Turnover conveying line for notebook computer shells
By designing a laptop casing flipping conveyor line, and utilizing the combination of clamping cylinders and rotary cylinders, the automated flipping and conveying of materials is achieved, solving the inefficiency problem caused by manual flipping in existing technologies and improving the degree of automation.
Patent Information
- Application Number
- CN202520677289.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-11
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-04-11
AI Technical Summary
In existing technologies, the flipping process of laptop casings relies on manual operation, resulting in low automation and low production efficiency.
A laptop casing flipping conveyor line was designed, which uses a clamping cylinder and a right-angle rotating frame. The rotating cylinder is used to clamp and flip the material. Combined with the collaborative work of the conveying component and the flipping component, the material flipping and conveying is automated.
It enables automated flipping and conveying of laptop casings, improving production efficiency, simplifying the structure, and enhancing the level of automation.
Smart Images

Figure CN223905991U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of auxiliary jig, concretely relates to a notebook computer shell overturning conveying line. BACKGROUND
[0002] The notebook computer shell adopts the plastic shell, and the plastic shell mainly has two types, the first type is ABS engineering plastic, and the heat dissipation performance and the anti-radiation ability are poor, and the second type is polycarbonate, and the heat dissipation performance is good, and the notebook computer shell needs to be painted on the surface after injection molding and is used for decoration.The notebook computer shell usually needs to be overturned by 180 degrees during assembly or forming, and the prior art usually relies on manual realization, and the automation degree is low and the production efficiency is low.
[0003] The utility model discloses a kind of clamping overturning jigs of application No.202322000549.8 Chinese utility model patent discloses a clamping overturning jig, including jig base and left rail, the jig base top left side is fixedly equipped with left rail, the jig base top right side is fixedly equipped with right rail, the right rail right side is fixedly connected with vertical plate, the left rail and right rail top are all set with wheel groove, the jig base upper portion is provided with moving plate, the moving plate bottom end four corners are all fixedly equipped with trundle, the trundle is embedded in wheel groove and moves, the right rail inner wall is set with reserved slot, the reserved slot is movably equipped with linear screw rod. The clamping overturning jig is driven under screw rod mechanism to send remote controller workpiece to specified position by being provided with servo motor, left rail, right rail, linear screw rod, screw block, moving plate, trundle, shortens the time consumed by manual feeding and taking material, without manual fixing and unlocking, solve the problem of manual feeding and taking material, time-consuming;However, the clamping overturning jig is complex, and is not suitable for clamping and overturning of notebook computer shell. SUMMARY
[0004] The utility model provides a kind of notebook computer shell overturning conveying line, can guarantee production efficiency while simplifying structure.
[0005] To achieve the above object, the utility model adopts the technical scheme that a kind of notebook computer shell overturning conveying line, it includes:
[0006] Multiple groups of material conveying components, multiple groups of the material conveying components are adjacent and interval arrangement, for conveying material downstream;
[0007] Overturning assembly, the overturning assembly is installed between adjacent two groups of the material conveying components, including the support vertical plate installed in the side of any material conveying component, the rotary cylinder installed on the outer surface of the support vertical plate and penetrating the support vertical plate, the right-angle rotary frame located between adjacent two groups of the material conveying components and being connected with the rotary cylinder and at least one clamping cylinder installed on the right-angle rotary frame and being matched with it to clamp the material.
[0008] Optimally, the right-angle rotating frame comprises a rotating disc arranged inside the support upright and connected with the rotating cylinder shaft, a base plate connected with the surface of the rotating disc and perpendicular to the surface, and an upright plate mounted on the upper surface of the base plate and perpendicular to the surface, the clamping cylinder is mounted on the surface of the upright plate and arranged opposite to the base plate, and the length direction of the upright plate corresponds to the length direction of the base plate.
