Packaging equipment for silicon core grinding cone
By designing packaging equipment for silicon core grinding cones, the automatic packaging and encapsulation of silicon cores is realized, which solves the high cost and low efficiency problems caused by manual operation and improves production efficiency.
Patent Information
- Application Number
- CN202422686949.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-05
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-11-05
AI Technical Summary
现有硅芯加工过程中,封装打包工序仍依赖人工操作,导致人工成本高且效率低,无法满足自动化生产需求。
A packaging equipment for silicon core grinding cones was designed, which includes a packaging bracket, batch unloading components, an aggregate slope, a position change component, a bagging component, an evacuation and sealing component, and a boxing component. The equipment works together automatically through a control center to complete the automatic packaging and encapsulation of silicon cores.
The automated packaging and encapsulation of silicon cores is achieved, which reduces labor costs and improves production efficiency. The design of aggregate slopes and transposition components also improves the efficiency of silicon core concentration and movement.
Smart Images

Figure CN223467415U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of silicon core processing, particularly to the packing equipment for silicon core taper grinding. BACKGROUND
[0002] The silicon core has important use in industrial production, the length of the silicon core needs to be guaranteed, and the both ends of the silicon core need to be processed into conical shape, the existing processing mode adopts manual measurement and sawing, and then adopts equipment to grind the taper after sawing. After processing, it needs to be cleaned, and then packaged. With the development of technology, the cutting, grinding and cleaning of the silicon core are processed by automatic production line, if the last packaging and packaging process is handled by manual, it will increase the labor cost, at the same time, the efficiency of manual packaging and packaging is low, and it can not meet the automatic production. UTILITY MODEL CONTENT
[0003] The utility model aims at overcoming the insufficient of prior art, and provides the packing equipment for silicon core taper grinding.
[0004] The utility model aims at overcoming the insufficient of prior art, and provides the packing equipment for silicon core taper grinding.
[0005] The packing equipment for silicon core taper grinding, including packing support, batch unloading part, material collecting slope, transposition part, bagging part, vacuumizing and bag sealing part and boxing part, the batch unloading part sets up on the one side top of packing support and is used for grabbing the silicon core which is not packed, the boxing part sets up on the other side top of packing support, the material collecting slope is fixedly set on the middle part of packing support and cooperates with batch unloading part, the bagging part and vacuumizing and bag sealing part all set up on the middle part of packing support, and the bagging part sets up between vacuumizing and bag sealing part and material collecting slope, the boxing part cooperates with vacuumizing and bag sealing part, the transposition part sets up on the lower part of packing support, and the material collecting slope, bagging part and vacuumizing and bag sealing part all cooperate with transposition part, the batch unloading part, transposition part, bagging part, vacuumizing and bag sealing part and boxing part all are electrically connected with control center.
[0006] Further, the top of packing support is provided with first sliding rail, the batch unloading part is slidably arranged on one end of first sliding rail, and the boxing part is slidably arranged on the other end of first sliding rail.
[0007] Further, the boxing component comprises a boxing grabbing mechanism, a suction plate and a suction cup, the boxing grabbing mechanism is arranged on the first sliding rail, the suction plate is fixedly arranged on the output portion of the boxing grabbing mechanism, a plurality of suction cups are arranged on the suction plate, the suction cup is sealingly connected with an air compression device, and the air compression device is electrically connected with the control center.
[0008] Further, the boxing component further comprises a material collecting box matched with the suction cup.
[0009] Further, the material collecting slope is obliquely arranged towards the bagging component side.
[0010] Further, the transposition component comprises a second sliding rail, a sliding seat, a sliding drive, a lifting drive, a lifting seat, a lifting guide rod and a lifting plate, the second sliding rail is fixedly arranged on the lower portion of the packaging support, the sliding drive is fixedly arranged on the packaging support and used for driving the sliding seat to horizontally slide, the sliding seat is connected with the lifting seat through the lifting drive, the lower end of the lifting guide rod is fixedly connected with the lifting seat, the upper end of the lifting guide rod is fixedly connected with the lifting plate through the sliding seat, and the lifting plate is provided with a conveying groove used for conveying the silicon core.
[0011] Further, the lifting plate is provided with two conveying grooves.
