A notebook computer shell storage mechanism
By setting up partitions and labeled end blocks inside the storage box for classification, and equipping it with a dust blowing device and a self-cleaning conveyor, the problem of messy storage of laptop casings is solved, enabling rapid positioning and cleaning, and improving work efficiency and product quality.
Patent Information
- Application Number
- CN202311224869.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-21
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2043-09-21
AI Technical Summary
In the current technology, the storage of laptop casings is chaotic and the classification is unclear, which makes it difficult for workers to quickly find the required casing, increases the error rate and cost, and at the same time, the accumulation of dust on the casings affects quality and hygiene.
Design a storage box with internal partitions dividing it into classification chambers, labeled end blocks for classification, and equipped with a dust blowing device and a self-cleaning conveyor to achieve automated classification, cleaning and conveying.
By clearly classifying and labeling, the required shells can be quickly located, reducing error rates and costs, maintaining a clean working environment, and improving operational efficiency and product quality.
Smart Images

Figure CN117326185B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of notebook computer casing storage technology, and more particularly to a notebook computer casing storage mechanism. Background Technology
[0002] A laptop casing is a protective case installed on the outside of a laptop computer. Its main function is to protect the internal hardware components of the computer from damage and external environmental factors. The casing is usually made of durable materials, such as plastic, metal, or composite materials, which can prevent the computer from physical impacts, dust, and moisture. The popularity of laptops and the increased mobility have made the design and manufacturing of casings increasingly important. The casing needs to balance protective performance with thinness and portability to meet users' needs for mobile computers. In addition, users' aesthetic and personalization requirements for casings are constantly increasing. Therefore, the design needs to take these factors into account to provide sufficient protection and an appearance design that meets user needs. Laptop casings need to be stored and placed during the manufacturing process to facilitate retrieval in subsequent processing stages.
[0003] Existing technologies often store housings in a group without clear classification or organization, leading to chaos. Workers may spend a lot of time searching for specific housings when needed. Due to the lack of clear classification and labeling, housings of different models and specifications may be mixed together, potentially causing workers to mistakenly select unsuitable housings for processing, increasing error rates and costs. In addition, housings accumulate dust and dirt in storage boxes, which may negatively affect the appearance and hygiene of the housings, impacting product quality and customer satisfaction. Summary of the Invention
[0004] Based on the technical problems existing in the background art, the present invention proposes a storage mechanism for a laptop casing.
[0005] The present invention provides a laptop computer casing storage mechanism, including a storage box;
[0006] The storage box has storage cavities on both sides, and several partitions are installed in the storage cavities. The partitions divide the storage cavities into several classification chambers. Each of the classification chambers is equipped with a storage component. The storage box has several openings, and the openings are connected to the classification chambers respectively. The storage box is equipped with several labeled end blocks that block the openings respectively.
[0007] The storage cavity is equipped with a dust-blowing device for cleaning objects and a drive device for moving the dust-blowing device up and down.
[0008] The storage box is equipped with a self-cleaning conveyor for transferring objects;
[0009] The storage box has an exhaust duct that connects to the sorting chamber.
[0010] Preferably, the dust blowing component includes a dust blowing hood, which is disposed in the storage cavity and driven to move up and down by a driving component. A through dust blowing channel is opened in the dust blowing hood, and a fixed plate is installed in the dust blowing channel. A blowing part and a driving part for driving the blowing part to rotate are installed on the side of the fixed plate near the partition.
[0011] Preferably, the blowing unit includes a plurality of shafts and axial fans, the plurality of shafts being rotatably connected to the side of the fixed plate near the partition, the plurality of axial fans being connected to the end of the shafts fitted near the partition, and the plurality of shafts being driven to rotate by a drive unit.
[0012] Preferably, the drive unit includes a first gear, a first rack and pinion belt, and a first servo motor. The ends of several shafts away from the axial fan all rotate through the fixed plate. Several first gears are respectively fixedly mounted on several shafts. The first rack and pinion belt is sleeved on several first gears. The first servo motor is installed inside the dust blower hood to drive one of the first gears to rotate.
