Non-contact type support plate interlayer alignment pressing device
By introducing adjustment mechanisms into the CCD alignment electromagnetic hot melt machine, the linear reciprocating motion and angle adjustment of the control panel are realized, solving the problem of limited adjustment range of the traditional equipment operation panel and improving the convenience and safety of operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-10
- Publication Date
- 2026-03-24
AI Technical Summary
The traditional CCD alignment electromagnetic hot melt machine's control panel design has problems with limited adjustment range and inconvenient operation, requiring operators to climb the equipment, increasing safety risks.
A non-contact carrier plate interlayer alignment and pressing device was designed. Through the cooperation of adjustment mechanism, clamping mechanism, pushing mechanism, rotating mechanism and reset mechanism, the linear reciprocating motion and angle adjustment of the control panel are realized, ensuring convenient and safe operation.
The adjustment range of the control panel has been expanded, avoiding climbing on the equipment, reducing the possibility of collisions and pinching injuries, and improving the convenience and safety of operation.
Smart Images

Figure CN121728697A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of PCB processing equipment, and particularly relates to a non-contact type alignment and pressing device for interlayer of a carrier plate. BACKGROUND
[0002] In the technical field of PCB processing, the alignment and pressing between layers of a carrier plate is a key link for determining the precision and quality of a product in the production of a multilayer circuit board. In the prior art, a CCD alignment electromagnetic hot melting machine is an important device for realizing the process and is commonly used in the pretreatment stage before pressing of a multilayer PCB. In order to improve production efficiency, such a device often adopts a double-table design, for example, an upper-lower type machine is equipped with a double-table lifting module, and the double tables can work synchronously, which can greatly improve the production efficiency.
[0003] When working, the CCD visual alignment system captures image information of an inner layer core plate and a prepreg, calculates a position deviation by comparison with a preset standard image, and guides an actuator to complete accurate adjustment in a non-contact alignment mode. This way does not need traditional contact pin positioning, and the inner layer core plate and the prepreg do not need to be additionally made with alignment holes, which not only avoids damage to the carrier plate caused by contact operation, but also eliminates precision errors caused by punching gaps. At the same time, the device melts the epoxy resin glue in the prepreg by electromagnetic heating, and realizes pre-alignment and pre-bonding between the core plates by using the characteristics of rapid solidification after cooling, thereby laying a foundation for high precision for the subsequent pressing process.
[0004] The operation screen of a traditional CCD alignment electromagnetic hot melting machine is mostly fixedly installed, and although the angle of some operation screens can be adjusted, the adjustment range is limited. In actual production operation scenes, the fixed design or the limited angle adjustment design of the operation screen of the traditional device has obvious use limitations: when an operator is at a single-side operation position of the device, the operator needs to move to the other side of the operation screen to perform parameter setting or instruction input, which additionally increases operation process and time cost; at the same time, for an operator with low height, even if the operator is in front of the operation screen, the operator often faces the problem of inconvenient operation due to the high installation position of the screen. This design defect directly leads to the fact that some operators choose to climb the machine body during operation of the device in order to quickly reach the operation screen. When the device works, the double-table components are always in a periodic reciprocating motion state, and the climbing behavior is easy to cause collision between the operator and the moving components, which finally causes safety accidents of the operator being pinched by the double tables. SUMMARY
[0005] The present application aims at the problems in the background art and provides a non-contact type alignment and pressing device for interlayer of a carrier plate.
