Remote control transmitting window assembly device

Through the design of the support and synchronous drive components, combined with rotary material separation and telescopic downcoming components, the automatic precise positioning and correct installation of the remote control transmitting window is achieved, solving the problem of time-consuming and labor-intensive and misinstallable problems in the existing technology, and improving production efficiency.

CN119347386BActive Publication Date: 2025-08-26SHENZHEN CHAORAN TECH CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202411800673.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2025-08-26
Estimated Expiration
2044-12-09

AI Technical Summary

Technical Problem

The assembly process of the existing remote control transmitting window is time-consuming and labor-intensive, and it is prone to misinstallation or misinstallation, especially quality problems caused by inconsistent size and model assembly of dual-transmitting window remote controls.

Method used

The support and synchronous drive components are adopted, including back plate, double cam, cam groove, driven tooth rod, drive motor, mounting rod, rear straight swing arm and front V-shaped swing arm. The front and rear material collection and up and down pressure installation movement of the launch window are realized through the design of the cam groove. Combined with the rotary material distribution assembly and telescopic down pressure assembly, the alternating feeding and precise positioning of the two different types of launch windows are realized.

Benefits of technology

It realizes efficient and automated assembly of remote control transmitting windows, ensuring accurate positioning and correct installation of the two models of transmitting windows, reducing the complexity and error rate of manual operation, and improving production efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119347386B_ABST
    Figure CN119347386B_ABST
Patent Text Reader

Abstract

The present invention discloses a remote control transmitting window assembly device, which relates to the technical field of remote control assembly, including a support and a synchronous drive component, wherein the synchronous drive component is provided in the middle of the support, and the synchronous drive component includes a back plate, a double cam, a cam groove, a driven gear rod, a drive motor, a mounting rod, a rear straight swing arm and a front V-shaped swing arm, and the back plate is fixedly mounted on the top of the rear end of the support. During the use of the present invention, on the one hand, the application utilizes the high-precision mechanical transmission of the cam to ensure the positioning accuracy of the installation positions of the two transmitting windows in repeated movements, and on the other hand, by linking the rotating material distribution component with the forward and backward telescopic movement of the telescopic rod under the cam transmission, two different types of transmitting windows are alternately fed while the telescopic rod extends forward to take materials, and the up and down pitching movements are superimposed when the telescopic rod is subsequently retracted backward, thereby completing the assembly operation of the double-transmitting window remote control, and the structural design is reasonable and the linkage is stronger.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of remote control assembly, in particular to a remote control emission window assembly device. Background Art

[0002] A remote control is generally composed of more than a dozen parts, including a panel, LCD screen, buttons, transmitting window, pressure plate, rubber strips, movement board, fastening screws and cover plate. At present, these parts are assembled together manually in a certain order to form a remote control. The process of manually assembling a remote control is: install the LCD screen to the corresponding position of the panel, install two rubber strips at both ends of the LCD screen and contact them with the panel, place the button on the corresponding position of the panel, install the pressure plate between the two rubber strips and on top of the LCD screen, install the transmitting window to the transmitting window holder at the front end of the panel, place the movement board on the pressure plate and buttons, use four screws to fix the movement board to the panel, and stick the label to the corresponding position of the cover plate. Finally, put the cover plate on the panel, and then press the cover plate and panel hard to fasten them.

[0003] It can be seen that manually assembling these parts is very troublesome and time-consuming, and is prone to problems of missing or wrong installation. In addition, there is a dual-transmitting window remote control suitable for Internet TV in the prior art. The end transmitting window can be used for the viewing function, and the remote control is placed horizontally for the network function, and the side window is used to aim at the TV. When assembling the transmitting windows of the remote control with dual transmitting windows, since the transmitting window sizes and models corresponding to the dual transmitting windows may be inconsistent, the two manual assembly operations can easily lead to problems of missing or wrong installation, which will further lead to serious quality problems.