[0009] Further, each of the material conveying assemblies comprises a carrier plate, a material conveying mechanism arranged above the carrier plate, and a lifting mechanism mounted on the carrier plate and connected with the top of the material conveying mechanism.
[0010] Further, the material conveying mechanism comprises a support frame horizontally arranged, a group of convex seats mounted on both ends of the support frame, a transmission roller rotatably mounted on each of the groups of convex seats, a circulating conveying belt mounted on the transmission roller, and a transmission motor connected with any of the transmission rollers through a transmission belt.
[0011] Further, the material conveying mechanism further comprises a side mounting plate fixed on the side of the support frame, a first transmission roller mounted on the end of any of the transmission rollers, and a second transmission roller rotatably mounted on the side mounting plate, the transmission motor is mounted on the side mounting plate and connected with the second transmission roller, and the transmission belt is mounted on the first transmission roller and the second transmission roller.
[0012] Further, the lifting mechanism comprises a plurality of guide sleeves embedded in the carrier plate, a plurality of support rods correspondingly penetrating through the guide sleeves, a support cross plate mounted on the lower ends of the plurality of support rods, and a manually adjustable screw rod adjustably penetrating through the carrier plate and the support cross plate for driving the support cross plate to lift.
[0013] Further, the lifting mechanism further comprises an adapter mounted on the lower end of each of the support rods, a first threaded sleeve mounted on the carrier plate, and a second threaded sleeve mounted on the support cross plate, the support cross plate is connected with the adapter, and the manually adjustable screw rod is threadedly matched with the first threaded sleeve and the second threaded sleeve.
[0014] Compared with the prior art, the notebook computer shell turnover conveying line has the following advantages: on one hand, the clamping cylinder and the right-angle rotating frame are matched to clamp the material, and on the other hand, the rotation of the rotating cylinder drives the material to circulate, so that the material conveyed on one group of material conveying assemblies can be transferred to another group of material conveying assemblies after being turned over by 180°, and the structure is simple and the degree of automation is high. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of the notebook computer casing flipping conveyor line of this utility model;
[0016] Figure 2 for Figure 1 Side view. Detailed Implementation
[0017] The present invention will be further described below with reference to the embodiments shown in the accompanying drawings.
[0018] like Figure 1 and Figure 2 The laptop casing flipping conveyor line shown mainly includes cooperating feeding components 1 and flipping components 2. There are multiple sets of feeding components 1, which are arranged adjacently and at intervals, typically at the same horizontal plane (but can also have a certain height difference depending on actual needs), used to convey material 1' (i.e., laptop casings) downstream; in this embodiment, there are two sets of feeding components 1. The flipping components 2 are installed between two adjacent sets of feeding components 1, used to catch the material conveyed by one set of feeding components 1, clamp it, flip it 180°, and then place it on another set of feeding components 1 to continue conveying downstream.
[0019] In this embodiment, the flipping assembly 2 includes a support vertical plate 21 installed (the installation method can be conventional, such as using fasteners like bolts) on the side of any material conveying assembly 1 (specifically, the side of the support frame 121 described below), a rotary cylinder 22 installed on the outer surface of the support vertical plate 21 and penetrating the support vertical plate 21 (at least the cylinder shaft of the rotary cylinder 22 penetrates the support vertical plate 21), a right-angle rotating frame 23 located between two adjacent sets of material conveying assemblies 1 and connected to the rotary cylinder 22, and at least one clamping cylinder 24 installed on the right-angle rotating frame 23 and cooperating with it to clamp the material 1' (in this embodiment, there are two clamping cylinders 24 spaced apart). Specifically, the right-angle rotating frame 23 includes a rotating disk 233 (i.e., the rotating disk 233 and the rotating cylinder 22 are located on both sides of the supporting vertical plate 21) disposed inside the supporting vertical plate 21 and connected to the cylinder shaft of the rotating cylinder 22, a base plate 231 (the base plate 231 is parallel to the axis of the rotating disk 233, and the connection method here can be an integral connection or a connection using conventional fasteners such as bolt pairs) and a vertical plate 232 (at this time, the length direction of the vertical plate 232 corresponds to the length direction of the base plate 231, i.e., the vertical plate 232 and the base plate 231 are preferably set to be of equal length and aligned) mounted on the surface of the vertical plate 232 and disposed opposite to the base plate 231. When material 1' is conveyed to contact the surface of vertical plate 232, clamping cylinder 24 works to cooperate with base plate 231 to clamp material 1', rotating cylinder 22 works to drive material 1' to rotate 180°, clamping cylinder 24 releases, and material 1' falls onto another set of conveying components 1 to continue to be conveyed downstream.
