Large honeyed pill tailing extruder

By setting a rotatable strip-out cylinder and a heating jacket in the large honey pill tail material extruder, the problems of inconvenience in loading and cleaning are solved, wear is reduced, the service life of the equipment is extended, and the fluidity of the material and the smoothness of the extrusion process are ensured.

CN223370209UActive Publication Date: 2025-09-23DIER PHARMA MACHINERY LLC HEILONGJIANG
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Patent Information

Application Number
CN202422716767.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-08
Publication Date
2025-09-23
Estimated Expiration
2034-11-08

AI Technical Summary

Technical Problem

The existing large honey pill tail material extruder has the problems of inconvenience in loading and cleaning, and serious wear of the pushing block and the stripping cylinder.

Method used

A large honey pill tail material extruder was designed. A rotating shaft was set on the discharge barrel so that it could rotate around the first axis to a vertical position, which was convenient for loading and cleaning. The wear was reduced by adjusting the gap between the joint block and the push block of the intermediate connecting component. At the same time, a heating jacket was used to maintain the material temperature, and a servo electric cylinder was used to accurately control the push amount.

Benefits of technology

It realizes the convenience of loading and improves the operability of the equipment, reduces the convenience of loading, facilitates cleaning, is easy to clean from the feed port and discharge port, extends the service life of the equipment, and maintains the fluidity of the material through the heating jacket to avoid blockage and ensure the smooth progress of the extrusion process.

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Abstract

The utility model discloses a large honeyed pill tailing extruder, which relates to the technical field of traditional Chinese medicine processing and comprises a workbench and an extrusion mechanism. The worktable is provided with a bearing tabletop; the extrusion mechanism comprises a strip outlet cylinder, a push block, a middle connecting assembly and a pusher which are arranged in sequence; the strip discharging cylinder is rotationally arranged on the bearing table board around a first axis; a bearing block is fixedly arranged on the bearing tabletop; when the axis of the strip outlet cylinder is parallel to the axis of the push block, the push block can slide in the material containing cavity along the axis of the strip outlet cylinder; the middle connecting assembly comprises a fixed flange ring and a joint block; a containing groove is formed in the end, close to the pusher, of the pushing block, and the fixed flange ring is detachably and fixedly arranged at an opening of the containing groove; the joint block is located in the containing groove. Adjusting gaps are formed between the circumferential outer side walls of the joint blocks and the circumferential inner side walls of the containing grooves. The pusher is fixedly arranged on the bearing table top, and the telescopic end of the pusher is fixedly connected with one end of the joint block. Loading and cleaning are convenient, abrasion of parts can be reduced, and the service life is prolonged.
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Description

Technical Field

[0001] The utility model relates to the technical field of traditional Chinese medicine processing, in particular to a large honey pill tail material extruder. Background Art

[0002] The existing large honey pill tail material extruder used for making large honey pills has the following problems:

[0003] 1) There is a welded hopper for feeding on the delivery cylinder, which cannot be turned over, making loading and cleaning inconvenient;

[0004] 2) The pusher block in the delivery barrel is directly connected to the hydraulic cylinder mechanism and cannot be adjusted. Long-term squeezing and pushing of the medicine strips will wear out the delivery barrel.

[0005] Therefore, it is necessary to design a large honey pill tail material extruder for solving the above problems. Utility Model Content

[0006] The purpose of the utility model is to provide a large honey pill tail material extruder to solve the problems existing in the above-mentioned prior art, facilitate loading and cleaning, reduce the wear of components and extend the service life.

[0007] To achieve the above purpose, the present invention provides the following solutions:

[0008] The utility model provides a large honey pill tail material extruder, comprising a workbench and an extrusion mechanism; the workbench has a bearing table; the extrusion mechanism comprises a stripping drum, a push block, an intermediate connecting assembly and a pusher arranged in sequence; a rotating shaft is fixedly provided on the stripping drum, and the rotating shaft is arranged on the bearing table to rotate around a first axis; the stripping drum has a material holding cavity and a feed port and a discharge port connected to the material holding cavity; the feed port is located at one end of the stripping drum close to the push block; the stripping drum can be rotated around the first axis and assume a vertical posture, and in the vertical direction, the feed port is located above the discharge port; a bearing block is fixedly provided on the bearing table, and the end of the stripping drum with the feed port can be fixed on the bearing block; when the axis of the stripping drum is parallel to the axis of the push block, The push block can slide in the material holding cavity along the axis of the strip output cylinder; the intermediate connecting assembly includes a fixed flange ring and a joint block; a receiving groove is provided at one end of the push block close to the pusher, and the fixed flange ring can be removably fixed at the opening of the receiving groove; the joint block is located in the receiving groove; in the axial direction of the joint block, one end of the joint block abuts against the inner wall of the end of the receiving groove away from the pusher, and the other end of the joint block is press-fitted with the side of the fixed flange ring close to the receiving groove; there is an adjustable gap between the circumferential outer wall of the joint block and the circumferential inner wall of the receiving groove; the pusher is fixedly arranged on the bearing table, and the pusher has a telescopic end, and the telescopic end is fixedly connected to the end of the joint block away from the receiving groove.

[0009] Preferably, the discharge port is connected to an extension tube, and a heating jacket is fixedly provided on the outside of the extension tube.

[0010] Preferably, a shelf groove is provided on the supporting block, and the shape of the shelf groove is consistent with the outer shape of the corresponding position of the strip output cylinder; at least one movable snap ring is provided on the outer wall of the strip output cylinder; the supporting block is fixed with a hook at the position corresponding to the movable snap ring; the movable snap ring can be hooked and fixed on the hook.

[0011] Preferably, the movable retaining ring includes a rotating handle and a U-shaped rod; the two ends of the rotating handle are a rotating end and a holding end, respectively, and a rotating part is provided between the rotating end and the holding end; the rotating end is rotatably arranged on the outer side wall of the bar-outputting cylinder around a second axis, and the second axis is parallel to the axis of the bar-outputting cylinder; the two ends of the U-shaped rod are rotatably arranged on the rotating part around a third axis, and the third axis is parallel to the second axis; the U-shaped rod can be hooked and fixed on the hook.

[0012] Preferably, two movable snap rings are symmetrically provided on the outer side wall of the stripping cylinder, and two hooks are fixedly provided on the supporting block, with one movable snap ring corresponding to one hook.

[0013] Preferably, the rotating shaft includes a first rotating shaft and a second rotating shaft, and the first rotating shaft and the second rotating shaft are symmetrically fixed on the stripping cylinder; the first rotating shaft and the second rotating shaft are respectively connected to the supporting table through bearings.

[0014] Preferably, the pusher is a servo electric cylinder.

[0015] Preferably, a conical connecting tube is provided between the discharge port and the extension tube; a locking ring is provided on the conical connecting tube; one end of the conical connecting tube abuts against the end of the strip output cylinder, and the other end of the conical connecting tube abuts against one end of the locking ring; the locking ring has an internal thread, and the strip output cylinder has an end with an external thread provided at the discharge port, and the internal thread is threadedly connected to the external thread.

[0016] Preferably, an avoidance groove is provided on the supporting table, and when the stripping drum rotates around the first axis to a vertical state, part of the stripping drum is located in the avoidance groove.

[0017] Preferably, a plurality of anti-slip pads are fixedly provided on the bottom of the workbench.

[0018] Compared with the prior art, the utility model has achieved the following technical effects:

[0019] The large honey pill tail material extruder provided by the present invention has a stripping drum that is arranged on a supporting table by rotating around a first axis through a rotating shaft, and can be in a vertical posture after rotating around the axis. At this time, the feed port is located above the discharge port. This design allows the stripping drum to be rotated to a vertical state when loading, and to be loaded directly from the feed port above. By utilizing the action of gravity, the material can enter the material holding cavity more smoothly, without the need for complex auxiliary loading equipment or laborious loading of materials from other angles such as the side, thereby greatly improving the convenience of loading; also utilizing the characteristic that the stripping drum can be rotated around the first axis to a vertical posture, the stripping drum can be rotated and erected during cleaning, which facilitates flushing and other cleaning operations on the internal material holding cavity of the stripping drum from the feed port and the discharge port and other parts; in the intermediate connecting assembly, there is an adjustment gap between the circumferential outer wall of the joint block and the circumferential inner wall of the accommodating groove, which can facilitate the pusher to achieve eccentric adjustment between the push block through the intermediate connecting assembly, thereby reducing the wear between the push block and the stripping drum and extending the service life.