[0004] Therefore, in view of this, the shortcomings of the existing structure are studied and improved, and a remote control transmitting window assembly device is proposed. Summary of the Invention

[0005] The object of the present invention is to provide a remote control transmitting window assembly device to solve the problems raised in the above background technology.

[0006] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: A remote control transmitting window assembly device, comprising a support and a synchronous drive component, a synchronous drive component is arranged in the middle of the support, and the synchronous drive component includes a back plate, a double cam, a cam groove, a driven gear rod, a drive motor, a mounting rod, a rear straight swing arm and a front V-shaped swing arm, the back plate is fixedly mounted on the top of the rear end of the support, and a double cam is rotatably mounted on the middle of the back plate, cam grooves are provided on both sides of the double cam, and the rear end of the double cam is coaxially connected with a driven gear rod, and the driven gear rod is engaged with the bevel gear at the output end of the drive motor for transmission, a mounting rod is fixedly mounted on the left side of the front of the back plate, and a rear straight swing arm is rotatably mounted on the rear end of the mounting rod, and a front V-shaped swing arm is rotatably mounted on the front end of the mounting rod.

[0007] Furthermore, the double cam is composed of two front and rear cams, and a cam groove is provided on the front of the cam at the front end of the double cam, and a cam groove is provided on the back of the cam at the rear end of the double cam, and the double cam is connected to the bevel gear at the output end of the drive motor through a driven gear rod.

[0008] Furthermore, the middle pin of the rear straight swing arm slides with the cam groove on the back of the double cam, and the rear straight swing arm realizes intermittent pitch swing with the mounting rod as the rotation center. The pin at one end of the front V-shaped swing arm slides with the cam groove on the front of the double cam, and the front V-shaped swing arm realizes intermittent left and right swing with the mounting rod as the rotation center.

[0009] Furthermore, a telescopic downward pressure assembly is provided on the side of the support, and the telescopic downward pressure assembly includes a fixed seat, a guide plate and a downward pressure rod. The fixed seat is fixedly installed in the middle of the right side of the back plate, and the guide plate is fixedly installed on the side wall of the fixed seat, and the downward pressure rod is slidably installed on the end of the fixed seat.

[0010] Furthermore, the telescopic downward pressure assembly also includes a movable block and a sleeve. The movable block is fixedly installed on the top of the downward pressure rod, and the movable block is hinged to the end pin body of the rear straight swing arm. The bottom end of the downward pressure rod is fixedly connected to the sleeve, and the sleeve is slidably matched with the guide plate.

[0011] Furthermore, the telescopic downward pressing assembly also includes a telescopic rod and a perforated pin. The telescopic rod is slidably installed inside the sleeve, and one end of the telescopic rod is fixedly connected to the perforated pin, and the perforated pin is hinged to the pin body at the other end of the front V-shaped swing arm.

[0012] Furthermore, the telescopic downward pressure assembly also includes an L-shaped plate, an end clamp, a side clamp and a rack. The other end of the telescopic rod is fixedly connected to the L-shaped plate, and the end clamp is fixed horizontally at one end of the L-shaped plate, and the side clamp is fixed longitudinally at the other end of the L-shaped plate. A rack extends from the side of the L-shaped plate, and teeth are arranged at equal intervals at the bottom end of the rack along the extension direction.

[0013] Furthermore, the side end of the support is connected to a rotating material dividing assembly, which includes a vertical plate, a bracket, a picking plate and a feeding tube. The brackets are fixedly installed on both sides of the vertical plate, and picking plates extend forward on both sides of the bottom end of the vertical plate, and feeding tubes are fixedly installed on the top of both sides of the vertical plate.

[0014] Furthermore, the rotating material distribution component also includes a turntable, a material receiving trough and a transmission gear. Turntables are rotatably installed at the bottom of both sides of the vertical plate, and the outer edge of the turntable is tightly fitted with the bottom opening of the feed barrel, and material receiving troughs are opened on the circumference of the turntable on both sides. The back of the turntable on both sides is coaxially connected with a transmission gear, and the transmission gears on both sides are meshed with the teeth at the end of the rack in sequence for transmission.

