Automatic equipment for pasting gum on B shell of notebook computer
By designing an automated adhesive application device for laptop shells, using a servo slide and robotic arm to simulate manual operation, the problem of low efficiency in manual application was solved, achieving automated adhesive application, improving production efficiency and reducing costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-25
- Publication Date
- 2026-03-20
AI Technical Summary
In existing technologies, the application of adhesive to the back of the laptop shell mainly relies on manual operation, resulting in low efficiency and high cost.
An automated device for applying adhesive backing to the B-shell of a laptop was designed. It employs a servo slide, a peeling mechanism, an adhesive application robot, and a loading and unloading robot to simulate manual operation and achieve automated adhesive application.
It has enabled automated application of adhesive to the back of laptop shells, improving production efficiency and reducing manufacturing costs.
Smart Images

Figure CN224014130U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to notebook computer shell processing technical field, specifically relates to a notebook computer B shell pastes back glue automation equipment. BACKGROUND
[0002] The shell of the notebook computer is generally divided into notebook computer A, B, C and D shells, and specific introduction is as follows:
[0003] A shell: namely the back cover of the screen, it is the uppermost surface when the notebook computer is closed, and usually has a brand logo or other decorative patterns. Its main function is to protect the screen and internal hardware, and also affects the overall appearance and recognition of the notebook computer, and its material is various, such as engineering plastic, magnesium-aluminum alloy, carbon fiber composite material, etc.
[0004] B shell: refers to the front frame of the screen, namely the edge part around the display screen, which is usually made of glass or plastic. It not only plays a role in appearance and decoration, but also provides additional structural support for the screen to protect it from scratches and breakage.
[0005] C shell: is the upper cover of the main machine, including the area where the keyboard, hand rest and touchpad are located. This part usually integrates power switches, various interfaces, etc., and needs to consider ergonomics in design to provide a more comfortable and stable operation feeling.
[0006] D shell: is the lower cover of the main machine, namely the bottom surface of the notebook computer, which is usually made of engineering plastic and has good rigidity and wear resistance. The bottom usually has heat dissipation holes, foot pads, and may also contain some removable covers for easy upgrading or replacing of hardware components such as memory and hard disk.
[0007] In the notebook computer shell manufacturing factory, the notebook computer factory needs suppliers to supply notebook computer B shell with back glue pasted around, and the back glue is a strip of glue used for reinforcing structure, which has strong adhesion and good temperature resistance, and is used to fix the connection between the front frame and the screen frame. The back glue commonly used by enterprises is in roll form and has release paper on both sides, similar to the structure of double-sided adhesive in the stationery field.
[0008] In the prior art, since the back glue is a long and thin strip, in order to ensure the straightness after pasting, many enterprises use manual pasting, and the only disadvantage of manual pasting is low efficiency and high labor cost. SUMMARY
[0009] Therefore, the utility model provides a notebook computer B shell pastes back glue automation equipment, which simulates manual operation by designing a back glue fixture combined with a back glue manipulator.
[0010] To solve the above technical problems, the utility model adopts the following technical scheme:
[0011] The utility model discloses a notebook B shell pastes back adhesive automation equipment, including frame and be located on the servo slide of frame, stripping mechanism, pastes back adhesive manipulator and feeding and discharging manipulator, is equipped with B shell positioning fixture on the servo slide, is equipped with first negative pressure suction hole on the B shell positioning fixture, stripping mechanism is by the feeding frame, roller, stripping board and receiving roller constitute, be equipped with a plurality of second negative pressure suction hole on the stripping board, be equipped with pastes back adhesive fixture on the pastes back adhesive manipulator, and the pastes back adhesive fixture includes support, first cylinder, first long strip shape sucking disc and second long strip shape sucking disc, first cylinder installs on the side of support, first long strip shape sucking disc installs one end of support, second long strip shape sucking disc installs on first cylinder, be equipped with notch on first long strip shape sucking disc and second long strip shape sucking disc, be equipped with first negative pressure sucking disc in the notch, be equipped with notebook B shell feeding and discharging fixture on the feeding and discharging manipulator, and the notebook B shell feeding and discharging fixture is equipped with two second cylinders according to linear arrangement and a plurality of second negative pressure sucking disc, be equipped with clamping plate on the second cylinder.
