Contact lens mold classified storage device
By designing a contact lens mold sorting and storage device, and utilizing a cavitation mechanism and a storage mechanism, the automatic sorting and storage of molds is achieved, solving the problem of low efficiency in manual sorting in existing technologies and improving sorting efficiency and storage convenience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-27
- Publication Date
- 2026-04-10
AI Technical Summary
In the current technology, the classification of contact lens molds can only be done by manual observation, which is inefficient and prone to errors, and lacks classification and storage equipment that can be used with the assistance of robots.
A contact lens mold sorting and storage device was designed, including a frame, a cavitation mechanism, and a storage mechanism. The molds are sorted through the cavitation openings and stored in the corresponding storage cavities. The sorting and storage are automated using a robot.
It improves the efficiency of mold classification, realizes automated mold classification and storage, reduces human error, and improves the convenience of storage.
Smart Images

Figure CN224104553U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to classification device technical field, more specifically, relate to a contact lens mould classification storage device. BACKGROUND
[0002] The contact lens mould is a tool for manufacturing contact lenses, which is generally formed by injection molding, and the injection molded part is formed by a plurality of different models of molds connected by a framework to form a mold set. The part of the framework connecting the mold is cut off by the robot, and finally the different models of the mold are classified.
[0003] In the prior art, the classification of contact lens molds can only be observed and classified by manual comparison, which is inefficient and prone to errors. There is no equipment that can cooperate with robots for classification and storage, so we propose a contact lens mold classification and storage mechanism. UTILITY MODEL CONTENT
[0004] In view of the problems in the prior art, the utility model aims to provide a classification and storage device that can cooperate with robots to classify and store contact lens molds.
[0005] To solve the above problems, the utility model adopts the following technical scheme.
[0006] A contact lens mold classification and storage device, comprising:
[0007] A frame body;
[0008] At least one hole separation mechanism is arranged on the frame body, and the hole separation mechanism has a plurality of interval distribution hole separation ports for classifying and feeding different models of molds; and
[0009] A storage mechanism is arranged on the frame body, and the storage mechanism has a plurality of storage cavities corresponding to the hole separation ports and separated from each other, and the storage cavities are used for storing molds.
[0010] Preferably, the hole separation mechanism comprises a base plate rotatably adjusted on the frame body, and a plurality of hole separation pipes arranged on the base plate, and the hole separation port is located in the hole separation pipe.
[0011] Preferably, the hole separation pipes are annularly distributed on the base plate.
[0012] Preferably, the storage mechanism is provided with a plurality of feeding ports corresponding to a plurality of storage cavities at the top, and a plurality of feeding ports and a plurality of hole separation pipes are connected one by one through a plurality of connecting pipes.
[0013] Preferably, the frame body comprises a base frame and a storage bin arranged on the top of the base frame; the storage mechanism is arranged on the base frame, and the feeding port at the top is located in the storage bin; the sub-hole mechanism is arranged on the top of the storage bin, and the bottom of the sub-hole pipe is open to the storage bin; and the connecting pipe is located in the storage bin.
[0014] Preferably, one side of the storage bin is provided with a switch door.
[0015] Preferably, the storage box comprises:
[0016] a box body arranged on the frame body;
[0017] a plurality of partitions arranged in the box body to divide the box body into a plurality of storage cavities;
[0018] Preferably, the feeding port is arranged at the top of the box body.
[0019] Preferably, the vertical outer side of the box body and the partition is provided with a plurality of lock pieces corresponding to each storage cavity, and the lock piece is connected with a blocking piece located in the storage cavity for blocking the feeding port.
[0020] Preferably, the vertical outer side of the box body and the partition is provided with a plurality of vertical sliding grooves corresponding to each storage cavity; the lock piece comprises a sliding rod slidingly matched with the sliding groove, a limiting piece arranged at one end of the sliding rod located in the storage cavity, and a screwing piece arranged at the other end of the sliding rod located outside the box body.
[0021] Preferably, the bottom of the box body is inclined; one side of the box body provided with the lock piece is provided with a plurality of discharge ports corresponding to each storage cavity, and the discharge port is provided with a discharge door which can be opened and closed.