[0006] The technical scheme of the present application is a non-contact carrier plate interlayer alignment pressing device, comprising a CCD alignment electromagnetic hot melting machine and a control screen, further comprising: an adjusting mechanism provided on the outer wall of the CCD alignment electromagnetic hot melting machine to drive the control screen to move linearly back and forth, a pair of first button switches corresponding to the adjusting mechanism are arranged on the outer walls of the two sides of the CCD alignment electromagnetic hot melting machine, and a second button switch is further arranged on the outer wall of one end of the CCD alignment electromagnetic hot melting machine; a circular seat movably connected to the adjusting mechanism, a clamping rod mechanism slidably connected to the adjusting mechanism is arranged on the circular seat; a connecting seat located at one end of the circular seat away from the adjusting mechanism, a pushing mechanism for driving the control screen to move towards the second button switch is arranged in the connecting seat; a rotating mechanism mounted on the back of the control screen and connected to the pushing mechanism, a support mechanism for driving the control screen to rotate and adjust the orientation of the first button switch is fixedly connected to the CCD alignment electromagnetic hot melting machine; and a reset mechanism arranged on the rotating mechanism to drive the adjusted control screen to return to the orientation of the second button switch. Optionally, the adjusting mechanism comprises a pair of supports fixedly connected to the outer wall of the CCD alignment electromagnetic hot melting machine, arc-shaped grooves are formed in the top of the supports, a motor is fixedly connected in one of the arc-shaped grooves and is turned on by pressing the first button switch, a supporting column is fixedly connected in the other arc-shaped groove, a belt pulley is arranged at the end of the motor and the supporting column away from the CCD alignment electromagnetic hot melting machine, one of the belt pulleys is fixedly connected to the output shaft of the motor, the other belt pulley is rotatably connected to the end of the supporting column, a transmission belt is sleeved on the pair of belt pulleys, and a plug rod is fixedly connected to the outer wall of the transmission belt and is inserted into the circular seat.
[0007] Optionally, the clamping rod mechanism comprises a pair of vertical supporting rods fixedly connected to the outer wall of the CCD alignment electromagnetic hot melting machine, a pair of horizontal supporting rods are fixedly connected to the middle part of the vertical supporting rods, a plurality of supporting sliding rods are fixedly connected to the end of the circular seat away from the connecting seat, clamping foot blocks for clamping the horizontal supporting rods are fixedly connected to the end of the supporting sliding rods away from the circular seat, a plurality of rolling balls for tightly abutting the horizontal supporting rods are arranged at the end of the clamping foot blocks away from the annular groove, annular grooves are further formed in the end of the supporting sliding rods close to the clamping foot blocks, and rolling rings for tightly abutting the horizontal supporting rods are movably sleeved in the annular grooves.
[0008] Optionally, a pair of reciprocating processing tables are arranged in the CCD alignment electromagnetic hot melting machine.
[0009] Optionally, a spring wire is further arranged on the CCD alignment electromagnetic hot melting machine, one end of the spring wire is connected to the CCD alignment electromagnetic hot melting machine, and the other end of the spring wire is connected to the control screen.
[0010] Optionally, the pushing mechanism comprises a supporting cylinder fixedly connected to the connecting base at the end away from the circular seat, and a pneumatic cylinder fixedly connected to the inside of the end of the supporting cylinder away from the connecting base and opened by pressing the second button switch, and a pushing block fixedly connected to the piston rod of the pneumatic cylinder.
[0011] Optionally, the outer wall of the circular seat is fixedly connected with a plurality of first protrusions arranged in a circumferential array, the inside of each of the first protrusions is provided with a spiral groove, the outer wall of the connecting base is provided with a plurality of second protrusions corresponding to the first protrusions, the inside of each of the second protrusions is movably inserted with a first bolt screw-connected with the spiral groove, and the connecting base is further fixedly connected with a plurality of reinforcing plates arranged in a circumferential array, and the reinforcing plates are fixedly connected with the outer wall of the supporting cylinder.
[0012] Optionally, the rotating mechanism comprises a clamping plate fixedly connected to the back of the control screen and clamping the pushing block, and a half gear plate, and the middle part of the clamping plate, the pushing block and the half gear plate is movably inserted with a supporting shaft, and the two ends of the supporting shaft are fixedly connected with clamping blocks.
[0013] Optionally, the support mechanism comprises a pair of T-shaped brackets fixedly connected to the outer wall of the CCD alignment electromagnetic hot melting machine, each of the T-shaped brackets is provided with a pair of second bolts, the end of each of the T-shaped brackets is fixedly connected with a rack mesh-connected with the half gear plate, the middle part of each of the pair of racks is fixedly connected with a connecting rod, the end of each of the T-shaped brackets close to the rack is provided with a clamping head, and each of the T-shaped brackets is provided with an inclined reinforcing rod.
