High-efficiency crystal hot-fix rhinestone direction selection equipment
By adjusting the height of the support wheels and using a fixed plate, storage bin, and sponge structure, the problem of adaptability and uniform distribution of crystal hot-fix rhinestones of different specifications was solved, improving the flexibility and efficiency of the orientation equipment.
Patent Information
- Application Number
- CN202520066925.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-13
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-01-13
AI Technical Summary
Existing crystal hot-fix rhinestone orientation equipment requires different equipment when changing to different specifications, and the hot-fix rhinestones are not fed evenly, resulting in resource waste and low orientation efficiency.
By adjusting the height of the support wheel with a knob, and combining the fixed plate, storage compartment and sponge structure, the support plate can be flexibly adjusted and the crystal hot-fix rhinestones can be evenly distributed. The telescopic rod and sponge actuation structure improve the direction selection efficiency.
It achieves adaptability to different specifications of crystal hot-fix rhinestones, avoids resource waste, and improves orientation efficiency and device flexibility.
Smart Images

Figure CN223751984U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the field of hot-fixing diamond processing technology, especially relates to a high -efficient crystal hot -fixing diamond direction selection equipment. BACKGROUND
[0002] Crystal hot -fixing diamond is the diamond -like decoration piece of artificial synthesis, and is pasted on the surface of dress fabric through hot melt adhesive and constitutes some patterns, so as to play the effect of decoration and beautification, in order to improve the gluing efficiency of the paste plane at the bottom of crystal hot -fixing diamond, a large number of crystal hot -fixing diamonds need to be operated first, so that a large number of crystal hot -fixing diamonds can be glued at one time.
[0003] Patent No. CN21610279U discloses a kind of high -efficient crystal hot -fixing diamond direction selection equipment, it includes rack, base is arranged on rack, horizontal vibration motor is connected between base and rack;Base is fixed with the motor vertically arranged, motor rotating shaft is fixed with carousel, carousel is sleeved with direction selection sleeve disc, and direction selection sleeve disc is equipped with a plurality of direction selection grooves matched with crystal hot -fixing diamond conical end;The lower part of carousel is provided with the blanking box fixed on base.
[0004] In prior art, by setting collecting box, crystal hot -fixing diamond can be recycled after being selected direction, and it is convenient for next use, but there are still the following problems in overall use: first, when the crystal hot -fixing diamond is selected direction in prior art, usually use vibration to make crystal hot -fixing diamond constantly enter direction selection groove, the amplitude of vibration cannot be adjusted, when replacing different specifications of crystal hot -fixing diamond, different equipment is needed, leading to resource waste;
[0005] Secondly, when the crystal hot -fixing diamond is fed in prior art, crystal hot -fixing diamond is too concentrated, after direction selection disc rotates, crystal hot -fixing diamond is concentrated on the circumference of direction selection disc, and crystal hot -fixing diamond cannot be placed in direction selection groove evenly, so that the direction selection efficiency is low. INVENTION CONTENTS
[0006] The utility model discloses in order to overcome the insufficient of prior art, provide a kind of high -efficient crystal hot -fixing diamond direction selection equipment, by setting knob adjustment support wheel height, so as to adjust the swing amplitude of direction selection plate, so that direction selection plate can adapt to various specifications of crystal hot -fixing diamond, so as to improve the flexibility of device whole, by setting fixed plate and storage cabin and two sponges, crystal hot -fixing diamond can be arranged in a character, prevent crystal hot -fixing diamond excessive concentration, so as to improve the direction selection efficiency of crystal hot -fixing diamond.
[0007] The utility model discloses in order to realize above-mentioned purpose provides following technical scheme: a kind of high-efficiency crystal hot diamond selects direction equipment, including support base, the top of support base is provided with support frame, the inside rotation of support frame is provided with support plate, the top of support plate is provided with direction board, the bottom rotation of direction board is provided with telescopic link, the side of telescopic link is slidably provided with the support wheel of height-adjustable, the inside end surface of support base is provided with two arc blocks, the end surface on the arc block of support wheel is slidably connected, the top rotation of direction board is provided with fixed plate, the bottom end surface of fixed plate is provided with two sponges, two between the sponges are provided with blanking cavity, the top end surface of fixed plate is provided with two storage cabin for feeding, the inside rotation of storage cabin is provided with movable plate.
