Separating mechanism of drying agent grain sorting machine

By designing the desiccant granulator's channeling mechanism, the problems of low unloading efficiency and poor accuracy in existing desiccant filling equipment have been solved, enabling quantitative granulation and efficient filling of columnar desiccants, and adapting to the needs of different bottle diameters.

CN223508531UActive Publication Date: 2025-11-04GUANGZHOU PHARMA INTELLIGENT EQUIP CO LTD
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Patent Information

Application Number
CN202423186239.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2025-11-04
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

Existing desiccant filling equipment has low unloading efficiency, mismatch between particle sorting efficiency and filling efficiency, and cannot accurately control the unloading quantity, resulting in poor filling accuracy.

Method used

The desiccant granulator employs a sorting mechanism, including a sorting turntable, a feeding chute, a sorting rotation mechanism, and a dual-channel unloading mechanism. It achieves quantitative filling through rotation and staggered unloading, and uses the sorting rotation mechanism and the dual-channel unloading mechanism to accurately sort and circulate the columnar desiccant.

Benefits of technology

It achieves quantitative granulation and efficient filling of desiccant, improving filling accuracy and efficiency, and adapting to the filling needs of different bottle diameters.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a drying agent grain arranging machine channel separating mechanism, which relates to the technical field of drying agent filling, and comprises a material arranging turntable and a blanking slideway arranged along a discharge port of the material arranging turntable, a material separating rotating mechanism is arranged at a discharge port at the bottom of the blanking slideway, and a double-channel discharge mechanism is arranged at a material separating outlet of the material separating rotating mechanism. According to the design, based on the combination of the material arranging rotary table and the discharging slide way, the columnar drying agents are sequentially arranged and discharged in an ordered discharging mode, then the material distributing tool is pushed to be switched left and right based on the material distributing rotary mechanism, the two sets of material distributing channels are sequentially communicated and opposite to the discharging slide way, and the columnar drying agents are circularly discharged in a quantitative mode; according to the invention, the quantitative loading of the columnar drying agent is realized, the quantitative loading of the columnar drying agent is sequentially and circularly discharged into the double-channel discharging mechanism, and the columnar drying agent is sequentially and orderly discharged and filled in a double-station discharging manner by utilizing two groups of material distribution channels in the double-channel discharging mechanism, so that the quantitative grain arrangement, discharging and filling of the columnar drying agent are completed.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of desiccant filling, especially to desiccant granulator channeling mechanism. BACKGROUND

[0002] The main function of desiccant is to absorb moisture to prevent damp and mildew, which is widely used in food, medicine and electronic product packaging fields. After production, desiccant is usually filled and packaged by filling method. Therefore, desiccant is often filled and granulated by filling equipment. For example, a hollow batten type desiccant filling machine (publication number CN218506182U) disclosed by China patent network shows that the desiccant filling machine of this type is provided with a feeding machine and a conveying belt, so that the desiccant entering the feeding machine through the filling hopper is transmitted upward until it slides through the lower hopper into the filling hopper, and the valve port nozzle for dropping desiccant is matched to realize automatic filling of desiccant.

[0003] However, the desiccant filling equipment adopted by the above-mentioned patent and the existing market still has some deficiencies. The existing single filling nozzle is used as a filling track to unload and fill the desiccant. The unloading efficiency of the desiccant is low, the granulating efficiency and filling efficiency are not matched, and the nozzle unloading method cannot accurately control the unloading amount of the desiccant, so the filling accuracy is poor. Therefore, the desiccant granulator channeling mechanism is provided by the technical personnel in the field to solve the problems in the above background technology. UTILITY MODEL CONTENTS

[0004] In view of the deficiencies of the prior art, the desiccant granulator channeling mechanism is provided to solve the problem of poor filling efficiency of the existing desiccant filling equipment in the above background technology.

[0005] To achieve the above purpose, the utility model is realized by the following technical scheme: the desiccant granulator channeling mechanism comprises a material sorting turntable and a lower sliding slope arranged along the material sorting turntable discharge port.