[0014] Optionally, the reset mechanism comprises a spring movably sleeved at the end of the supporting shaft close to the clamping block, one end of the spring is fixedly connected with the clamping plate, and the other end of the spring is fixedly connected with the clamping block.
[0015] Compared with the prior art, the present application has at least one of the following beneficial technical effects: The present application utilizes the cooperation of the adjusting mechanism, the clamping rod mechanism, the pushing mechanism, the rotating mechanism, the support mechanism and the reset mechanism, when the device is used, the first button switch is pressed to start the motor, the control screen is driven to move linearly through the belt pulley and the transmission belt, the half gear plate is meshed with the rack during the movement to make the control screen turn to the operator, so as to ensure that the operator can conveniently use the controller. Then the control screen is reset by the spring to face the second button switch, and when the second button switch is pressed to start the pneumatic cylinder to push the control screen to directly approach the operator, it is convenient and fast. Thus, the adjusting range of the operation screen is larger, the operation is more convenient, the situation of climbing the equipment is eliminated, and the possibility of collision and injury is reduced.
[0016] Further, through the design of vertical support rods, horizontal support rods, support sliding rods, clamping foot blocks, balls and rollers, when the circular ring seat moves, the clamping foot blocks clamp the horizontal support rods, the balls and rollers reduce friction and assist in stability, ensuring the smoothness of the control screen movement process; through the design of the spring wire, one end is connected with the CCD alignment electromagnetic hot melting machine, the other end is connected with the control screen, which can ensure that the circuit is always connected when the control screen moves with the adjusting mechanism and the pushing mechanism, and can automatically extend and shorten to adapt to the different position changes of the control screen, ensuring the normal work of the control screen. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 A structure diagram of a non-contact carrier plate interlayer alignment and pressing device is given; Figure 2 To Figure 1 An enlarged diagram of A in the middle; Figure 3 To Figure 1 An enlarged diagram of B in the middle; Figure 4 To Figure 1 A split structure diagram; Figure 5 To Figure 4 An enlarged diagram of C in the middle; Figure 6 To Figure 3 A partial split structure diagram of; Figure 7 To Figure 6 A partial split structure diagram of; Figure 8 To Figure 4 A partial structure diagram of;
[0018] Reference signs: 1, CCD alignment electromagnetic hot melting machine; 11, machining table top; 2, control screen; 21, clamping plate; 22, half gear plate; 23, support shaft; 24, clamping block; 25, spring; 26, supporting block; 3, vertical support rod; 31, horizontal support rod; 32, support; 321, arc-shaped groove; 33, motor; 34, support column; 35, pulley; 36, transmission belt; 361, insertion rod; 4, circular ring seat; 41, first protrusion; 42, spiral groove; 43, support sliding rod; 44, clamping foot block; 441, ball; 45, annular groove; 46, roller; 5, connecting seat; 51, second protrusion; 52, first bolt; 53, support cylinder; 54, reinforcing plate; 55, air cylinder; 6, T-shaped frame; 61, second bolt; 62, inclined reinforcing rod; 63, rack; 64, clamping head; 65, connecting rod; 7, spring wire; 8, first button switch; 9, second button switch. DETAILED DESCRIPTION
[0019] In order to make the inventive object, features and advantages of the present application more apparent and easy to understand, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the accompanying drawings. Obviously, the following described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of the present application.
[0020] In the description of the present application, it should be understood that the terms "upper", "lower", "top", "bottom", "inner", "outer" 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 present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application. It should be noted that when a component is considered to be "connected" to another component, it can be directly connected to the other component or there can be a component disposed therebetween.
[0021] The technical solutions of the present application will be further described below with reference to the accompanying drawings and through specific embodiments.
