A grinding device and method for processing lip gloss raw materials

The lip gloss raw material processing device, which combines the reciprocating oscillation of the grinding shell with a vibration mechanism, solves the problems of incomplete and uneven grinding, and realizes multiple thorough grinding and uniform distribution of lip gloss raw materials, thereby improving grinding efficiency and effect.

CN117654731BActive Publication Date: 2025-10-21YIWU CHEERFLOR COSMETICS CO LTD
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Patent Information

Application Number
CN202311597497.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-27
Publication Date
2025-10-21
Estimated Expiration
2043-11-27

AI Technical Summary

Technical Problem

In existing lip gloss raw material processing equipment, the fixed grinding interval leads to incomplete or uneven grinding, and the uneven distribution of materials during secondary grinding affects the grinding effect.

Method used

The grinding device combines the reciprocating oscillation of the grinding shell with a vibration mechanism. The grinding gap is formed by the arc-shaped protrusion and the grinding plate, and the material speed is slowed down by the baffle block. The vibration component generates vibration waves to improve the material mobility and the thoroughness of grinding.

Benefits of technology

This process allows for multiple thorough grinding of the lip gloss raw materials, avoiding clumping, improving grinding efficiency and uniformity, and ensuring the thoroughness and consistency of the grinding effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of lip gloss raw material processing, and discloses a grinding device and method for lip gloss raw material processing. The device comprises a support and a grinding shell, the grinding shell reciprocally swings at the support; the grinding shell is provided with an open slot, the open slot is provided with a grinding mechanism and a barrier area arranged on the two sides of the grinding mechanism respectively, the grinding mechanism comprises an arc-shaped protrusion and a grinding plate reciprocally moving along the arc-shaped protrusion, and a grinding gap for grinding materials is formed between the grinding plate and the arc-shaped protrusion; when the application is used, the lip gloss raw material can be well and sufficiently ground, so that high-quality lip gloss can be produced; the method is realized by the device, and comprises the following steps: discharging, grinding and discharging.
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Description

Technical Field

[0001] The present invention relates to the technical field of lip gloss raw material processing, and in particular to a grinding device and method for processing lip gloss raw materials. Background Art

[0002] There is currently a method for processing the powder components of lip gloss raw materials. For example, the Chinese utility model patent with application number CN202022276077.5 discloses a powder stirring and grinding device for high-lasting lip gloss, which stirs the lip gloss raw materials through a stirring rod, and then grinds the lip gloss raw materials for the first time (in this patent, through the teeth at the bottom of the fixed block and the teeth on the upper surface of the bottom grinding disc), and then grinds the lip gloss raw materials for the second time (in this patent, through a first roller and a second roller rotating in opposite directions), and finally collects the processed lip gloss raw materials.

[0003] Although the aforementioned patent utilizes a two-stage grinding process to grind the lip gloss material, in actual use, due to structural limitations of the fixed block and the bottom grinding disc, the grinding distance between the fixed block and the bottom grinding disc can only be set within a limited range. If the grinding distance is too large, not only will the grinding effect of the lip gloss material be poor, but the material drop rate will also be accelerated, thereby causing greater grinding pressure during the secondary grinding. If the grinding distance is too small, the lip gloss material with larger particles may not be able to be ground in the first grinding, resulting in incomplete grinding. In addition, during the secondary grinding, the lip gloss material may be unevenly distributed when it falls into the gap between the first and second rollers, resulting in insufficient secondary grinding. Summary of the Invention

[0004] The purpose of the present invention is to solve the above problems and to provide a grinding device and method for processing lip gloss raw materials.