[0008] Preferably, the inside of the support base is provided with a support rod, one end of the support rod is provided with a first universal shaft, and the first universal shaft is fixedly connected with the bottom end surface of the support plate.
[0009] Preferably, the inside of the support base is provided with a first sliding groove, the inside of the first sliding groove is slidably provided with a first sliding block, the first sliding block is fixedly connected with one end of the bottom of the telescopic link, and the two sides of the first sliding block are rotatably provided with rollers, and the two rollers abut on the bottom end surface of the first sliding groove.
[0010] Preferably, the bottom end surface of the first sliding groove is provided with a second sliding groove, the second sliding groove is communicated with the first sliding groove, the inside of the second sliding groove is slidably provided with a second sliding block, one end of the second sliding block is fixedly connected with the first sliding block, the bottom end of the second sliding block is provided with a gear ring, one side of the gear ring is rotatably provided with a driving gear, and the driving gear is in meshing transmission connection with the gear ring.
[0011] Preferably, one side of the telescopic link is provided with a limiting sliding rail, the outside of the limiting sliding rail is slidably provided with a limiting sliding block, the limiting sliding block is fixedly connected with a support wheel frame, the inside of the support wheel frame is rotatably provided with a support wheel, the top end surface of the support wheel frame is rotatably provided with a threaded rod, the outside of the threaded rod is provided with a support block on the outer wall of the telescopic link, and one end of the threaded rod penetrating through the support block is provided with a knob.
[0012] Preferably, the end surface of the support frame is provided with a material cabin, the bottom end surface of the support frame is provided with two hoses, one end of the two hoses is communicated with the inside of the material cabin, and the other end of the two hoses is respectively communicated with the inside of the two storage cabins.
[0013] Preferably, the bottom end surface of the material cabin is provided with a pneumatic cylinder, the output end of the pneumatic cylinder is provided with a second universal shaft, and the other end of the second universal shaft is fixedly connected with the end surface of the fixed plate.
[0014] Preferably, the inside of the support base is provided with a discharging cylinder, the output end of the discharging cylinder is provided with a third universal shaft, and one end of the third universal shaft is provided with a suction cup.
[0015] Compared with the prior art, the beneficial effects of the scheme are:
[0016] (1) The utility model discloses a support wheel, a threaded rod, a limiting sliding rail and a limiting sliding block, which can adjust the height of the support wheel through a knob, reduce the contact area between the support wheel and the arc block, prevent the bottom end face of the support plate from being pushed by the telescopic rod, make the support plate run more stably, and achieve the adjusting effect, so that the direction selection plate can adapt to crystal hot diamonds of various specifications, thereby improving the flexibility of the device as a whole.
[0017] (2) The utility model discloses a fixing plate, a storage cabin, a sponge and a discharging cavity, which can make the crystal hot diamonds fall from the discharging cavity and be arranged in a linear form, can effectively prevent the local concentration of crystal hot diamonds, thereby improving the direction selection efficiency, and through the two sponges, the crystal hot diamonds on the end face of the direction selection plate can be stirred when the direction selection plate rotates, so that the crystal hot diamonds can be more evenly fed into the direction selection groove, and the direction selection efficiency is further improved. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is a perspective view of the utility model;
[0019] Figure 2 It is a front view of the utility model;
[0020] Figure 3 It is Figure 2 It is a sectional view of A-A in the middle;
[0021] Figure 4 It is Figure 3 It is an enlarged view of B in the middle;
[0022] Figure 5 It is Figure 3 It is an enlarged view of C in the middle;
[0023] Figure 6 It is an internal structure diagram of the support base part;
[0024] Figure 7 It is Figure 6 It is an enlarged view of D in the middle;
[0025] Figure 8 It is Figure 1 It is an enlarged view of E in the middle;
[0026] In the figure: support base 10, support frame 11, selection direction plate 12, support plate 13, first universal shaft 14, support rod 15, coaming 16, material cabin 17, air cylinder 18, second universal shaft 19, fixed plate 20, sponge 21, storage cabin 22, movable plate 23, hose 24, blanking cavity 25, telescopic rod 26, first sliding groove 27, first sliding block 28, roller 29, second sliding groove 30, second sliding block 31, gear ring 32, driving gear 33, driving motor 34, limiting sliding rail 35, limiting sliding block 36, support wheel 37, support wheel frame 371, threaded rod 38, support block 39, knob 40, arc block 41, suction cup 42, blanking air cylinder 43, third universal shaft 44. DETAILED DESCRIPTION
[0027] In order to make the person skilled in the art better understand the technical scheme of the present application, the technical scheme in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application.