[0013] Preferably, the driving component includes a threaded rod, a second servo motor, and a fixed rod. The bottom of the storage box has a receiving cavity communicating with the storage chamber. The second servo motor is installed at the bottom of the receiving cavity. The threaded rod is connected to the output end of the second servo motor, and the top end of the threaded rod is rotatably connected to the top of the storage chamber. The fixed rod is installed inside the receiving cavity, and the top end of the fixed rod is fixedly connected to the top of the storage chamber. The dust blower is sleeved on the threaded rod and the fixed rod. The dust blower is threadedly connected to the threaded rod, and the dust blower is slidably connected to the fixed rod.
[0014] Preferably, the storage component includes a storage rack disposed in the sorting chamber, the storage rack having a U-shaped groove, the inner walls on both sides of the storage rack being connected to limiting plates located in the U-shaped groove, and rollers being installed around the bottom of the storage rack.
[0015] Preferably, the self-cleaning conveyor includes a conveying section, a brush section, and a drive mechanism. Two U-shaped frames are installed on the top of the storage box, and the conveying section is installed between the two U-shaped frames for conveying objects. The brush section is installed on one of the U-shaped frames and positioned below the conveying section. The brush section is used to clean the conveying section. The drive mechanism is installed on one of the U-shaped frames to drive the conveying section and the brush section to rotate simultaneously.
[0016] Preferably, the conveying unit includes two first rotating rods, two reciprocating drums, and a conveyor belt. The two first rotating rods are rotatably connected to two U-shaped frames and driven by a drive mechanism. The two reciprocating drums are fixedly mounted on the two first rotating rods. The conveyor belt is sleeved on the two reciprocating drums and drives them.
[0017] Preferably, the brush section includes a second rotating rod and a brush cylinder. The second rotating rod is positioned below the first rotating rod, and one end of the second rotating rod is rotatably connected to the inner wall of the U-shaped frame. The other end of the second rotating rod rotatably passes through the outer side of the U-shaped frame. The brush cylinder is fixedly mounted on the second rotating rod, and bristles for conveyor belt cleaning are connected to the outer periphery of the brush cylinder. The drive mechanism includes two second gears, a second rack and pinion belt, and a third servo motor. One end of the first rotating rod rotatably passes through the outer side of the U-shaped frame. The two second gears are respectively fixedly mounted on one end of the first rotating rod and the other end of the second rotating rod. The second rack and pinion belt is sleeved on the two second gears and engages with them for transmission. The third servo motor is mounted on the U-shaped frame and drives one of the second gears to rotate.
[0018] Preferably, both ends of the storage box are provided with exhaust vents that communicate with the exhaust channel, and exhaust fans are installed in both exhaust vents. Both sides of the storage box are provided with openings that communicate with the storage cavity, and sealing plates are installed on both sides of the storage box to seal the two openings.
[0019] The present invention has the following beneficial effects:
[0020] By using designated storage components and labeled end blocks, laptop casings can be categorized according to the labeled end blocks on the storage box. The casings are then placed into their respective classification chambers and stored within the storage components. When processing the casings, the storage components can be removed from the classification chambers and can be rolled on the ground for easy transport. This structure effectively solves the problem of disordered casing placement in existing technologies by categorizing laptop casings using labeled end blocks on the storage box and placing them into their respective classification chambers. This allows workers to quickly and accurately find the required casing when needed, saving search time and improving work efficiency. Clear categorization and labeling ensure that casings of different models and specifications are correctly stored and identified, reducing the possibility of workers mistakenly selecting unsuitable casings for processing, effectively lowering error rates and processing costs, and improving product quality and manufacturing efficiency.
[0021] By removing the storage components from the sorting chamber and rolling them on the ground, the storage components can be easily and quickly removed from the storage box for transfer and operation when processing the laptop casing, improving the convenience and efficiency of the operation.
