Casing soft sweet shearing machine

By designing structures such as the flip-up top cover, synchronous belt transmission, lifting knife head and adjustable discharge frame, the problems of complex operation, stickiness and instability of the sausage casing soft candy shearing machine have been solved, and efficient, precise shearing effects and stable transmission have been achieved.

CN223407064UActive Publication Date: 2025-10-03ZHUHAI RUIQUN IND EQUIP CO LTD
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Patent Information

Application Number
CN202422601063.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-26
Publication Date
2025-10-03
Estimated Expiration
2034-10-26

AI Technical Summary

Technical Problem

Existing casing filling product shearing machines have problems such as complicated operation, sticky blades, debris blockage, and unstable feeding platform when shearing casing soft candies, resulting in poor shearing effects and safety hazards.

Method used

A casing soft candy shearing machine is designed, which includes a chassis, a transmission component, a cutting system, a loading system and a discharging system. It adopts a flip-up upper cover, a synchronous belt transmission, a lifting knife head, an oil and air injection device, an adjustable discharging frame and a loading platform to achieve efficient and precise shearing and stable transmission.

Benefits of technology

The invention realizes efficient and precise shearing of the soft candy in the casing, reduces the operation complexity and potential safety hazards, and improves the stability and shearing effect of the device.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a casing soft sweet shearing machine which is characterized in that a processing area and an upper cover covering the processing area in an overturning mode are arranged in a machine box, and the processing area comprises a horizontally-arranged base and a vertical mounting plate arranged on the side portion of the base; the conveying assembly comprises a conveying channel for conveying materials in the long edge direction of the machining area, and the material conveying direction of the conveying channel is parallel to the mounting plate. The material cutting system comprises an upper tool bit and a lower tool bit which finish lifting actions oppositely up and down, and the upper tool bit and the lower tool bit are arranged at the positions, close to the discharging end, of the conveying channel and used for cutting materials in the conveying channel; the feeding system is fixed to the side wall of the machine box and connected with the feeding end of the conveying channel. The discharging system is fixed to the side wall of the machine box and connected with the discharging end of the conveying channel. The soft sweet conveying and shearing device can achieve the purposes of efficient conveying and accurate shearing, and solves the problem that soft sweets are inconsistent in length and cannot be accurately sheared.
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Description

Technical Field

[0001] The present disclosure relates to the technical field of food processing, and in particular to a casing soft candy cutting machine. Background Art

[0002] Casing soft candy is a food-grade material. During production, the produced casing soft candy needs to be cut into granules. When cutting, a casing filling product shearing machine is needed for cutting.

[0003] Most of the existing casing filling product shearing machines are equipped with two sets of knives that can move up and down. The casing soft candies are sheared by the contact of the two sets of knives. The sheared particles will fall onto the discharge conveyor belt. Therefore, when in use, the dust on the casing filling product shearing machine needs to be cleaned frequently. When cleaning, the discharge conveyor belt needs to be disassembled. However, the connection method of the existing discharge conveyor belt is relatively complicated. Suitable tools are required to remove the discharge conveyor belt, which is complicated to operate and increases the labor difficulty of the operator.

[0004] Existing sausage casing shears cut soft candies through the contact of upper and lower blades. However, due to the stickiness of soft candies, some candies may stick to the blades during shearing. This also creates debris, which can clog the lower blades and reduce the shearing efficiency over time. Furthermore, due to the irregular shape of soft candies, each piece has a different length, making it difficult for conventional mechanical equipment to accurately cut them.

[0005] Existing casing filling product shearing machines are usually equipped with a loading platform. In order to reduce the space occupied by the loading platform when not in use, the loading platform is usually set to be foldable, so as to facilitate the storage of the device. However, when the existing loading platform is in use, people may accidentally touch it, resulting in the accidental folding of the loading platform, thereby reducing the stability of the device during use. Utility Model Content

[0006] The present disclosure provides a casing soft candy cutting machine to solve the technical problems recognized by the inventors.

[0007] A casing soft candy cutting machine comprises: a machine case, a processing area and a flip-up cover covering the processing area, wherein the processing area comprises a horizontally arranged base and an upright mounting plate arranged on the side of the base;

[0008] A conveying assembly, comprising a conveying channel for conveying materials along the long side of the processing area, wherein the material conveying direction of the conveying channel is parallel to the mounting plate;

[0009] The cutting system includes an upper cutter head and a lower cutter head that perform relative lifting movements. The upper cutter head and the lower cutter head are arranged in the transmission channel near the discharge end to shear the material in the transmission channel;

[0010] A feeding system is fixed on the side wall of the chassis and connected to the feeding end of the transmission channel;

[0011] The discharging system is fixed on the side wall of the chassis and connected with the discharging end of the transmission channel.