[0022] As Figures 1 to 8As shown, the non-contact carrier plate interlayer alignment and pressing device provided by the application comprises a CCD alignment electromagnetic hot melting machine 1 and a control screen 2. The control screen 2 has an intuitive operation interface, which is convenient for an operator to set various parameters and control the equipment. Through the control screen 2, the process parameters of the melting temperature, pressure and time can be input and adjusted, and the running state of the equipment, such as the temperature curve and the working progress, can be displayed in real time. The control screen 2 is normally opposite to the second button switch 9, so as to ensure that the corresponding first button switch 8 or the second button switch 9 is pressed. At this time, the control screen 2 will be moved to the position opposite to the operation, so as to ensure that the control screen 2 is convenient to use. The CCD alignment electromagnetic hot melting machine 1 is provided with a pair of reciprocating processing tables 11. The CCD alignment electromagnetic hot melting machine 1 is also provided with a spring wire 7. The spring wire 7 ensures the circuit communication when the control screen 2 is moved, is a telescopic wire, and has a spiral spring shape. It is composed of a conductor (such as a copper wire) and an insulating layer (such as PVC and rubber). Through special processing, the wire is curled into a spring shape and has elastic stretching capacity. When used, it can be stretched and lengthened. When not used, it can be automatically retracted and reset, can save space and avoid winding, and is commonly used in scenes that need to be frequently moved or stretched. One end of the spring wire 7 is connected with the CCD alignment electromagnetic hot melting machine 1, and the other end of the spring wire 7 is connected with the control screen 2. The two sides of the outer wall of the CCD alignment electromagnetic hot melting machine 1 are provided with a pair of first button switches 8 corresponding to the adjusting mechanism. The first button switch 8 controls the start of the motor 33, triggers the adjusting mechanism to drive the control screen 2 to move and turn. The outer wall of one end of the CCD alignment electromagnetic hot melting machine 1 is also provided with a second button switch 9. The second button switch 9 controls the start of the air cylinder 55 to drive the control screen 2 to move towards the operator. The adjusting mechanism is movably connected with a circular ring seat 4. The circular ring seat 4 drives the movement through the inserting rod 361 and is also connected with a connecting seat 5. Components for supporting the slide rod 43 are also installed on the circular ring seat 4. The connecting seat 5 is connected with the circular ring seat 4 through the first bolt 52, components for installing the supporting cylinder 53 are installed, and the movement force is transmitted.
[0023] wherein, Figure 1 , Figure 3 , Figure 4 , Figure 6 and Figure 7As shown, the CCD alignment electromagnetic hot melting machine 1 outer wall is provided with a control screen 2 driven adjusting mechanism for linear reciprocating motion, the adjusting mechanism includes a pair of fixedly connected to the CCD alignment electromagnetic hot melting machine 1 outer wall of the support 32, the top of the support 32 are provided with an arc slot 321, one of the arc slot 321 is fixedly connected with the motor 33 which is started by pressing the first button switch 8, the motor 33 is started by pressing the first button switch 8, the output shaft drives the belt pulley 35 to rotate, providing power for the adjusting mechanism. The other arc slot 321 is fixedly connected with the support column 34, the support column 34 end rotatably connected with the belt pulley 35, auxiliary support transmission belt 36. Transmission belt 36 is used to connect the driving wheel and the driven wheel of the annular belt component, rely on friction or meshing effect transmission power. The motor 33 and the support column 34 away from the CCD alignment electromagnetic hot melting machine 1 one end are provided with the belt pulley 35, the belt pulley 35 transmits power through the transmission belt 36, drives the plug rod 361 movement. Belt pulley 35 is composed of driving pulley, driven pulley and transmission belt 36 connecting them. When the power source drives the driving pulley to rotate, the friction between the transmission belt 36 and the pulley makes the belt follow the driving pulley movement, in turn drives the driven pulley to rotate, realizes the efficient transmission of power. One of the belt pulley 35 is fixedly connected with the output shaft of the motor 33, the other belt pulley 35 is rotatably connected with the end of the support column 34, a pair of belt pulley 35 is provided with transmission belt 36, transmission belt 36 rotates under the drive of the motor, through the outer wall plug rod 361 drives the circular ring seat 4 movement. The outer wall of the transmission belt 36 is fixedly connected with the plug rod 361 inserted into the circular ring seat 4.