[0015] Furthermore, a conveyor belt is arranged parallel to the bottom of the front end of the support, and assembly tooling is arranged at equal intervals on the top plane of the conveyor belt along the conveying direction. A remote control shell is embedded in the assembly tooling, and double infrared windows are respectively provided at the end and side of the remote control shell.

[0016] The present invention provides a remote control transmitting window assembly device, which has the following beneficial effects:

[0017] 1. During the use of the present invention, on the one hand, the double cam at the front end drives the pin at one end of the front V-shaped swing arm to move through the front cam groove, so that the front V-shaped swing arm swings back and forth with the mounting rod as the center, and then the pin at the other end of the front V-shaped swing arm slides in the open pin, driving the telescopic rod to extend and retract in the sleeve, thereby meeting the front and rear material picking movement requirements of the remote control transmitting window. On the other hand, the double cam at the rear end drives the pin in the middle of the rear straight swing arm to move through the back cam groove, so that the rear straight swing arm pitches up and down with the mounting rod as the center, and then drives the movable block and the downward pressure rod fixed to the bottom thereof to be positioned in the center through the pin at the end of the rear straight swing arm. The fixed seat slides up and down, and the downward pressure rod drives the sleeve and the telescopic rod installed therein to slide up and down, meeting the up and down pressing movement requirements of the remote control launch window. The present application only needs one driving motor to provide rotational power. Under the action of the double cams on the movement transmission of the front V-shaped swing arm and the rear straight swing arm respectively, the two movement modes of front and rear telescopic extension and up and down pressing are superimposed on the L-shaped plate at the output end of the telescopic rod, which can meet the front and rear material picking movement requirements of the remote control launch window and the up and down pressing movement requirements of the remote control launch window. The two movement modes do not interfere with each other and can cooperate with each other for intermittent operation, with a compact structure and strong linkage.

[0018] 2. During the use of the present invention, when the front V-shaped swing arm drives the L-shaped plate at the end of the telescopic rod to extend forward in stages by swinging back and forth, the rack fixed to the side end of the L-shaped plate, through the sequential transmission of the two turntables, enables the two different types of launch windows to be fed alternately, and when the telescopic rod is subsequently retracted backward, the two clamps are moved to the top of the assembly tooling, and under the up and down pitching motion transmission of the rear straight swing arm, the two different types of launch windows are correspondingly buckled into the corresponding installation positions of the remote control shell. On the one hand, the present application utilizes the high-precision mechanical transmission of the cam to ensure the positioning accuracy of the installation positions of the two launch windows in repeated motion. On the other hand, by linking the rotating material distribution component with the forward and backward telescopic motion of the telescopic rod under the cam transmission, the two different types of launch windows are alternately fed while the telescopic rod is extended forward to pick up materials, and the up and down pitching motion is superimposed when the telescopic rod is subsequently retracted backward to complete the assembly operation of the dual-launch window remote control. The structural design is reasonable and the linkage is stronger. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a schematic diagram of the overall front structure of the device of the present invention;

[0020] Figure 2 This is a schematic diagram of the overall rear view structure of the device of the present invention;

[0021] Figure 3 This is a schematic diagram of the assembly tool structure of the present invention;

[0022] Figure 4 It is a partial structural schematic diagram of the device of the present invention;

[0023] Figure 5 This is a schematic diagram of the structure of the synchronous drive assembly of the present invention;

[0024] Figure 6 This is a schematic diagram of the structure of the telescopic pressing component of the present invention;

[0025] Figure 7 This is a schematic diagram of the overall structure of the rotary material distribution component of the present invention;

[0026] Figure 8 This is a schematic diagram of the exploded structure of the rotary material distribution component of the present invention.