[0012] In any of the above technical solutions, it further includes: a connecting gantry, including a gantry horizontally arranged on the upper part and a support rod supporting the gantry, and the gantry is detachably connected to the transmission component.

[0013] In any of the above technical solutions, further, the transmission assembly includes: two synchronous belt assemblies arranged in parallel on the left and right sides of the transmission channel, the rotating shafts of the synchronous belts in the two synchronous belt assemblies are arranged vertically, the inner sides of the synchronous belts of the two synchronous belt assemblies form the transmission channel, and the synchronous belts at the inner position move along the material transmission direction;

[0014] It also includes a feed rack arranged at the feed ends of the two synchronous belt assemblies, and a feed hole is provided in the middle of the feed rack to form an interference fit with the left and right side walls of the incoming material; the main projection of the feed hole is set in the middle of the main projection area of ​​the transmission channel.

[0015] In any of the above technical solutions, further, the synchronous belt assembly includes a main frame arranged along the material transmission direction, a driving shaft driven by a conveying motor is provided at one end of the main frame in the long axis direction, and a telescopic rod telescopic along the long axis direction of the main frame is provided at the other end, the free end of the telescopic rod is clamped by a clamping seat to hold the driven shaft, the rotating shafts of the driving shaft and the driven shaft are vertically arranged, and the synchronous belt is sleeved on the outside of the driving shaft and the driven shaft; the telescopic rod completes the telescopic movement by adjusting the adjustment seat fixed on the upper part of the main frame.

[0016] In any of the above technical solutions, further, the adjustment seat and the gantry are connected and fixed by a first connecting bolt;

[0017] A cavity structure is provided in the middle portion of the adjustment seat along the longitudinal direction, and an adjustment screw rod coaxial with the cavity structure is provided in the cavity structure. A first adjustment knob connected to and fixed to the adjustment screw rod is rotatably connected to the wall surface of the adjustment seat close to the cavity structure; the first adjustment knob is linked to the adjustment screw rod to rotate on a fixed axis in the cavity structure.

[0018] The cavity structure is connected to the corresponding position of the main frame to form a horizontal sliding space. The upper part of a sliding nut is sleeved on the adjusting screw rod, and the lower part is connected and fixed to the end of the telescopic rod to form a linear module drive structure that links the telescopic rod to complete the telescopic movement.

[0019] In any of the above technical solutions, further, the cutting system includes a main body fixed to the front side of the mounting plate, the upper and lower parts of the front side of the main body are respectively integrally connected to an upper machine base and a lower machine base; the upper machine base and the lower machine base are respectively provided with telescopic seats that are linked by a driving component to symmetrically complete the lifting and lowering; the upper telescopic seat is connected to an upper cutter head extending downward, and the lower telescopic seat is connected to an upper cutter head extending upward;

[0020] The side of the upper cutter head is provided with an oil spray nozzle, and the side of the lower cutter head is provided with an air nozzle.

[0021] In any of the above technical solutions, further, the driving assembly includes a cutting motor fixed to the rear side of the mounting plate through a first fixing plate, the cutting motor is linked to a linkage column on the front side of the mounting plate, the linkage column shaft coincides with the motor output shaft, and the top projection of the linkage column shaft is perpendicular to the top projection of the material transmission direction;

[0022] The telescopic seat is connected to a lifting slider, and the lifting slider is clamped on a vertically fixed slide rail. The side wall of the lifting slider is rotatably connected to one of the centers of a waist-shaped rotating block; the other center of the rotating block is rotatably connected to the corresponding point on the free end surface of the linkage column near the outer edge.

[0023] In any of the above technical solutions, further, the discharging system includes an output shaft rotatably connected to a corresponding position on the front side of the mounting plate, the output shaft is connected and fixed to a support frame parallel to the mounting plate, and the middle part of the support frame is rotatably connected to a positioning rod with an adjustable height position;

[0024] The support frame is connected and fixed with a discharging frame, and an active roller parallel to the short side of the discharging frame is provided on one of the short sides of the discharging frame. The active roller is linked to the first motor on the rear side of the mounting plate through a coupling running through the output shaft.

[0025] In any of the above technical solutions, further, beside the other short side of the discharging frame, a driven roller parallel to the short side of the discharging frame is connected through a fine-tuning structure, and the active roller and the driven roller are covered with a discharging conveyor belt.

