inside the lifting mechanism 200 is connected to the back panel 311.
[0043] like Figure 6 As shown, the central transmission mechanism includes an intermediate shaft 341, an intermediate bearing seat 342, a left coupling 343, and a right coupling 344. The intermediate shaft 341 is installed in the intermediate bearing seat 342, which is fixed on the back plate 311 of the housing 310. The left coupling 343 and the right coupling 344 are respectively installed at the left and right ends of the intermediate shaft 341.
[0044] The left-moving wire drawing mechanism 320 includes a first lead screw 321, a first lead screw nut 322, a left ring sleeve 323, and a left pull rod 370. One end of the first lead screw 321 is connected to the left coupling 343, and the other end of the first lead screw 321 is fixed to the housing 310 through the left bearing seat 324. The first lead screw nut 322 is installed in conjunction with the first lead screw 321. The left ring sleeve 323 is fixedly sleeved on the first lead screw nut 322. A left ring groove is opened on the outer surface of the left ring sleeve 323. The left pull rod 370 is composed of a cylindrical first pull rod 371, a left shift fork 373 at the upper end, and a left slider 372 in the middle. The left shift fork 373 is inserted into the left ring groove. One end of the left pull rod 370 extends out of the housing 310 and into the rotating material table 400 located below.
[0045] The right-moving wire drawing mechanism 330 includes a second lead screw 331, a second lead screw nut 332, a right ring sleeve 333, and a right pull rod 380. One end of the second lead screw 331 is connected to the right coupling 344, and the other end of the second lead screw 331 is fixed to the housing 310 through the right bearing seat 334. The second lead screw nut 332 is installed in conjunction with the second lead screw 331. The right ring sleeve 333 is fixedly sleeved on the second lead screw nut 332. A right ring groove is opened on the outer surface of the right ring sleeve 333. The right pull rod 380 is composed of a cylindrical second pull rod 381, a right shift fork 383 at the upper end, and a right slider 382 in the middle. The right shift fork 383 is inserted into the right ring groove. One end of the right pull rod 380 extends out of the housing 310 and into the rotating material table 400 located below.
[0046] The first lead screw 321 and the second lead screw 331 in the left moving wire drawing mechanism 320 and the right moving wire drawing mechanism 330 are both coaxial with the intermediate shaft 341, and the threads of the first lead screw 321 and the second lead screw 331 have opposite directions.
[0047] The guide rod 351 is arranged parallel to the first lead screw 321 and the second lead screw 331 directly below them. The left and right ends of the guide rod 351 are fixed to the housing 310 through the bearing seat 352. The left slider 372 and the right slider 382 slide through the guide rod 351.
[0048] The reciprocating drive mechanism 360 includes a drive motor 361, a drive pulley 364, a timing belt 363, and a driven pulley 365. The drive motor 361 is mounted on the housing 310 via a second motor bracket 362. The drive pulley 364 is fixed on the motor shaft of the drive motor 361. The driven pulley 365 is fixed on the right coupling 344 in the central transmission mechanism. The timing belt 363 is sleeved on the drive pulley 364 and the driven pulley 365.
[0049] The drive pulley 364 at the end of the motor shaft of the drive motor 361 drives the intermediate shaft 341 to rotate through the synchronous belt 363 and the driven pulley 365. The intermediate shaft 341 drives the lead screws at both ends to drive the left pull rod 370 and the right pull rod 380 to move inward or outward in opposite directions at the same time. The left pull rod 370 and the right pull rod 380 cooperate with the two fixed pull rods 403 on the rotating material table 401 to realize the wire drawing action.
[0050] like Figure 7 As shown, when the wire drawing action is performed, when the rotating material table 400 is in the initial position, the two fixed pull rods 403 on the material table 401 are in the front and back positions respectively. At this time, the left and right reciprocating wire drawing mechanism 300 is raised, and the first pull rod 371 and the second pull rod 381 in the left and right reciprocating wire drawing mechanism 300 are in the retracted state (the distance between the two pull rods is the smallest).
[0051] At this point, the warm, stir-fried flour is sprinkled onto the feeding platform. The dragon beard candy syrup 01, after being stretched and whitened, is shaped into a long ring and placed at the center of the feeding platform 401. The long axis of the long ring of dragon beard candy syrup 01 is parallel to the length direction of the left-right reciprocating drawing mechanism 300. The left-right reciprocating drawing mechanism 300 is lowered so that the lower ends of the first pull rod 371 and the second pull rod 381 are flush with the surface of the feeding platform 404, and the first pull rod 371 and the second pull rod 381 are positioned within the long ring formed by the dragon beard candy syrup 01.
[0052] like Figure 8 As shown, the drive motor 361 of the reciprocating drive mechanism 360 in the reciprocating wire drawing mechanism 300 is working. The driving pulley 364 at the end of the motor shaft of the drive motor 361 drives the intermediate shaft 341 to rotate through the synchronous belt 363 and the driven pulley 365. The intermediate shaft 341 drives the lead screws at both ends to drive the first pull rod 371 and the second pull rod 381 to move outward simultaneously to draw wire. At the same time, the rotating material table 400 rotates 90° clockwise under the action of the reduction motor 406.