[0027] Figure: 1. Support; 2. Conveyor belt; 3. Assembly tool; 4. Remote control housing; 5. Dual infrared windows; 6. Synchronous drive assembly; 601. Back plate; 602. Dual cams; 603. Cam groove; 604. Driven gear rod; 605. Drive motor; 606. Mounting rod; 607. Rear straight swing arm; 608. Front V-shaped swing arm; 7. Telescopic downward pressure assembly; 701. Fixing seat; 702. Guide Plate; 703, lower pressure rod; 704, movable block; 705, sleeve; 706, telescopic rod; 707, opening pin; 708, L-shaped plate; 709, end clamping jaws; 710, side clamping jaws; 711, rack; 8, rotary material dividing assembly; 801, vertical plate; 802, bracket; 803, picking plate; 804, feeding barrel; 805, turntable; 806, receiving trough; 807, transmission gear. DETAILED DESCRIPTION

[0028] The following examples are used to illustrate the present invention, but are not intended to limit the scope of the present invention.

[0029] See also Figures 1 to 5The present invention provides a technical solution: a remote control transmitting window assembly device, including a support 1 and a synchronous drive component 6, a synchronous drive component 6 is provided in the middle of the support 1, and the synchronous drive component 6 includes a back plate 601, a double cam 602, a cam groove 603, a driven gear rod 604, a drive motor 605, a mounting rod 606, a rear straight swing arm 607 and a front V-shaped swing arm 608, the back plate 601 is fixedly mounted on the top of the rear end of the support 1, and a double cam 602 is rotatably mounted in the middle of the back plate 601, the double cam 602 is provided with a cam groove 603 on both the front and back sides, and the rear end of the double cam 602 is coaxially connected to the driven gear rod 604, and the driven gear rod 604 is meshed with the bevel gear at the output end of the drive motor 605 for transmission, a mounting rod 606 is fixedly mounted on the left side of the front of the back plate 601, and the rear end of the mounting rod 606 is rotatable A rear straight swing arm 607 is installed, and a front V-shaped swing arm 608 is rotatably installed at the front end of the mounting rod 606. The double cam 602 is composed of two cams, front and rear, and a cam groove 603 is provided on the front of the cam at the front end of the double cam 602, and a cam groove 603 is provided on the back of the cam at the rear end of the double cam 602. The double cam 602 is connected to the bevel gear at the output end of the drive motor 605 through a driven gear rod 604. The pin body in the middle of the rear straight swing arm 607 slides with the cam groove 603 on the back of the double cam 602, and the rear straight swing arm 607 realizes intermittent pitching swing with the mounting rod 606 as the rotation center. The pin body at one end of the front V-shaped swing arm 608 slides with the cam groove 603 on the front of the double cam 602, and the front V-shaped swing arm 608 realizes intermittent left and right swing with the mounting rod 606 as the rotation center.

[0030] The specific operation is as follows: the driving motor 605 is activated and the dual cam 602 is synchronously rotated and transmitted through the meshing of the output end bevel gear and the driven gear rod 604. The dual cam 602 of the present application is provided with a cam groove 603 on both the front and back sides. When in use, on the one hand, the dual cam 602 at the front end drives the pin body at one end of the front V-shaped swing arm 608 to move through the front cam groove 603, so that the front V-shaped swing arm 608 swings back and forth with the mounting rod 606 as the center, and then the pin body at the other end of the front V-shaped swing arm 608 slides in the open pin 707, driving the telescopic rod 706 in the sleeve 705 to extend and retract back and forth, thereby meeting the front and back material taking movement requirements of the remote control launch window;

