AUTOMATIC SOLDERING SYSTEM
An automatic soldering system includes a conveyance mechanism, a vehicle, a first part assembling mechanism, a first soldering mechanism, a turn-over mechanism, a second part assembling mechanism, a second soldering mechanism, and a control system. The vehicle is conveyed by the conveyor mechanism for carrying a workpiece. The first part assembling mechanism and the first soldering mechanism assemble and solder a first part to the primary workpiece carried by the vehicle. The turn-over mechanism turns the vehicle that is conveyed by the conveyor mechanism and carries the primary workpiece having the first part assembled thereto by a predetermined angle. The second part assembling mechanism and the second soldering mechanism assemble and solder and position a second part to the primary workpiece. The control system is electrically connected to and thus controls the first part and second part assembling mechanisms, the first and second soldering mechanisms, and the turn-over mechanism.
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1. Field of the Invention
The present invention generally relates to an automatic soldering system, and in particular to an automatic soldering system that performs multi-site multi-directional spot soldering on a workpiece.
2. The Related Arts
The progress of the modern society brings development of economics, raising the living standard of human beings. Various fashion, compact and elaborate, and diverse electronic products are getting popular and this provides an excellent platform of development and progress for the trend of compactness, high performance, high precision, and high quality for electronic devices. To fit to such a trend and requirements, each working stage of the manufacturing and assembling process of the electronic devices are subjected to severe operation standards. For example, an electrical connector is a commonly used component for an electronic device. Most of the electrical connectors are composed of a metal shell and two or more secondary parts soldered to the metal shell. These secondary parts are often soldered to the metal shell with soldering spots located on different planes or surfaces.
Conventionally, in the soldering and assembling process of the component, the assembling operation and the soldering operation are carried out separately. This causes unstable quality and low passing rate of production. Further, most of the secondary parts are of small sizes, making the handling difficult and thus low efficiency.
SUMMARY OF THE INVENTIONAn objective of the present invention is to provide an automatic soldering system that performs multi-site multi-directional spot soldering on a workpiece for the purposes of reducing human labor and improving production efficiency and product quality.
To achieve the above objective, the present invention provides an automatic soldering system for soldering secondary parts to a primary workpiece. The automatic soldering system comprises a conveyance mechanism, vehicles, a first part assembling mechanism, a first soldering mechanism, a turn-over mechanism, a second part assembling mechanism, a second soldering mechanism, and a control system. The vehicles are mounted on the conveyor mechanism to be conveyed by the conveyor mechanism for individually carrying primary workpiece. The first part assembling mechanism assembles and positions a first part on a primary workpiece carried by a vehicle. The first soldering mechanism solders the first part to the primary workpiece. The turn-over mechanism is set up in the site of the first soldering mechanism to turn a vehicle that is conveyed by the conveyor mechanism and carries a primary workpiece having a first part assembled thereto by a predetermined angle. The second part assembling mechanism assembles and positions a second part on the primary workpiece. The second soldering mechanism solders the second part to the primary workpiece. The control system is electrically connected to the first part assembling mechanism, the first soldering mechanism, the turn-over mechanism, the second part assembling mechanism, and the second soldering mechanism for controlling the operations thereof.
As described above, the automatic soldering system of the present invention employs separate automatic assembling mechanisms to position and assemble the secondary parts to the primary workpiece and then employs automatic soldering mechanisms, particularly those combined with direction variable robotic arms, to perform soldering operations on the secondary parts from different directions. Thus, the assembling efficiency is increased and the product passing rate is improved.