[0028] Embodiment one:
[0029] Reference Figure 1 , Figure 2 , Figure 3 and Figure 4 , an efficient crystal hot diamond selection direction device, comprising a support base 10, the top of the support base 10 is provided with a support frame 11, the support frame 11 is overall in the shape of an inverted C, a support plate 13 is rotatably arranged in the support frame 11, a selection direction plate 12 is arranged on the top of the support plate 13, a plurality of selection direction grooves are arranged on the end face of the selection direction plate 12, the selection direction grooves can be matched with the crystal hot diamond, after the selection direction is completed, the crystal hot diamond can be taken out as a whole by the adhesive film, a telescopic rod 26 is rotatably arranged at the bottom of the selection direction plate 12, the telescopic rod 26 is prior art, which will not be described in detail herein, and the main function is to drive the support plate 13 at the top to rotate, a support wheel frame 371 capable of adjusting the height is slidably arranged on one side of the telescopic rod 26, two arc blocks 41 are arranged on the inner end face of the support base 10, the support wheel frame 371 is slidably connected to the end face of the arc block 41, the arc block 41 is provided with two inclined surfaces, the support wheel frame 371 moves on the inclined surfaces of the arc block 41, thereby driving the telescopic rod 26 on one side, so that the telescopic rod 26 pushes the support plate 13 at the top to incline, so that the crystal hot diamonds on the end face of the selection direction plate 12 are evenly spread in the selection direction grooves of the selection direction plate 12, thereby improving the selection direction efficiency of the crystal hot diamonds.
[0030] Reference Figure 1 , Figure 2 and Figure 3Further, the end face of the selection plate 12 is provided with a surrounding plate 16, which is annular as a whole. This arrangement can prevent the crystal hot diamonds from sliding off when the selection plate 12 swings. The circular face of the surrounding plate 16 is provided with a discharge port. The inside of the supporting base 10 is provided with a supporting rod 15. One end of the supporting rod 15 is provided with a first universal shaft 14, which is fixedly connected with the bottom end face of the supporting plate 13. The supporting rod 15 supports the supporting plate 13. The first universal shaft 14 can make the supporting plate 13 rotate and tilt at one end of the supporting rod 15, thereby improving the flexibility of the supporting plate 13.
[0031] With reference to Figure 2 and Figure 4 Further, the inside of the supporting base 10 is provided with a first sliding groove 27, which is annular as a whole. The first sliding groove 27 is arranged inside the bottom face of the supporting base 10. The telescopic rod 26 slides at the slot of the first sliding groove 27. The first sliding groove 27 limits the telescopic rod 26, so that the telescopic rod 26 does not deviate when moving, thereby improving the stability of the device as a whole. The inside of the first sliding groove 27 is slidably provided with a first sliding block 28, which is fixedly connected with one end of the bottom of the telescopic rod 26. The first sliding block 28 limits the telescopic rod 26, so that the telescopic rod 26 is always perpendicular to the inside end face of the supporting base 10. The two sides of the first sliding block 28 are rotatably provided with two rollers 29, which abut against the bottom end face of the first sliding groove 27. The arrangement of the two rollers 29 can reduce the contact area between the first sliding block 28 and the supporting base 10, thereby reducing the performance consumption and improving the practicability of the device as a whole.