[0012] Further, the sliding seat is provided with a guide sleeve matched with the lifting guide rod.
[0013] Further, the lower end of the material collecting slope is provided with a limiting block for preventing the silicon core from sliding.
[0014] The beneficial effects of the utility model are as follows:
[0015] 1) In the technology, under the action of the control center, the batch unloading component, the transposition component and the boxing component are matched and used, automatic packaging box packaging is realized, labor cost is effectively reduced, and production efficiency is improved.
[0016] 2) In the technology, the material collecting slope is arranged, so that a plurality of silicon cores are quickly concentrated together under the action of gravity, and the transposition component is convenient to take and move.
[0017] 3) In the technology, the lifting plate is provided with two conveying grooves, so that the lifting plate can convey two groups of silicon cores at the same time. BRIEF DESCRIPTION OF DRAWINGS
[0018] Fig. 1 It is a three-dimensional structure diagram of the utility model;
[0019] Fig. 2Fig. 3 is a structural diagram of the connection between the transposition component and the packing support;
[0020] Fig. 3 Fig. 4 is a perspective view of the transposition component;
[0021] In the figure, 8 is a silicon core, 54 is a packing support, 55 is a batch unloading component, 56 is a material collecting slope, 57 is a transposition component, 58 is a bagging component, 59 is an evacuation and bag sealing component, 60 is a boxing component, 61 is a first sliding rail, 62 is a boxing grabbing mechanism, 63 is a suction plate, 64 is a suction cup, 65 is a material collecting box, 66 is a second sliding rail, 67 is a sliding seat, 68 is a sliding driving member, 69 is a lifting driving member, 70 is a lifting seat, 71 is a lifting guide rod, 72 is a lifting plate, 73 is a transportation groove, 74 is a guide sleeve, and 75 is a limiting block. DETAILED DESCRIPTION
[0022] The technical solutions of the present application will be described clearly and completely below in combination with the embodiments. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0023] Referring to Figs. 1-3 The present application provides a technical solution:
[0024] The packaging equipment for silicon core grinding cone includes a packing support 54, a batch unloading component 55, a material collecting slope 56, a transposition component 57, a bagging component 58, a vacuum and sealing component 59 and a boxing component 60. The batch unloading component 55 is arranged on the top of one side of the packing support 54 and is used to grab the unpackaged silicon core 8. The boxing component 60 is arranged on the top of the other side of the packing support 54. The material collecting slope 56 is fixedly arranged on the middle part of the packing support 54 and cooperates with the batch unloading component 55. The bagging component 58 and the vacuum and sealing component 59 are both arranged on the middle part of the packing support 54, and the bagging component 58 is arranged between the vacuum and sealing component 59 and the material collecting slope 56. The boxing component 60 cooperates with the vacuum and sealing component 59. The transposition component 57 is arranged on the lower part of the packing support 54, and the material collecting slope 56, the bagging component 58 and the vacuum and sealing component 59 all cooperate with the transposition component 57. The batch unloading component 55, the transposition component 57, the bagging component 58, the vacuum and sealing component 59 and the boxing component 60 are all electrically connected with a control center. The material collecting slope 56 is arranged to be inclined to the side of the bagging component 58. The lower end of the material collecting slope 56 is provided with a limiting block 75 for preventing the silicon core 8 from sliding. The control center is a prior art and controls the equipment to realize automatic work. The packing support 54 is used to install the batch unloading component 55, the material collecting slope 56, the transposition component 57, the bagging component 58, the vacuum and sealing component 59 and the boxing component 60. The batch unloading component 55 grabs the cleaned and dried silicon core 8 and places it on the material collecting slope 56. Under the action of gravity, the silicon core 8 on the material collecting slope 56 is concentrated on the lower side of the material collecting slope 56. The transposition component 57 is pushed up and moves the silicon core 8 to the position of the bagging component 58 and then places it down. The bagging component 58 of the prior art bags the silicon core 8. After the bagging is completed, the transposition component 57 pushes up the bagged silicon core 8 and places it at the vacuum and sealing component 59. The vacuum and sealing component 59 of the prior art performs vacuumizing and sealing operations on the bag. After the sealing, the boxing component 60 grabs the sealed silicon core 8 and places it in a material collecting box 65.