[0020] Furthermore, the heating jacket can heat the extension tube. During the tail material extrusion process, especially for some tail materials with high viscosity or easy to solidify at room temperature, the heat provided by the heating jacket can keep the material in an appropriate temperature range when passing through the extension tube. This can effectively reduce the viscosity of the material and enhance its fluidity, avoiding blockage or poor flow of the material in the extension tube, and ensuring that the tail material can be continuously and smoothly extruded from the outlet through the extension tube.

[0021] Furthermore, the shape of the shelf groove provided on the supporting block is consistent with the outer shape of the corresponding position of the strip-producing cylinder, which enables the strip-producing cylinder to be placed on the supporting block to achieve a tight and precise fit, and can provide accurate positioning for the strip-producing cylinder during the installation process, ensuring that the strip-producing cylinder is in a correct and stable position on the supporting block; the movable clamping ring on the outer wall of the strip-producing cylinder can be hooked and fixed on the hook at the corresponding position of the supporting block. This clamping method enhances the stability of the connection between the strip-producing cylinder and the supporting block.

[0022] Furthermore, the rotating handle of the movable clasp is provided with a gripping end, and the operator can conveniently grip the gripping end when hooking or unhooking the clasp and the hook, and the rotating end of the rotating handle is rotatably arranged on the outer wall of the strip output cylinder around the second axis. This rotating arrangement allows the operator to drive the entire rotating handle to rotate around the second axis only by gently rotating the gripping end, thereby adjusting the position of the U-shaped rod, so as to facilitate the U-shaped rod to be accurately hooked onto the hook or unhooked from the hook, and the operation process is simple and labor-saving.

[0023] Furthermore, two movable clamping rings are symmetrically arranged on the outer side wall of the stripping drum, and two corresponding hooks are fixedly arranged on the supporting block, so that the connection between the stripping drum and the supporting block forms a fixed structure with two-point symmetry.

[0024] Furthermore, the rotating shaft consists of a first and second rotating shafts symmetrically fixed to the delivery drum. This symmetrical structure ensures more even force distribution during the delivery drum's rotation, preventing unstable rotation and shaking caused by unilateral force. When the delivery drum is rotated to a vertical position for operations such as loading or cleaning, the symmetrical first and second rotating shafts ensure smooth and stable rotation, maintaining the stability of the delivery drum in different positions, thereby ensuring reliable operation of the entire extruder during relevant operations.

[0025] Furthermore, the servo cylinder enables high-precision control of the pusher block's position. During the tailings extrusion process, by precisely setting the stroke of the servo cylinder's telescopic end, the pusher block's sliding distance within the delivery can can be accurately controlled, thereby precisely controlling the tailings extrusion volume.

[0026] Furthermore, one end of the tapered connecting tube abuts against the end of the stripping cylinder, and the other end abuts against one end of the locking ring. In addition, the tightening effect of the threaded connection can effectively prevent the connection parts from loosening or disjointing during the extrusion of the tail material. When it is necessary to perform maintenance, inspection, etc. on the extension tube, tapered connecting tube or the discharge port of the stripping cylinder, the disassembly process is also convenient. Just rotate and unscrew the locking ring in the opposite direction of the thread, and you can easily remove the tapered connecting tube from the stripping cylinder, and then you can easily perform separate inspection, cleaning or maintenance on each component, reducing the difficulty and workload of equipment maintenance.

[0027] Furthermore, an avoidance groove is provided on the supporting table. When the strip output cylinder rotates to a vertical state around the first axis, part of the strip output cylinder can be located in the avoidance groove. Such a design can make full use of the space of the supporting table and avoid the strip output cylinder from occupying too much extra space due to protruding from the supporting table in the vertical state.