The present invention will be apparent to those skilled in the art by reading the following description of preferred embodiments of the present invention and the best modes for carrying out the present invention, with reference to the attached drawings, in which:
The present invention provides an automatic soldering system, which is used to solder a plurality of secondary parts to a metal shell of a primary workpiece from various directions in a manufacturing process of the primary workpiece. In the embodiment illustrated, the primary workpiece comprises an electrical connector 1. As shown in
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According to the present invention, the conveyor mechanism 2 comprises an endless loop of conveyance track (not shown) and a conveyance driving device (not shown). The first part assembling mechanism 3, the first soldering mechanism 4, the second part assembling mechanism 5, and the second soldering mechanism 6 are set up at sides of the conveyance track in a proper sequence. The control system comprises a plurality of sensors 10, which is arranged on the conveyance track. The vehicles 9 are set on the conveyance track to be moved and conveyed to various works stations through the conveyance track. The sensors 10 are set at each of the work stations to detect the arrival of the vehicle 9 at a proper position in order to signal the work station to start operation. The automatic soldering system of the present invention further comprises a plurality of elevation mechanisms 38 that operates to raise a vehicle 9 that carries a primary workpiece on which secondary parts are assembled away from the conveyor mechanism (see
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The portion of the conveyance track below the turn-over mechanism 40 is provided with one elevation mechanism 38 for elevating and positioning of vehicles 9. The turn-over mechanism 40 comprises a mount 41, a horizontal rotation cylinder 42 fixedly coupled to an underside of the mount 41, a coupler 43 mounted to a lower end of the horizontal rotation cylinder 42, two vertical turn-over cylinders 44 that are arranged to juxtapose each other and fixedly mounted to an underside of the coupler 43, and a pick-up assembly 45 coupled to the vertical turn-over cylinders 44. The pick-up assembly 45 is located above and corresponding to the elevation mechanism 38. The pick-up assembly 45 comprises two clamping arms 451, fingers 452 that are fixedly mounted to lower ends of the clamping arms 451, and a clamp block 453 that is fixedly coupled to upper ends of the clamping arms 451. The lower ends of the clamping arms 451 form sideway slots 454. To pick up a vehicle 9, the vertical turn-over cylinders 44 drive the clamping arms 451 to approach each other and thus closing, so that the finger 452 are moved into the clamping grooves 95 of the vehicle 9. Left and right sides of the base plate 911 of the vehicle 9 are respectively fit into the sideway slots 454, and the clamp block 453 securely holds the electrical connector 1 from the above to thereby securely retain and clamp the vehicle 9. Then, the horizontal rotation cylinder 42 drives the two vertical turn-over cylinders 44 and the pick-up assembly 45 to rotate until the pick-up assembly 45 that carries the vehicle 9 picked up thereby aligns a soldering site, and then the vertical turn-over cylinders 44 turns over the vehicles 9 to have the bottom surface thereof facing upward, whereby a soldering head (not shown) of the first soldering mechanism 40 is allowed to be set in alignment with the through hole 913 of the vehicle 9 to carry out spot soldering on the first part 14.
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In summary, the automatic soldering system of the present invention employs separate automatic assembling mechanisms to position and assemble the secondary parts to the primary workpiece and then employs automatic soldering mechanisms, particularly those combined with direction variable robotic arms, to perform soldering operations on the secondary parts from different directions. Thus, the assembling efficiency is increased and the product passing rate is improved.
Although the present invention has been described with reference to the preferred embodiment thereof, it is apparent to those skilled in the art that a variety of modifications and changes may be made without departing from the scope of the present invention which is intended to be defined by the appended claims.
Claims
1. An automatic soldering system for soldering parts to a primary workpiece, the automatic soldering system comprising:
- a conveyor mechanism;
- a vehicle, which is mountable to the conveyor mechanism to be conveyed by the conveyor mechanism for carrying a primary workpiece;
- a first part assembling mechanism, which is set up at one side of the conveyor mechanism to selectively position and assemble a first part to the primary workpiece;
- a first soldering mechanism, which is set up at one side of the conveyor mechanism to solder the first part to the primary workpiece;
- a turn-over mechanism, which is set up in a site of the first soldering mechanism for turning the vehicle that is conveyed by the conveyor mechanism and carries the primary workpiece having the first part assembled thereto by a predetermined angle, wherein the turn-over mechanism comprises a mount, a horizontal rotation cylinder fixedly coupled to an underside of the mount, a coupler mounted to a lower end of the horizontal rotation cylinder, two vertical turn-over cylinders arranged to juxtapose each other and fixedly mounted to an underside of the coupler, and a pick-up assembly coupled to the vertical turn-over cylinder, the pick-up assembly comprising two clamping arms, fingers fixedly mounted to lower ends of the clamping arms, and a clamp block fixedly coupled to upper ends of the clamping arms, the clamping arms having lower ends forming sideway slots;
- a second part assembling mechanism, which is set up at a side of the conveyor mechanism to position and assemble a second part to the primary workpiece;
- a second soldering mechanism, which is set up at a side of the conveyor mechanism to solder the second part to the primary workpiece; and
- a control system, which is electrically connected to and thus controls the first part assembling mechanism, the first soldering mechanism, the turn-over mechanism, the second part assembling mechanism, and the second soldering mechanism.