[0026] In any of the above technical solutions, further, the loading system includes a loading platform, which is rotatably connected to the outer wall of the chassis, and the lower surface of the loading platform is provided with a first connecting rod for supporting and positioning and a second connecting rod cooperating therewith, and a locking piece is provided at the rotational connection position of the first connecting rod and the second connecting rod.

[0027] The beneficial effects of the present disclosure are mainly:

[0028] A casing soft candy cutting machine comprises: a chassis, wherein a processing area and a flip-up cover covering the processing area are provided in the chassis, wherein the processing area comprises a horizontally arranged base and an upright mounting plate arranged on the side of the base; a conveying assembly, comprising a transmission channel for transmitting materials along the long side of the processing area, wherein the material transmission direction of the transmission channel is parallel to the mounting plate; a cutting system, comprising an upper cutter head and a lower cutter head which perform relative lifting actions, wherein the upper cutter head and the lower cutter head are arranged in the transmission channel near the discharge end to shear the material in the transmission channel; a feeding system, which is fixed on the side wall of the chassis and connected to the feed end of the transmission channel; and a discharging system, which is fixed on the side wall of the chassis and connected to the discharge end of the transmission channel. The utility model provides a pill cutting machine for efficiently cutting products with casing fillings, especially soft candy products made of soft materials, which can achieve the purpose of efficient transmission and precise cutting, is efficient and stable to use, has a good cutting effect, and solves the problem of being unable to accurately cut due to the inconsistent length of each soft candy.

[0029] It should be understood that both the foregoing general description and the following detailed description are for purposes of illustration and description and are not necessarily limiting of the present disclosure. The accompanying drawings, which are incorporated into and constitute a part of the specification, illustrate the subject matter of the present disclosure. Together, the description and the drawings serve to explain the principles of the present disclosure. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] In order to more clearly illustrate the specific embodiments of the present disclosure or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the specific embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present disclosure. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0031] Figure 1 Schematic diagram of the structure of an embodiment of the present disclosure;

[0032] Figure 2 This is a schematic diagram of the housing structure of an embodiment of the present disclosure;

[0033] Figure 3 This is a schematic diagram of the shaft side structure of the housing according to an embodiment of the present disclosure;

[0034] Figure 4 This is a schematic diagram of the structure of the discharging system according to an embodiment of the present disclosure;

[0035] Figure 5 This is a schematic structural diagram of a transmission and cutting system according to an embodiment of the present disclosure;

[0036] Figure 6 A cross-sectional schematic diagram of the connection structure of the transmission system according to an embodiment of the present disclosure;

[0037] Figure 7 This is a schematic structural diagram of a cutting system according to an embodiment of the present disclosure;

[0038] Figure 8 This is a schematic diagram of the partial structure of the cutting system according to an embodiment of the present disclosure;

[0039] Figure 9 This is a schematic diagram of the structure of the driving components in the cutting system according to an embodiment of the present disclosure;

[0040] Figure 10 Schematic diagram of the cross-sectional structure of the locking member according to the embodiment of the present disclosure.

[0041] Icons: chassis 100, base 101, baffle 1011, mounting plate 102, upper cover 103, cover opening cylinder 104, control system 105, wheel 106, support platform 107, motor hole 108, transmission component 200, feed rack 201, feed hole 202, main frame 203, telescopic rod 2031, clamping seat 2032, transmission motor 204, driving shaft 205, synchronous belt 206, from Drive shaft 207, adjustment base 208, first adjustment knob 2081, adjustment screw 2082, sliding nut 209, cutting system 300, upper base 301, lower base 302, cutting motor 303, first fixed plate 3031, linkage column 3032, telescopic base 304, lower cutter head 305, proximity switch 306, upper cutter head 307, nozzle 308, rotating block 309, slide rail 310, lifting slide Block 311, discharging system 400, output shaft 401, support frame 402, active roller 403, driven roller 404, adjusting plate 405, second adjusting knob 406, first clamping block 407, first connecting plate 408, rotating shaft bolt 409, second fixed plate 410, first motor 411, positioning rod 412, slide groove 413, third adjusting knob 414, oil pot 500, feeding system 600, feeding platform 601, first connecting rod 602, positioning notch 6021, second connecting rod 603, second clamping block 6031, positioning hole 6032, rotating pin 604, spring clamping button 605, positioning bolt 6051, step position 60511, spring 6052, connecting door frame 700, gantry 701, support rod 702, first connecting bolt 703, second connecting bolt 704, connecting seat 705. DETAILED DESCRIPTION

[0042] The technical solutions of the present disclosure will be described clearly and completely below with reference to the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present disclosure, rather than all of the embodiments.

[0043] Based on the embodiments of the present disclosure, all other embodiments obtained by those skilled in the art without creative work shall fall within the scope of protection of the present disclosure.