[0020] In this embodiment, to improve the level of automation, a material sensor (preferably a proximity sensor, i.e., a proximity switch) can be installed on the surface of the vertical plate 232, and a PLC (Programmable Logic Controller) or microcontroller can be added. When material 1' is conveyed, the material sensor can sense it and send a signal (i.e., the output signal of the proximity sensor). According to the preset control logic, the control signal is output to the solenoid valve of the clamping cylinder 24, thereby realizing the automated control of the cylinder piston extending or retracting (the automated control here is the existing conventional technology, and CN213111561U can be referenced).
[0021] In this embodiment, each set of material conveying components 1 includes a platform plate 11 ( Figure 1 and Figure 2 The image only shows the platform 11, which is usually not isolated, but fixed or installed on other structures, such as electrical cabinets, the material conveying mechanism 12 located above the platform 11, and the lifting mechanism 13 installed on the platform 11 and connected to the top of the material conveying mechanism 12.
[0022] The feeding mechanism 12 comprises a horizontally arranged support frame 121, a plurality of lug sets 122 mounted at both ends of the support frame 121, a driving roller 123 rotatably mounted on each lug set 122 (i.e. there are two driving rollers 123), a circulating feeding belt 129 mounted on the two driving rollers 123, and a driving motor 128 connected to any one of the driving rollers 123 through a driving belt 127, so that the driving motor 128 can drive the circulating feeding belt 129 to rotate when the driving motor 128 is working, thereby achieving the feeding of the material 1'. Specifically, the feeding mechanism 12 further comprises a side mounting plate 125 fixed to the side of the support frame 121, a first driving roller 124 mounted at the end of any one of the driving rollers 123, and a second driving roller 126 rotatably mounted on the side mounting plate 125, the driving motor 128 is mounted on the side mounting plate 125 and connected to the second driving roller 126 (the second driving roller 126 is connected to the output shaft of the driving motor 128), and the driving belt 127 is mounted on the first driving roller 124 and the second driving roller 126. In this way, the stable feeding of the material 1' is facilitated.
[0023] The lifting mechanism 13 comprises a plurality of guide sleeves 132 embedded in the loading table plate 11, a plurality of support rods 131 correspondingly penetrating the guide sleeves 132, a support cross plate 133 mounted at the lower end of the plurality of support rods 131, and a manually adjustable screw rod 137 adjustably penetrating the loading table plate 11 and the support cross plate 133 for driving the support cross plate 133 to lift. Specifically, the lifting mechanism 13 further comprises a connector 134 mounted at the lower end of each support rod 131, a first threaded sleeve 136 mounted on the loading table plate 11, and a second threaded sleeve 135 mounted on the support cross plate 133, the support cross plate 133 is connected to the connector 134, and the manually adjustable screw rod 137 penetrates the loading table plate 11 and the support cross plate 133 and is threadedly connected to the first threaded sleeve 136 and the second threaded sleeve 135, so that the manual adjustment of the manually adjustable screw rod 137 can adjust the height of the feeding mechanism 12, thereby ensuring the cooperation of the plurality of feeding assemblies 1.