[0024] Secondly, as Figure 1 、 Figure 3 、 Figure 4 、 Figure 6 、 Figure 7 , to Figure 8As shown, the circular seat 4 is provided with a clamping rod mechanism in sliding connection with the adjusting mechanism, the clamping rod mechanism comprising a pair of vertical support rods 3 fixedly connected to the outer wall of the CCD alignment electromagnetic hot melting machine 1, the middle part of the vertical support rod 3 being fixedly connected to a pair of horizontal support rods 31, the horizontal support rods 31 cooperating with the clamping foot blocks 44 on the support sliding rods 43 to provide guidance and support for the movement of the circular seat 4. The end of the circular seat 4 away from the connecting seat 5 is fixedly connected to a plurality of support sliding rods 43, the end of the support sliding rod 43 being clamped by the clamping foot block 44 to clamp the horizontal support rod 31, thereby providing support and guidance for the movement of the circular seat. The end of the support sliding rod 43 away from the circular seat 4 is fixedly connected to a clamping foot block 44 clamping the horizontal support rod 31, the clamping foot block 44 clamping the horizontal support rod 31, and the ball 441 reducing the sliding friction. The side of the clamping foot block 44 away from the annular groove 45 is also provided with a pair of balls 441 in close abutment with the outer wall of the CCD alignment electromagnetic hot melting machine 1 to ensure smooth sliding of the circular seat 4 without being stuck. The end of the clamping foot block 44 away from the annular groove 45 is provided with a ball 441 in close abutment with the horizontal support rod 31, the ball 441 reducing the friction between the clamping foot block and the horizontal support rod, facilitating movement. The end of the support sliding rod 43 close to the clamping foot block 44 is also provided with an annular groove 45, and the inside of the annular groove 45 is movably sleeved with a rolling ring 46 in close abutment with the horizontal support rod 31, the rolling ring 46 reducing the friction when the support sliding rod 43 moves and enhancing the stability.
[0025] In addition, as shown in Figure 2 、 Figure 3 、 Figure 5 、 Figure 6 and Figure 7 , the connecting seat 5 is provided with a pushing mechanism for driving the control screen 2 to move towards the second button switch 9, the pushing mechanism comprising a support cylinder 53 fixedly connected to the end of the connecting seat 5 away from the circular seat 4, and a cylinder 55 installed inside the support cylinder 53 to provide support and protection for the pushing mechanism. The end of the support cylinder 53 away from the connecting seat 5 is fixedly connected with a cylinder 55 which is opened by pressing the second button switch 9, the cylinder 55 being activated by pressing the second button switch 9, the piston rod pushing the supporting block 26 to drive the control screen 2 to move. The piston rod of the cylinder 55 is fixedly connected with the supporting block 26.
[0026] It is worth noting that, as shown in Figure 3 、 Figure 7 and Figure 8As shown, the outer wall of the circular seat 4 is fixedly connected with a plurality of first protrusions 41 arranged in a circumferential array, the interior of the first protrusion 41 is provided with a spiral groove 42, the spiral groove 42 is screwedly connected with the first bolt 52, realizing the fixation of the circular seat 4 and the connecting seat 5. The outer wall of the connecting seat 5 is provided with a plurality of second protrusions 51 corresponding to the first protrusion 41, the interior of the second protrusion 51 is movably provided with the first bolt 52 screwedly connected with the spiral groove 42, the first bolt 52 cooperates with the spiral groove 42 of the first protrusion 41, fixing the circular seat 4 and the connecting seat 5. The connecting seat 5 is further fixedly connected with a plurality of reinforcing plates 54 arranged in a circumferential array, the reinforcing plate 54 is connected with the outer wall of the supporting cylinder 53, enhancing the connecting strength of the connecting seat and the supporting cylinder. The reinforcing plate 54 is fixedly connected with the outer wall of the supporting cylinder 53.