[0044] In the description of this disclosure, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings and are intended solely to facilitate the description of this disclosure and simplify the description. They do not indicate or imply that the devices or components referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limitations on this disclosure. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0045] In the description of this disclosure, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood broadly. For example, they may refer to fixed connections, detachable connections, or integral connections; mechanical connections or electrical connections; direct connections or indirect connections through an intermediate medium; and internal connections between two components. Those skilled in the art will understand the specific meanings of the above terms in this disclosure based on the specific circumstances.

[0046] Example 1

[0047] like Figure 1-10 The illustrated casing soft candy cutting machine comprises: a chassis 100, a processing area and a flip-up cover 103 provided inside the chassis 100, the processing area comprising a horizontally arranged base 101 and an upright mounting plate 102 provided on the side of the base 101; two opening cylinders 104 for supporting the upper cover 103 are fixed to the upper part of the mounting plate 102, the free ends of the cylinder rods of the opening cylinders 104 are rotatably connected to the front sides of the left and right side walls of the upper cover 103, the main body of the opening cylinder 104 is connected to the mounting plate 102 via a hinge assembly, and the hinge assembly is provided with a locking assembly for controlling the angle of the opening cylinder. The upper cover 103 of this design generally exists in only two states, fully open or fully closed, so there is no need to involve a half-open state, and a general cylinder structure can complete the task of auxiliary power.

[0048] The present invention also includes a control system connected to the chassis equipment, which can control the cutting system to cut materials. The chassis 100 is provided with universal rotating wheels at the bottom, which are also provided with a brake device for easy movement and positioning.

[0049] Conveyor assembly 200 includes a transmission channel for conveying materials along the length of the processing area. The material conveying direction of the transmission channel is parallel to mounting plate 102. The transmission channel is composed of two parallel timing belt assemblies. The timing belts of the two timing belt assemblies are arranged vertically, and the inner transmission direction of the two timing belts is the same, so that the inner area of ​​the two timing belts forms a transmission channel for clamping materials. When materials enter the transmission channel, they form an interference fit with the transmission channel. Timing belts are provided on both sides of the transmission channel for clamping, achieving the purpose of horizontal material transmission.

[0050] It also includes: a connecting gantry 700, including a gantry 701 horizontally arranged on the upper part and a support rod 702 supporting the gantry 701, and the gantry 701 is detachably connected to the transmission component 200.

[0051] The conveyor assembly 200 includes two parallel synchronous belt assemblies arranged on the left and right sides of the transmission channel. The rotating shafts of the synchronous belts in the two synchronous belt assemblies are arranged vertically. The inner sides of the synchronous belts 206 of the two synchronous belt assemblies form a transmission channel. The synchronous belts at the inner positions move along the material transmission direction.

[0052] The system also includes a feed rack 201 positioned at the feed ends of the two synchronous belt assemblies. A feed hole 202 is positioned in the center of the feed rack 201, forming an interference fit with the left and right walls of the incoming material. The feed hole 202 is positioned in the center of the transmission channel's main projection. In this design, the feed hole is typically designed as a vertically elongated, waist-shaped hole. This assists with clamping the transmission channel and pre-shaping the material. Because the material's shape changes during transport due to gravity and other factors, the initial longitudinal wall pressure effectively compensates for this deformation, achieving the desired shape and structure.

[0053] The feeding rack 201 is fixed on a support platform 107 fixed on the base 101.

[0054] The synchronous belt assembly includes a main frame 203, arranged along the material conveying direction. A driving shaft 205, driven by a conveying motor 204, is mounted at one end along the main frame 203's longitudinal axis. The driving shaft 205 is also rotatably connected to the support platform 107. A telescopic rod 2031, extending and retracting along the main frame 203's longitudinal axis, is mounted at the other end. The free end of the telescopic rod 2031 clamps the driven shaft 207 via a clamping seat 2032. The rotating axes of the driving and driven shafts 205 and 207 are vertically arranged, and the synchronous belt is sleeved around the exterior of these two shafts. The telescopic rod 2031 is adjusted by an adjustment seat 208 fixed to the upper portion of the main frame 203 to achieve telescopic movement. The driving shaft 205 is connected to the conveying motor 204 at its lower portion. The conveying motor 204 is mounted below the base 1011. A motor hole 108 is provided on the support platform 107, through which a coupling is inserted, facilitating the transmission motor 204's linkage with the driving shaft 205. The design of the telescopic rod transforms the main support structure in the synchronous belt assembly into an adjustable structure, which is equivalent to the driving shaft being fixed and rotating, and the driven shaft being movable along the axis of the main frame 203 to adjust the tensioning structure and prevent the synchronous belt from loosening.