[0024] The above embodiments are only for illustrating the technical concept and characteristics of the present application, and the purpose is to enable those skilled in the art to understand the content of the present application and implement it, and cannot limit the protection scope of the present application. Any equivalent changes or modifications made in accordance with the spirit and essence of the present application shall be covered within the protection scope of the present application.
Claims
1. A notebook computer housing turnover conveying line characterized by, It comprises: a plurality of groups of material conveying assemblies (1) arranged adjacently and spaced apart, for conveying material (1') downstream; a turnover assembly (2) installed between two adjacent groups of material conveying assemblies (1), comprising a support vertical plate (21) installed on the side of any material conveying assembly (1), a rotary air cylinder (22) installed on the outer surface of the support vertical plate (21) and penetrating through the support vertical plate (21), a right-angle rotating frame (23) located between two adjacent groups of material conveying assemblies (1) and connected with the rotary air cylinder (22), and at least one clamping air cylinder (24) installed on the right-angle rotating frame (23) and cooperating with the right-angle rotating frame (23) to clamp the material (1').
2. The notebook computer housing flip turn conveyor line according to claim 1, wherein: The right-angle rotating frame (23) comprises a rotating disc (233) arranged on the inner side of the support vertical plate (21) and connected with the cylinder shaft of the rotary air cylinder (22), a base plate (231) with an end surface connected with and perpendicular to the surface of the rotating disc (233), and a vertical plate (232) installed on the upper surface of the base plate (231) and perpendicular thereto, the clamping air cylinder (24) being installed on the surface of the vertical plate (232) and arranged opposite to the base plate (231), the length direction of the vertical plate (232) corresponding to the length direction of the base plate (231).
3. The notebook computer case flip transfer line according to claim 1 or 2, characterized by: Each group of material conveying assemblies (1) comprises a carrier plate (11), a material conveying mechanism (12) arranged above the carrier plate (11), and a lifting mechanism (13) installed on the carrier plate (11) and connected with the material conveying mechanism (12) at the top.
4. The notebook computer housing flip turn conveyor line of claim 3, wherein: The material conveying mechanism (12) comprises a support frame (121) arranged horizontally, a group of bosses (122) installed at both ends of the support frame (121), a transmission roller (123) rotatably installed on each group of bosses (122), a circulating material conveying belt (129) installed on the transmission roller (123), and a transmission motor (128) connected with any transmission roller (123) through a transmission belt (127).
5. The notebook computer shell flip turn conveyor line according to claim 4, wherein: The material conveying mechanism (12) further comprises a side mounting plate (125) fixed to the side of the support frame (121), a first transmission roller (124) installed at the end of any transmission roller (123), and a second transmission roller (126) rotatably installed on the side mounting plate (125), the transmission motor (128) being installed on the side mounting plate (125) and connected with the second transmission roller (126), and the transmission belt (127) being installed on the first transmission roller (124) and the second transmission roller (126).
6. The notebook computer shell flip turn conveyor line according to claim 3, wherein: The lifting mechanism (13) comprises a plurality of guide sleeves (132) embedded in the platform plate (11), a plurality of support rods (131) correspondingly penetrating the guide sleeves (132), a support cross plate (133) installed at the lower ends of the support rods (131), and a manually adjustable screw rod (137) adjustably penetrating the platform plate (11) and the support cross plate (133) to drive the support cross plate (133) to lift.
7. The notebook computer shell flip turn conveyor line according to claim 6, wherein: The lifting mechanism (13) further comprises a connector (134) installed at the lower end of each support rod (131), a first threaded sleeve (136) installed on the platform plate (11), and a second threaded sleeve (135) installed on the support cross plate (133), the support cross plate (133) is connected with the connector (134), and the manually adjustable screw rod (137) is threadedly matched with the first threaded sleeve (136) and the second threaded sleeve (135).
Citation Information
Patent Citations
Stacking device for aluminum gusset plates
CN213111561U
Clamping and overturning jig
CN220446461U