Tool for stripping Chinese honey locust kernels
By designing feeding, separating, and discharging mechanisms, and combining wind power and magnetic rings, the automated separation and collection of soapberry kernels and seed coats has been achieved, solving the problem of low efficiency in manual separation and collection in existing technologies, and improving the ease of operation and work efficiency.
Patent Information
- Application Number
- CN202423134280.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-18
AI Technical Summary
The existing process for separating and collecting soap pod kernels and seed coats involves a heavy manual workload, and the soap pods tend to scatter when too many are injected, making the process cumbersome.
A tool comprising a feeding mechanism, a separation mechanism, and a discharging mechanism was designed. A collection assembly combining a fan and a magnetic ring was constructed to separate soapberry kernels and seed coats using wind and gravity, and to achieve stable collection and reuse of soapberry pods through the magnetic ring.
It enables automated separation and collection of soap pod kernels and seed coats, reducing manual labor, improving work efficiency, and simplifying the feeding and collection process of soap pods.
Smart Images

Figure CN223568603U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the soap processing technical field, concretely relates to a kind of tools of stripping soap kernel. BACKGROUND
[0002] Soap, alias soap, flat soap, deciduous trees of Gleditsia genus of Leguminosae. Soap has the efficacy of expelling phlegm, relieving cough, opening orifice, killing insects and resolving mass.
[0003] Chinese patent application No.201910748158.X discloses a kind of soap seed coat stripping machine, including installation platform, the upper end of the installation platform is horizontally provided with main rotary shaft, the main rotary shaft is sequentially provided with feeding mechanism, stripping mechanism and discharge mechanism along the axis, the discharge mechanism, stripping mechanism and feeding mechanism are communicated and arranged;The stripping mechanism includes rotary brush installed on the main rotary shaft, the rotary brush is equipped with rotary cylinder, a plurality of slag holes are arranged on the rotary cylinder, the rotary cylinder and the rotary brush form soap seed coat stripping operation area, the rotary cylinder is connected with reverse drive mechanism, the reverse drive mechanism drives the rotary cylinder to make its rotary direction opposite to the rotary direction of rotary brush, the present application is realized to soap rice by setting feeding mechanism, stripping mechanism and discharge mechanism, feeding, stripping and output, the device is driven by motor, realizes the mechanized stripping of soap seed coat and soap rice, compared with existing manual stripping, greatly improves the stripping efficiency of soap seed coat and soap rice.
[0004] The soap kernel and soap seed coat after stripping in the above-mentioned patent are discharged through the discharge bin, and the soap kernel and soap seed coat need to be separated manually after discharging, which increases the labor burden of workers and affects work efficiency;In addition, when the soap is injected into the feeding bin through the feeding port, the excessive injected soap falls into the surrounding environment, and the scattered soap needs to be manually taken, which is complicated to operate. UTILITY MODEL CONTENTS
[0005] To solve the problems in the above background art, the utility model provides a kind of tool of stripping soap kernel, with the characteristics of separation collection, receiving material.
[0006] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a kind of tool of stripping soap kernel, including installation platform, the upper portion of the installation platform is provided with feeding mechanism, the upper portion of feeding mechanism is fixedly connected with feeding port, one end of feeding mechanism is provided with separation mechanism, the end of separation mechanism away from feeding mechanism is provided with discharge mechanism, the periphery of feeding port is provided with external component, the sidewall of installation platform and located the lower portion of discharge mechanism one end is provided with collection component.
[0007] Preferably, the collecting assembly comprises a bottom supporting plate, a collecting frame, collecting boxes and a separating piece, the collecting frame is fixedly connected to the side wall of the mounting table and located at the lower end of the discharging mechanism, the separating piece is arranged on the side wall of the collecting frame, the bottom supporting plate is arranged below the collecting frame, and the collecting boxes are arranged at the upper two ends of the bottom supporting plate.