[0022] With the addition of a dust-blowing component and a driving mechanism, after the laptop casing is placed in the corresponding sorting chamber, the dust-blowing component moves up and down via the driving mechanism. The dust-blowing component blows air onto the laptop casing within the sorting chamber, removing dust from the casing. The blown-off dust is then discharged through the exhaust duct. This structure, by blowing air onto the laptop casing within the sorting chamber to remove dust, and then discharging the blown-off dust through the exhaust duct, maintains the cleanliness of the work area, reduces dust accumulation, and further improves the hygiene of the working environment. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of the overall structure of a laptop casing storage mechanism proposed in this invention.
[0024] Figure 2 This is a partial structural diagram of a storage mechanism in a laptop casing proposed in this invention.
[0025] Figure 3 This is a schematic diagram of the storage component in a laptop casing storage mechanism proposed in this invention.
[0026] Figure 4 This is a schematic diagram of the dust blowing component in a laptop casing storage mechanism proposed in this invention.
[0027] Figure 5 This is a schematic diagram of the structure of a self-cleaning conveyor in a laptop casing storage mechanism proposed in this invention.
[0028] In the diagram: 1. Storage box; 2. Partition; 3. Storage component; 31. Storage rack; 32. Limiting plate; 33. Roller; 4. Labeled end block; 5. Dust blowing component; 51. Dust blowing hood; 52. Fixing plate; 53. Blowing section; 531. Shaft; 532. Axial flow fan; 54. Drive unit; 541. First gear; 542. First rack and belt; 543. First servo motor; 6. Drive component; 61. Threaded rod; 62. Second servo motor; 63. Fixed rod; 7. Self-cleaning conveyor; 71. Conveying section; 711. First rotating rod; 712. Reciprocating drum; 713. Conveyor belt; 72. Brush section; 721. Second rotating rod; 722. Brush cylinder; 723. Brush bristles; 73. Drive mechanism; 731. Second gear; 732. Second rack and pinion belt; 733. Third servo motor; 8. U-shaped frame; 9. Exhaust fan; 10. Sealing plate. Implementation
[0029] Reference Figures 1-5 The present invention proposes a storage mechanism for a laptop computer casing, including a storage box 1;
[0030] In this embodiment, storage chambers are provided on both sides of storage box 1, and several partitions 2 are installed in the storage chambers. The partitions 2 divide the storage chambers into several classification chambers, and storage components 3 are provided in each of the classification chambers. The storage components 3 include storage racks 31 installed in the classification chambers. U-shaped grooves are provided in the storage racks 31. Limiting plates 32 located in the U-shaped grooves are connected to the inner walls on both sides of the storage racks 31. Rollers 33 are installed around the bottom of the storage racks 31. Several openings are provided on the storage box 1, and the openings are respectively connected to the several classification chambers. Several labeled end blocks 4 are provided on the storage box 1 to block the openings respectively.
[0031] It should be noted that:
[0032] To facilitate the sorting of laptop casings, the casings can be categorized according to the numbered end blocks 4 on the storage box 1. The casings are then placed into their respective sorting chambers and stored in the U-shaped slots within the storage rack 31. When processing the casings, the storage rack 31 can be removed from the sorting chambers, and the rollers 33 on the rack 31 can roll on the ground for easy transport. This structure effectively solves the problem of disordered casing placement in existing technologies by sorting the casings using the numbered end blocks 4 on the storage box 1 and placing them into their respective sorting chambers. This allows workers to quickly and accurately find the required casing when needed, saving search time and improving work efficiency. Clear sorting and labeling ensure that casings of different models and specifications are correctly stored and identified, reducing the possibility of workers mistakenly selecting unsuitable casings for processing, effectively lowering error rates and processing costs, and improving product quality and manufacturing efficiency.
[0033] By removing the storage component 3 from the sorting chamber and rolling it on the ground, the storage component 3 can be easily and quickly removed from the storage box 1 for transfer and operation when processing the laptop casing, thus improving the convenience and efficiency of the operation.