[0012] Compared with the prior art, the utility model has the advantages that:
[0013] The notebook B shell pastes back adhesive automation equipment of the utility model positions product accurately through servo slide, and the stripping of back adhesive release paper is automatically completed through stripping mechanism, and the automatic pasting back adhesive operation of notebook B shell is completed in combination through pastes back adhesive manipulator and feeding and discharging manipulator, and the whole process is completely automatic, can effectively improve production efficiency and reduce manufacturing cost. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is first direction three-dimensional structure schematic diagram of the utility model;
[0015] Figure 2 It is A place local enlarged structure schematic diagram of the utility model;
[0016] Figure 3 It is B place local enlarged structure schematic diagram of the utility model;
[0017] Figure 4 It is pastes back adhesive fixture structure schematic diagram of the utility model;
[0018] Figure 5 It is second direction three-dimensional structure schematic diagram of the utility model;
[0019] Figure 6 It is C place local enlarged structure schematic diagram of the utility model;
[0020] Figure 7 It is main view structure schematic diagram of the utility model;
[0021] Figure 8This is a side view of the structure of this utility model;
[0022] Figure 9 This is a schematic diagram of the rear view structure of this utility model;
[0023] Figure 10 This is a top view of the structure of this utility model. Detailed Implementation
[0024] See appendix Figure 1-10 As shown, the automated equipment for applying adhesive backing to the laptop shell includes a frame 1 and a servo slide 2, a peeling mechanism 3, an adhesive application robot 4, and a loading / unloading robot 5 mounted on the frame 1. A shell positioning fixture 2-1 is mounted on the servo slide 2, and the shell positioning fixture 2-1 has a first negative pressure suction hole 2-2. The peeling mechanism 3 consists of a loading frame 3-1, a roller 3-2, a peeling plate 3-3, and a receiving roller 3-4. Multiple second negative pressure suction holes 3-5 are provided on the peeling plate 3-3. The adhesive application robot 4 has an adhesive application fixture 5, which includes a bracket 5-1, a first cylinder 5-2, a first elongated suction cup 5-3, and a second elongated suction cup 5-4. A strip-shaped suction cup 5-4 is provided. The first cylinder 5-2 is installed on the side of the bracket 5-1. The first long strip-shaped suction cup 5-3 is installed at one end of the bracket 5-1. The second long strip-shaped suction cup 5-4 is installed on the first cylinder 5-2. Notches 5-5 are provided on both the first long strip-shaped suction cup 5-3 and the second long strip-shaped suction cup 5-4. A first negative pressure suction cup 5-6 is provided in the notch 5-5. A notebook B shell loading and unloading fixture 6 is provided on the loading and unloading robot arm 5. The notebook B shell loading and unloading fixture 6 is provided with two second cylinders 6-1 arranged in a straight line and multiple second negative pressure suction cups 6-2. A clamping plate 6-3 is provided on the second cylinder 6-1.
[0025] Working principle: the utility model notebook B shell paste back glue automation equipment is mainly used for notebook B shell four around paste four back glue, since notebook B shell is rectangle structure, so it needs to paste two kinds of length back glue, in order to improve production efficiency, the utility model drawing designs two paste back glue mechanical hands 4, initial state, need to install the back glue of roll to the feeding frame 3-1 of stripping mechanism 3, and the one end of back glue is through stripping plate 3-3 and is wound on the roller 3-2, and the release paper at the bottom of back glue is pried and is wound on the material receiving roller 3-4, since a plurality of second negative pressure suction holes 3-5 are arranged on stripping plate 3-3, the back glue placed on stripping plate 3-3 is adsorbed flat, the shape of back glue on release paper is generally strip-shaped and is determined according to the edge width of notebook B shell, the back glue on release paper is cut according to certain specifications, only the release paper on the bottom is pasted.The equipment is started, and the notebook B shell loading and unloading jig connected with the notebook B shell loading and unloading mechanism 5 drives the notebook B shell loading and unloading jig to load the notebook B shell on the B shell positioning jig 2-1, specifically, two second air cylinders 6-1 are started to drive the clamping plates 6-3 connected therewith to clamp the shaft part of the notebook B shell (the lower end of the screen), and a plurality of second negative pressure suction cups 6-2 adsorb the edge part of the notebook B shell (the middle and upper end of the screen).The first negative pressure suction hole 2-2 is arranged on the B shell positioning jig 2-1 and can adsorb the notebook B shell.The servo slide 2 moves reciprocatingly on the rack 1, and the movement of the servo slide 2 drives the B shell positioning jig 2-1 connected therewith and the notebook B shell arranged on the B shell positioning jig 2-1 to move to the operation position of the paste back glue mechanical hand 4.The paste back glue mechanical hand 4 moves the paste back glue jig 5 connected therewith to the stripping mechanism 3 position, specifically, the first long strip-shaped suction cup 5-3 adsorbs the first back glue on the stripping plate 3-3, then the first air cylinder 5-2 is started to drive the second long strip-shaped suction cup 5-4 connected therewith to adsorb the second back glue on the stripping plate 3-3, then the paste back glue mechanical hand 4 moves the first back glue and the second back glue to the corresponding position of the notebook B shell on the B shell positioning jig 2-1 to complete the back glue pasting process.When the back glue on the notebook B shell is pasted completely, the servo slide 2 moves the notebook B shell to the working range of the notebook B shell loading and unloading mechanism 5, and the notebook B shell loading and unloading jig 6 connected therewith loads the notebook B shell on which the back glue is pasted completely.The utility model notebook B shell paste back glue automation equipment is completely automatic in the whole process, and can effectively improve production efficiency and reduce manufacturing cost.
[0026] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and is not intended to limit the present application, although the foregoing embodiments of the present application have been described in detail, for the skilled in the art, it still can be modified, or for the equivalent replacement of part of the technical features of the technical solutions recorded in the foregoing embodiments. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application, shall be included within the scope of the present application.
Claims
1. An automated equipment for applying adhesive backing to notebook computer shells, comprising a frame and a servo slide, a peeling mechanism, an adhesive application robot, and an unloading robot mounted on the frame, characterized in that: A B-shell positioning fixture is provided on the servo slide, and a first negative pressure suction hole is provided on the B-shell positioning fixture; the stripping mechanism consists of a feeding frame, rollers, a stripping plate, and a receiving roller, and multiple second negative pressure suction holes are provided on the stripping plate; an adhesive backing fixture is provided on the adhesive backing robot, and the adhesive backing fixture includes a bracket, a first cylinder, a first elongated suction cup, and a second elongated suction cup. The first cylinder is installed on the side of the bracket, the first elongated suction cup is installed at one end of the bracket, and the second elongated suction cup is installed on the first cylinder. Notches are provided on both the first and second elongated suction cups, and a first negative pressure suction cup is provided in the notches; a notebook B-shell loading and unloading fixture is provided on the loading and unloading robot, and the notebook B-shell loading and unloading fixture has two second cylinders arranged in a straight line and multiple second negative pressure suction cups. A clamping plate is provided on the second cylinder.