[0022] Compared with the prior art, the utility model has the beneficial effects of:
[0023] The robot directly puts the molds of different types into the corresponding sub-hole ports for classification, and the molds classified by the sub-hole ports enter the corresponding storage cavities for classified storage, so that the classification efficiency of different types of molds can be greatly improved, and the classified storage of the storage cavities facilitates subsequent collection work. BRIEF DESCRIPTION OF DRAWINGS
[0024] Figure 1 It is a whole structure schematic view of the utility model;
[0025] Figure 2 It is a sub-hole mechanism schematic view of the utility model;
[0026] Figure 3The utility model discloses a storage mechanism front view section view.
[0027] Figure 4 The utility model discloses a storage mechanism side view section view.
[0028] Mark explanation in drawing:
[0029] 1, frame body, 11, base frame, 12, storage bin, 121, switch door, 2, separate hole mechanism, 21, separate hole, 22, base disc, 23, separate hole pipe, 3, mould, 4, connecting pipe, 5, storage mechanism, 51, storage cavity, 52, box, 53, partition, 54, feed inlet, 55, lock piece, 551, sliding rod, 552, limiting piece, 553, screwing piece, 56, blocking piece, 57, sliding groove, 58, discharging door, 59, discharge port. Specific implementation
[0030] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the ordinary skilled in the art without creative labor belong to the scope of the utility model protection.
[0031] Reference Figures 1-3 A contact lens mould classified storage device, comprising: frame body 1, at least one separate hole machine, storage mechanism 5. Separate hole mechanism 2 is arranged on frame body 1, and separate hole mechanism 2 has several interval distribution and is used for the separate hole 21 of different model mould 3 classified feeding. Storage mechanism 5 is arranged on frame body 1, and storage mechanism 5 has several storage cavities 51 corresponding and mutually separated with separate hole 21, and storage cavity 51 is used to store mould 3.
[0032] It can be understood that the frame body 1 is the supporting part of the whole classified storage device. The sub-hole mouth 21 can be a hole structure formed on the plate member, or a pipe body structure, etc., but is not limited to this. The plurality of storage cavities 51 can be a structure of a plurality of independently arranged boxes 52, or an integrated structure divided by a partition plate 53 in a large box 52, etc., but is not limited to this. The distribution position of the plurality of sub-hole mouths 21 is distributed according to the position of the different types of molds 3 on the mold 3 group, as long as the robot can be placed above each sub-hole mouth 21 after grabbing the mold 3. The plurality of sub-hole mechanisms 2 are arranged to step by step put the material, specifically, two sub-hole mechanisms 2 are taken as an example here, the distribution positions of the sub-hole mouths 21 on the two sub-hole mechanisms 2 are staggered, that is, the sub-hole mouths 21 are arranged in two groups of positions staggered, the robot puts a part of the molds 3 into the first group of sub-hole mouths 21 after grabbing a plurality of molds 3, and then puts the remaining molds 3 into the second group of sub-hole mouths 21, which can be used in the case of a large number of molds 3.
[0033] In this way, the robot directly puts the different types of molds 3 into the corresponding sub-hole mouths 21 for classification after grabbing them, and the molds 3 are classified into the corresponding storage cavities 51 for classified storage after passing through the sub-hole mouths 21, which can greatly improve the classification efficiency of different types of molds 3, and the classified storage of the storage cavities 51 facilitates the subsequent collection work.
[0034] In some embodiments, with reference to Figures 1-2 The sub-hole mechanism 2 comprises a base disc 22 rotatably adjusted on the frame body 1, and a plurality of sub-hole pipes 23 arranged on the base disc 22, and the sub-hole mouth 21 is located in the sub-hole pipe 23. Further, the sub-hole pipes 23 are annularly distributed on the base disc 22.
[0035] It can be understood that the rotatable adjustment of the sub-hole disc can be provided with a plurality of annularly distributed positioning holes or arc-shaped positioning grooves on the sub-hole disc, and the positioning holes or positioning grooves are inserted into the positioning holes or positioning grooves by bolts or positioning pins, and are locked on the frame body 1. The annular distribution of the sub-hole pipe 23 mainly corresponds to the distribution of the mold 3 on the mold 3 group.
[0036] In this way, through the rotatable adjustment of the sub-hole disc, the distribution position of each sub-hole mouth 21 can be replaced, and different sub-hole mouths 21 are changed to receive different types of molds 3.