[0027] Further, as shown in Figure 2 、 Figure 5 and Figure 7 , the back of the control panel 2 is provided with a rotating mechanism connected with the pushing mechanism, the rotating mechanism includes a clamping plate 21 fixedly connected with the back of the control panel 2 clamping the pushing block 26 and a half gear plate 22, the clamping plate 21 is connected through a supporting shaft 23, driving the control panel 2 to rotate. The half gear plate 22 is engaged with the rack 63 of the support mechanism, driving the control panel 2 to rotate and adjust the orientation when moving, realizing the angle adjustment. The middle part of the clamping plate 21, the pushing block 26 and the half gear plate 22 is movably connected with the supporting shaft 23, the supporting shaft 23 penetrates the clamping plate 21, the pushing block 26 and the half gear plate 22, providing support for their rotation, the clamping block 24 at both ends plays a limiting role. The both ends of the supporting shaft 23 are fixedly connected with the clamping block 24, the clamping block 24 is used to limit the position of the spring 25, at the same time, playing a limiting role for the rotating part. The rotating mechanism is provided with a reset mechanism driving the adjusted control panel 2 to return to the orientation of the second button switch 9, the reset mechanism includes a spring 25 movably sleeved on the end of the supporting shaft 23 close to the clamping block 24, the spring 25 provides a reset elastic force for the control panel 2, making it return to the orientation of the second button switch 9. One end of the spring 25 is fixedly connected with the clamping plate 21, the other end of the spring 25 is fixedly connected with the clamping block 24.
[0028] Further, as shown in Figures 1 to 4As shown, the CCD alignment electromagnetic hot melting machine 1 is fixedly connected with a drive control screen 2 rotating adjustment towards the first button switch 8 support mechanism, the support mechanism includes a pair of T-shaped frame 6 fixedly connected to the outer wall of the CCD alignment electromagnetic hot melting machine 1, the T-shaped frame 6 is fixed by the second bolt 61, the component of the rack 63 is installed, and the support mechanism is formed. The T-shaped frame 6 is provided with a pair of second bolts 61, and the second bolts 61 are used for fixing the T-shaped frame 6 and enhancing the connection stability of the T-shaped frame 6 and the equipment. The end of the T-shaped frame 6 is fixedly connected with the rack 63 engaged with the half gear plate 22, the rack 63 is engaged with the half gear plate 22, and the control screen 2 is rotated when the control screen 2 moves. Adjustment towards. The middle part of the pair of racks 63 is fixedly connected with the connecting rod 65, the connecting rod 65 is used for enhancing the overall stability of the rack 63, and the reliability of the meshing transmission is ensured. The end of the T-shaped frame 6 close to the rack 63 is provided with a clamping head 64, and the clamping head 64 limits and protects the rack 63. The T-shaped frame 6 is provided with an inclined reinforcing rod 62, the inclined reinforcing rod 62 enhances the structural strength of the T-shaped frame 6, and the T-shaped frame 6 is more stable.
[0029] In the embodiment, when the worker is located on the side of the CCD alignment electromagnetic hot melting machine 1 opposite to the first button switch 8, the non-contact carrier plate interlayer alignment pressing device is used. When the worker is located on the side of the CCD alignment electromagnetic hot melting machine 1 opposite to the first button switch 8, the first button switch 8 is pressed to start the motor 33, the motor 33 is started, the output shaft drives the belt pulley 35 to rotate, and the other belt pulley 35 is rotated at the end of the support column 34 through the transmission belt 36. At this time, the transmission belt 36 also drives the plug rod 361 to move along the outer wall of the transmission belt 36, the plug rod 361 clamps the circular ring seat 4 to make it move linearly, and the transmission belt 36 drives the plug rod 361 to reciprocate, thereby making the circular ring seat 4 drive the connecting seat 5 and the T-shaped frame 6 to move linearly and reciprocally, so that the control screen 2 moves linearly and reciprocally to adjust the transverse position. When the circular ring seat 4 moves horizontally and reciprocally, the support slide rod 43 on the circular ring seat 4 clamps the horizontal support rod 31 through the clamping block 44, the ball 441 reduces friction, and the rolling ring 46 slides in the annular groove 45 to assist stability.