[0006] The bottom discharge port of the lower sliding slope is provided with a material distribution rotating mechanism, and the material distribution outlet of the material distribution rotating mechanism is provided with a double-channel unloading mechanism.

[0007] The double-channel unloading mechanism comprises two groups of material distribution channels installed in the opposite form at the outlet of the material distribution rotating mechanism, and the side frame bottom of each group of material distribution channels is provided with a side support frame. The support upper end of the side support frame is provided with a first discharging cylinder opposite to the material distribution channel sliding slope, and the support lower end of the side support frame is provided with a second discharging cylinder opposite to the material distribution channel sliding slope.

[0008] As a further technical scheme of the utility model: the center shaft of the fixed disc is provided with the guide sliding groove in the form of being opposite to the center shaft as the pivot, and the guide sliding groove is matched with the tight pressing knob.

[0009] As a further technical scheme of the utility model: the center shaft of the fixed disc is provided with the guide sliding groove in the form of being opposite to the center shaft as the pivot, and the guide sliding groove is matched with the tight pressing knob.

[0010] As a further technical scheme of the utility model: the center shaft of the fixed disc is provided with the guide sliding groove in the form of being opposite to the center shaft as the pivot, and the guide sliding groove is matched with the tight pressing knob.

[0011] As a further technical scheme of the utility model: the center shaft of the fixed disc is provided with the guide sliding groove in the form of being opposite to the center shaft as the pivot, and the guide sliding groove is matched with the tight pressing knob.

[0012] The bottom frame of the guide frame is provided with the first discharge port opposite to the first distribution channel and the second discharge port opposite to the second distribution channel, and the first discharge port and the second discharge port are matched with the two groups of distribution channels.

[0013] As a further technical scheme of the utility model: the center shaft of the fixed disc is provided with the guide sliding groove in the form of being opposite to the center shaft as the pivot, and the guide sliding groove is matched with the tight pressing knob.

[0014] As a further technical scheme of the utility model: the center shaft of the fixed disc is provided with the guide sliding groove in the form of being opposite to the center shaft as the pivot, and the guide sliding groove is matched with the tight pressing knob.

[0015] The desiccant prilling machine distribution mechanism has the following beneficial effects compared with the prior art:

[0016] 1. The desiccant prilling machine channeling mechanism of the present design is based on the combination of the material sorting turntable and the feeding chute, which sequentially sorts and feeds the cylindrical desiccant in an orderly manner, and then based on the left and right switching of the material distribution rotating mechanism pushing the material distribution tool, the two material distribution channels are sequentially connected with the feeding chute, which performs quantitative cycle unloading of the cylindrical desiccant, and sequentially synchronously cycles the quantitatively loaded cylindrical desiccant to the double-channel unloading mechanism, which uses the two material distribution channels in the double-channel unloading mechanism to sequentially and orderly unload and fill the cylindrical desiccant in a double-station unloading manner, completing the quantitative sorting, unloading and filling of the cylindrical desiccant, which is more accurate in material distribution and filling, and more efficient in filling efficiency.

[0017] 2. The desiccant prilling machine channeling mechanism of the present design is based on the rotating characteristics of the material distribution rotating mechanism, which can push the combination of the material distribution rotating mechanism and the double-channel unloading mechanism to rotate and align the feeding chute as the center, adjust and align the unloading channel direction of the material distribution channel, and adapt to different package bottle diameters for better adaptation to the on-site filling production environment. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 is a structural schematic view of the desiccant prilling machine channeling mechanism;

[0019] Figure 2 is a plan view of the desiccant prilling machine channeling mechanism;

[0020] Figure 3 is a structural schematic view of the material distribution rotating mechanism in the desiccant prilling machine channeling mechanism;

[0021] Figure 4 is an exploded view of the material distribution rotating mechanism in the desiccant prilling machine channeling mechanism;

[0022] Figure 5 is a structural schematic view of the double-channel unloading mechanism in the desiccant prilling machine channeling mechanism.