[0055] The adjustment seat 208 is connected and fixed to the gantry 701 by a first connecting bolt 703;

[0056] At both ends of the gantry, one end is connected and fixed to the mounting plate 102 via a connecting seat 705 , and at the same time, the lower parts of both sides of the gantry are connected to the support rod 702 via a second connecting bolt 704 .

[0057] A cavity structure is provided in the middle portion of the adjustment seat 208 along the longitudinal direction. An adjustment screw 2082 is provided in the cavity structure, which is coaxial with the cavity structure. A first adjustment knob 2081 is rotatably connected to the wall surface of the adjustment seat 208 near the cavity structure and is fixedly connected to the adjustment screw 2082. The first adjustment knob 2081 is linked to the adjustment screw 2082 to rotate around a fixed axis within the cavity structure.

[0058] The cavity structure connects to the corresponding position of the main frame 203 to form a lateral sliding space. A sliding nut 209 is mounted on the upper portion of the adjustment screw 2082 and fixed to the end of the telescopic rod 2031 at the lower portion, forming a linear module drive structure that links the telescopic rod 2031 to achieve telescopic movement. This design uses a screw-slider assembly to form the adjustment mechanism. The lateral sliding space is limited, but it is sufficient to complete fine-tuning correction within this limited lateral space.

[0059] The transverse sliding space also prevents the telescopic rod from moving radially or rotating circumferentially. When necessary, a track for clamping can be added in the transverse sliding space, and a clamping block for clamping on the horizontal track can be provided on the telescopic rod.

[0060] Example 2

[0061] The pill shearing machine in this embodiment is an improvement on the basis of the first embodiment. The technical contents disclosed in the first embodiment will not be described repeatedly. The contents disclosed in the first embodiment also belong to the contents disclosed in this embodiment.

[0062] The embodiments of the present disclosure also provide a sausage-coated soft candy cutting machine, which includes the contents of any of the above-mentioned technical solutions and thus has all the beneficial technical effects of the sausage-coated soft candy cutting machine, which will not be described in detail here.

[0063] like Figure 1-10 As shown, the cutting system 300 includes an upper cutter head 307 and a lower cutter head 305 that perform a lifting action relative to each other. The upper cutter head 307 and the lower cutter head 305 are arranged in the transmission channel near the discharge end to shear the material in the transmission channel; the upper cutter head and the lower cutter head move symmetrically at the same time, as shown in FIG. Figure 7 As can be seen in the figure, the upper end surface of the lower cutter head 305 is provided with a groove. This groove and the sheet-like structure of the upper cutter head form a plug-in compensation when shearing the material, and the material is cut under the shear stress, thus completing the cutting purpose. To solve the problem of material alignment during cutting, sensors, such as proximity switches 306, are installed at corresponding positions on the upper and lower machine bases beside the upper and lower cutter heads.

[0064] The proximity switch 306 in this design can monitor whether the material is in place at any time. In place here means whether it has moved to the specified shearing position of the transmission channel, that is, the position where the longitudinal line connecting the upper and lower blades intersects with the material transmitted by the transmission channel.

[0065] When the proximity switch 306 detects that the material has reached the designated shearing point, a signal is transmitted back, and the control circuit controls the upper and lower blades to cooperate in shearing, thereby achieving the purpose of accurate shearing alignment.

[0066] The cutting system 300 includes a main body fixed on the front side of the mounting plate 102, and the upper and lower parts of the front side of the main body are respectively integrally connected with an upper machine base 301 and a lower machine base 302; the upper machine base 301 and the lower machine base 302 are respectively provided with telescopic seats 304 that are symmetrically raised and lowered through the linkage of driving components; the upper telescopic seat 304 is connected to an upper cutter head 307 extending downward, and the lower telescopic seat 304 is connected to an upper cutter head 307 extending upward.

[0067] like Figure 8 An oil nozzle 308 is mounted on the side of the upper cutter head 307, fixed to the upper base. An air nozzle is mounted on the side of the lower cutter head 305. An oiler 500 is mounted on the chassis of this design. This oiler is connected to the nozzle 308 via an oil pump and oil pipe. The main purpose of the nozzle 308 is to intermittently spray oil onto the upper cutter head to ensure lubrication and prevent material from adhering to the upper cutter head.

[0068] like Figure 7 The middle and lower cutter heads have a groove structure, which is prone to residual material. The air nozzle at the corresponding position of the lower machine base blows air to promptly blow away the residue in the lower cutter head to prevent it from affecting the next shearing. The air nozzle is connected to an air pump and the air blowing is controlled by a control circuit.