[0053] like Figure 9 As shown, ensure that the first pull rod 371 and the second pull rod 381 are not in the correct positions, and rotate the material basin 90° clockwise. At this time, the material basin is at a position of 180° relative to the initial position.
[0054] like Figure 10 As shown, the drive motor 361 of the reciprocating drive mechanism 360 in the reciprocating wire drawing mechanism 300 is working. The driving pulley 364 at the end of the motor shaft of the drive motor 361 drives the intermediate shaft 341 to rotate through the synchronous belt 363 and the driven pulley 365. The intermediate shaft 341 drives the lead screws at both ends to drive the first pull rod 371 and the second pull rod 381 to move inward at the same time. At the same time, the material basin rotates 90° clockwise. At this time, the material basin is at a position of 270° relative to the initial position.
[0055] like Figure 11 As shown, the drive motor 361 of the reciprocating drive mechanism 360 in the right reciprocating wire drawing mechanism 300 is working. The driving pulley 364 at the end of the motor shaft of the drive motor 361 drives the intermediate shaft 341 to rotate through the synchronous belt 363 and the driven pulley 365. The intermediate shaft 341 drives the lead screws at both ends to drive the first pull rod 371 and the second pull rod 381 to move outward simultaneously to draw wire. At the same time, the material basin rotates 90° clockwise. At this time, the material basin is at a 360° position relative to the initial position.
[0056] Example 1: Working process of the automatic dragon beard candy drawing machine:
[0057] like Figure 7 , 8 As shown in Figures 9 and 11, when the rotating material table 400 is in the initial position, the two fixed pull rods 403 on the material table 401 are in a forward and backward position. At this time, the left and right reciprocating wire drawing mechanism 300 is raised (the piston part of the lifting cylinder 201 extends out, pushing the slide plate 204 to move upward on the two guide rods 202), and the first pull rod 371 and the second pull rod 381 in the left and right reciprocating wire drawing mechanism 300 are in the retracted state (the distance between the two pull rods is the smallest).
[0058] The first step is to sprinkle the warm, stir-fried flour onto the feeding platform 401, and then shape the whitened dragon beard candy syrup 01 into a long ring and place it in the center of the feeding platform 401. The long axis of the long ring dragon beard candy syrup 01 is parallel to the length direction of the left and right reciprocating stringing mechanism 300.
[0059] The reciprocating drawing mechanism 300 descends, so that the lower ends of the first pull rod 371 and the second pull rod 381 are flush with the surface of the material table 404, and the first pull rod 371 and the second pull rod 381 are positioned within the long ring formed by the dragon beard candy syrup 01; Figure 7 As shown.
[0060] In the second step, the reciprocating drive mechanism 360 drives the first pull rod 371 and the second pull rod 381 to move outward for wire drawing; simultaneously, under the action of the reduction motor 406, the rotating material table 400 rotates the material tray 90° clockwise. In this state, the rotating material table 400... Figure 8 As shown.
[0061] Third, the reciprocating drive mechanism remains stationary at 360 degrees; the rotating table continues to rotate at 400 degrees, and its state when it rotates clockwise to 180 degrees is as follows. Figure 9 As shown.
[0062] Fourth step, the reciprocating drive mechanism drives the first pull rod 371 and the second pull rod 381 to move inward; at the same time, the rotating table rotates clockwise to 270 degrees, as shown in the following state. Figure 10 As shown.
[0063] Fifth step, the reciprocating drive mechanism drives the first pull rod 371 and the second pull rod 381 to move inward and outward to draw the wire; the state of the rotating material table when it rotates clockwise to 360 degrees is as follows. Figure 11 As shown.
[0064] Repeat steps two through five until the dragon beard candy syrup is stretched to the required consistency. The reciprocating drive mechanism then lifts 360 degrees, completing the automatic syrup-stretching process.
[0065] Unless otherwise specified in this specification, all of the above descriptions are existing technologies or can be implemented using existing technologies. It should be understood that those skilled in the art can make improvements or modifications based on the above descriptions, and all such improvements and modifications should fall within the protection scope of the appended claims.