[0034] In this embodiment, a dust-blowing component 5 for cleaning objects and a driving component 6 for driving the dust-blowing component 5 to move up and down are installed inside the storage cavity. The dust-blowing component 5 includes a dust-blowing hood 51, which is disposed inside the storage cavity and driven to move up and down by the driving component 6. A through dust-blowing channel is opened inside the dust-blowing hood 51, and a fixed plate 52 is installed inside the dust-blowing channel. A blowing part 53 and a driving part 54 for driving the blowing part 53 to rotate are installed on the side of the fixed plate 52 near the partition 2. The blowing part 53 includes a plurality of shafts 531 and an axial flow fan 532. The plurality of shafts 531 are rotatably connected to the side of the fixed plate 52 near the partition 2, and the plurality of axial flow fans 532 are connected to the end of the shafts 531 fitted near the partition 2. The plurality of shafts 531 are driven to rotate by the driving part 54. The drive unit 54 includes a first gear 541, a first rack and pinion belt 542, and a first servo motor 543. Several shafts 531 have their ends away from the axial fan 532 rotating through the fixed plate 52. Several first gears 541 are respectively fixedly mounted on several shafts 531. The first rack and pinion belt 542 is sleeved on several first gears 541. The first servo motor 543 is installed inside the dust blower hood 51 to drive one of the first gears 541 to rotate. The driving component 6 includes a threaded rod 61, a second servo motor 62, and a fixed rod 63. The bottom of the storage box 1 has a storage cavity communicating with the storage chamber. The second servo motor 62 is installed at the bottom of the storage cavity. The threaded rod 61 is connected to the output end of the second servo motor 62, and the top end of the threaded rod 61 is rotatably connected to the top of the storage cavity. The fixed rod 63 is installed in the storage cavity, and the top end of the fixed rod 63 is fixedly connected to the top of the storage cavity. The dust blower 51 is sleeved on the threaded rod 61 and the fixed rod 63. The dust blower 51 is threadedly connected to the threaded rod 61, and the dust blower 51 is slidably connected to the fixed rod 63.
[0035] In this embodiment, the storage box 1 has an exhaust channel that communicates with the sorting chamber.
[0036] It should be noted that:
[0037] To facilitate the removal of dust from the laptop casing, a first servo motor 543 drives one of the first gears 541 to rotate. Under the action of the first rack and pinion belt 542, the shafts 531 on several of the first gears 541 can rotate. The axial fan 532 on the shaft 531 blows air onto the laptop casing, thereby removing the dust. During dust removal, a second servo motor 62 drives the threaded rod 61 to rotate reciprocally, which moves the dust blowing cover 51 up and down along the fixed rod 63, thus achieving comprehensive dust removal from the laptop casing. The blown-off dust is then discharged through the exhaust duct. This structure blows air onto the laptop casing in the sorting chamber, removing the dust from the casing. The exhaust duct discharges the blown-off dust, keeping the working area clean, reducing dust accumulation, and further improving the hygiene of the working environment.
[0038] In this embodiment, a self-cleaning conveyor 7 for transporting objects is installed on the storage box 1. The self-cleaning conveyor 7 includes a conveying section 71, a brush section 72, and a drive mechanism 73. Two U-shaped frames 8 are installed on the top of the storage box 1, which are arranged opposite each other. The conveying section 71 is installed between the two U-shaped frames 8 for transporting objects. The brush section 72 is installed on one of the U-shaped frames 8 and is positioned below the conveying section 71. The brush section 72 is used to clean the conveying section 71. The drive mechanism 73 is installed on one of the U-shaped frames 8 and is used to drive the conveying section 71 and the brush section 72 to rotate simultaneously. The conveying section 71 includes two first rotating rods 711, two reciprocating cylinders 712, and a conveyor belt 713. The two first rotating rods 711 are rotatably connected to the two U-shaped frames 8 and are driven by the drive mechanism 73. The two reciprocating cylinders 712 are fixedly fitted onto the two first rotating rods 711. The conveyor belt 713 is fitted onto the two reciprocating cylinders 712 and is in transmission cooperation with them. The brush section 72 includes a second rotating rod 721 and a brush cylinder 722. The second rotating rod 721 is located below a first rotating rod 711, and one end of the second rotating rod 721 is rotatably connected to the inner wall of a U-shaped frame 8. The other end of the second rotating rod 721 rotatably passes through the outer side of the U-shaped frame 8. The brush cylinder 722 is fixedly fitted on the second rotating rod 721, and the outer periphery of the brush cylinder 722 is connected with bristles 723 for cleaning the conveyor belt 713. The drive mechanism 73 includes two second gears 731, a second rack and pinion belt 732, and a third servo motor 733. One end of the first rotating rod 711 rotatably passes through the outer side of the U-shaped frame 8. The two second gears 731 are respectively fixedly fitted on one end of the first rotating rod 711 and the other end of the second rotating rod 721. The second rack and pinion belt 732 is sleeved on the two second gears 731 and drives them. The third servo motor 733 is mounted on a U-shaped frame 8 and drives one of the second gears 731 to rotate.