[0069] The driving assembly of this design adopts the cam connecting rod form, and the linkage of the crank connecting rod can also achieve the purpose, that is, the purpose of lifting the telescopic seat 304. And by the mode of the cam connecting rod or the crank connecting rod, space can be saved and it is more stable to use.

[0070] like Figure 9 In the embodiment, the driving assembly includes a cutting motor 303 fixed to the rear side of the mounting plate 102 through a first fixing plate 3031. The cutting motor 303 is linked to a linkage column 3032 on the front side of the mounting plate 102. The rotation axis of the linkage column 3032 coincides with the output rotation axis of the motor, and the top projection of the linkage column 3032 is perpendicular to the top projection of the material transmission direction.

[0071] Telescopic seat 304 is connected to a lifting slider 311, which is secured to a vertically fixed rail 310. The sidewall of lifting slider 311 pivots at one center of a rounded rotating block. The other center of rotating block 309 pivots at a corresponding point on the free end of linkage column 3032, near its outer edge. The lifting slider and linkage column are located on the front and rear sides of rotating block 309, respectively. Rotating block 309 functions as a connecting rod.

[0072] Example 3

[0073] The pill shearing machine in this embodiment is an improvement on the basis of the first embodiment. The technical contents disclosed in the first embodiment will not be described repeatedly. The contents disclosed in the first embodiment also belong to the contents disclosed in this embodiment.

[0074] The embodiments of the present disclosure also provide a sausage-coated soft candy cutting machine, which includes the contents of any of the above-mentioned technical solutions and thus has all the beneficial technical effects of the sausage-coated soft candy cutting machine, which will not be described in detail here.

[0075] like Figure 1-4 As shown, the discharging system 400 is detachably fixed on the side wall of the chassis 100 and connected to the discharging end of the transmission channel. A baffle 1011 is provided below the discharging system.

[0076] The discharge system 400 includes an output shaft 401 rotatably connected to a corresponding position on the front side of the mounting plate 102. The output shaft 401 is connected and fixed to a support frame 402 parallel to the mounting plate 102. The middle of the support frame 402 is rotatably connected to a positioning rod 412 with an adjustable height position. The output shaft is rotatably connected to the mounting plate and is a detachable structure. The lower end of the positioning rod 412 is rotatably connected to a position slightly below the middle of the support frame 402, and a slide groove 413 is provided on the upper portion of the positioning rod 412. Figure 4 As shown in the figure, a third adjusting knob 414 is provided. After the threaded rod of the third adjusting knob 414 passes through the slide groove 413, it is screwed with a corresponding fixing nut. The fixing nut is connected to the mounting plate 102. By rotating the third adjusting knob 414, the clamping degree of the third adjusting knob and the fixing nut relative to the positioning rod 412 is controlled, thereby adjusting the lifting and lowering of the positioning rod 412, and finally adjusting the rotation position of the support frame, that is, the angle between the support frame and the horizontal line.

[0077] The support frame 402 is connected and fixed to the discharge frame. The discharge frame can be a rectangular frame structure, or the support frame can be used as one of the long sides of the discharge frame to form a frame-shaped support frame. Between the two long sides of the support frame, the driving roller and the driven roller are rotatably connected, and then the conveyor belt is connected to form a synchronous belt structure for discharge. The difference between this design and existing designs is that the discharge system of this design also adopts a synchronous belt structure with adjustable tension. The details are as follows:

[0078] A driving roller 403, parallel to one of the short sides of the discharge frame, is installed. This driving roller 403 is linked to a first motor 411 on the rear side of the mounting plate 102 via a coupling running through the output shaft. The first motor 411 is secured to the mounting plate 102 via a second fixing plate 410 at its front. The driving roller 403 is rotatably connected to the outer ends of the two long sides of the support frame. One end of the driving roller 403 is linked to a coupling running through the middle of the output shaft 401, while the other end of the coupling is linked to the first motor 411.

[0079] like Figure 2 Figure 3As shown, a driven roller 404 parallel to the short side of the discharging frame is connected to the other short side of the discharging frame via a fine-tuning structure. The two ends of the driven roller are rotatably connected to the fine-tuning structure. The fine-tuning structure includes an adjustment plate 405 connected to both sides of the long side of the discharging frame, which can be detached and adjusted via a second adjustment knob 406. A notch is provided on the rear end face of the adjustment plate 405, and a first clamping block 407 is provided at a corresponding position on the outside of the long side of the discharging frame. The notch engages with the first clamping block 407. The above structure serves as a limit structure for the adjustment plate. The adjustment plate can move in the transmission direction to form a tensioned structure, or it can retreat. However, the position of the first clamping block is the end point of the retreat in this design. This design also prevents unlimited adjustment, which can cause the driven roller to loosen during use, affecting the transmission effect and life of the machine.