[0005] In order to achieve the above object, the present invention adopts the following technical solutions:

[0006] A grinding device for processing lip gloss raw materials, comprising a device body, the device body comprising a bracket and a grinding shell, the grinding shell being rotatably engaged with the bracket at the middle portion along the length direction, and the grinding shell swinging back and forth on the bracket;

[0007] The grinding shell is provided with an upwardly opening slot, and the opening slot is provided with a material feed port, a first blocking mechanism, a grinding mechanism, a second blocking mechanism and a material discharge port in sequence from one side of the length direction of the grinding shell toward the other side of the length direction;

[0008] The grinding mechanism is arranged in the middle of the length direction of the open slot, and the grinding mechanism includes an arc-shaped protrusion and a grinding plate. The length direction of the arc-shaped protrusion is arranged along the width direction of the open slot. The grinding plate is movably arranged above the arc-shaped protrusion and reciprocates along the length direction of the arc-shaped protrusion. The side walls opposite to the grinding plate and the arc-shaped protrusion are both provided with grinding surfaces. The grinding plate and the arc-shaped protrusion form a grinding gap for grinding the material.

[0009] The opening groove is located on both sides of the grinding mechanism to form a blocking area, and the first blocking mechanism and the second blocking mechanism are respectively arranged at the blocking area, and the first blocking mechanism and the second blocking mechanism are used to slow down the movement speed of the lip gloss raw material;

[0010] A vibration mechanism is provided at the bottom wall of the grinding shell, and the vibration mechanism is used to provide vibration waves to be transmitted to the grinding shell.

[0011] Preferably, the bracket includes an I-shaped base frame, trusses are vertically provided on both sides of the base frame in the width direction, and a rotating hole is formed at the end of the truss away from the base frame. Connecting frames are provided on both sides of the length direction of the grinding shell, and a rotating shaft rotating at the rotating hole is provided at the connecting frame. A first drive motor is provided at the truss, and the output shaft of the first drive motor is connected to the corresponding rotating shaft. The grinding shell swings back and forth under the action of the first drive motor.

[0012] Preferably, the grinding shell is located at the grinding mechanism and is respectively provided with a first positioning hole and a second positioning hole on both sides along the width direction, and a first positioning shaft and a second positioning shaft are respectively provided at both ends in the length direction of the grinding plate, the first positioning shaft is matched with the first positioning hole, and a spring mounting shell is provided at one side of the width direction of the grinding shell corresponding to the first positioning hole, and the spring mounting shell is installed with a first compression spring, the first compression spring is used to abut against the end of the first positioning shaft, and the grinding plate maintains a tendency to move toward the other side of the width direction of the grinding shell under the action of the first compression spring, the second positioning shaft is matched with the second positioning hole and the end of the second positioning shaft extending out of the second positioning hole is provided with a spherical protrusion, and a second driving motor is provided on the other side of the width direction of the grinding shell, and an eccentric block is provided at the output end of the second driving motor, and the eccentric block is used to cooperate with the spherical protrusion, and the grinding plate overcomes the elastic force of the first compression spring under the action of the second driving motor and maintains a tendency to move toward one side of the width direction of the grinding shell.

[0013] Preferably, the grinding gap gradually increases from the middle of the grinding plate in the longitudinal direction toward both sides of the grinding plate in the longitudinal direction, and multiple rows of grinding balls are provided on the grinding surface of the grinding plate and on both sides of the grinding plate in the longitudinal direction.

[0014] Preferably, the first blocking mechanism and the second blocking mechanism both include a plurality of blocking blocks arranged at the blocking area, and the blocking blocks are arranged in multiple rows along the length direction of the opening groove. The blocking blocks in the same row are spaced apart, and the blocking blocks in adjacent rows are staggered. A vibration cavity with an opening formed at the bottom wall of the grinding shell is provided inside any blocking block, and the vibration mechanism includes a vibrating member arranged at any vibration cavity, and the vibrating member is used to vibrate the blocking block to form a vibration wave.