[0008] Preferably, the separating piece comprises a fixing ring, a fan, a mounting hole and a filter screen, the mounting hole is formed in the side wall of the collecting frame, the fan is fixedly connected to the inside of the mounting hole, the fixing ring is fixedly connected to the periphery of the fan on the side wall of the collecting frame, and the filter screen is fixedly connected to the inner side wall of the fixing ring.
[0009] Preferably, the collecting assembly further comprises a fixing screw rod and a fixing nut, the fixing screw rod is fixedly connected to the lower two ends of the collecting frame, the through hole is formed in the position of the bottom supporting plate corresponding to the fixing screw rod, and the fixing nut is threadedly connected to the outer side wall of the fixing screw rod, away from the collecting frame, of the bottom supporting plate.
[0010] Preferably, the external connecting assembly comprises an external connecting box, a receiving piece, a sealing plug and a discharging opening, the external connecting box is fixedly connected to the outer side wall of the feeding opening, the discharging opening is arranged on the external connecting box, the sealing plug is inserted into the inside of the discharging opening, and the receiving piece is arranged on the side wall of the feeding opening and located below the external connecting box.
[0011] Preferably, the receiving piece comprises a placing plate, a placing groove, a receiving cylinder and a magnetic ring, the placing plate is fixedly connected to the side wall of the feeding opening and located below the external connecting box, the placing groove is formed in the placing plate, the receiving cylinder is arranged in the inside of the placing groove, and the magnetic ring is fixedly connected to the side, close to each other, of the receiving cylinder and the placing groove.
[0012] Compared with the prior art, the utility model has the advantages that:
[0013] 1、The utility model discloses a collecting assembly is set up, and after the peeled and separated soapnut kernel and soapnut seed coat fall to the inside of the collecting frame, under the action of the fan, the air in the external environment is filtered through the filter screen and is blown to the soapnut kernel and soapnut seed coat in the inside of the collecting frame, under the action of the wind, the soapnut seed coat of relatively light weight is blown and falls to the inside of the collecting box of the bottom supporting plate away from the discharging mechanism and is collected, and the soapnut kernel of relatively heavy weight falls to the inside of another collecting box and is collected, then the fixing nut is rotated and taken off from the fixing screw rod, the bottom supporting plate is moved downward, the bottom supporting plate moves and drives the collecting box to move away from the collecting frame, the collecting box is taken, and the soapnut kernel and soapnut seed coat collected in the inside of the collecting box are reused, which is convenient for the operation of the operator.
[0014] 2, The utility model discloses set up external component, through the feed inlet, when the soap -nut is injected to the feed mechanism inside, when the injected soap -nut is too much and spreads out the feed inlet, under the gravity, falls to the inside collection operation of external box, when the inside external box is accepted too much soap -nut, again from the sealing plug of discharge port inside, again push the soap -nut of external box inside to the discharge operation of discharge port inside, and the soap -nut of discharge falls into the collection operation of the acceptance cylinder under the gravity, again to the acceptance cylinder of the periphery of placing board movement, make the magnetic ring on the lateral wall of acceptance cylinder and the magnetic ring on the lateral wall of placing groove separate, when the acceptance cylinder is far from placing board, again the soap -nut in the acceptance cylinder is entered into the feed mechanism inside through the feed inlet and carries out the feed stripping separation operation, and convenient for the collection processing of operator of falling material. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is the structural diagram of the utility model;
[0016] Figure 2 It is the sectional view of the connection state of the collection frame and the bottom supporting plate of the utility model;
[0017] Figure 3 It is the utility model Figure 2 The enlarged view of A in the utility model;
[0018] Figure 4 It is the sectional view of the connection state of the collection frame and the separation piece of the utility model;
[0019] Figure 5 It is the sectional view of the feed inlet of the utility model;
[0020] Figure 6 It is the utility model Figure 5 The enlarged view of B in the utility model;
[0021] Figure 7 It is the sectional view of the acceptance piece of the utility model.