[0030] When the control screen 2 moves linearly and reciprocally, the half gear plate 22 moves to the end of the connecting rod 65 and is engaged with one of the racks 63. At this time, the half gear plate 22 will rotate the control screen 2 with the support shaft 23 as the center, and the direction of rotation is towards the direction of the pressed first button switch 8, thereby making it convenient for the operator to use the control screen 2 after rotation adjustment. And every time the control screen 2 moves to the original position, that is, the middle position of the CCD alignment electromagnetic hot melting machine 1, at this time, the control screen 2 is located in the middle of the connecting rod 65 and cannot be engaged with each rack 63. Through the torsional force of the elastic rebound of the spring 25 at the end of the support shaft 23, the control screen 2 can be restored to the position facing the second button switch 9.
[0031] Subsequently, when the worker stands in front of the second button switch 9, only need to press the second button switch 9 to start the cylinder 55, its piston rod pushes the supporting block 26, the supporting block 26 drives the clamping plate 21 and the half gear plate 22 to move to the direction of the second button switch 9 through the supporting shaft 23, so that the clamping plate 21 and the half gear plate 22 drive the control screen 2 to move to the worker pressing the second button switch 9. Finally, the connecting seat 5 is fixed with the spiral groove 42 of the ring seat 4 through the first bolt 52, and the spring wire 7 ensures that the circuit is connected when the control screen 2 moves, and also automatically extends and shortens.
[0032] The above-described embodiments are merely used to illustrate the technical solutions of the present application, but not to limit the present application; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacements for some technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. A non-contact carrier plate interlayer alignment and pressing device, comprising a CCD alignment electromagnetic hot melt machine (1) and a control panel (2), characterized in that, Also includes: An adjustment mechanism is provided on the outer wall of the CCD alignment electromagnetic hot melt machine (1) to drive the control screen (2) to move linearly back and forth. The outer walls on both sides of the CCD alignment electromagnetic hot melt machine (1) are provided with a pair of first button switches (8) corresponding to the adjustment mechanism. The outer wall at one end of the CCD alignment electromagnetic hot melt machine (1) is also provided with a second button switch (9). A ring seat (4) is movably connected to the adjustment mechanism, and the ring seat (4) is provided with a lever mechanism that is slidably connected to the adjustment mechanism; The connecting seat (5) is located at the end of the ring seat (4) away from the adjustment mechanism. The connecting seat (5) is provided with a pushing mechanism that drives the control panel (2) to move toward the second button switch (9). A rotating mechanism connected to the pushing mechanism is installed on the back of the control screen (2), and a bracket mechanism for driving the control screen (2) to rotate and adjust towards the first button switch (8) is fixedly connected to the CCD alignment electromagnetic hot melt machine (1); A reset mechanism is provided on the rotating mechanism to drive the adjusted control panel (2) back to face the second button switch (9).
2. The non-contact carrier plate interlayer alignment and pressing device according to claim 1, characterized in that, The adjustment mechanism includes a pair of supports (32) fixedly connected to the outer wall of the CCD alignment electromagnetic hot melt machine (1). The top of each support (32) is provided with an arc-shaped groove (321). A motor (33) that is turned on by pressing the first button switch (8) is fixedly connected in one of the arc-shaped grooves (321). A support column (34) is fixedly connected in the other arc-shaped groove (321). A pulley (35) is provided at the end of the motor (33) and the support column (34) away from the CCD alignment electromagnetic hot melt machine (1). One of the pulleys (35) is fixedly connected to the output shaft of the motor (33). The other pulley (35) is rotatably connected to the end of the support column (34). A transmission belt (36) is sleeved on the pair of pulleys (35). A plug rod (361) inserted into the annular seat (4) is fixedly connected to the outer wall of the transmission belt (36).