[0015] Preferably, the vibrating member includes a mounting seat installed at the opening of the vibration cavity, a mounting frame is formed at the mounting seat, a vibrating rod movable along the axial direction of the vibration cavity is provided at the mounting frame, a baffle is formed at the outer wall of the vibrating rod located at the mounting frame, a second compression spring is provided at the mounting frame which is sleeved on the outer wall of the vibrating rod, one end of the second compression spring rests on the mounting frame and the other end rests on the baffle, and the baffle is kept against the mounting seat under the action of the second compression spring, a vibrating ball is provided at one end of the vibrating rod located in the vibration cavity, a lifting ball is provided at one end of the vibrating rod extending out of the vibration cavity, a plurality of vibrating shafts are provided at the bottom wall of the grinding shell corresponding to any vibrating mechanism, any vibrating shaft cooperates with any row of grinding shells, a plurality of curved blocks are provided along the circumferential direction of the vibrating shaft, the curved blocks are used to cooperate with the lifting ball to make the vibrating ball vibrate the inner wall of the vibration cavity, a third drive motor is provided at the side wall of the grinding shell corresponding to any vibrating mechanism, and the output shaft of the third drive motor and the plurality of vibrating shafts at the same vibrating mechanism are transmitted by setting a gear set.

[0016] Preferably, the bottom wall of the opening groove located in the barrier area and the outer wall of the barrier block are both provided with barrier surfaces.

[0017] Preferably, a transparent glass plate is detachably provided at the opening of the opening groove.

[0018] Preferably, the opening grooves are respectively located at the material feed port and the material discharge port and are formed with guide surfaces.

[0019] A grinding method based on a grinding device for processing lip gloss raw materials comprises the following steps:

[0020] S1. Feeding: Place the material to be ground at the material feed port;

[0021] S2, grinding: turning on the first drive motor, the second drive motor and the third drive motor at the same time, so that the device body grinds the material to be ground multiple times;

[0022] S3, discharging: taking out the ground material from the material discharging port, and turning off the first drive motor, the second drive motor and the third drive motor.

[0023] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are:

[0024] 1. In the present invention, the grinding shell swings back and forth at the bracket, so that the powder components of the lip gloss raw material can be ground multiple times during the reciprocating swing of the grinding shell. When the lip gloss raw material moves to the corresponding barrier area, the movement speed of the lip gloss raw material can be slowed down by the staggered barrier blocks, so that the grinding mechanism can more fully grind the powder components of the lip gloss raw material, thereby making the lip gloss raw material ground more thoroughly.

[0025] 2. In the present invention, the vibration mechanism is provided, and the vibration mechanism continuously plays a role during the grinding process of the lip gloss raw material. The vibrating member generates vibration waves by continuously vibrating the barrier block. The advantages are: first, the vibration waves can be transmitted to the grinding shell, so that the grinding shell as a whole has a certain vibration effect, thereby preventing the lip gloss raw material from agglomerating during the movement; second, since the lip gloss raw material has poor mobility, the vibration waves can effectively improve the mobility of the lip gloss raw material, so that the lip gloss raw material moves along the length direction of the opening groove; third, when one side or the other side of the grinding shell swings to the highest point of the stroke, the vibration waves can relatively completely vibrate the lip gloss raw material at the highest side of the grinding shell at this time to the highest side of the grinding shell, thereby avoiding the situation where the lip gloss raw material is not completely ground. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 A schematic structural diagram of a device body provided according to an embodiment of the present invention is shown.

[0027] Figure 2 Another structural schematic diagram of the device body provided according to an embodiment of the present invention is shown.

[0028] Figure 3 A schematic structural diagram of a grinding shell provided according to an embodiment of the present invention is shown.

[0029] Figure 4 Another structural schematic diagram of a grinding shell provided according to an embodiment of the present invention is shown.

[0030] Figure 5 A schematic diagram of the first cross-sectional structure of a grinding shell provided according to an embodiment of the present invention is shown.

[0031] Figure 6 A schematic diagram of the second cross-sectional structure of the grinding shell provided according to an embodiment of the present invention is shown.

[0032] Figure 7 A schematic diagram of the third cross-sectional structure of the grinding shell provided according to an embodiment of the present invention is shown.

[0033] Figure 8 A schematic structural diagram of a grinding plate provided according to an embodiment of the present invention is shown.

[0034] Figure 9A schematic structural diagram of a vibration element provided according to an embodiment of the present invention is shown.

[0035] Figure 10 A schematic structural diagram of a vibration shaft provided according to an embodiment of the present invention is shown.