[0022] In the drawing: 1, installation platform;2, feed mechanism;3, feed inlet;4, separation mechanism;5, discharge mechanism;6, collection assembly;61, bottom supporting plate;62, collection frame;63, collection box;64, fixed screw;65, fixed nut;66, separation piece;661, fixed ring;662, fan;663, mounting port;664, filter screen;7, external component;71, external box;72, acceptance piece;721, placing plate;722, placing groove;723, acceptance cylinder;724, magnetic ring;73, sealing plug;74, discharge port. DETAILED DESCRIPTION
[0023] The technical solutions in the embodiments of the present application will be clearly and completely described with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative efforts fall within the scope of the present application.
[0024] Embodiment 1
[0025] Please refer to Figures 1-7 The utility model provides the following technical scheme: a kind of tool of stripping soap-nut kernel, including installation platform 1, the top of installation platform 1 is provided with feeding mechanism 2, the top of feeding mechanism 2 is fixedly connected with feeding port 3, one end of feeding mechanism 2 is provided with separation mechanism 4, the end of separation mechanism 4 away from feeding mechanism 2 is provided with discharging mechanism 5, the periphery of feeding port 3 is provided with external component 7, the side wall of installation platform 1 and below one end of discharging mechanism 5 is provided with collection component 6.
[0026] Specifically, collection component 6 includes bottom supporting plate 61, collection frame 62, collection box 63 and separation piece 66, the side wall of installation platform 1 and below one end of discharging mechanism 5 is fixedly connected with collection frame 62, the side wall of collection frame 62 is provided with separation piece 66, the below of collection frame 62 is provided with bottom supporting plate 61, the top of bottom supporting plate 61 is provided with collection box 63,
[0027] By adopting the above technical scheme, after the separated and stripped soap-nut kernel and soap-nut seed coat are discharged by discharging mechanism 5, under the action of gravity, fall into the inside of collection frame 62, under the action of separation piece 66, the soap-nut kernel with heavy weight falls into the inside of collection box 63 on bottom supporting plate 61 below discharging mechanism 5 to be collected, and the soap-nut seed coat with light weight falls into the inside of another collection box 63 on bottom supporting plate 61 to be collected, so as to facilitate the separation and collection of the stripped soap-nut kernel and soap-nut seed coat.
[0028] Specifically, separation piece 66 includes fixed ring 661, fan 662, mounting port 663 and filter screen 664, the side wall of collection frame 62 is provided with mounting port 663, the inside of mounting port 663 is fixedly connected with fan 662, the side wall of collection frame 62 and the periphery of fan 662 are fixedly connected with fixed ring 661, the inside wall of fixed ring 661 is fixedly connected with filter screen 664,
[0029] By adopting the above technical scheme, after the peeled Gleditsia sinensis L. kernels and Gleditsia sinensis L. seed coats fall into the collecting frame 62, under the action of the fan 662, the air in the external environment is filtered through the filter screen 664 on the fixing ring 661, and then is blown to the Gleditsia sinensis L. kernels and Gleditsia sinensis L. seed coats falling into the collecting frame 62 through the mounting port 663. Under the action of the wind, the Gleditsia sinensis L. seed coats with lighter weight are blown to the side of the collecting frame 62 away from the discharging mechanism 5, so that the Gleditsia sinensis L. kernels and Gleditsia sinensis L. seed coats are conveniently separated.
[0030] Specifically, the collecting assembly 6 further comprises a fixing screw 64 and a fixing nut 65. The lower ends of the collecting frame 62 are fixedly connected with the fixing screws 64. The bottom supporting plate 61 is provided with through holes at positions corresponding to the fixing screws 64. The outer side wall of the fixing screw 64 is threadedly connected with the fixing nut 65 at a position on the side of the bottom supporting plate 61 away from the collecting frame 62.