[0080] like Figure 2 Figure 3 As shown in FIG, the driven roller 404 is rotatably connected to the adjustment plate 405 via the rotating shaft bolt 409. Figure 2 In the figure, because the support frame is one of the long sides of the discharge frame and its length is insufficient, a first connecting plate 408 for extension is connected to the free end of the support frame, and the adjustment plate 405 at the corresponding position is connected to the first connecting plate 408 through the second adjustment knob 406.

[0081] The driving roller 403 and the driven roller 404 are covered with a discharging conveyor belt. A baffle 1011 is provided below the discharging frame. The baffle is obtained by extending the base 101 along the transmission direction and serves as a material blocking and protective support structure.

[0082] Example 4

[0083] The pill shearing machine in this embodiment is an improvement on the basis of the first embodiment. The technical contents disclosed in the first embodiment will not be described repeatedly. The contents disclosed in the first embodiment also belong to the contents disclosed in this embodiment.

[0084] The embodiments of the present disclosure also provide a sausage-coated soft candy cutting machine, which includes the contents of any of the above-mentioned technical solutions and thus has all the beneficial technical effects of the sausage-coated soft candy cutting machine, which will not be described in detail here.

[0085] like Figure 3 , 10, the feeding system 600 is fixed on the side wall of the chassis 100 and connected with the feed end of the transmission channel;

[0086] The loading system 600 includes a loading platform 601, which is rotatably connected to the outer wall of the chassis 100. The lower surface of the loading platform 601 is provided with a first connecting rod 602 for supporting and positioning and a second connecting rod 603 cooperating therewith. A locking piece is provided at the rotational connection position of the first connecting rod and the second connecting rod.

[0087] like Figure 3 As shown in FIG, the upper end of the first connecting rod 602 is rotatably connected to the lower part of the loading platform 601, and the lower end of the second connecting rod 603 is rotatably connected to the wall of the chassis 100. The first connecting rod 602 and the second connecting rod 603 are rotatably connected by a rotating pin 604.

[0088] The locking parts of this design, such as Figure 10 In the embodiment, an extension portion is provided on the free end of the second connecting rod 603, a second clamping block 6031 is provided on the extension portion, and a locking notch 6021 cooperating with the second clamping block 6031 is provided on the first connecting rod 602, and the locking notch 6021 is provided at the upper outer edge of the first connecting rod 602.

[0089] The locking member of the present invention also includes a spring button 605 with a spring 6052, such as Figure 10 In the embodiment, a positioning hole 6032 is provided at a corresponding position of the second connecting rod 603, and a mounting hole is provided on the first connecting rod concentric with the positioning hole 6032. A sleeve structure is fixed on the mounting hole, and a retaining bolt 6051 passes through the sleeve structure. When the lower free end of the retaining bolt is in a locked state, it is inserted into the positioning hole 6032. The retaining bolt is pulled up by the spring button at the upper free end to complete the unlocking action. The spring button 605 is provided above the sleeve structure, and a protruding step position 60511 is provided in the middle and lower part of the retaining bolt 6051. A spring 6052 is provided between the step position 60511 and the upper end of the inner cavity of the sleeve structure, and the spring 6052 is sleeved on the retaining bolt.

[0090] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present disclosure, rather than to limit them. Although the present disclosure has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or replace some or all of the technical features therein with equivalents. However, these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present disclosure.

Claims

1. A casing soft candy cutting machine, characterized in that: The machine comprises a chassis, a processing area and a flip-up cover covering the processing area, wherein the processing area comprises a horizontally arranged base and an upright mounting plate arranged on the side of the base; A conveying assembly, comprising a conveying channel for conveying materials along the long side of the processing area, wherein the material conveying direction of the conveying channel is parallel to the mounting plate; The cutting system includes an upper cutter head and a lower cutter head that perform relative lifting movements. The upper cutter head and the lower cutter head are arranged in the transmission channel near the discharge end to shear the material in the transmission channel; A feeding system is fixed on the side wall of the chassis and connected to the feeding end of the transmission channel; The discharging system is fixed on the side wall of the chassis and connected with the discharging end of the transmission channel.

2. The casing soft candy cutting machine according to claim 1, characterized in that: Also includes: The connecting gantry comprises a gantry horizontally arranged on the upper portion and a support rod supporting the gantry, and the gantry is detachably connected to the transmission assembly.