[0031] See also Figures 4 to 6, a telescopic pressing component 7 is provided on the side of the support 1, and the telescopic pressing component 7 includes a fixed seat 701, a guide plate 702 and a pressing rod 703. The fixed seat 701 is fixedly installed in the middle of the right side of the back plate 601, and the side wall of the fixed seat 701 is fixedly installed with a guide plate 702, and the end of the fixed seat 701 is slidably installed with a pressing rod 703, the telescopic pressing component 7 also includes a movable block 704 and a sleeve 705, the top of the pressing rod 703 is fixedly installed with a movable block 704, and the movable block 704 is hinged to the end pin of the rear straight swing arm 607, the bottom end of the pressing rod 703 is fixedly connected with a sleeve 705, and the sleeve 705 slides with the guide plate 702, the telescopic pressing component 7 also includes a telescopic The retractable rod 706 and the perforated pin 707 are slidably installed inside the sleeve 705, and the telescopic rod 706 is fixedly connected to the perforated pin 707 at one end, and the perforated pin 707 is hinged to the pin body at the other end of the front V-shaped swing arm 608. The telescopic pressing assembly 7 also includes an L-shaped plate 708, an end clamping claw 709, a side clamping claw 710 and a rack 711. The other end of the telescopic rod 706 is fixedly connected to the L-shaped plate 708, and the end clamping claw 709 is fixed to one end of the L-shaped plate 708 horizontally, and the side clamping claw 710 is fixed to the other end of the L-shaped plate 708 longitudinally. A rack 711 extends from the side of the L-shaped plate 708, and the bottom of the end of the rack 711 is arranged with teeth at equal intervals along the extension direction;

[0032] The specific operation is as follows: on the other hand, the double cam 602 at the rear end drives the pin in the middle of the rear straight swing arm 607 to move through the cam groove 603 on the back, so that the rear straight swing arm 607 pitches up and down with the mounting rod 606 as the center, and then drives the movable block 704 and the downward pressure rod 703 fixed at the bottom thereof to slide up and down in the fixed seat 701 through the pin at the end of the rear straight swing arm 607, and further drives the sleeve 705 and the telescopic rod 706 slidably installed therein to slide up and down, meeting the upward and downward pressing movement requirements of the remote control transmitting window. The present application only needs one driving motor 605 to provide rotational power, and the double cam 602 drives the front V-shaped swing arm 608 and the rear straight swing arm 607 respectively. 07, the two motion modes of front-to-back telescopic extension and top-to-bottom pressing are superimposed on the L-shaped plate 708 at the output end of the telescopic rod 706, which can meet the front-to-back material taking motion requirements of the remote control launch window, and can also meet the top-to-bottom pressing motion requirements of the remote control launch window. The two motion modes do not interfere with each other and can cooperate with each other for intermittent operation, with a compact structure and strong linkage. The two launch window installation positions corresponding to the dual-launch window remote control assembled in this application are respectively located at the end and the side. Therefore, this application arranges the two clamps at the corresponding end and side of the L-shaped plate 708, and places two different types of launch windows in the feeding barrel 804 on both sides of the vertical plate 801;

[0033] See also Figures 7 and 8, the side end of the support 1 is connected to a rotating material distribution component 8, which includes a vertical plate 801, a bracket 802, a picking plate 803 and a feeding cylinder 804. Brackets 802 are fixedly installed on both sides of the vertical plate 801, and picking plates 803 are extended forward on both sides of the bottom end of the vertical plate 801, and feeding cylinders 804 are fixedly installed on the top of both sides of the vertical plate 801. The rotating material distribution component 8 also includes a turntable 805, a receiving trough 806 and a transmission gear 807. Turntables 805 are rotatably installed at the bottom of both sides of the vertical plate 801, and the turntable 805 is externally The edge fits tightly with the opening at the bottom of the feeding barrel 804, and a receiving groove 806 is opened on the circumference of the turntable 805 on both sides. The back of the turntable 805 on both sides is coaxially connected with a transmission gear 807, and the transmission gears 807 on both sides are meshed with the end teeth of the rack 711 in sequence for transmission. A conveyor belt 2 is arranged parallel to the bottom front end of the support 1, and assembly tooling 3 is arranged at equal intervals on the top plane of the conveyor belt 2 along the conveying direction. A remote control shell 4 is embedded in the assembly tooling 3, and double infrared windows 5 are respectively provided at the end and side of the remote control shell 4;