[0036] Legend:

[0037] 100, device body; 110, bracket; 111, base frame; 112, truss; 113, connecting frame; 114, first drive motor; 120, grinding shell; 121, material feed port; 122, material discharge port; 130, transparent glass plate; 140, gear set; 150, second drive motor; 151, eccentric block; 210, open slot; 220, grinding plate; 221, first positioning shaft; 222, second positioning shaft; 223, grinding balls; 230, barrier zone ; 240, blocking block; 250, guide surface; 310, arc-shaped protrusion; 320, grinding gap; 330, vibration shaft; 331, curved block; 340, vibration member; 341, mounting seat; 342, mounting frame; 343, vibration rod; 344, baffle; 345, second compression spring; 346, vibration ball; 347, lifting ball; 410, third drive motor; 510, spring mounting housing; 520, first compression spring; 530, spherical protrusion; 610, vibration chamber. DETAILED DESCRIPTION

[0038] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments 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 any creative efforts shall fall within the scope of protection of the present invention.

[0039] See also Figure 1-10 As shown, the present invention provides a technical solution:

[0040] A grinding device for processing lip gloss raw materials, which includes a device body 100, the device body 100 includes a bracket 110 and a grinding shell 120, the grinding shell 120 is rotatably matched with the bracket 110 at the middle part along the length direction, and the grinding shell 120 swings back and forth at the bracket 110; the grinding shell 120 is provided with an upwardly opening slot 210, and the opening slot 210 is provided with a material feed port 121, a first blocking mechanism, a grinding mechanism, a second blocking mechanism and a material discharge port 122 in sequence along one side of the length direction of the grinding shell 120 toward the other side of the length direction; the grinding mechanism is provided in the middle part of the length direction of the opening slot 210, the grinding mechanism includes an arc-shaped protrusion 310 and a grinding plate 220, the length direction of the arc-shaped protrusion 310 is arranged along the width direction of the opening slot 210, the grinding plate 220 is movably provided above the arc-shaped protrusion 310 and reciprocates along the length direction of the arc-shaped protrusion 310, and the grinding plate The side walls 220 and the arc-shaped protrusion 310 are both provided with grinding surfaces, and the grinding plate 220 and the arc-shaped protrusion 310 form a grinding gap 320 for grinding the material; the opening groove 210 is located on both sides of the grinding mechanism to form a blocking area 230, and the first blocking mechanism and the second blocking mechanism are respectively arranged at the blocking area 230, and the first blocking mechanism and the second blocking mechanism both include a plurality of blocking blocks 240 arranged at the blocking area 230, and the blocking blocks 240 are arranged in multiple rows along the length direction of the opening groove 210, and the blocking blocks 240 in the same row are arranged at intervals, and the blocking blocks 240 in adjacent rows are staggered; a vibration cavity 610 with an opening formed at the bottom wall of the grinding shell 120 is provided inside any blocking block 240, and a vibration mechanism is provided on the bottom wall of the grinding shell 120, and the vibration mechanism includes a vibrating member 340 arranged at any vibration cavity 610, and the vibrating member 340 is used to vibrate the blocking block 240 to form a vibration wave.

[0041] During actual use of this embodiment, a staff member can place the powder components of the lip gloss raw material into the material feed port 121 on one side of the opening groove 210, and drive the grinding shell 120 to swing back and forth on the bracket 110. During the reciprocating swing of the grinding shell 120, the powder components of the lip gloss raw material can reciprocate along one end of the opening groove 210 toward the other end. When the lip gloss raw material moves to the corresponding first blocking mechanism or the second blocking mechanism, the movement speed of the lip gloss raw material can be slowed down by the staggered blocking blocks 240, so that the grinding mechanism can more fully grind the powder components of the lip gloss raw material, thereby making the lip gloss raw material ground more thoroughly.