[0023] In the figure: 1, material sorting turntable; 2, feeding chute; 21, first chute; 22, second chute; 3, material distribution rotating mechanism; 31, center shaft; 32, feeding inlet; 33, fixed disc; 34, guide chute; 35, compression knob; 36, rotating disc; 37, material guide frame; 38, material distribution cylinder; 39, guide rod; 310, material shifting slider; 311, material distribution tool; 312, first material distribution channel; 313, second material distribution channel; 314, first discharge port; 315, second discharge port; 4, material distribution channel; 5, side support frame; 6, first discharge cylinder; 7, first stop rod; 8, second discharge cylinder; 9, second stop rod; 10, cylindrical desiccant. DETAILED DESCRIPTION

[0024] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be described clearly and completely. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments of the present application. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.

[0025] Please refer to Figures 1-5 The present application provides a desiccant prilling machine channeling mechanism technical scheme. The desiccant prilling machine channeling mechanism comprises a material sorting turntable 1 and a discharging chute 2 arranged along a discharging port of the material sorting turntable 1. The discharging chute 2 comprises a first chute 21 and a second chute 22 which are integrally connected. The first chute 21 is an arc-shaped smooth structure, and the second chute 22 is a vertical structure. By arranging the discharging chute 2 as a combination of the first chute 21 and the second chute 22, the cylindrical desiccant 10 pushed out from the material sorting turntable 1 is sequentially and orderly discharged by the arc-shaped smooth feature of the first chute 21, and the cylindrical desiccant 10 is relatively vertically stacked by the vertical feature of the second chute 22, thereby ensuring the stability of the discharging.

[0026] A material distribution rotating mechanism 3 is installed at the bottom discharging port of the discharging chute 2. The material distribution rotating mechanism 3 comprises a central shaft 31 connected with the discharging chute 2. A discharging inlet 32 opposite to the discharging chute 2 is formed through the central shaft 31. A fixed disc 33 is arranged outside the shaft seat of the central shaft 31. A rotating disc 36 is connected to the bottom disc of the fixed disc 33. A tight pressing knob 35 is oppositely screwed to the top of the rotating disc 36. A guide sliding groove 34 is oppositely formed on the disc surface of the fixed disc 33 with the central shaft 31 as the axis. The guide sliding groove 34 is guided and matched with the tight pressing knob 35. By using the central shaft 31 as the rotating axis, the rotating disc 36 is rotated around the central shaft 31. The material distribution rotating mechanism 3, the material distribution channel 4 and their accessory structures are rotated and positioned. Then, the discharging port of the material distribution channel 4 is positioned to adapt to the filling site environment. After the adjustment and positioning, the tight pressing knob 35 is only needed to be screwed and tightly pressed on the fixed disc 33.

[0027] A guide frame 37 is installed below the rotating disk 36. Guide rods 39 are symmetrically arranged inside the frame of the guide frame 37. A material-dispensing slider 310 is slidably connected to the outer side of the arm of the guide rod 39. A material-dispensing fixture 311 is set on one side of the platform of the material-dispensing slider 310, which is horizontally opposite to the material inlet 32. A material-dispensing cylinder 38 is installed on one side of the frame of the guide frame 37, which is horizontally opposite to the guide rod 39. The material-dispensing cylinder 38 supports the material-dispensing slider 310. By controlling the extension and retraction of the material-dispensing cylinder 38, the material-dispensing slider 310 is pushed to slide back and forth along the guide rod 39, which in turn drives the material-dispensing fixture 311 to slide back and forth, overlapping and opposite the material inlet 32 ​​in sequence. The columnar desiccant 10 is discharged in a quantitative manner in a dual-channel staggered discharge manner.