Claims
1. An automatic string-drawing machine for dragon beard candy, characterized in that: It includes a frame, a lifting mechanism, a left and right reciprocating wire drawing mechanism, a rotating material table and a turntable support. The frame is placed on the ground, the turntable support is vertically fixed on the frame, the rotating material table is mounted on the turntable support, the lifting mechanism is mounted on the frame, and the left and right reciprocating wire drawing mechanism is mounted on the lifting mechanism and located directly above the rotating material table. The reciprocating wire drawing mechanism includes a housing, a central transmission mechanism, a left-moving wire drawing mechanism, a right-moving wire drawing mechanism, a guide rod, and a reciprocating drive mechanism; The housing is connected to the lifting mechanism. The central transmission mechanism is set in the housing and located in the middle of the housing. The left and right moving wire drawing mechanisms are connected to the central transmission mechanism and located on both sides of the central transmission mechanism. The guide rod is placed in the housing to guide the sliding of the left and right moving wire drawing mechanisms. The reciprocating drive mechanism is placed outside the housing and connected to the central transmission mechanism. The central transmission mechanism includes an intermediate shaft, an intermediate bearing housing, a left coupling, and a right coupling. The intermediate shaft is installed in the intermediate bearing housing, which is fixed to the housing. The left coupling and the right coupling are respectively installed at the left and right ends of the intermediate shaft. The left-moving wire drawing mechanism includes a first lead screw, a first lead screw nut, a left ring sleeve, and a left pull rod. One end of the first lead screw is connected to the left coupling, and the other end of the first lead screw is fixed to the housing through the left bearing seat. The first lead screw nut is installed in conjunction with the first lead screw. The left ring sleeve is fixedly sleeved on the first lead screw nut. A left ring groove is opened on the outer surface of the left ring sleeve. The left pull rod consists of a cylindrical first pull rod, a left shift fork at the upper end, and a left slider in the middle. The left shift fork is inserted into the left ring groove, and one end of the left pull rod extends out of the housing and into the rotating material table located below. The right-moving wire drawing mechanism includes a second lead screw, a second lead screw nut, a right ring sleeve, and a right pull rod. One end of the second lead screw is connected to the right coupling, and the other end of the second lead screw is fixed to the housing through the right bearing seat. The second lead screw nut is installed in conjunction with the second lead screw. The right ring sleeve is fixedly sleeved on the second lead screw nut. A right ring groove is opened on the outer surface of the right ring sleeve. The right pull rod consists of a cylindrical second pull rod, a right shift fork at the upper end, and a right slider in the middle. The right shift fork is inserted into the right ring groove, and one end of the right pull rod extends out of the housing and into the rotating material table located below. The first lead screw and the second lead screw have opposite thread directions; The guide rod is positioned parallel to the first lead screw and the second lead screw directly below them. The left and right ends of the guide rod are fixed to the housing through bearing seats. The left and right sliders slide through the guide rod. The frame includes a horizontal base placed on the ground and a vertical support fixed perpendicular to the horizontal base. Both the horizontal base and the vertical support are fixedly connected by two parallel square steel pipes and several horizontal crossbars in the middle. A left back plate and a right back plate are also fixed on the upper part of the vertical support. The turntable support is fixedly installed in the middle of the horizontal base. The turntable support includes a vertical tube, a lower end plate, a central tube, and a support plate. The lower end plate is fixed on the horizontal base, the vertical tube is vertically fixed on the lower end plate, the central tube is vertically fixed on the top of the vertical tube, and the support plate is horizontally fixed on the top of the central tube. Multiple reinforcing ribs are installed between the back of the support plate and the outer wall of the central tube. The rotating feed table includes a feed basin, two wire rods, a central shaft, a central gear, a reduction motor, and a drive gear. The feed basin consists of a horizontally arranged disc-shaped feed platform and basin walls fixed around the perimeter of the feed platform. The two wire rods are vertically fixed to the feed platform at intervals and are symmetrical with the center line of the feed platform. The central shaft is installed at the center of the back of the feed platform and is inserted into a central tube. The outer diameter of the central shaft is in sliding fit with the inner hole of the central tube. The central gear is fixed on the back of the feed platform and passes through the central shaft. The central gear meshes with the drive gear. The drive gear is installed on the motor shaft of the reduction motor. The reduction motor is installed on the outer wall of the central tube through a first motor bracket.
2. The automatic dragon beard candy drawing machine according to claim 1, characterized in that: The lifting mechanism includes a lifting cylinder, a guide assembly, and a cantilever. The cylinder body of the lifting cylinder is hinged to a horizontal bar on a vertical support, and the piston part of the lifting cylinder is hinged to the guide assembly. The guide assembly includes a sliding plate, multiple sliders, and two parallel guide rods. The two parallel guide rods are respectively installed on the front sides of the left and right back plates. The multiple sliders are fitted onto the two guide rods. The sliding plate is fixedly connected to the sliders. The cantilever is horizontally set, with one end of the cantilever installed on the sliding plate and the other end of the cantilever fixed with an end plate for installing the left and right reciprocating wire drawing mechanism. The end plate is fixedly connected to the housing.
3. The automatic dragon beard candy drawing machine according to claim 2, characterized in that: The housing is a cuboid formed by a front panel, a back panel, a top panel, a bottom panel, and left and right end panels. The end panels are connected to the back panel, and the middle bearing seat, the left bearing seat, the right bearing seat, and the two bearing seats are all fixed to the back panel.
4. The automatic dragon beard candy drawing machine according to claim 1, characterized in that: The reciprocating drive mechanism includes a drive motor, a driving pulley, a synchronous belt, and a driven pulley. The drive motor is mounted on the housing via a second motor bracket. The driving pulley is fixed to the motor shaft of the drive motor, and the driven pulley is fixed to the right coupling inside the central transmission mechanism. The synchronous belt is sleeved on the driving pulley and the driven pulley.
Citation Information
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