[0034] The specific operation is as follows: when the front V-shaped swing arm 608 drives the L-shaped plate 708 at the end of the telescopic rod 706 to extend forward in stages by swinging back and forth, the rack 711 fixed to the side end of the L-shaped plate 708 drives the material receiving trough 806 opened on the outer edge of the turntable 805 to turn one hundred and eighty degrees through the engagement transmission with the transmission gear 807 on the back side of the corresponding turntable 805, and rotates the launch window at the lowest end of the feeding barrel 804 accommodated in the material receiving trough 806 to the corresponding picking plate 803 at the bottom, and through the sequential transmission of the two turntables 805, two different types of launch windows are fed alternately, and by designing the picking plates 803 on both sides to have different extension lengths, the gripping requirements of the claws at the end and side for the corresponding types of launch windows are met, and When the subsequent telescopic rod 706 retracts backward, the two clamps are moved to the top of the assembly tooling 3, and under the up and down pitching motion transmission of the rear straight swing arm 607, the two different types of emission windows are correspondingly buckled into the corresponding installation positions of the remote control shell 4. On the one hand, the present application utilizes the high-precision mechanical transmission of the cam to ensure the positioning accuracy of the two emission window installation positions during repeated motion. On the other hand, by linking the rotating material distribution component 8 with the forward and backward telescopic motion of the telescopic rod 706 driven by the cam, the two different types of emission windows are alternately fed while the telescopic rod 706 extends forward to pick up materials, and the up and down pitching motion is superimposed when the telescopic rod 706 retracts backward to complete the assembly operation of the dual-emission window remote control. The structural design is reasonable and the linkage is stronger.

[0035] In summary, when the remote control launch window assembly device is used, the drive motor 605 is enabled and the output end bevel gear is engaged with the driven gear rod 604 to transmit synchronous rotation to the double cam 602. Cam grooves 603 are provided on both the front and back sides of the double cam 602 of the present application. When in use, on the one hand, the double cam 602 at the front end drives the pin body at one end of the front V-shaped swing arm 608 to move through the front cam groove 603, so that the front V-shaped swing arm 608 swings back and forth with the mounting rod 606 as the center, and then the pin body at the other end of the front V-shaped swing arm 608 slides in the open hole pin 707, driving the telescopic rod 706 in the sleeve 705 to extend and retract back and forth, thereby meeting the front and back material taking movement requirements of the remote control launch window. On the other hand, the double cam 602 at the rear end drives the pin body at the back cam The slot 603 drives the pin in the middle of the rear straight swing arm 607 to move, so that the rear straight swing arm 607 pitches up and down with the mounting rod 606 as the center, and then drives the movable block 704 and the downward pressure rod 703 fixed at the bottom thereof to slide up and down in the fixed seat 701 through the pin at the end of the rear straight swing arm 607, and further drives the sleeve 705 and the telescopic rod 706 slidably installed therein to slide up and down, thereby meeting the upward and downward pressing movement requirements of the remote control transmitting window. The present application only requires one driving motor 605 to provide rotational power. Under the action of the double cam 602 on the movement transmission of the front V-shaped swing arm 608 and the rear straight swing arm 607 respectively, the two movement modes of front and rear telescopic extension and upward and downward pressing are superimposed on the L-shaped plate 708 at the output end of the telescopic rod 706, thereby meeting the requirements of the remote control. The front and rear material picking movement requirements of the remote control launch window can be met, and the upper and lower pressing movement requirements of the remote control launch window can be met. The two movement modes do not interfere with each other and can cooperate with each other for intermittent operation. The structure is compact and the linkage is strong. The two launch window installation positions corresponding to the dual-launch window remote control assembled in this application are respectively located at the end and the side. Therefore, this application sets the two clamps on the corresponding ends and sides on the L-shaped plate 708, and places two different types of launch windows in the feeding barrel 804 on both sides of the vertical plate 801. When in use, when the front V-shaped swing arm 608 drives the L-shaped plate 708 at the end of the telescopic rod 706 to extend forward in stages by swinging back and forth, the rack 711 fixed to the side end of the L-shaped plate 708 is connected to the corresponding turntable 805 through the transmission gear 8 on the back side. The meshing transmission of 07 drives the receiving trough 806 opened on the outer edge of the turntable 805 to rotate 180 degrees, and rotates and transfers the launch window at the lowest end of the feeding cylinder 804 contained in the receiving trough 806 to the corresponding picking plate 803 at the bottom, and through the sequential transmission of the two turntables 805, the two different types of launch windows are fed alternately, and the picking plates 803 on both sides are designed to have different extension lengths to meet the gripping requirements of the claws at the end and side for the corresponding types of launch windows, and when the telescopic rod 706 is subsequently retracted, the two claws are moved to the top of the assembly tool 3, and under the up and down pitching motion transmission of the rear straight swing arm 607, the two different types of launch windows are correspondingly buckled into the corresponding installation positions of the remote control shell 4,On the one hand, this application utilizes the high-precision mechanical transmission of the cam to ensure the positioning accuracy of the two launch window installation positions during repeated movements. On the other hand, by linking the rotating material distribution component 8 with the forward and backward telescopic movement of the telescopic rod 706 driven by the cam, two different types of launch windows are fed alternately while the telescopic rod 706 extends forward to pick up materials. The subsequent upward and downward pitching movement of the telescopic rod 706 when it retracts backward completes the assembly operation of the dual-launch window remote control. The structural design is reasonable and the linkage is stronger.