[0028] The dispensing fixture 311 has a first dispensing channel 312 on one side, which is horizontally opposite to the discharge inlet 32, and a second dispensing channel 313 on the other side, which is horizontally opposite to the discharge inlet 32. The guide frame 37 has a first discharge port 314 on one side, which is horizontally opposite to the first dispensing channel 312, and a second discharge port 315 on the other side, which is horizontally opposite to the second dispensing channel 313. The first discharge port 314 and the second discharge port 315 are respectively connected to the two dispensing channels 4. When quantitatively unloading the columnar desiccant 10, when the first dispensing channel 312 on the dispensing fixture 311 coincides with the discharge inlet 32, quantitatively unloading and loading of the columnar desiccant 10 that has been orderly sliding down from the discharge chute 2 and the discharge inlet 32 ​​is performed. Meanwhile, the second dispensing channel 315, which has already been loaded with columnar desiccant 10... Under the horizontal displacement braking of the distributing fixture 311, the distributing channel 313 is moved to coincide with the second discharge port 315, and the columnar desiccant 10 inside is simultaneously discharged into one of the distributing channels 4. After the first distributing channel 312 is filled with columnar desiccant 10 and the second distributing channel 313 discharges columnar desiccant 10, the distributing fixture 311 is reversed and braked, pushing the second distributing channel 313 to coincide with the discharge inlet 32, loading and unloading columnar desiccant 10, and pushing the first distributing channel 312 to coincide with the first discharge port 314, discharging the columnar desiccant 10 inside into another distributing channel 4. Then, following this left-right reciprocating motion, the columnar desiccant 10 is discharged and filled in a quantitative cyclic discharge state in sequence, completing the quantitative granulation and dual-station staggered feeding and filling of the columnar desiccant 10.

[0029] The dispensing outlet of the dispensing rotary mechanism 3 is equipped with a dual-channel unloading mechanism. The dual-channel unloading mechanism includes two dispensing channels 4 installed in opposite directions at the outlet of the dispensing rotary mechanism 3. Each dispensing channel 4 has a side support 5 installed at the bottom of its side frame. The upper end of the support of the side support 5 is provided with a first discharge cylinder 6 that is opposite to the slide of the dispensing channel 4, and the lower end of the support of the side support 5 is provided with a second discharge cylinder 8 that is opposite to the slide of the dispensing channel 4. The telescopic end of the first discharge cylinder 6 is provided with a first stop rod 7 that extends into the slide of the dispensing channel 4, and the telescopic end of the second discharge cylinder 8 is provided with a second stop rod 9 that extends into the slide of the dispensing channel 4. By controlling the telescopic braking of the first stop rod 7 driven by the first discharge cylinder 6 and the telescopic braking of the second stop rod 9 driven by the second discharge cylinder 8, the columnar desiccant 10 that slides into the dispensing channel 4 can be quantitatively dispensed to ensure the accuracy of each unloading and filling of the columnar desiccant 10.

[0030] The working principle of this utility model is as follows: During the orderly granulation and filling process of columnar desiccant 10, based on the rotating granules of the granulation turntable 1, the columnar desiccant 10 is sequentially and orderly granulated and fed along the feeding slide 2 in a rotating granulation manner. At the same time as feeding, based on the extension and retraction braking of the feeding cylinder 38 in the feeding rotation mechanism 3, the feeding tool 311 is pushed to move along the feeding port of the feeding slide 2, so that its first feeding channel 312 and second feeding channel 313 are aligned with the feeding slide 2 in sequence. The columnar desiccant 10 in the feeding slide 2 is quantitatively granulated and loaded in a cyclical and staggered state. When one feeding channel is aligned with the feeding slide 2, the other feeding channel is aligned with the feeding channel 4 in a synchronous displacement, and the columnar desiccant 10 inside is unloaded into the feeding channel 4. Then, in this state, the columnar desiccant 10 is quantitatively cyclically loaded and synchronously and staggeredly unloaded into the two feeding channels 4 in sequence.

[0031] Furthermore, when the columnar desiccant 10 is sequentially and alternately discharged into the two-component distribution channels 4, the first discharge cylinder 6 drives the extension and retraction braking of the first stop rod 7, and the second discharge cylinder 8 drives the extension and retraction braking of the second stop rod 9, to quantitatively distribute the columnar desiccant 10 that has slid into the distribution channels 4, so that the quantitative discharge and filling of the columnar desiccant 10 is more accurate. On the one hand, it has a precise particle sorting and discharge capability, which can ensure the filling accuracy of the columnar desiccant 10. On the other hand, it can form an alternating cycle dual-station discharge method, so that the columnar desiccant 10 is sequentially and orderly discharged and filled, resulting in higher filling efficiency.