3. The casing soft candy cutting machine according to claim 2, characterized in that: The transmission assembly includes: two synchronous belt assemblies arranged in parallel on the left and right sides of the transmission channel, the rotating shafts of the synchronous belts in the two synchronous belt assemblies are arranged vertically, the inner sides of the synchronous belts of the two synchronous belt assemblies form a transmission channel, and the synchronous belts at the inner positions move along the material transmission direction; It also includes a feed rack arranged at the feed ends of the two synchronous belt assemblies, and a feed hole is provided in the middle of the feed rack to form an interference fit with the left and right side walls of the incoming material; the main projection of the feed hole is set in the middle of the main projection area of ​​the transmission channel.

4. The casing soft candy cutting machine according to claim 3, characterized in that: The synchronous belt assembly includes a main frame arranged along the material transmission direction, a driving shaft driven by a transmission motor is provided at one end of the main frame in the long axis direction, and a telescopic rod telescopic along the long axis direction of the main frame is provided at the other end, the free end of the telescopic rod clamps the driven shaft through a clamping seat, the rotating shafts of the driving shaft and the driven shaft are arranged vertically, and the synchronous belt is sleeved on the outside of the driving shaft and the driven shaft; the telescopic rod completes the telescopic movement by adjusting the adjustment seat fixed on the upper part of the main frame.

5. The casing soft candy cutting machine according to claim 4, characterized in that: The adjusting seat is connected and fixed to the gantry by a first connecting bolt; A cavity structure is provided in the middle portion of the adjustment seat along the longitudinal direction, and an adjustment screw rod coaxial with the cavity structure is provided in the cavity structure. A first adjustment knob connected to and fixed to the adjustment screw rod is rotatably connected to the wall surface of the adjustment seat close to the cavity structure; the first adjustment knob is linked to the adjustment screw rod to rotate on a fixed axis in the cavity structure. The cavity structure is connected to the corresponding position of the main frame to form a horizontal sliding space. The upper part of a sliding nut is sleeved on the adjusting screw rod, and the lower part is connected and fixed to the end of the telescopic rod to form a linear module drive structure that links the telescopic rod to complete the telescopic movement.

6. The casing soft candy cutting machine according to claim 1, characterized in that: The cutting system includes a main body fixed to the front side of the mounting plate, with an upper machine base and a lower machine base integrally connected to the upper and lower parts of the front side of the main body respectively; the upper machine base and the lower machine base are respectively provided with telescopic seats that are linked by a driving component to symmetrically complete the lifting and lowering; the upper telescopic seat is connected to an upper cutting head extending downward, and the lower telescopic seat is connected to an upper cutting head extending upward; The side of the upper cutter head is provided with an oil spray nozzle, and the side of the lower cutter head is provided with an air nozzle.

7. The casing soft candy cutting machine according to claim 6, characterized in that: The drive assembly includes a cutting motor fixed to the rear side of the mounting plate through a first fixing plate, and the cutting motor is linked to a linkage column on the front side of the mounting plate, the linkage column shaft coincides with the motor output shaft, and the top projection of the linkage column shaft is perpendicular to the top projection of the material transmission direction; The telescopic seat is connected to a lifting slider, and the lifting slider is clamped on a vertically fixed slide rail. The side wall of the lifting slider is rotatably connected to one of the centers of a waist-shaped rotating block; the other center of the rotating block is rotatably connected to the corresponding point on the free end surface of the linkage column near the outer edge.

8. The casing soft candy cutting machine according to claim 1, characterized in that: The discharging system includes an output shaft rotatably connected to a corresponding position on the front side of the mounting plate, the output shaft is connected and fixed to a support frame parallel to the mounting plate, and the middle part of the support frame is rotatably connected to a positioning rod with an adjustable height position; The support frame is connected and fixed with a discharging frame, and an active roller parallel to the short side of the discharging frame is provided on one of the short sides of the discharging frame. The active roller is linked to the first motor on the rear side of the mounting plate through a coupling running through the output shaft.

9. The casing soft candy cutting machine according to claim 8, characterized in that: A driven roller parallel to the short side of the discharging frame is connected to the other short side of the discharging frame through a fine-tuning structure, and the active roller and the driven roller are covered with a discharging conveyor belt.

10. The casing soft candy cutting machine according to claim 1, characterized in that: The feeding system includes a feeding platform, which is rotatably connected to the outer wall of the chassis. The lower surface of the feeding platform is provided with a first connecting rod for supporting and positioning and a second connecting rod cooperating therewith. A locking piece is provided at the rotational connection position of the first connecting rod and the second connecting rod.