[0042] Among them, the vibration mechanism continuously plays a role in the grinding process of the lip gloss raw material. The vibrating member 340 generates vibration waves by continuously vibrating the barrier block 240. The advantages are: first, the vibration waves can be transmitted to the grinding shell 120, so that the grinding shell 120 as a whole has a certain vibration effect, thereby preventing the lip gloss raw material from agglomerating during the movement; second, since the mobility of the lip gloss raw material is relatively poor, the vibration waves can effectively improve the mobility of the lip gloss raw material, so that the lip gloss raw material can move along the length direction of the opening groove 210; third, when one side or the other side of the grinding shell 120 swings to the highest point of the stroke, the vibration waves can relatively completely vibrate the lip gloss raw material at the highest side of the grinding shell 120 at this time to the highest side of the grinding shell 120, thereby avoiding the situation where the lip gloss raw material is not completely ground.

[0043] In this embodiment, the bracket 110 includes an I-shaped base frame 111, and trusses 112 are vertically provided on both sides of the base frame 111 in the width direction. A rotating hole is formed at the end of the truss 112 away from the base frame 111, and connecting frames 113 are provided on both sides of the length direction of the grinding shell 120. The connecting frame 113 is provided with a rotating shaft that rotates at the rotating hole. A first drive motor 114 is provided at the truss 112, and the output shaft of the first drive motor 114 is connected to the corresponding rotating shaft. The grinding shell 120 swings back and forth under the action of the first drive motor 114.

[0044] Through the above structure, the bracket 110 is installed on the foundation plane. After the worker puts the powder components of the lip gloss raw materials into the material feed port 121 on one side of the open groove 210, the first drive motor 114 is driven, so that the first drive motor 114 drives the grinding shell 120 to swing back and forth on the bracket 110, thereby better realizing the grinding mechanism to grind the lip gloss raw materials multiple times. Among them, the reciprocating swing angle range of the grinding shell 120 is set to -60° to 60° for the best.

[0045] In this embodiment, the grinding shell 120 is located at the grinding mechanism and is respectively provided with a first positioning hole and a second positioning hole on both sides along the width direction. The two ends of the grinding plate 220 in the length direction are respectively provided with a first positioning shaft 221 and a second positioning shaft 222. The first positioning shaft 221 is matched with the first positioning hole. A spring mounting shell 510 is provided at one side of the width direction of the grinding shell 120 corresponding to the first positioning hole. The spring mounting shell 510 is installed with a first compression spring 520. The first compression spring 520 is used to abut against the end of the first positioning shaft 221. The grinding plate 220 is acted upon by the first compression spring 520. The grinding plate 220 maintains a tendency to move toward the other side of the width direction of the grinding shell 120, the second positioning shaft 222 is engaged with the second positioning hole and the end of the second positioning shaft 222 extending out of the second positioning hole is provided with a spherical protrusion 530, and the other side of the width direction of the grinding shell 120 is provided with a second drive motor 150. The output end of the second drive motor 150 is provided with an eccentric block 151, and the eccentric block 151 is used to cooperate with the spherical protrusion 530. Under the action of the second drive motor 150, the grinding plate 220 overcomes the elastic force of the first compression spring 520 and maintains a tendency to move toward one side of the width direction of the grinding shell 120.

[0046] Through the above-mentioned structure, the second drive motor 150 drives the eccentric block 151 to continuously cooperate with the spherical protrusion 530. Under the action of the eccentric block 151, the spherical protrusion 530 continuously overcomes the elastic force of the first compression spring 520, so that the grinding plate 220 can reciprocate along the length direction of the arc-shaped protrusion 310, thereby better achieving the grinding of the lip gloss raw material. Among them, the first positioning shaft 221 and the first positioning hole, and the second positioning shaft 222 and the second positioning hole are all spline-matched, which prevents the grinding plate 220 from deviating during the grinding process, thereby better maintaining the stability of the movement of the grinding plate 220.

[0047] In this embodiment, the grinding gap 320 gradually increases from the middle of the grinding plate 220 in the longitudinal direction toward both sides of the grinding plate 220 in the longitudinal direction.

[0048] With the above-described structure, after the lip gloss material enters the grinding gap 320 from one side of the opening groove 210, the movement speed of the lip gloss material can be further slowed down so that the lip gloss material can be fully ground. In addition, since the distance of the grinding gap 320 located in the middle of the longitudinal direction of the grinding plate 220 is relatively small, the grinding effect of the lip gloss material is best when the lip gloss material is ground there.