[0031] By adopting the above technical scheme, after the Gleditsia sinensis L. kernels and Gleditsia sinensis L. seed coats are collected, the fixing nut 65 is rotated and removed from the fixing screw 64. Then, the bottom supporting plate 61 is moved downward. The movement of the bottom supporting plate 61 drives the collecting box 63 to move away from the collecting frame 62. Then, the collecting box 63 is taken out, and the Gleditsia sinensis L. kernels and Gleditsia sinensis L. seed coats collected in the collecting box 63 are reused.
[0032] In use, the Gleditsia sinensis L. is injected into the feeding mechanism 2 through the feeding port 3. The injected Gleditsia sinensis L. is input into the separating mechanism 4 by the feeding mechanism 2. The Gleditsia sinensis L. kernels and Gleditsia sinensis L. seed coats are separated by the separating mechanism 4. The separated Gleditsia sinensis L. kernels and Gleditsia sinensis L. seed coats are discharged through the discharging mechanism 5. Then, under the action of gravity, the Gleditsia sinensis L. kernels and Gleditsia sinensis L. seed coats fall into the collecting frame 62. At the same time, under the action of the fan 662, the air in the external environment is filtered through the filter screen 664 on the fixing ring 661. Then, the air is blown to the Gleditsia sinensis L. kernels and Gleditsia sinensis L. seed coats falling into the collecting frame 62 through the mounting port 663. Under the action of the wind, the Gleditsia sinensis L. seed coats with lighter weight are blown to the side of the collecting frame 62 away from the discharging mechanism 5 and fall into the collecting box 63 on the bottom supporting plate 61 away from the discharging mechanism 5. The Gleditsia sinensis L. kernels with heavier weight fall into the collecting box 63 on the bottom supporting plate 61 below the discharging mechanism 5. Then, the fixing nut 65 is rotated and removed from the fixing screw 64. Then, the bottom supporting plate 61 is moved downward. The movement of the bottom supporting plate 61 drives the collecting box 63 to move away from the collecting frame 62. Then, the collecting box 63 is taken out, and the Gleditsia sinensis L. kernels and Gleditsia sinensis L. seed coats collected in the collecting box 63 are reused. This facilitates the operation of the operator.
[0033] Embodiment 2
[0034] The embodiment differs from embodiment 1 in that the external assembly 7 comprises an external box 71, a receiving part 72, a sealing plug 73 and a discharge port 74, the external box 71 is fixedly connected to the outer side wall of the feeding port 3, the external box 71 is provided with the discharge port 74, the sealing plug 73 is inserted into the discharge port 74, the receiving part 72 is arranged on the side wall of the feeding port 3 and below the external box 71,
[0035] Specifically, the receiving part 72 comprises a placing plate 721, a placing groove 722, a receiving cylinder 723 and a magnetic ring 724, the placing plate 721 is fixedly connected to the side wall of the feeding port 3 and below the external box 71, the placing groove 722 is arranged on the placing plate 721, the receiving cylinder 723 is arranged in the placing groove 722, and the magnetic ring 724 is fixedly connected to the side, close to the placing groove 722, of the receiving cylinder 723 and the placing groove 722,
[0036] By adopting the above technical scheme, the receiving cylinder 723 is placed in the placing groove 722 on the placing plate 721, at this time, the magnetic ring 724 on the outer side wall of the receiving cylinder 723 and the magnetic ring 724 on the inner side wall of the placing groove 722 are mutually adsorbed and fixed, so as to ensure the stability of the placement of the receiving cylinder 723, and facilitate the collection of the soap gourd collected in the external box 71 by the receiving cylinder 723.
[0037] When the soap gourd is injected into the feeding mechanism 2 through the feeding port 3 in the use of the embodiment, when the injected soap gourd is too much to overflow out of the feeding port 3 and falls into the external box 71 under the action of gravity to be collected, when the external box 71 internally receives too much soap gourd, the soap gourd in the external box 71 is pushed to the inside of the discharge port 74 from the sealing plug 73 in the discharge port 74 to be discharged to the inside of the receiving cylinder 723 under the action of gravity to be collected, the receiving cylinder 723 is moved to the periphery of the placing plate 721, so that the magnetic ring 724 on the side wall of the receiving cylinder 723 is separated from the magnetic ring 724 on the side wall of the placing groove 722, when the receiving cylinder 723 is away from the placing plate 721, the soap gourd in the receiving cylinder 723 is injected into the feeding mechanism 2 through the feeding port 3 to be fed, stripped and separated, and the operator can conveniently collect and process the discharged material.