[0028] Furthermore, the anti-slip mat can increase the friction between the workbench and the placement surface, ensuring that the workbench and the entire large honey pill tail material extruder can be firmly placed in place, maintaining the stability of the equipment during operation, and ensuring the continuous and smooth extrusion operation. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0030] Figure 1 This is a schematic diagram of the overall structure of the large honey pill tail material extruder provided by the utility model;

[0031] Figure 2 This is a structural diagram of the large honey pill tail material extruder provided by the utility model without the workbench part;

[0032] Figure 3 This is a schematic diagram of the connection structure between the middle connecting component, the push block and the pusher in the large honey pill tail material extruder provided by the utility model;

[0033] Figure 4 This is a structural schematic diagram of the movable clamping ring and the clamping hook in the large honey pill tail material extruder provided by the utility model.

[0034] In the picture:

[0035] 100-large honey pill tail material extruder;

[0036] 10-working table; 11-platform board; 111-avoidance groove; 12-frame; 13-anti-slip pad; 14-carrying block; 15-hooking hook;

[0037] 20 - delivery can; 21 - first rotating shaft; 22 - second rotating shaft; 23 - tapered connecting pipe; 24 - locking ring; 25 - extension pipe; 26 - bearing seat;

[0038] 30 - movable clasp; 31 - rotating handle; 311 - rotating end; 312 - rotating portion; 313 - gripping end; 32 - U-shaped rod;

[0039] 40-push block; 41-fixed flange ring; 42-joint block; 43-adjusting clearance;

[0040] 50- pusher; 51- telescopic end;

[0041] 60-Heating jacket. DETAILED DESCRIPTION

[0042] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described 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.

[0043] The purpose of the utility model is to provide a large honey pill tail material extruder to solve the problems existing in the prior art, facilitate loading and cleaning, reduce the wear of components and extend the service life.

[0044] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the present invention is further described in detail below with reference to the accompanying drawings and specific implementation methods.

[0045] Example 1

[0046] This embodiment provides a large honey pill tailing extruder 100, which is mainly but not limited to the preparation of large honey pill tailings, and is not limited to the extrusion of tailings, such as Figures 1 to 4As shown, it includes a workbench 10 and an extrusion mechanism; the workbench 10 has a bearing table; the extrusion mechanism includes a stripping drum 20, a push block 40, an intermediate connecting assembly and a pusher 50 arranged in sequence; a rotating shaft is fixedly provided on the stripping drum 20, and the rotating shaft is arranged on the bearing table to rotate around a first axis; the stripping drum 20 has a material holding cavity and a feed port and a discharge port connected to the material holding cavity; the feed port is located at one end of the stripping drum 20 close to the push block 40; the stripping drum 20 can be rotated around the first axis and assume a vertical posture, and in the vertical direction, the feed port is located above the discharge port; a bearing block 14 is fixedly provided on the bearing table, and the end of the stripping drum 20 with the feed port can be fixed on the bearing block 14; when the axis of the stripping drum 20 is parallel to the axis of the push block 40, the push block 40 can move along The axis of the strip-producing cylinder 20 slides in the material-containing cavity; the intermediate connecting assembly includes a fixed flange ring 41 and a joint block 42; a receiving groove is provided at one end of the push block 40 close to the pusher 50, and the fixed flange ring 41 can be removably fixed at the opening of the receiving groove; the joint block 42 is located in the receiving groove; in the axial direction of the joint block 42, one end of the joint block 42 abuts against the inner wall of the end of the receiving groove away from the pusher 50, and the other end of the joint block 42 is press-fitted with the side of the fixed flange ring 41 close to the receiving groove; an adjustment gap 43 is provided between the circumferential outer wall of the joint block 42 and the circumferential inner wall of the receiving groove; the pusher 50 is fixedly arranged on the bearing table, and the pusher 50 has a telescopic end 51, which is fixedly connected to the end of the joint block 42 away from the receiving groove.