[0049] In this embodiment, a plurality of rows of grinding balls 223 are disposed on the grinding surface of the grinding plate 220 and on both sides of the grinding plate 220 in the longitudinal direction.

[0050] Through the above structure, after the lip gloss material enters the grinding gap 320 from one side of the opening groove 210, the movement speed of the lip gloss material can be further slowed down. During this process, larger particles of lip gloss material can be ground into smaller particles by the grinding balls 223, thereby better reducing the grinding pressure of the grinding plate 220.

[0051] In this embodiment, the bottom wall of the opening groove 210 located in the blocking area 230 and the outer wall of the blocking block 240 are both provided with blocking surfaces.

[0052] Through the above-mentioned structure, the barrier surface is a friction surface. When the lip gloss raw material is located in the barrier area 230 and moves, the vibration force brought by the vibration wave of the barrier area 230 is relatively strong. Therefore, the lip gloss raw material vibrates relatively strongly in the barrier area 230. During the continuous vibration process, the lip gloss raw material continuously generates friction with the barrier surface. During the friction process, the lip gloss raw material can generate heat, and the lip gloss raw material can also generate heat when it is further ground. Therefore, after the lip gloss raw material is fully ground, it can have a certain amount of heat when discharged from the material discharge port 122, so it is better for subsequent processing.

[0053] In this embodiment, the vibrating member 340 includes a mounting seat 341 mounted at the opening of the vibration cavity 610, a mounting frame 342 is formed at the mounting seat 341, a vibration rod 343 is provided at the mounting frame 342 that moves axially along the vibration cavity 610, the outer wall of the vibration rod 343 is located at the mounting frame 342 and a baffle 344 is formed, the mounting frame 342 is provided with a second compression spring 345 sleeved on the outer wall of the vibration rod 343, one end of the second compression spring 345 abuts against the mounting frame 342 and the other end abuts against the baffle 344, the baffle 344 is kept against the mounting seat 341 under the action of the second compression spring 345, and the vibration rod 343 is located in the vibration cavity 610. A vibration ball 346 is provided at one end, a lifting ball 347 is provided at the end of the vibration rod 343 extending out of the vibration cavity 610, a plurality of vibration shafts 330 are provided at the bottom wall of the grinding shell 120 corresponding to any vibration mechanism, any vibration shaft 330 cooperates with any row of grinding shells 120, and a plurality of curved blocks 331 are provided along the circumferential direction of the vibration shaft 330, which are used to cooperate with the lifting ball 347 to make the vibration ball 346 vibrate the inner wall of the vibration cavity 610, and a third drive motor 410 is provided at the side wall of the grinding shell 120 corresponding to any vibration mechanism, and the output shaft of the third drive motor 410 and the plurality of vibration shafts 330 at the same vibration mechanism are driven by a gear set 140.

[0054] Through the above structure, the third drive motor 410 drives the vibration shaft 330 at the same vibration mechanism to rotate through the gear set 140. The curved block 331 of the vibration shaft 330 can continuously cooperate with the lifting ball 347. Under the action of the curved block 331, the lifting ball 347 drives the vibration ball 346 to continuously vibrate the inner wall of the vibration chamber 610, thereby generating vibration waves and transmitting them to the grinding shell 120, thereby better allowing the device main body 100 to grind the lip gloss raw materials.

[0055] Among them, the gear set 140 as a transmission component is a common transmission structure in the mechanical field. Other transmission structures with the same function include chain transmission, belt transmission, etc., and this embodiment will not elaborate on its transmission principle.

[0056] In this embodiment, a transparent glass plate 130 is detachably provided at the opening of the opening groove 210 .

[0057] With the above structure, the transparent glass plate 130 can prevent the lip gloss raw materials from being contaminated by dust in the air during the grinding process, and can also facilitate observation by staff.

[0058] In this embodiment, the opening slots 210 are respectively located at the material inlet 121 and the material outlet 122 and are formed with guide surfaces 250 .