[0037] In some embodiments, the storage mechanism 5 is provided with a plurality of feeding ports 54 corresponding to a plurality of storage cavities 51, and the plurality of feeding ports 54 are connected to the plurality of distribution pipes 23 through a plurality of connecting pipes 4. Here, the connecting pipes 4 can be fixedly connected to the feeding ports 54 and the distribution pipes 23, or can be detachable. The detachable connecting pipes 4 can be telescopic bellows. In this way, according to the change of the production model of the mold 3, the mold 3 can be stored in different storage cavities 51 by replacing the connecting pipes 4 connected to different feeding ports 54 and distribution holes 21.
[0038] In some embodiments, the rack body 1 includes a base frame 11 and a storage bin 12 provided on the top of the base frame 11; the storage mechanism 5 is arranged on the base frame 11, and the feeding ports 54 at the top are located in the storage bin 12; the distribution mechanism 2 is arranged on the top of the storage bin 12, and the bottom of the distribution pipe 23 leads to the storage bin 12; the connecting pipe 4 is located in the storage bin 12. Further, one side of the storage bin 12 is provided with a switch door 121.
[0039] It can be understood that the base frame 11 is a support component, which can be a frame structure or a plurality of column structures, etc. The storage bin 12 is a closed structure, which can be a square bin or a cylindrical bin, etc. The switch door 121 can be a push-pull structure or a sliding structure, etc., but is not limited thereto. The switch door 1212 can also be transparent.
[0040] In this way, the storage bin 12 can wrap and protect the connecting pipe 4. The switch door 121 can open the storage bin 12, which is convenient for disassembling, observing and operating the connecting pipe 4.
[0041] In some embodiments, referring to Figure 1 and Figure 3 , the storage box includes a box body 52 and a plurality of partitions 53. The box body 52 is arranged on the rack body 1; the plurality of partitions 53 are arranged in the box body 52 to divide the box body 52 into a plurality of storage cavities 51; and the feeding ports 54 are arranged on the top of the box body 52. Here, an integrated structure is adopted, which is simpler and easier to manufacture.
[0042] In some embodiments, referring to Figure 1 and Figure 4 , the vertical outer side of the box body 52 and the partition 53 is vertically movably provided with a plurality of locking pieces 55 corresponding to each storage cavity 51, and the locking piece 55 is connected with a blocking piece 56 located in the storage cavity 51 for blocking the feeding port 54.
[0043] It can be understood that the vertical movement of the locking piece 55 can be matched with the sliding groove 57 or the sliding rail, etc. The locking piece 55 is a component that can lock the position of the blocking piece 56, for example, a locking screw can be used, or a plurality of vertically spaced card slots can be provided on the outer wall of the box 52 on one side of the locking piece 55, and a latch is inserted into the card slot for position locking, etc., but not limited thereto. The blocking piece 56 can be a plate body structure extending to below the feeding port 54, or a combination structure of a rod body extending to the feeding port 54 and a plate body, etc., but not limited thereto.
[0044] In this way, when the mold 3 in the storage cavity 51 needs to be discharged, the locking piece 55 can be moved upward to drive the blocking piece 56 to shield the feeding port 54, and then the locking piece 55 is locked in position to prevent the mold 3 from continuing to fall into the storage cavity 51. It is very suitable for use when producing molds 3 without batches, preventing molds 3 of different batches from being mixed together.
[0045] In some embodiments, the outer side of the box 52 perpendicular to the partition plate 53 is provided with a plurality of vertical sliding grooves 57 corresponding to the storage cavities 51; the locking piece 55 comprises a sliding rod 551 matched with the sliding groove 57, a limiting piece 552 provided at one end of the sliding rod 551 located in the storage cavity 51, and a screwing piece 553 provided at one end of the sliding rod 551 located outside the box 52.
[0046] It can be understood that the limiting piece 552 is a component for limiting one end of the sliding rod 551 to prevent the sliding rod 551 from coming out of the sliding groove 57, for example, it can be a round plate structure or an intercepting rod structure, but not limited thereto. The screwing piece 553 is a component for positioning the entire locking piece 55, for example, it can be a nut structure directly screwed on the sliding rod 551, or a screw indirectly matched with the sliding rod 551, etc., but not limited thereto.