2. The automatic soldering system as claimed in claim 1, wherein the conveyor mechanism comprises an endless loop of conveyance track and a conveyance driving device, the conveyance track including two parallel conveyor belts, a loading belt arranged at one side and parallel to one of the conveyor belts, a feeding device coupled to an end of the conveyor belts, and a forwarding device coupled to an opposite end of the conveyor belt.
3. The automatic soldering system as claimed in claim 1, further comprising a plurality of elevation mechanisms, which selectively and individually raise the vehicle that carries the primary workpiece having the parts assembled thereto away from the conveyor mechanism, the elevation mechanisms being set up to respectively correspond to the first part assembling mechanism, the first soldering mechanism, the turn-over mechanism, the second part assembling mechanism, and the second soldering mechanism.
4. The automatic soldering system as claimed in claim 3, wherein each of the elevation mechanisms comprises a mounting plate, a positioning cylinder, an adjusting cylinder, and a carrier block, the mounting plate extending into the conveyor mechanism, the positioning cylinder being arranged in front of the adjusting cylinder, the positioning cylinder and the adjusting cylinder being mounted to the mounting plate, the positioning cylinder comprising a positioning axle, the adjusting cylinder comprising an adjusting axle, the adjusting axle having an upper end coupled to the carrier block, the carrier block comprising a positioning rod extendable into a positioning hole formed in the vehicle.
5. The automatic soldering system as claimed in claim 1, wherein the first part assembling mechanism comprises an enclosure, a bottom board, a parts supply mechanism, a parts feeding mechanism, a parts removing mechanism, a cutting mechanism, and a pick-up mechanism, the bottom board being mounted on the enclosure and carries slide rails and a slide block; the parts supply mechanism being set up on the bottom board and adapted to carry a part band that is to be cut for making one part for the primary workpiece, the parts feeding mechanism being mounted on the slide block and having a side adjacent to the parts supply mechanism, the parts removing mechanism being mounted on the parts feeding mechanism and comprising a tip portion, which is removably insertable into a positioning hole defined in the part band, the cutting mechanism being mounted on the slide block and fixedly coupled to an opposite side of the parts feeding mechanism, the cutting mechanism comprising a cutting blade forming a cutting zone into which the cutting blade is extendable, the pick-up mechanism comprising a first pick-up mechanism and a second pick-up mechanism.
6. (canceled)
7. The automatic soldering system as claimed in claim 1, wherein the second part assembling mechanism comprising a casing, a parts supplying mechanism mounted on the casing, a position correction mechanism, and a clamping and transporting mechanism, and the clamping and transporting mechanism, the parts supplying mechanism comprising a vibration tray for managing parts and a supply chute connected to one side of the vibration tray, the position correction mechanism being arranged at one end of the supply chute.
8. The automatic soldering system as claimed in claim 1, wherein the control system comprises a plurality of sensors, which is arranged on the conveyance track to respectively correspond to work stations.
9. The automatic soldering system as claimed in claim 1, further comprising an unloading mechanism, which comprises an unloading rack, a horizontal driving device mounted on the unloading rack, a slide plate mounted on the unloading rack and selectively driven by the horizontal driving device to do horizontal sliding movement, a vertical driving device fixedly mounted to the slide plate, a suction pick-up member mounted on the slide plate and selectively driven by the vertical driving device to do vertical sliding movement, a discharge guide board, and a collection tray.