[0032] The above description is merely a preferred embodiment of this utility model. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principles of this utility model, and these improvements and modifications should also be considered within the scope of protection of this utility model. Structures, devices, and operating methods not specifically described or explained in this utility model are implemented according to conventional methods in the art, unless otherwise specified or limited.

Claims

1. A desiccant granulator channeling mechanism, characterized in that, It includes a material handling turntable (1) and a material discharge chute (2) provided along the discharge port of the material handling turntable (1); The bottom discharge port of the discharge chute (2) is equipped with a material distribution rotation mechanism (3), and the material distribution outlet of the material distribution rotation mechanism (3) is equipped with a dual-channel discharge mechanism. The dual-channel unloading mechanism includes two groups of material dispensing channels (4) installed in opposite directions at the outlet of the material dispensing rotating mechanism (3). Each group of material dispensing channels (4) has a side support frame (5) installed at the bottom of its side frame. The upper end of the support frame of the side support frame (5) is provided with a first discharge cylinder (6) opposite to the slide of the material dispensing channel (4), and the lower end of the support frame of the side support frame (5) is provided with a second discharge cylinder (8) opposite to the slide of the material dispensing channel (4).

2. The desiccant granulator channeling mechanism according to claim 1, characterized in that, The material distribution and rotation mechanism (3) includes a central shaft (31) connected to the material feeding slide (2), and a material feeding inlet (32) is provided in the middle of the shaft seat of the central shaft (31) and is opposite to the material feeding slide (2). A fixed plate (33) is provided on the outside of the shaft seat of the central shaft (31), and a rotating plate (36) is connected to the base of the fixed plate (33). A pressing knob (35) is screwed on the top of the rotating plate (36) in a counter-facing manner and is opposite to the fixed plate (33). A guide frame (37) is installed below the rotating plate (36). A guide rod (39) is symmetrically arranged inside the frame of the guide frame (37), and a material-distributing slider (310) is slidably connected to the outside of the arm of the guide rod (39). A material-distributing fixture (311) is provided on one side of the platform of the material-distributing slider (310) and is horizontally opposite to the material feeding inlet (32).

3. The desiccant granulator channeling mechanism according to claim 2, characterized in that, The fixed disk (33) has guide grooves (34) facing each other with the central axis (31) as the axis, and the guide grooves (34) are adapted to the tightness knob (35).

4. The desiccant granulator channeling mechanism according to claim 2, characterized in that, The guide frame (37) has a material distribution cylinder (38) installed on one side of the frame, which is horizontally opposite to the guide rod (39), and the material distribution cylinder (38) supports the material feeding slider (310).

5. The desiccant granulator channeling mechanism according to claim 2, characterized in that, The material distribution tool (311) has a first material distribution channel (312) on one side that is horizontally opposite to the material inlet (32), and a second material distribution channel (313) on the other side that is horizontally opposite to the material inlet (32). The bottom frame of the guide frame (37) has a first discharge port (314) that is horizontally opposite to the first material distribution channel (312) on one side, and a second discharge port (315) that is horizontally opposite to the second material distribution channel (313) on the other side. The first discharge port (314) and the second discharge port (315) are respectively connected to the two material distribution channels (4).

6. The desiccant granulator channeling mechanism according to claim 1, characterized in that, The telescopic end of the first discharge cylinder (6) is provided with a first stop bar (7) extending into the slide of the material distribution channel (4), and the telescopic end of the second discharge cylinder (8) is provided with a second stop bar (9) extending into the slide of the material distribution channel (4).

7. The desiccant granulator channeling mechanism according to claim 1, characterized in that, The feeding chute (2) includes a first chute (21) and a second chute (22) that are integrally connected. The first chute (21) is an arc-shaped smooth structure, and the second chute (22) is a vertical structure.

Citation Information

Patent Citations

  • Hollow division bar type drying agent filling machine

    CN218506182U