[0038] The fan 662 in the utility model is a publicly disclosed technology, and the selected model is G-71A.
[0039] The structure and principle of the feeding mechanism 2 composed of the feeding bin and the spiral material guiding blade have been disclosed in a Chinese patent application No. 201910748158.X, and the working principle is that: one side of the separation mechanism 4 and one end of the feeding port 3 are fixedly connected with the feeding bin, the inside of the feeding bin and the outer side wall of the separation mechanism 4 component are fixedly connected with the spiral material guiding blade, in use, the soap nuts are injected into the inside of the feeding bin through the feeding port 3, and then the separation mechanism 4 drives the spiral material guiding blade to rotate, and in the rotating process of the spiral material guiding blade, the soap nuts in the inside of the feeding bin can be driven into the inside of the separation mechanism 4 to perform the stripping and separating operation.
[0040] The structure and principle of the separating mechanism 4 composed of the main rotating shaft, the rotating brush, the rotating cylinder, the rotating seat, the wall breaking needle, the driven gear, the auxiliary rotating shaft, the driving gear, the residue discharging hole, the residue discharging channel, the driven rotating shaft, the belt, the pulley and the like have been disclosed in a Chinese patent application No. 201910748158.X, and the working principle is as follows: the upper portion of the mounting table 1 is provided with the rotating cylinder, the rotating cylinder is fixedly connected with the rotating seat between the two ends and the mounting table 1, the inside of the rotating cylinder is provided with the main rotating shaft, the outer side wall of the main rotating shaft is connected with the rotating brush, the inside wall of the rotating cylinder is arranged with a plurality of wall breaking needles, at least one driven gear is installed on the outer wall of the rotating cylinder, the reverse driving mechanism is the auxiliary rotating shaft installed on the upper end of the mounting table 1 and parallel to the main rotating shaft, the same end of the main rotating shaft and the auxiliary rotating shaft is connected with the power mechanism through the first transmission mechanism and the second transmission mechanism respectively, a plurality of driving gears are installed on the auxiliary rotating shaft, the driven gears are installed on the outer wall of the rotating cylinder and engaged with the driving gears, and the diameter of the driving gears is smaller than that of the driven gears, a plurality of residue discharging holes are arranged on the rotating cylinder, the corresponding position of the residue discharging hole on the mounting table 1 is provided with the residue discharging channel arranged obliquely, the same end of the main rotating shaft and the auxiliary rotating shaft is connected with the power mechanism through the first transmission mechanism and the second transmission mechanism respectively, the power mechanism in the embodiment is a single-phase 220V, 3000W motor, the first transmission mechanism comprises the pulleys connected with the power mechanism output end and the main rotating shaft respectively, the transmission belts are arranged between the pulleys, the rotation direction of the main rotating shaft is consistent with that of the power mechanism output end, the second transmission mechanism comprises the driven rotating shaft installed in the mounting table 1 and arranged parallel to the auxiliary rotating shaft, one end of the driven rotating shaft is connected with the power mechanism output end through the belt and the pulley, the other end of the driven rotating shaft is connected with the auxiliary rotating shaft through the belt and the pulley, when in use, the motor is started, the motor starts to work, the motor output shaft drives the main rotating shaft to rotate in the positive direction through the first transmission mechanism, at the same time, the motor output shaft drives the auxiliary rotating shaft to rotate in the positive direction through the second transmission mechanism, the soapberry seeds enter the rotating cylinder, the driving gears installed on the auxiliary rotating shaft are engaged with the driven gears on the rotating cylinder, thereby driving the rotating cylinder to rotate in the reverse direction, the rotating brush rotates in the positive direction under the driving of the main rotating shaft, and the rotating speed of the rotating cylinder is different from that of the rotating brush, so that the wall breaking needles in the rotating cylinder and the rotating brush generate relative shearing force on the soapberry rice, thereby realizing that the wall breaking needles pierce the soapberry seed coat, the rotating brush cooperates to peel the soapberry seed coat and the soapberry rice, and the cooperation of the wall breaking needles and the rotating brush in the peeling process makes part of the soapberry rice particles small, which does not meet the quality requirement, the soapberry rice with small particles is discharged out of the rotating cylinder through the residue discharging hole arranged on the rotating cylinder, and the soapberry rice discharged out of the rotating cylinder through the residue discharging hole is discharged out of the device through the residue discharging channel arranged obliquely.