[0047] The stripping drum 20 is arranged on the supporting table by rotating around the first axis through the rotating shaft, and can be in a vertical posture after rotating around the axis. At this time, the feed port is located above the discharge port. This design allows the stripping drum 20 to be rotated to a vertical state when loading, and to be loaded directly from the feed port above. By utilizing the effect of gravity, the material can enter the material holding cavity more smoothly, without the aid of complex auxiliary loading equipment or laboriously loading the material from other angles such as the side, which greatly improves the convenience of loading. The stripping drum 20 can also be rotated around the axis to be in a vertical position. Due to the characteristic that the first axis can be rotated to a vertical posture, the strip-discharging cylinder 20 can be rotated and upright during cleaning, which facilitates cleaning operations such as flushing the internal material-containing cavity of the strip-discharging cylinder 20 from the feed port and the discharge port; in the intermediate connecting assembly, there is an adjustment gap 43 between the circumferential outer wall of the joint block 42 and the circumferential inner wall of the accommodating groove, which can facilitate the eccentric adjustment between the pusher 50 and the push block 40 through the intermediate connecting assembly, thereby reducing the wear between the push block 40 and the strip-discharging cylinder 20 and extending the service life.

[0048] Among them, the relevant setting instructions for workbench 10:

[0049] Among the optional solutions of this embodiment, it is more preferred that Figure 1As shown, an avoidance groove 111 is provided on the bearing table. When the stripping drum 20 rotates around the first axis to a vertical state, part of the stripping drum 20 is located in the avoidance groove 111. The bearing table is provided with an avoidance groove 111. When the stripping drum 20 rotates around the first axis to a vertical state, part of the stripping drum 20 can be located in the avoidance groove 111. This design can make full use of the space of the bearing table and avoid the stripping drum 20 from occupying too much extra space due to protruding from the bearing table in the vertical state.

[0050] Among the optional solutions of this embodiment, it is more preferred that Figure 1 As shown, a plurality of anti-skid pads 13 are fixedly provided at the bottom of the workbench 10. The anti-skid pads 13 can increase the friction between the workbench 10 and the placement surface, ensuring that the workbench 10 and the entire large honey pill tail material extruder 100 can be firmly placed in place, maintaining the stability of the equipment during operation, and ensuring the continuous and smooth extrusion operation.

[0051] Specifically, the workbench 10 includes a platform plate 11, a frame 12 and multiple anti-slip pads 13; the platform plate 11 is fixedly arranged above the frame 12, and the upper plane of the platform plate 11 forms a bearing table; a threaded rod is fixedly arranged on each anti-slip pad 13, and a through hole or threaded hole is provided at the lower end of the frame 12 corresponding to the position of each anti-slip pad 13; when the lower end of the frame 12 is provided with a through hole, the threaded rod of the anti-slip pad 13 is passed through the through hole, and the through holes are extended at both ends, and the extended parts are threadedly connected with fixing nuts; when the lower end of the frame 12 is provided with a threaded hole, the threaded rod of the anti-slip pad 13 is threadedly connected to the threaded hole, and a fixed limit nut can also be threaded on the threaded rod located below the threaded hole to ensure better fixing. At this time, the height of each anti-slip pad 13 is adjustable, which is suitable for adjusting different heights of the bearing table, and is suitable for horizontal placement on uneven ground.

[0052] Among them, the relevant setting description about the rotation connection between the delivery cylinder 20 and the workbench 10 is as follows:

[0053] Among the optional solutions of this embodiment, it is more preferred that Figure 1 and Figure 2As shown, the rotating shaft includes a first rotating shaft 21 and a second rotating shaft 22, which are symmetrically fixed to the stripping drum 20. The first rotating shaft 21 and the second rotating shaft 22 are respectively connected to the support table via bearings. The rotating shaft is composed of the first rotating shaft 21 and the second rotating shaft 22, which are symmetrically fixed to the stripping drum 20. This symmetrical structure ensures that the stripping drum 20 is subjected to more uniform force during rotation, avoiding rotational instability and shaking caused by unilateral force. When the stripping drum 20 is rotated to a vertical position for operations such as loading or cleaning, the symmetrical first rotating shaft 21 and the second rotating shaft 22 ensure that it rotates smoothly and steadily, maintaining the stability of the stripping drum 20 in different postures, thereby ensuring the reliable operation of the entire extruder during related operations.