[0036] The embodiments of the present invention are presented for purposes of illustration and description and are not intended to be exhaustive or to limit the invention to the disclosed forms. Many modifications and variations will be apparent to those skilled in the art. The embodiments are chosen and described in order to better illustrate the principles of the invention and its practical application and to enable those skilled in the art to understand the invention and design various implementations with various modifications as suited for specific applications.

Claims

1. A remote control transmitting window assembly device, characterized in that: The invention comprises a support (1) and a synchronous drive assembly (6), wherein the support (1) is provided with a synchronous drive assembly (6) in the middle thereof, and the synchronous drive assembly (6) comprises a back plate (601), a double cam (602), a cam groove (603), a driven gear rod (604), a drive motor (605), a mounting rod (606), a rear straight swing arm (607) and a front V-shaped swing arm (608), wherein the back plate (601) is fixedly mounted on the top of the rear end of the support (1), and A double cam (602) is rotatably mounted on the middle of the back plate (601), and cam grooves (603) are provided on both the front and back surfaces of the double cam (602), and a driven gear rod (604) is coaxially connected to the rear end of the double cam (602), and the driven gear rod (604) is meshed with the bevel gear at the output end of the drive motor (605) for transmission. A mounting rod (606) is fixedly mounted on the left side of the front of the back plate (601), and a rear straight swing arm (607) is rotatably mounted on the rear end of the mounting rod (606), and a front V-shaped swing arm (608) is rotatably mounted on the front end of the mounting rod (606). The double cam (602) consists of two front and rear cams, and a cam groove (603) is provided on the front of the cam at the front end of the double cam (602), and a cam groove (603) is provided on the back of the cam at the rear end of the double cam (602), and the double cam (602) is connected to the bevel gear at the output end of the drive motor (605) through the driven gear rod (604). The gear transmission connection is such that the middle pin of the rear straight swing arm (607) is slidably matched with the cam groove (603) on the back of the double cam (602), and the rear straight swing arm (607) realizes intermittent pitching swing with the mounting rod (606) as the rotation center, and the pin at one end of the front V-shaped swing arm (608) is slidably matched with the cam groove (603) on the front of the double cam (602), and the front V-shaped swing arm (608) realizes intermittent left and right swing with the mounting rod (606) as the rotation center.