[0041] The structure and principle of the discharging mechanism 5 composed of the negative pressure fan, the discharge bin, the discharge port, the circular ring plate, the fan blade and the fixed plate have been disclosed in a Chinese patent application No. 201910748158.X, and the working principle is that the discharging mechanism 4 is connected with the discharge bin at one end away from the feeding mechanism 2, the discharge bin is provided with the discharge port, the discharge bin is provided with the negative pressure fan installed on the main rotating shaft component in the separating mechanism 4, the discharge port is arranged at the side end of the bottom of the discharge bin, and the installation direction of the discharge port is the tangent direction of the rotating circle of the negative pressure fan, in use, the negative pressure fan is rotated by the high-speed rotation of the main rotating shaft component in the separating mechanism 4, the rotating movement of the negative pressure fan forms a negative pressure area in the discharge bin, since the discharge bin is communicated with the separating mechanism 4, the peeled soybean milk and soybean hull in the separating mechanism 4 can be sucked into the discharge bin through the negative pressure of the negative pressure area, then the negative pressure fan discharges the soybean milk and the soybean hull from the soybean hull peeling machine through the discharge port, preferably, the negative pressure fan comprises the fixed plate and the circular ring plate arranged in parallel with the fixed plate, a plurality of connecting fan blades are arranged between the fixed plate and the circular ring plate, the circular ring design of the circular ring plate can enable the peeled soybean milk and soybean hull in the separating mechanism 4 to be sucked into the discharge bin through the circular ring channel of the circular ring plate, and the subsequent discharge from the discharge bin is facilitated.
[0042] The utility model discloses a working principle and use flow: the utility model discloses through feeding mouth 3 injects soap -nut to the inside of feeding mechanism 2, when the injection soap -nut is too much and spreads out feeding mouth 3, under the action of gravity, falls to the inside operation of collecting of external interface box 71, when the inside operation of collecting of external interface box 71 is too much and receives soap -nut, again from the sealing plug 73 of the inside of discharge gate 74, again push the soap -nut of the inside of external interface box 71 to the inside operation of discharge of discharge gate 74, and the soap -nut of discharge falls into the inside operation of collecting of receiving cylinder 723 under the action of gravity, again to the periphery of placing plate 721 movement receiving cylinder 723, with the magnetic ring 724 on the lateral wall of receiving cylinder 723 and the magnetic ring 724 on the lateral wall of placing groove 722 are separated, when receiving cylinder 723 is far away from placing plate 721, again the soap -nut in the inside of receiving cylinder 723 is through feeding mouth 3 and is entered into the inside operation of feeding of feeding mechanism 2, and the injection soap -nut is input to the inside operation of separating of separating mechanism 4 with feeding mechanism 2, and the soap -nut kernel and soap -nut seed coat are separated with separating mechanism 4 and are stripped and are separated operation, and the soap -nut kernel and soap -nut seed coat after stripping and separating are discharged through discharge mechanism 5, and again under the action of gravity, falls to the inside operation of collecting of collecting frame 62, and simultaneously, under the action of fan 662, the air in the external environment is filtered through the filter screen 664 on the fixed ring 661, and is blown to the soap -nut kernel and soap -nut seed coat falling to the inside operation of collecting of collecting frame 62 through the installation port 663, under the action of wind force, the soap -nut seed coat of weight is lighter and is blown to the side of collecting frame 62 far away from discharge mechanism 5, and falls to the inside operation of collecting of the collection box 63 on the bottom support plate 61 far away from discharge mechanism 5, and the soap -nut kernel of weight is heavier and falls to the inside operation of collecting of the collection box 63 on the bottom support plate 61 below discharge mechanism 5, and then from the fixed screw 64 rotation takes down fixed nut 65, and then moves down bottom support plate 61, and bottom support plate 61 moves and drives collection box 63 to move far away from collecting frame 62, and then takes collection box 63, and the soap -nut kernel and soap -nut seed coat collected in collection box 63 are reused, convenient for operator operation.