[0025] In some embodiments, a first sliding rail 61 is arranged on the top of the packing support 54. The batch unloading component 55 is slidingly arranged on one end of the first sliding rail 61, and the boxing component 60 is slidingly arranged on the other end of the first sliding rail 61. The batch unloading component 55 and the boxing component 60 share the first sliding rail 61, which can reduce the manufacturing cost of the equipment.
[0026] In some embodiments, the boxing component 60 comprises a boxing grabbing mechanism 62, a suction plate 63 and a suction cup 64, the boxing grabbing mechanism 62 is arranged on the first sliding rail 61, the suction plate 63 is fixedly arranged on the output of the boxing grabbing mechanism 62, a plurality of suction cups 64 are arranged on the suction plate 63, the suction cup 64 is sealingly connected with an air pressure device, and the air pressure device is electrically connected with the control center. The boxing component 60 further comprises a material collecting box 65 cooperating with the suction cup 64. Among them, the boxing grabbing mechanism 62 is a prior art, the function of the boxing grabbing mechanism 62 is to drive the suction plate 63 and the suction cup 64 to move on the first sliding rail 61, the suction plate 63 is used to install the suction cup 64, the suction cup 64 is communicated with the air pressure device in the prior art through a pipe, the air pressure device is controlled by the control center, and the air pressure device works to generate negative pressure to grab the plastic bag sleeved on the silicon core 8 through the suction cup 64, and then the silicon core 8 is moved into the material collecting box 65 for release.
[0027] In some embodiments, the transposition component 57 comprises a second sliding rail 66, a sliding seat 67, a sliding driving part 68, a lifting driving part 69, a lifting seat 70, a lifting guide rod 71 and a lifting plate 72, the second sliding rail 66 is fixedly arranged on the lower part of the packaging support 54, the sliding driving part 68 is fixedly arranged on the packaging support 54 and used to drive the sliding seat 67 to slide horizontally, the sliding seat 67 is connected with the lifting seat 70 through the lifting driving part 69, the lower end of the lifting guide rod 71 is fixedly connected with the lifting seat 70, the upper end of the lifting guide rod 71 penetrates through the sliding seat 67 and is fixedly connected with the lifting plate 72, and the lifting plate 72 is provided with a transportation groove 73 used to transport the silicon core 8. The sliding seat 67 is provided with a guide sleeve 74 cooperating with the lifting guide rod 71. Among them, the sliding seat 67 slides on the lower side of the second sliding rail 66, the sliding driving part 68 and the lifting driving part 69 are both air pressure cylinders, hydraulic cylinders or electric push rods in the prior art, the sliding driving part 68 drives the lifting plate 72 to move in the horizontal direction, the lifting driving part 69 drives the lifting plate 72 to move up and down, the lifting guide rod 71 plays a guiding role, and through the cooperation of the lifting seat 70 and the sliding seat 67, the lifting plate 72 can better transport the silicon core 8. The transportation groove 73 is used to transport the silicon core 8 to prevent the silicon core 8 from sliding off the transportation groove 73.
[0028] In some embodiments, two transportation grooves 73 are arranged on the lifting plate 72. Among them, in working, one transportation groove 73 transports the silicon core 8 on the material collecting slope 56 to the bagging component 58, and the other transportation groove 73 transports the silicon core 8 sleeved with the bag to the evacuation and bag sealing component 59, and the two work simultaneously, so that the structure is more simplified and compacted.
[0029] In the description of the utility model, it is understood that the terms "upper", "lower", "bottom", "one end", "top", "middle", "the other end", "coaxial", "one side", "inner", "front", "central", "both ends" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the utility model.
[0030] In the utility model, unless otherwise expressly specified and limited, the terms "setting", "mounting", "connecting", "fixing", "hinging" and the like should be understood broadly, for example, can be fixed connection, can also be detachable connection, or be integrated; can be mechanical connection, can also be electrical connection; can be directly connected, can also be indirectly connected through an intermediate medium, can be the communication inside two elements or the interaction relationship of two elements, unless otherwise expressly limited, the above-mentioned terms in the utility model can be understood according to the specific meaning in the specific circumstances by the ordinary skill in the art.