10. The automatic soldering system as claimed in claim 1, wherein the vehicle comprises a vehicle body, a second support section, and a third support section, the vehicle body comprising a base plate and a first support section raised upward from a central portion of top surface of the base plate, the first support section having a central portion forming an open chamber for receiving and holding the electrical connector, the open chamber having a bottom, which is partly recessed to form a first accommodation compartment for accommodating the first part, the first accommodation compartment shaped to correspond to the first part, the base plate having a bottom surface in which a through hole is defined to communicate the first accommodation compartment, the second support section and the third support section being respectively mounted to left and right sides of the first support section, the second support section having a central portion forming a second accommodation compartment that is located at a left side of the open chamber for accommodating the second part, the third support section having a central portion forming a third accommodation compartment that is located at a right side of the open chamber for accommodating a third part, the vehicles vehicle forms a positioning hole on each of front and rear sides of the open chamber, the base plate forming clamping grooves respectively on left and right sides of a central portion of the bottom surface thereof.
11. An automatic soldering system for soldering parts to a primary workpiece, the automatic soldering system comprising:
- a conveyor mechanism;
- a vehicle, which is mountable to the conveyor mechanism to be conveyed by the conveyor mechanism for carrying a primary workpiece;
- a first part assembling mechanism, which is set up at one side of the conveyor mechanism to selectively position and assemble a first part to the primary workpiece;
- a first soldering mechanism, which is set up at one side of the conveyor mechanism to solder the first part to the primary workpiece;
- a turn-over mechanism, which is set up in a site of the first soldering mechanism for turning the vehicle that is conveyed by the conveyor mechanism and carries the primary workpiece having the first part assembled thereto by a predetermined angle;
- a second part assembling mechanism, which is set up at a side of the conveyor mechanism to position and assemble a second part to the primary workpiece;
- a second soldering mechanism, which is set up at a side of the conveyor mechanism to solder the second part to the primary workpiece; and
- a control system, which is electrically connected to and thus controls the first part assembling mechanism, the first soldering mechanism, the turn-over mechanism, the second part assembling mechanism, and the second soldering mechanism;
- wherein the second part assembling mechanism comprises a casing, a parts supplying mechanism mounted on the casing, a position correction mechanism, and a clamping and transporting mechanism, and the clamping and transporting mechanism, the parts supplying mechanism comprising a vibration tray for managing parts and a supply chute connected to one side of the vibration tray, the position correction mechanism being arranged at one end of the supply chute.
12. An automatic soldering system for soldering parts to a primary workpiece, the automatic soldering system comprising:
- a conveyor mechanism;
- a vehicle, which is mountable to the conveyor mechanism to be conveyed by the conveyor mechanism for carrying a primary workpiece;
- a first part assembling mechanism, which is set up at one side of the conveyor mechanism to selectively position and assemble a first part to the primary workpiece;
- a first soldering mechanism, which is set up at one side of the conveyor mechanism to solder the first part to the primary workpiece;
- a turn-over mechanism, which is set up in a site of the first soldering mechanism for turning the vehicle that is conveyed by the conveyor mechanism and carries the primary workpiece having the first part assembled thereto by a predetermined angle;
- a second part assembling mechanism, which is set up at a side of the conveyor mechanism to position and assemble a second part to the primary workpiece;
- a second soldering mechanism, which is set up at a side of the conveyor mechanism to solder the second part to the primary workpiece;
- a control system, which is electrically connected to and thus controls the first part assembling mechanism, the first soldering mechanism, the turn-over mechanism, the second part assembling mechanism, and the second soldering mechanism; and
- an unloading mechanism, which comprises an unloading rack, a horizontal driving device mounted on the unloading rack, a slide plate mounted on the unloading rack and selectively driven by the horizontal driving device to do horizontal sliding movement, a vertical driving device fixedly mounted to the slide plate, a suction pick-up member mounted on the slide plate and selectively driven by the vertical driving device to do vertical sliding movement, a discharge guide board, and a collection tray.
Type: Application
Filed: Sep 6, 2010
Publication Date: Mar 8, 2012
Applicant: Cheng Uei Precision Industry Co., LTD. (Tu Cheng City)
Inventors: Tsung-han Wei (Tu Cheng), Hung-yuan Fang (Tu Cheng), Yu-feng Lin (Tu Cheng), Mu-cun Chen (Tu Cheng), Jyun-lin Huang (Tu Cheng)
Application Number: 12/876,217
International Classification: B23K 37/047 (20060101); B23K 3/00 (20060101);