[0032] With reference to Figure 2 and Figure 4, further, the first chute 27 bottom end face is provided with the second chute 30, the second chute 30 is communicated with the first chute 27, the second chute 30 is annular as a whole, the second chute 30 is slidably provided with the second sliding block 31 in the inside, one end of the second sliding block 31 is fixedly connected with the first sliding block 28, the bottom end of the second sliding block 31 is provided with the gear ring 32, the gear ring 32 is rotatably connected in the inside of the second chute 30, the drive gear 33 is rotatably arranged on one side of the gear ring 32, the drive gear 33 is in meshing transmission connection with the gear ring 32, the drive motor 34 is arranged below the drive gear 33 on the bottom end face of the support base 10, the output shaft of the drive motor 34 is fixedly connected with the bottom end face of the drive gear 33, the drive gear 33 rotates to drive the gear ring 32 to rotate, the gear ring 32 drives the second sliding block 31 on the end face to slide in the inside of the second chute 30, and the first sliding block 28 at one end of the second sliding block 31 is caused to slide, so that the telescopic rod 26 on the top of the first sliding block 28 is caused to slide along the first chute 27, the telescopic rod 26 drives the support plate 13 at the top end to rotate, so that the crystal hot diamond is shaken, and the crystal hot diamond is uniformly entered into the selected groove, so that the selection efficiency is improved.
[0033] Reference Figure 6 And Figure 7 , further, the side of the telescopic rod 26 is provided with the limiting slide rail 35, the limiting slide block 36 is slidably arranged outside the limiting slide rail 35, the limiting slide block 36 is fixedly connected with the support wheel frame 371, the support wheel 37 is rotatably arranged in the inside of the support wheel frame 371, the threaded rod 38 is rotatably arranged on the top end face of the support wheel frame 371, the support block 39 is arranged on the outer wall of the telescopic rod 26 outside the threaded rod 38, the support block 39 is fixedly connected with the telescopic rod 26, the support block 39 is in threaded transmission connection with the threaded rod 38, the knob 40 is arranged on one end of the threaded rod 38 penetrating through the support block 39, the height of the support wheel frame 371 can be adjusted by rotating the knob 40, so that the contact area of the support wheel frame 371 and the arc block 41 can be adjusted, when the height of the support wheel frame 371 is raised, the support wheel 37 can not be in contact with the arc block 41, at this time the telescopic rod 26 will not be lifted by the support wheel frame 371, so that the inclination range of the support plate 13 is reduced, the adjustment effect is achieved, so that the device as a whole is flexible to adapt to crystal hot diamonds with different requirements.
[0034] Reference Figure 1 、 Figure 2 、 Figure 5 And Figure 8Further, the upper part of the selection direction plate 12 is rotatably provided with a fixed plate 20, the inside of the fixed plate 20 is provided with a material port for discharging, the bottom end face of the fixed plate 20 is provided with two sponges 21, the two sponges 21 are provided with a discharging cavity 25, the top end face of the fixed plate 20 is provided with two storage compartments 22 for feeding, the inside of the storage compartment 22 is a cavity, the inside of the storage compartment 22 is rotatably provided with a movable plate 23, the outside of the two fixed plates 20 is provided with a micro motor, the output shaft of the micro motor is fixedly connected with the movable plate 23, the end face of the support frame 11 is provided with a material compartment 17, the bottom end face of the support frame 11 is provided with two hoses 24, one end of the two hoses 24 is communicated with the inside of the material compartment 17, the other end of the two hoses 24 is respectively communicated with the inside of the two storage compartments 22, when discharging, the crystal hot diamonds enter the bottom of the storage compartment 22 through the hose 24 at the bottom of the material compartment 17, after the movable plate 23 is opened, the crystal hot diamonds fall from the discharging cavity 25 through the material port in the fixed plate 20, this arrangement can make the crystal hot diamonds be arranged in a linear type, and rotate with the movement of the fixed plate 20, so that the situation that the crystal hot diamonds are too concentrated can be avoided, and the selection direction efficiency is improved.
[0035] Reference Figure 2 And Figure 5 Further, the bottom end face of the material compartment 17 is provided with a pneumatic cylinder 18, the output end of the pneumatic cylinder 18 is provided with a second universal shaft 19, the other end of the second universal shaft 19 is fixedly connected with the end face of the fixed plate 20, by arranging the pneumatic cylinder 18, the height of the fixed plate 20 can be adjusted through the second universal shaft 19, so that the crystal hot diamonds on the end face of the selection direction plate 12 can be conveniently adhered and taken.
[0036] Reference Figure 6 Further, the inside of the support base 10 is provided with a discharging pneumatic cylinder 43, the output end of the discharging pneumatic cylinder 43 is provided with a third universal shaft 44, one end of the third universal shaft 44 is provided with a suction disc 42, by arranging the suction disc 42, the bottom end face of the support plate 13 can be better pushed, so that the support plate 13 is prevented from sliding when being pushed, thereby improving the stability of the device, by arranging the discharging pneumatic cylinder 43, the bottom side of the support plate 13 can be pushed, so that the support plate 13 is inclined, thereby dumping the excess crystal hot diamonds on the end face of the selection direction plate 12, so that the crystal hot diamonds are discharged from the discharge port of the fence 16, and convenient for next use.