[0054] Specifically, the bearings are mounted on corresponding bearing seats 26, and the bearing seats 26 are fixedly connected to the bearing table.

[0055] Specifically, in order for the bearing to correspond to the first rotating shaft 21 and the second rotating shaft 22 in the vertical height direction, a spacer may be provided between the bearing seat 26 and the bearing table.

[0056] Among them, the relevant setting description about the feed port end of the delivery cylinder 20 is as follows:

[0057] Among the optional solutions of this embodiment, it is more preferred that Figure 1 、 Figure 2 and Figure 4 As shown, the supporting block 14 is provided with a rest groove, the shape of which is consistent with the outer shape of the corresponding position of the strip drum 20; at least one movable snap ring 30 is provided on the outer wall of the strip drum 20; a hook 15 is fixedly provided on the supporting block 14 at the position corresponding to the movable snap ring 30; the movable snap ring 30 can be hooked and fixed on the hook 15. The shape of the rest groove provided on the supporting block 14 is consistent with the outer shape of the corresponding position of the strip drum 20, which enables the strip drum 20 to achieve a tight and precise fit when placed on the supporting block 14, provides accurate positioning for the strip drum 20 during the installation process, and ensures that the strip drum 20 is in a correct and stable position on the supporting block 14; the movable snap ring 30 on the outer wall of the strip drum 20 can be hooked and fixed on the hook 15 at the corresponding position of the supporting block 14. This clamping method enhances the stability of the connection between the strip drum 20 and the supporting block 14.

[0058] Among the optional solutions of this embodiment, it is more preferred that Figure 1 、 Figure 2 and Figure 4As shown, the movable retaining ring 30 includes a rotating handle 31 and a U-shaped rod 32; the two ends of the rotating handle 31 are respectively a rotating end 311 and a gripping end 313, and a rotating portion 312 is provided between the rotating end 311 and the gripping end 313; the rotating end 311 is rotatably provided on the outer wall of the stripping drum 20 around a second axis, and the second axis is parallel to the axis of the stripping drum 20; the two ends of the U-shaped rod 32 are rotatably provided on the rotating portion 312 around a third axis, and the third axis is parallel to the second axis; the U-shaped rod 32 can be hooked and fixed on the hook 15. The rotating handle 31 of the movable snap ring 30 is provided with a gripping end 313. The operator can conveniently grip the gripping end 313 when hooking or unhooking the snap ring and the hook 15, and the rotating end 311 of the rotating handle 31 is rotatably set around the second axis on the outer wall of the strip output cylinder 20. This rotating setting allows the operator to drive the entire rotating handle 31 to rotate around the second axis only by gently rotating the gripping end 313, thereby adjusting the position of the U-shaped rod 32, so as to facilitate the U-shaped rod 32 to be accurately hooked onto the hook 15 or unhooked from the hook 15, and the operation process is simple and labor-saving.

[0059] Among the optional solutions of this embodiment, it is more preferred that Figure 1 、 Figure 2 and Figure 4 As shown, two movable snap rings 30 are symmetrically provided on the outer wall of the delivery drum 20, and two hooks 15 are fixedly provided on the supporting block 14, with one movable snap ring 30 corresponding to one hook 15. The two movable snap rings 30 are symmetrically provided on the outer wall of the delivery drum 20, and two hooks 15 are fixedly provided on the supporting block 14, so that the connection between the delivery drum 20 and the supporting block 14 forms a fixed structure with two points of symmetry.

[0060] Among them, the relevant setting description about the discharge port end of the discharge drum 20 is as follows:

[0061] Among the optional solutions of this embodiment, it is more preferred that Figure 1 and Figure 2 As shown, the discharge port is connected to an extension tube 25, and a heating jacket 60 is fixedly installed on the outside of the extension tube 25. The heating jacket 60 can heat the extension tube 25. During the tail material extrusion process, especially for some tail materials with high viscosity or easy to solidify at room temperature, the heat provided by the heating jacket 60 can keep the material within a suitable temperature range while passing through the extension tube 25. This can effectively reduce the viscosity of the material and enhance its fluidity, avoiding the problem of material blockage or poor flow in the extension tube 25, and ensuring that the tail material can be continuously and smoothly extruded from the discharge port through the extension tube 25.