[0059] Through the above structure, the guide surface 250 can better guide the movement direction of the lip gloss raw materials, and when discharging the materials, the staff can better collect the lip gloss raw materials.

[0060] A grinding method based on a grinding device for processing lip gloss raw materials comprises the following steps:

[0061] S1, feeding: placing the material to be ground into the material feed port 121;

[0062] S2, grinding: turning on the first drive motor 114, the second drive motor 150 and the third drive motor 410 simultaneously, so that the device body 100 grinds the material to be ground multiple times;

[0063] S3 , discharging: taking out the ground material from the material discharging port 122 , and turning off the first driving motor 114 , the second driving motor 150 , and the third driving motor 410 .

[0064] The above description of the embodiments is intended to enable one skilled in the art to implement or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not limited to the embodiments shown herein but is intended to conform to the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A grinding device for processing lip gloss raw materials, characterized by: The device comprises a main body (100), the main body (100) comprising a bracket (110) and a grinding shell (120), the grinding shell (120) being rotatably engaged with the bracket (110) at the middle portion along the length direction, and the grinding shell (120) swings back and forth on the bracket (110); The grinding shell (120) is provided with an upwardly opening slot (210), and the opening slot (210) is provided with a material feed port (121), a first blocking mechanism, a grinding mechanism, a second blocking mechanism, and a material discharge port (122) in sequence along one side of the length direction of the grinding shell (120) toward the other side of the length direction; The grinding mechanism is arranged at the middle of the length direction of the opening groove (210), and the grinding mechanism includes an arc-shaped protrusion (310) and a grinding plate (220). The length direction of the arc-shaped protrusion (310) is arranged along the width direction of the opening groove (210). The grinding plate (220) is movably arranged above the arc-shaped protrusion (310) and reciprocates along the length direction of the arc-shaped protrusion (310). The side walls of the grinding plate (220) and the arc-shaped protrusion (310) opposite to each other are provided with grinding surfaces. The grinding plate (220) and the arc-shaped protrusion (310) form a grinding gap (320) for grinding materials. The opening groove (210) is located on both sides of the grinding mechanism and has barrier areas (230) formed thereon. A first barrier mechanism and a second barrier mechanism are respectively provided at the barrier areas (230). The first barrier mechanism and the second barrier mechanism are used to slow down the movement speed of the lip gloss raw material. A vibration mechanism is provided at the bottom wall of the grinding shell (120), and the vibration mechanism is used to provide vibration waves for transmission to the grinding shell (120); The grinding shell (120) is located at the grinding mechanism and is provided with a first positioning hole and a second positioning hole on both sides along the width direction. The grinding plate (220) is provided with a first positioning shaft (221) and a second positioning shaft (222) at both ends in the length direction. The first positioning shaft (221) is matched with the first positioning hole. A spring mounting shell (510) is provided on one side of the grinding shell (120) in the width direction corresponding to the first positioning hole. The spring mounting shell (510) is installed with a first compression spring (520). The first compression spring (520) is used to abut against the end of the first positioning shaft (221). Under the action of the first compression spring (520), the grinding plate (220) is kept facing The grinding plate (220) has a tendency to move toward the other side of the width direction of the grinding shell (120), the second positioning shaft (222) is engaged with the second positioning hole, and the end of the second positioning shaft (222) extending out of the second positioning hole is provided with a spherical protrusion (530), the other side of the width direction of the grinding shell (120) is provided with a second drive motor (150), the output end of the second drive motor (150) is provided with an eccentric block (151), the eccentric block (151) is used to cooperate with the spherical protrusion (530), and the grinding plate (220) overcomes the elastic force of the first compression spring (520) under the action of the second drive motor (150) to maintain a tendency to move toward one side of the width direction of the grinding shell (120); The first blocking mechanism and the second blocking mechanism both include a plurality of blocking blocks (240) disposed at the blocking area (230), wherein the blocking blocks (240) are arranged in a plurality of rows along the length direction of the opening groove (210), wherein the blocking blocks (240) in the same row are arranged at intervals, and the blocking blocks (240) in adjacent rows are arranged in a staggered manner, wherein a vibration cavity (610) having an opening formed at the bottom wall of the grinding shell (120) is provided inside any blocking block (240), and the vibration mechanism includes a vibration member (340) disposed at any vibration cavity (610), and the vibration member (340) is used to vibrate the blocking block (240) to form a vibration wave.