[0037] When in use, the crystal hot diamonds are placed in the inside of the material compartment 17, the crystal hot diamonds enter the inside of the storage compartment 22 through the hose 24 at the bottom of the material compartment 17, then the micro motor is started, after the output shaft of the micro motor drives the movable plate 23 to open, the crystal hot diamonds fall from the discharging cavity 25 through the material port in the fixed plate 20, so that the crystal hot diamonds are arranged in a linear type on the end face of the selection direction plate 12, thereby the situation that the crystal hot diamonds are too concentrated can be avoided.
[0038] Subsequently, the driving motor 34 is started, the driving gear 33 is driven to rotate by the output shaft of the driving motor 34, the gear ring 32 on one side is driven to rotate by the driving gear 33, the second sliding block 31 on the end face is driven to rotate in the process of the rotation of the gear ring 32 inside the second sliding groove 30, the first sliding block 28 on the top is driven to rotate by the second sliding block 31, so that the first sliding block 28 drives the telescopic rod 26 on the top to rotate, so that the telescopic rod 26 drives the support plate 13 on the top to rotate, the selection plate 12 is driven to rotate by the support plate 13, so that the crystal hot diamonds on the end face of the selection plate 12 are driven to rotate, so that the crystal hot diamonds are driven to enter the selection grooves on the end face of the selection plate 12 in turn, the telescopic rod 26 drives the limiting sliding rail 35 on one side to rotate at the same time of rotating, and the limiting sliding rail 35 drives the limiting sliding block 36 to rotate, the supporting wheel frame 371 connected with the limiting sliding block 36 is driven to rotate by the limiting sliding block 36, the supporting wheel 37 on the bottom is driven to rotate by the supporting wheel frame 371, so that the supporting wheel 37 moves on the end face of the arc block 41, when moving, the supporting wheel 37 lifts the telescopic rod 26 by abutting against the arc block 41, at the same time, the telescopic rod 26 pushes the bottom end face of the support plate 13 upwards, so that the support plate 13 drives the selection plate 12 to incline, so that the crystal hot diamonds on the end face of the selection plate 12 slide on the surface of the selection plate 12, thereby improving the selection efficiency, with the supporting wheel 37 constantly moving up and down on the inclined surface of the arc block 41, the selection plate 12 is regularly swung, so that the crystal hot diamonds are uniformly selected, at the same time, the two sponges 21 can push the crystal hot diamonds on the end face of the selection plate 12, so as to prevent the crystal hot diamonds from concentrating, thereby further improving the selection efficiency.
[0039] When it is needed to adjust the swing amplitude of the selection plate 12, the knob 40 is rotated, so that the knob 40 drives the supporting wheel frame 371 to rise, the contact area of the supporting wheel frame 371 and the arc block 41 is reduced, so that the selection plate 12 runs more stably, thereby improving the flexibility of the whole device.
[0040] After the selection is finished, the discharging cylinder 43 is started, the output end of the discharging cylinder 43 drives the third universal shaft 44 to rise and push the support plate 13 to incline by the suction disc 42 on one end, so that the excess crystal hot diamonds on the end face of the selection plate 12 are discharged through the discharge port of the enclosing plate 16.
[0041] As used in the specification and claims, certain terms have particular meanings. Those of skill in the art will understand that one or more embodiments described herein can be implemented without those terms. As used in the specification and claims, the singular forms "a," "an" and "the" include plural referents unless the context clearly dictates otherwise. "Approximately" refers to a range of acceptable error for the particular value as determined by one of ordinary skill in the art, while one of ordinary skill in the art would be able to resolve the stated technical problem with some acceptable error, substantially the stated technical effect is achieved.
[0042] It should be noted that, as used in this specification and the appended claims, the singular forms "a," "an," and "the" include plural referents unless the context clearly dictates otherwise. "Approximately" refers to a range of acceptable error for the particular value as determined by one of ordinary skill in the art, while one of ordinary skill in the art would be able to resolve the stated technical problem with some acceptable error, substantially the stated technical effect is achieved.