[0062] Among the optional solutions of this embodiment, it is more preferred that Figure 1 and Figure 2As shown, a tapered connecting tube 23 is provided between the discharge port and the extension tube 25; a locking ring 24 is sleeved on the tapered connecting tube 23; one end of the tapered connecting tube 23 abuts against the end of the strip output cylinder 20, and the other end of the tapered connecting tube 23 abuts against one end of the locking ring 24; the locking ring 24 has an internal thread, and the strip output cylinder 20 has an end with an external thread at the discharge port, and the internal thread is threadedly connected to the external thread. One end of the tapered connecting tube 23 abuts against the end of the stripping cylinder 20, and the other end abuts against one end of the locking ring 24. In addition, the tightening effect of the threaded connection can effectively prevent the connection parts from loosening or disjointing during the extrusion of the tail material. When it is necessary to perform maintenance, inspection and other operations on the extension tube 25, the tapered connecting tube 23 or the discharge port of the stripping cylinder 20, the disassembly process is also convenient. Just rotate and unscrew the locking ring 24 in the opposite direction of the thread, and the tapered connecting tube 23 can be easily removed from the stripping cylinder 20, so that each component can be easily inspected, cleaned or repaired separately, reducing the difficulty and workload of equipment maintenance.

[0063] Specifically, the tapered connecting pipe 23 and the locking ring 24 are the same as those of the existing equipment and will not be described in detail here.

[0064] Among them, the relevant setting instructions about the pusher 50 are:

[0065] Among the optional solutions of this embodiment, the pusher 50 is preferably a servo cylinder. This servo cylinder enables high-precision control of the position of the push block 40. During the tailing extrusion process, by precisely setting the stroke of the servo cylinder's telescopic end 51, the sliding distance of the push block 40 within the delivery can 20 can be accurately controlled, thereby precisely controlling the amount of tailing extruded.

[0066] Specifically, the use of a servo electric cylinder can accurately adjust the pushing stroke and speed, reduce the instability of the discharge speed and ensure the uniformity of the thickness of the medicine strips.

[0067] Among them, about other related settings:

[0068] Specifically, during the production process, the discharging drum 20 is rotated so that the feed port faces upward, and after the material is put in, the discharging drum 20 is rotated again. When the discharging drum 20 is fixedly connected to the supporting block 14, the discharging drum 20 is locked. The feeding and discharging of the discharging drum 20 are convenient. There is no separate feed port welded on the discharging drum 20 like on the traditional discharging drum 20. The operation and maintenance are simple, and the cleaning and disassembly are convenient. It is well sealed and there is no leakage problem.

[0069] Specifically, the large honey pill tail material extruder 100 of this embodiment adds the pill tail material left by the pill making machine into the strip output cylinder 20, and squeezes it into uniform medicine strips with a certain diameter under the driving action of the servo electric cylinder, and then uses the pill making machine to make various standard pill shapes.

[0070] Specific workflow description:

[0071] S1, the feeding port of the delivery cylinder 20 is rotated upward and perpendicular to the ground to add materials;

[0072] S2, rotating the delivery can 20 again, so that the delivery can 20 is fixedly connected to the carrier block 14;

[0073] S3, turn on the power and start running the machine;

[0074] S4, the servo electric cylinder is operated to push the push block 40 to move and push the material in the delivery can 20 away;

[0075] S5, then operate the servo electric cylinder to bring the push block 40 back to the initial position;

[0076] S6, release the fixing of the delivery can 20 and the carrier block 14, and then repeat the steps S1 to S5;

[0077] S7, after the extrusion task is completed, the strip can 20 and the push block 40 are cleaned.

[0078] The present invention uses specific examples to illustrate the principles and implementation methods of the present invention. The above examples are only intended to help understand the method and core concept of the present invention. At the same time, those skilled in the art will find that the specific implementation methods and application scopes may vary based on the concept of the present invention. In summary, the contents of this specification should not be construed as limiting the present invention.