2. A remote control transmitting window assembly device according to claim 1, characterized in that: A telescopic downward pressing assembly (7) is provided on the side of the support (1), and the telescopic downward pressing assembly (7) comprises a fixed seat (701), a guide plate (702) and a downward pressing rod (703). The fixed seat (701) is fixedly installed in the middle of the right side of the back plate (601), and the guide plate (702) is fixedly installed on the side wall of the fixed seat (701), and the downward pressing rod (703) is slidably installed at the end of the fixed seat (701).

3. A remote control transmitting window assembly device according to claim 2, characterized in that: The telescopic downward pressing assembly (7) further comprises a movable block (704) and a sleeve (705); the movable block (704) is fixedly mounted on the top end of the downward pressing rod (703), and the movable block (704) is hingedly connected to the end pin of the rear straight swing arm (607); the sleeve (705) is fixedly connected to the bottom end of the downward pressing rod (703), and the sleeve (705) is slidably matched with the guide plate (702).

4. A remote control transmitting window assembly device according to claim 3, characterized in that: The telescopic downward pressing assembly (7) further comprises a telescopic rod (706) and a perforated pin (707); the telescopic rod (706) is slidably mounted inside the sleeve (705); one end of the telescopic rod (706) is fixedly connected to the perforated pin (707); and the perforated pin (707) is hingedly connected to a pin body at the other end of the front V-shaped swing arm (608).

5. A remote control transmitting window assembly device according to claim 4, characterized in that: The telescopic pressing assembly (7) further comprises an L-shaped plate (708), an end clamp (709), a side clamp (710) and a rack (711); the other end of the telescopic rod (706) is fixedly connected to the L-shaped plate (708), and one end of the L-shaped plate (708) is laterally fixed with the end clamp (709), and the other end of the L-shaped plate (708) is longitudinally fixed with the side clamp (710); a rack (711) extends from the side of the L-shaped plate (708), and teeth are arranged at equal intervals at the bottom end of the rack (711) along the extension direction.

6. The remote control transmitting window assembly device according to claim 1, characterized in that: The side end of the support (1) is connected to a rotating material distribution component (8), and the rotating material distribution component (8) includes a vertical plate (801), a bracket (802), a material picking plate (803) and a feeding tube (804). The brackets (802) are fixedly installed on both sides of the vertical plate (801), and the material picking plates (803) extend forward on both sides of the bottom end of the vertical plate (801), and the feeding tube (804) is fixedly installed on the top of both sides of the vertical plate (801).

7. A remote control transmitting window assembly device according to claim 6, characterized in that: The rotating material distribution assembly (8) further comprises a turntable (805), a material receiving trough (806) and a transmission gear (807). Turntables (805) are rotatably mounted on the bottom of both sides of the vertical plate (801), and the outer edge of the turntable (805) is tightly fitted with the bottom opening of the feeding barrel (804). Material receiving troughs (806) are provided on the circumference of the turntables (805) on both sides. The backs of the turntables (805) on both sides are coaxially connected to transmission gears (807), and the transmission gears (807) on both sides are meshed with the end teeth of the rack (711) in sequence for transmission.

8. The remote control transmitting window assembly device according to claim 1, characterized in that: A conveyor belt (2) is arranged parallel to the bottom front end of the support (1), and assembly tools (3) are arranged at equal intervals on the top plane of the conveyor belt (2) along the conveying direction. A remote control shell (4) is embedded in the assembly tool (3), and double infrared windows (5) are respectively provided at the end and side of the remote control shell (4).

Citation Information

Patent Citations

  • Intelligent cam drive assembling system

    CN106584070A

  • Intelligent laser marking welding process

    CN108161233A