[0047] In this way, the two ends of the sliding rod 551 are limited by the limiting piece 552 and the screwing piece 553, which can prevent the sliding rod 551 from sliding out of the sliding groove 57. By rotating the screwing piece, the screwing piece 553 can be tightly pressed against the outer wall of the box 52, thereby positioning the locking piece 55. The structure is simple and the operation is convenient.
[0048] In some embodiments, the bottom of the box 52 is inclined; one side of the box 52 provided with the locking piece 55 is provided with a plurality of discharge ports 59 corresponding to the storage cavities 51, and a discharge door 58 is provided on the discharge port 59 to open and close the discharge port 59. Here, the openable and closable setting of the discharge door 58 can adopt a sliding door, or a flip type door body structure, etc., but not limited thereto. In this way, the inclined setting of the bottom of the box 52 is beneficial to the concentration of the molds 3 in the storage cavities 51 at the discharge ports 59. By opening the discharge door 58, the molds 3 can be discharged from the discharge port 59, and by closing the discharge door 58, the discharging is ended.
[0049] The above merely describes a preferred embodiment of the present application; the scope of protection of the present application is not limited thereto. Any skilled person in the art, according to the technical scheme and improvement concept of the present application, makes equivalent replacement or change within the technical range disclosed by the present application, which should be covered in the scope of protection of the present application.
Claims
1. A contact lens mold sorting and storage device, characterized by, The utility model relates to a mold storage and feeding device, which comprises: a frame body; at least one mold sorting mechanism arranged on the frame body, the mold sorting mechanism having a plurality of mold sorting openings for feeding molds of different types; and a storage mechanism arranged on the frame body, the storage mechanism having a plurality of storage cavities corresponding to the mold sorting openings and being separated from each other, the storage cavities being used for storing molds.
2. The contact lens mold sorting and storage device of claim 1, wherein, The mold sorting mechanism comprises a base disc rotatably arranged on the frame body and a plurality of mold sorting pipes arranged on the base disc, and the mold sorting openings are located in the mold sorting pipes.
3. The contact lens mold sorting and storage device of claim 2, wherein, The mold sorting pipes are arranged in a ring shape on the base disc.
4. The contact lens mold sorting and storage device of claim 3, wherein, The storage mechanism is provided at the top with a plurality of feeding openings corresponding to the storage cavities, and the feeding openings and the mold sorting pipes are connected by a plurality of connecting pipes.
5. The contact lens mold sorting and storage device of claim 4, wherein, The frame body comprises a base frame and a storage bin arranged on the top of the base frame; the storage mechanism is arranged on the base frame, and the feeding openings at the top are located in the storage bin; the mold sorting mechanism is arranged on the top of the storage bin, and the mold sorting pipes are connected to the storage bin at the bottom; and the connecting pipes are located in the storage bin.
6. The contact lens mold sorting and storage device of claim 5, wherein, One side of the storage bin is provided with a switch door.
7. The contact lens mold sorting and storage device of claim 4, wherein, The storage mechanism comprises: a box body arranged on the frame body; a plurality of partitions arranged in the box body to divide the box body into a plurality of storage cavities; wherein the feeding openings are arranged on the top of the box body.
8. The contact lens mold sorting and storage device of claim 7, wherein, The vertical outer side of the box body and the partitions is provided with a plurality of locking pieces movably arranged in the vertical direction corresponding to each storage cavity, and the locking pieces are connected with blocking pieces located in the storage cavities for blocking the feeding openings.
9. The contact lens mold sorting and storage device of claim 8, wherein, The vertical outer side of the box body and the partitions is provided with a plurality of vertical sliding grooves corresponding to the storage cavities; the locking pieces comprise sliding rods slidingly matched with the sliding grooves, limiting pieces arranged at one end of the sliding rods in the storage cavities, and screwing pieces arranged at the other end of the sliding rods outside the box body.
10. The contact lens mold sorting and storage device of claim 8, wherein, The bottom of the box body is arranged in an inclined manner; one side of the box body provided with the locking pieces is provided with a plurality of discharge openings corresponding to the storage cavities, and the discharge openings are provided with discharge doors capable of being opened and closed.