[0039] It should be noted that:
[0040] When classifying and storing laptop casings, one of the second gears 731 can be rotated by the third servo motor 733. Under the action of the second rack and pinion belt 732, the first rotating rod 711 and the second rotating rod 721 connected to the two second gears 731 can be rotated. When the first rotating rod 711 rotates, it can drive the conveyor belt 713 on the reciprocating drum 712 to rotate as well. The laptop casings can be placed on the conveyor belt 713 for transportation, which can improve the efficiency of classification and storage of casings. When the conveyor belt 713 is running, the bristles 723 on the brush cylinder 722 can clean the dust on the conveyor belt 713. This structure facilitates the transportation of laptop casings, improves their storage efficiency, and can also achieve self-cleaning to prevent dust from adhering to the laptop casings.
[0041] In a specific embodiment, both ends of the storage box 1 are provided with exhaust vents that communicate with the exhaust duct, and each exhaust vent is equipped with an exhaust fan 9. The exhaust fan 9 can accelerate the dust discharge speed.
[0042] In a specific embodiment, the storage box 1 has openings on both sides that communicate with the storage cavity, and sealing plates 10 are installed on both sides of the storage box 1 to seal the two openings. The sealing plates 10 facilitate the maintenance of the dust blowing component 5 and the driving component 6 inside the storage cavity.
[0043] The above description is merely a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the technical scope disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.
Claims
1. A notebook computer housing storage mechanism, characterized by: Including storage box (1); Both sides of the storage box (1) are provided with storage cavities, and a plurality of partitions (2) are installed in the storage cavities, the plurality of partitions (2) separate the storage cavities into a plurality of classified chambers, a storage element (3) is arranged in each of the plurality of classified chambers, a plurality of openings are formed in the storage box (1), and the plurality of openings are respectively communicated with the plurality of classified chambers, and a plurality of label end blocks (4) are arranged on the storage box (1) and respectively block the plurality of openings; A dust blowing element (5) for cleaning objects and a driving element (6) for driving the dust blowing element (5) to move up and down are installed in the storage cavity. A self-cleaning conveying element (7) for conveying objects is installed on the storage box (1); An exhaust passage communicated with the classified chambers is formed in the storage box (1). The self-cleaning conveying element (7) comprises a conveying part (71), a brush part (72) and a driving mechanism (73), two oppositely arranged U-shaped frames (8) are installed on the top of the storage box (1), the conveying part (71) is installed between the two U-shaped frames (8) for conveying objects, the brush part (72) is installed on one of the U-shaped frames (8) and is arranged below the conveying part (71), and the brush part (72) is used for cleaning the conveying part (71), and the driving mechanism (73) is installed on one of the U-shaped frames (8) for driving the conveying part (71) and the brush part (72) to rotate simultaneously.
2. The notebook computer housing storage mechanism of claim 1, wherein: The dust blowing element (5) comprises a dust blowing cover (51), the dust blowing cover (51) is arranged in the storage cavity and is driven by the driving element (6) to move up and down, a through dust blowing passage is formed in the dust blowing cover (51), a fixed plate (52) is installed in the dust blowing passage, a blowing part (53) and a driving part (54) for driving the blowing part (53) to rotate are installed on one side of the fixed plate (52) close to the partition (2).