[0043] Although the embodiments of the utility model have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to the embodiments without departing from the principles and spirit of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A tool for peeling soapberry kernels, comprising a mounting platform (1), a feeding mechanism (2) being provided above the mounting platform (1), a feed inlet (3) being fixedly connected above the feeding mechanism (2), a separating mechanism (4) being provided at one end of the feeding mechanism (2), and a discharging mechanism (5) being provided at the end of the separating mechanism (4) away from the feeding mechanism (2), characterized in that: An external component (7) is provided around the feed inlet (3), and a collection component (6) is provided on the side wall of the mounting platform (1) and at the end below the discharge mechanism (5).
2. The tool for peeling soapberry kernels according to claim 1, characterized in that: The collection assembly (6) includes a base plate (61), a collection frame (62), a collection box (63), and a separator (66). The collection frame (62) is fixedly connected to the side wall of the mounting platform (1) and at the lower end below the discharge mechanism (5). The separator (66) is provided on the side wall of the collection frame (62). The base plate (61) is provided below the collection frame (62). The collection boxes (63) are provided at both ends of the base plate (61).
3. The tool for peeling soapberry kernels according to claim 2, characterized in that: The separating component (66) includes a retaining ring (661), a fan (662), a mounting port (663), and a filter screen (664). The mounting port (663) is provided on the side wall of the collection frame (62). The fan (662) is fixedly connected inside the mounting port (663). The retaining ring (661) is fixedly connected on the side wall of the collection frame (62) and outside the fan (662). The filter screen (664) is fixedly connected on the inner side wall of the retaining ring (661).
4. The tool for peeling soapberry kernels according to claim 2, characterized in that: The collecting assembly (6) also includes a fixing screw (64) and a fixing nut (65). The fixing screw (64) is fixedly connected to both ends of the lower part of the collecting frame (62). A through hole is provided on the bottom plate (61) at the position corresponding to the fixing screw (64). A fixing nut (65) is threadedly connected to the outer wall of the fixing screw (64) on the side of the bottom plate (61) away from the collecting frame (62).
5. The tool for peeling soapberry kernels according to claim 1, characterized in that: The external assembly (7) includes an external box (71), a receiving component (72), a sealing plug (73), and a discharge port (74). The external box (71) is fixedly connected to the outer wall of the inlet (3). The discharge port (74) is provided on the external box (71). The sealing plug (73) is inserted into the inside of the discharge port (74). The receiving component (72) is provided on the side wall of the inlet (3) and below the external box (71).
6. The tool for peeling soapberry kernels according to claim 5, characterized in that: The receiving component (72) includes a placement plate (721), a placement groove (722), a receiving cylinder (723), and a magnetic ring (724). The placement plate (721) is fixedly connected to the side wall of the feed inlet (3) and below the outer box (71). The placement plate (721) has a placement groove (722) and a receiving cylinder (723) is provided inside the placement groove (722). A magnetic ring (724) is fixedly connected to the side of the receiving cylinder (723) and the placement groove (722) that are close to each other.
Citation Information
Patent Citations
Stripping machine for gleditsia sinensis seed husks
CN110313621A