[0031] The above-mentioned is only the preferred embodiment of the utility model, and it should be understood that the utility model is not limited to the form disclosed herein, should not be regarded as excluding other embodiments, and can be used in various other combinations, modifications and environments, and can be changed within the scope of the concept described herein by the above-mentioned teaching or relevant technical or knowledge in the art.And the change and variation made by the person in the art without departing from the spirit and scope of the utility model should be within the protection scope of the claims attached to the utility model.
Claims
1. A packaging apparatus for silicon wafers, characterized by: The packaging support (54), the bulk unloading component (55), the material collecting slope (56), the transposition component (57), the bagging component (58), the vacuum sealing bagging component (59) and the boxing component (60) are provided, the bulk unloading component (55) is arranged on the top of one side of the packaging support (54) and used for grabbing the unpackaged silicon core (8), the boxing component (60) is arranged on the top of the other side of the packaging support (54), the material collecting slope (56) is fixedly arranged on the middle part of the packaging support (54) and cooperates with the bulk unloading component (55), the bagging component (58) and the vacuum sealing bagging component (59) are both arranged on the middle part of the packaging support (54) and the bagging component (58) is arranged between the vacuum sealing bagging component (59) and the material collecting slope (56), the boxing component (60) cooperates with the vacuum sealing bagging component (59), the transposition component (57) is arranged on the lower part of the packaging support (54), and the material collecting slope (56), the bagging component (58) and the vacuum sealing bagging component (59) all cooperate with the transposition component (57), and the bulk unloading component (55), the transposition component (57), the bagging component (58), the vacuum sealing bagging component (59) and the boxing component (60) are all electrically connected with the control center.
2. The silicon core cone packaging apparatus of claim 1, wherein: The first sliding rail (61) is arranged on the top of the packaging support (54), the bulk unloading component (55) is slidingly arranged on one end of the first sliding rail (61), and the boxing component (60) is slidingly arranged on the other end of the first sliding rail (61).
3. The silicon core cone packaging apparatus of claim 2, wherein: The boxing component (60) comprises a boxing grabbing mechanism (62), a suction plate (63) and a suction cup (64), the boxing grabbing mechanism (62) is arranged on the first sliding rail (61), the suction plate (63) is fixedly arranged on the output part of the boxing grabbing mechanism (62), a plurality of suction cups (64) are arranged on the suction plate (63), the suction cup (64) is sealingly connected with the air compression equipment, and the air compression equipment is electrically connected with the control center.
4. The silicon core cone packaging apparatus of claim 3, wherein: The boxing component (60) further comprises a material collecting box (65), and the material collecting box (65) cooperates with the suction cup (64).
5. The silicon core cone packaging apparatus of any one of claims 1-4, wherein: The material collecting slope (56) is obliquely arranged towards the bagging component (58).
6. The silicon core cone packaging apparatus of any one of claims 1-4, wherein: The transposition component (57) comprises a second sliding rail (66), a sliding seat (67), a sliding drive (68), a lifting drive (69), a lifting seat (70), a lifting guide rod (71) and a lifting plate (72), the second sliding rail (66) is fixedly arranged on the lower part of the packing support (54), the sliding drive (68) is fixedly arranged on the packing support (54) and is used for driving the sliding seat (67) to slide horizontally, the sliding seat (67) is connected with the lifting seat (70) through the lifting drive (69), the lower end of the lifting guide rod (71) is fixedly connected with the lifting seat (70), the upper end of the lifting guide rod (71) penetrates through the sliding seat (67) and is fixedly connected with the lifting plate (72), and the lifting plate (72) is provided with a conveying groove (73) used for conveying the silicon core (8).
7. The silicon core cone packaging apparatus of claim 6, wherein: Two conveying grooves (73) are arranged on the lifting plate (72).
8. The silicon core cone packaging apparatus of claim 6, wherein: A guide sleeve (74) matched with the lifting guide rod (71) is arranged on the sliding seat (67).
9. The silicon core cone packaging apparatus of any one of claims 1-4, wherein: A limiting block (75) for preventing the silicon core (8) from sliding is arranged on the lower end of the aggregate inclined surface (56).