2. A grinding device for processing lip gloss raw materials according to claim 1, characterized in that: The bracket (110) includes an I-shaped base frame (111), trusses (112) are vertically provided on both sides of the base frame (111) in a width direction, and a rotation hole is formed at the end of the truss (112) away from the base frame (111). Connecting frames (113) are provided on both sides of the grinding shell (120) in a length direction, and a rotating shaft rotating at the rotating hole is provided on the connecting frame (113). A first driving motor (114) is provided on the truss (112), and an output shaft of the first driving motor (114) is connected to the corresponding rotating shaft. The grinding shell (120) swings back and forth under the action of the first driving motor (114).

3. The grinding device for processing lip gloss raw materials according to claim 1, characterized in that: The grinding gap (320) gradually increases in distance from the middle of the grinding plate (220) in the longitudinal direction toward both sides of the grinding plate (220) in the longitudinal direction, and multiple rows of grinding balls (223) are provided on the grinding surface of the grinding plate (220) and on both sides of the grinding plate (220) in the longitudinal direction.

4. The grinding device for processing lip gloss raw materials according to claim 1, characterized in that: The vibrating member (340) includes a mounting seat (341) mounted at the opening of the vibration cavity (610), a mounting frame (342) formed at the mounting seat (341), a vibrating rod (343) movable along the axial direction of the vibration cavity (610) provided at the mounting frame (342), a baffle (344) formed on the outer wall of the vibrating rod (343) located at the mounting frame (342), a second compression spring (345) sleeved on the outer wall of the vibrating rod (343) provided at the mounting frame (342), one end of the second compression spring (345) abutting against the mounting frame (342) and the other end abutting against the baffle (344), the baffle (344) being kept abutting against the mounting seat (341) under the action of the second compression spring (345), and the vibrating rod (343) located at the vibration cavity (610) A vibration ball (346) is provided at one end of the grinding shell (120), a lifting ball (347) is provided at one end of the vibration rod (343) extending out of the vibration cavity (610), a plurality of vibration shafts (330) are provided at the bottom wall of the grinding shell (120) corresponding to any vibration mechanism, any vibration shaft (330) cooperates with any row of grinding shells (120), a plurality of curved blocks (331) are provided along the circumferential direction of the vibration shaft (330), the curved blocks (331) are used to cooperate with the lifting ball (347) so that the vibration ball (346) vibrates the inner wall of the vibration cavity (610), a third drive motor (410) is provided at the side wall of the grinding shell (120) corresponding to any vibration mechanism, and a gear set (140) is provided between the output shaft of the third drive motor (410) and the plurality of vibration shafts (330) at the same vibration mechanism.

5. The grinding device for processing lip gloss raw materials according to claim 4, characterized in that: The bottom wall of the opening groove (210) located in the barrier area (230) and the outer wall of the barrier block (240) are both provided with a barrier surface.

6. The grinding device for processing lip gloss raw materials according to claim 1, characterized in that: A transparent glass plate (130) is detachably provided at the opening of the opening groove (210).

7. The grinding device for processing lip gloss raw materials according to claim 1, characterized in that: The opening grooves (210) are respectively located at the material feed port (121) and the material discharge port (122), and are each formed with a guide surface (250).

8. A grinding method based on the grinding device for processing lip gloss raw materials according to claim 1, characterized in that: The steps include: S1, feeding: placing the material to be ground into the material feed port (121); S2, grinding: turning on the first drive motor (114), the second drive motor (150), and the third drive motor (410) simultaneously, so that the device body (100) grinds the material to be ground multiple times; S3, discharging: taking out the ground material from the material discharging port (122), and turning off the first drive motor (114), the second drive motor (150), and the third drive motor (410).

Citation Information

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