3. The non-contact carrier plate interlayer alignment and pressing device according to claim 1, characterized in that, The lever mechanism includes a pair of vertical support rods (3) fixedly connected to the outer wall of the CCD alignment electromagnetic hot melt machine (1). A pair of horizontal support rods (31) are fixedly connected to the middle of the vertical support rods (3). Multiple support slide rods (43) are fixedly connected to the end of the annular seat (4) away from the connecting seat (5). Each of the support slide rods (43) away from the annular seat (4) is fixedly connected to a locking foot block (44) that locks the horizontal support rod (31). Each of the locking foot blocks (44) away from the annular groove (45) is provided with a ball (441) that tightly abuts against the horizontal support rod (31). An annular groove (45) is also provided at the end of the support slide rod (43) close to the locking foot block (44). A rolling ring (46) that tightly abuts against the horizontal support rod (31) is movably fitted inside the annular groove (45).
4. The non-contact carrier plate interlayer alignment and pressing device according to claim 1, characterized in that, The CCD alignment electromagnetic hot melt machine (1) is equipped with a pair of reciprocating processing tables (11).
5. The non-contact carrier plate interlayer alignment and pressing device according to claim 1, characterized in that, The CCD alignment electromagnetic hot melt machine (1) is also provided with a spring wire (7), one end of which is connected to the CCD alignment electromagnetic hot melt machine (1), and the other end of which is connected to the control panel (2).
6. The non-contact carrier plate interlayer alignment and pressing device according to claim 1, characterized in that, The pushing mechanism includes a support cylinder (53) fixedly connected to the end of the connecting seat (5) away from the annular seat (4). The end of the support cylinder (53) away from the connecting seat (5) is fixedly connected to a cylinder (55) that is opened by pressing the second button switch (9). The piston rod of the cylinder (55) is fixedly connected to a push block (26).
7. The non-contact carrier plate interlayer alignment and pressing device according to claim 1, characterized in that, The outer wall of the ring seat (4) is fixedly connected to a plurality of first protrusions (41) arranged in a circumferential array. The interior of each of the first protrusions (41) is provided with a spiral groove (42). The outer wall of the connecting seat (5) is provided with a plurality of second protrusions (51) corresponding to the first protrusions (41). The interior of each of the second protrusions (51) is movably inserted with a first bolt (52) that is spirally inserted into the spiral groove (42). The connecting seat (5) is also fixedly connected to a plurality of reinforcing plates (54) arranged in a circumferential array. The reinforcing plates (54) are fixedly connected to the outer wall of the support cylinder (53).
8. The non-contact carrier plate interlayer alignment and pressing device according to claim 1, characterized in that, The rotating mechanism includes a clamping plate (21) and a half gear plate (22) fixedly connected to the back of the control panel (2) to clamp the push block (26). A support shaft (23) is movably inserted in the middle of the clamping plate (21), the push block (26) and the half gear plate (22). Both ends of the support shaft (23) are fixedly connected to a locking block (24).
9. A non-contact carrier plate interlayer alignment and pressing device according to claim 1, characterized in that, The support mechanism includes a pair of T-shaped frames (6) fixedly connected to the outer wall of the CCD alignment electromagnetic hot melt machine (1). Each T-shaped frame (6) is provided with a pair of second bolts (61). Each end of the T-shaped frame (6) is fixedly connected with a rack (63) that meshes with the half gear plate (22). A connecting rod (65) is fixedly connected to the middle of the pair of racks (63). Each end of the T-shaped frame (6) near the rack (63) is provided with a clamp (64). Each T-shaped frame (6) is provided with an inclined reinforcing rod (62).
10. A non-contact carrier plate interlayer alignment and pressing device according to claim 8, characterized in that, The reset mechanism includes a spring (25) movably sleeved on one end of the support shaft (23) near the locking block (24). One end of the spring (25) is fixedly connected to the clamping plate (21), and the other end of the spring (25) is fixedly connected to the locking block (24).