Claims

1. A large honey pill tail material extruder, characterized by: Including a workbench and an extrusion mechanism; The workbench has a bearing table; The extrusion mechanism includes a stripping cylinder, a push block, an intermediate connecting component and a pusher which are arranged in sequence; The stripping drum is fixedly provided with a rotating shaft, and the rotating shaft is arranged on the supporting table to rotate around a first axis; the stripping drum has a material holding cavity and a feed port and a discharge port connected to the material holding cavity; the feed port is located at one end of the stripping drum close to the pushing block; the stripping drum can be rotated around the first axis to assume a vertical posture, and in the vertical direction, the feed port is located above the discharge port; A bearing block is fixedly provided on the bearing table, and one end of the stripping drum having the feed port can be fixed on the bearing block; When the axis of the delivery cylinder is parallel to the axis of the push block, the push block can slide along the axis of the delivery cylinder in the material holding cavity; The intermediate connecting assembly includes a fixed flange ring and a joint block; a receiving groove is formed at one end of the push block close to the pusher, and the fixed flange ring is detachably fixed at the opening of the receiving groove; the joint block is located in the receiving groove; in the axial direction of the joint block, one end of the joint block abuts against the inner wall of the end of the receiving groove away from the pusher, and the other end of the joint block is press-fitted with a side of the fixed flange ring close to the receiving groove; an adjustable gap is provided between the circumferential outer wall of the joint block and the circumferential inner wall of the receiving groove; The pusher is fixedly arranged on the bearing table, and the pusher has a telescopic end, and the telescopic end is fixedly connected to an end of the joint block away from the accommodating groove.

2. The large honey pill tail material extruder according to claim 1, characterized in that: The discharge port is connected to an extension tube, and a heating jacket is fixedly provided on the outside of the extension tube.

3. The large honey pill tail material extruder according to claim 1, characterized in that: The bearing block is provided with a shelf groove, and the shape of the shelf groove is consistent with the shape of the corresponding position of the stripping cylinder; At least one movable snap ring is provided on the outer side wall of the sliver delivery cylinder; The bearing block is fixedly provided with a hook at a position corresponding to the movable snap ring; The movable snap ring can be hooked and fixed on the hook.

4. The large honey pill tail material extruder according to claim 3, characterized in that: The movable clasp includes a rotating handle and a U-shaped rod; The two ends of the rotating handle are respectively a rotating end and a gripping end, and a rotating portion is provided between the rotating end and the gripping end; The rotating end is rotatably arranged on the outer wall of the stripping drum around a second axis, and the second axis is parallel to the axis of the stripping drum; The two ends of the U-shaped rod are rotatably arranged on the rotating part around a third axis, and the third axis is parallel to the second axis; The U-shaped rod can be hooked and fixed on the hook.

5. The large honey pill tail material extruder according to claim 3, characterized in that: Two movable snap rings are symmetrically provided on the outer side wall of the stripping cylinder, and two hooks are fixedly provided on the bearing block, with one movable snap ring corresponding to one hook.

6. The large honey pill tail material extruder according to claim 1, characterized in that: The rotating shaft includes a first rotating shaft and a second rotating shaft, and the first rotating shaft and the second rotating shaft are symmetrically fixedly arranged on the stripping cylinder; The first rotating shaft and the second rotating shaft are connected to the bearing platform through bearings respectively.

7. The large honey pill tail material extruder according to claim 1, characterized in that: The pusher is a servo electric cylinder.

8. The large honey pill tail material extruder according to claim 2, characterized in that: A tapered connecting pipe is provided between the discharge port and the extension pipe; A locking ring is provided on the conical connecting tube; one end of the conical connecting tube abuts against the end of the strip output cylinder, and the other end of the conical connecting tube abuts against one end of the locking ring; the locking ring has an internal thread, and the strip output cylinder has an end with an external thread at the discharge port, and the internal thread is threadedly connected to the external thread.

9. The large honey pill tail material extruder according to claim 1, characterized in that: An avoidance groove is provided on the bearing table, and when the stripping drum rotates around the first axis to a vertical state, part of the stripping drum is located in the avoidance groove.

10. The large honey pill tail material extruder according to claim 1, characterized in that: A plurality of anti-slip pads are also fixedly arranged on the bottom of the workbench.