3. The notebook computer housing storage mechanism of claim 2, wherein: The blowing part (53) comprises a plurality of shaft rods (531) and axial flow fans (532), the plurality of shaft rods (531) are rotatably connected to one side of the fixed plate (52) close to the partition (2), the plurality of axial flow fans (532) are connected to one end of the shaft rod (531) close to the partition (2), and the plurality of shaft rods (531) are driven to rotate by the driving part (54).
4. The notebook computer housing storage mechanism of claim 3, wherein: The driving part (54) comprises a first gear (541), a first rack belt (542) and a first servo motor (543), one end of each of the plurality of shaft rods (531) away from the axial flow fan (532) penetrates through the fixed plate (52), a plurality of first gears (541) are fixedly sleeved on the plurality of shaft rods (531), the first rack belt (542) is sleeved on the plurality of first gears (541), and the first servo motor (543) is installed in the dust blowing cover (51) and is used for driving one of the first gears (541) to rotate.
5. The notebook computer housing storage mechanism of claim 4, wherein: The driving member (6) comprises a threaded rod (61), a second servo motor (62) and a fixed rod (63), the bottom of the storage box (1) is provided with a receiving cavity which is communicated with the storage cavity, the second servo motor (62) is installed at the bottom of the receiving cavity, the threaded rod (61) is connected to the output end of the second servo motor (62), and the top end of the threaded rod (61) is rotatably connected to the top of the storage cavity, the fixed rod (63) is installed in the receiving cavity, and the top end of the fixed rod (63) is fixedly connected to the top of the storage cavity, the dust blowing cover (51) is sleeved on the threaded rod (61) and the fixed rod (63), the dust blowing cover (51) is threadedly connected with the threaded rod (61), and the dust blowing cover (51) is slidably connected with the fixed rod (63).
6. The notebook computer housing storage mechanism of claim 5, wherein: The storage member (3) comprises a storage rack (31) arranged in the classification chamber, a U-shaped groove is formed in the storage rack (31), and limiting plates (32) are connected to the inner walls of the two sides of the storage rack (31) and located in the U-shaped groove.
7. The notebook computer housing storage mechanism of claim 1, wherein: The conveying part (71) comprises two first rotating rods (711), two reciprocating barrels (712) and a conveying belt (713), the two first rotating rods (711) are rotatably connected in the two U-shaped frames (8) and are driven by a driving mechanism (73), the two reciprocating barrels (712) are fixedly sleeved on the two first rotating rods (711), and the conveying belt (713) is sleeved on the two reciprocating barrels (712) and is in transmission connection with the two reciprocating barrels (712).
8. The notebook computer housing storage mechanism of claim 7, wherein: The brush part (72) comprises a second rotating rod (721) and a brush barrel (722), the second rotating rod (721) is arranged below one of the first rotating rods (711) and is rotatably connected to one of the inner walls of the U-shaped frames (8), the other end of the second rotating rod (721) rotatably penetrates the outer side of one of the U-shaped frames (8), and the brush barrel (722) is fixedly sleeved on the second rotating rod (721). The driving mechanism (73) comprises two second gears (731), a second rack belt (732) and a third servo motor (733), one end of the first rotating rod (711) rotatably penetrates the outer side of the U-shaped frame (8), the two second gears (731) are fixedly sleeved on one end of the first rotating rod (711) and the other end of the second rotating rod (721), the second rack belt (732) is sleeved on the two second gears (731) and is in transmission connection with the two second gears (731), and the third servo motor (733) is installed on one of the U-shaped frames (8) and drives one of the second gears (731) to rotate.
9. The notebook computer housing storage mechanism of claim 1, wherein: Both ends of the storage box (1) are provided with air outlet openings which are communicated with air outlet channels, air outlet fans (9) are installed in the two air outlet openings, and both sides of the storage box (1) are provided with openings which are communicated with the storage cavities, and sealing plates (10) are installed on both sides of the storage box (1) and seal the two openings.
Citation Information
Patent Citations
Storage device for lithium batteries
CN216637296U