[0043] The foregoing description illustrates and describes several preferred embodiments of the present application. However, it is to be understood that the application is not limited to the precise construction described, and as such changes in arrangement of parts and substitutions of equivalents can be made by those skilled in the art without departing from the spirit and scope of the application. It is intended that each of those embodiments disclosed in this specification encompass all embodiments that can be made by those skilled in the art having the benefit of the teachings disclosed herein.
Claims
1. A high efficiency crystal stone sorting device, comprising a supporting base (10), characterized in that, The top of the support base (10) is provided with a support frame (11), the inside of the support frame (11) is rotatably provided with a support plate (13), the top of the support plate (13) is provided with a direction selection plate (12), the bottom of the direction selection plate (12) is rotatably provided with a telescopic rod (26), one side of the telescopic rod (26) is slidably provided with a height-adjustable support wheel frame (371), the inside end face of the support base (10) is provided with two arc blocks (41), the support wheel frame (371) is slidably connected to the end face of the arc block (41), the upper side of the direction selection plate (12) is rotatably provided with a fixed plate (20), the bottom end face of the fixed plate (20) is provided with two sponges (21), a discharging cavity (25) is arranged between the two sponges (21), and the top end face of the fixed plate (20) is provided with two storage cabins (22) for feeding, and the inside of the storage cabin (22) is rotatably provided with a movable plate (23).
2. The high efficiency crystal stud sorting device of claim 1, wherein, The inside of the support base (10) is provided with a support rod (15), one end of the support rod (15) is provided with a first universal shaft (14), and the first universal shaft (14) is fixedly connected with the bottom end face of the support plate (13).
3. A high efficiency crystal stud sorting device according to claim 2, wherein, The inside of the support base (10) is provided with a first sliding groove (27), the inside of the first sliding groove (27) is slidably provided with a first sliding block (28), one end of the first sliding block (28) is fixedly connected with the bottom end of the telescopic rod (26), and the two sides of the first sliding block (28) are rotatably provided with rollers (29) abutting on the bottom end face of the first sliding groove (27).
4. The high efficiency crystal stud sorting device of claim 3, wherein, The bottom end face of the first sliding groove (27) is provided with a second sliding groove (30), the second sliding groove (30) is communicated with the first sliding groove (27), the inside of the second sliding groove (30) is slidably provided with a second sliding block (31), one end of the second sliding block (31) is fixedly connected with the first sliding block (28), the bottom end of the second sliding block (31) is provided with a gear ring (32), one side of the gear ring (32) is rotatably provided with a driving gear (33), and the driving gear (33) is in meshing transmission connection with the gear ring (32).
5. The high efficiency crystal stud sorting device of claim 1, wherein, One side of the telescopic rod (26) is provided with a limiting sliding rail (35), the outside of the limiting sliding rail (35) is slidably provided with a limiting sliding block (36), the limiting sliding block (36) is fixedly connected with the support wheel frame (371), the inside of the support wheel frame (371) is rotatably provided with a support wheel (37), the top end face of the support wheel frame (371) is rotatably provided with a threaded rod (38), the outside of the threaded rod (38) is provided with a support block (39) on the outer wall of the telescopic rod (26), and one end of the threaded rod (38) penetrating through the support block (39) is provided with a knob (40).
6. The high efficiency crystal stud sorting device of claim 1, wherein, The end face of the support frame (11) is provided with a material cabin (17), and the bottom end face of the support frame (11) is provided with two hoses (24), one end of the two hoses (24) is communicated with the inside of the material cabin (17), and the other end of the two hoses (24) is respectively communicated with the inside of two material storage cabins (22).
7. A high efficiency crystal stud sorting device according to claim 6, wherein, The bottom end face of the material cabin (17) is provided with a gas cylinder (18), the output end of the gas cylinder (18) is provided with a second universal shaft (19), and the other end of the second universal shaft (19) is fixedly connected with the end face of a fixed plate (20).
8. The high efficiency crystal stud sorting device of claim 1, wherein, The inside of the support base (10) is provided with a discharging gas cylinder (43), the output end of the discharging gas cylinder (43) is provided with a third universal shaft (44), and one end of the third universal shaft (44) is provided with a suction cup (42).