1. Field of the Invention
The present invention relates to a machining equipment, and more particularly to a riveting press.
2. Description of the Prior Art
At present, with the development of technology, machining equipments instead of human operators complete manufacturing of various products. Wherein a riveting press used as one of the machining equipments has a wide using scope, such as electrical devices, automotive fittings, hardware tools, equipments and so on, to make components thereof form the rivet connection.
The prior riveting press commonly includes a base, a body frame positioned on the base, a riveting and pressing cylinder mounted on the body frame, and a pressing mechanism disposed between the base and the body frame and having a plurality of riveting and pressing punches. During the working process of the riveting press, the riveting and pressing cylinder drives the pressing mechanism to move up and down so that the riveting and pressing punches can be aligned to workpieces placed on the base for riveting and pressing. The pressing mechanism is an integral whole and the riveting and pressing punches designed for one specific workpiece are fixedly connected to it. Because this prior riveting press is only adapted to rivet and press one workpiece having a specific size, the use of this prior riveting press is single. Moreover, during the course of using this prior riveting press, the riveting and pressing punch is easily damaged or deformed due to frequent friction between it and the workpiece thereby reducing the machining precision. Therefore, when the structure or the size of the workpiece is slightly modified, the riveting press must be replaced as a new riveting press with a new riveting and pressing punch corresponding to the modified workpiece. And if the damaged riveting and pressing punch has affected the machining precision, the whole riveting press also needs to be replaced as a new riveting press, thus this can result in a serious waste of resources.
An object of the present invention is to provide a riveting press, which can be conveniently replaced to satisfy different need of riveting and pressing, and has a wide use and can largely save resources.
To achieve the above object, in accordance with the present invention, a riveting press is provided, comprising a base, a body frame fixed on the base, a riveting and pressing cylinder mounted on the body frame, and a pressing mechanism disposed between the base and the body frame. The pressing mechanism comprises a first supporting unit having at least one first receiving hole, a second supporting unit having at least one second receiving hole, an elastic member accommodated into the first receiving hole, and a riveting and pressing punch passing through the second receiving hole. The first supporting unit is connected to the riveting and pressing cylinder. The second supporting unit is removable mounted on the first supporting unit. One end of the riveting and pressing punch is blocked on the first supporting unit and is contact with one end of the elastic member, and the other end of the riveting and pressing punch points to the base.
Based on the above description, the riveting press as provided by the present invention has a plurality of the pressing punches movable mounted on the second supporting unit. The second supporting unit is further removable mounted on the second supporting unit. Therefore the destroyed pressing punches of the present riveting press can be conveniently replaced as new punches for satisfying different need, thereby making the riveting press have a wide use and largely save resources.
a is a perspective view of a material-feeding module of the riveting press of
b is an enlarged view of part B of
The following embodiment with reference to the accompanying drawings now has been given for detail describing the technology, the feature, the object and the effect of the present invention.
Please refer to
Referring to
The pressing mechanism 40 further includes a supporting flange 450 fixed on the first supporting unit 410. The riveting and pressing cylinder 30 includes a telescopic pole 310 connected to the first supporting unit 410 by the supporting flange 450. The riveting and pressing cylinder 30 can control the telescopic pole 310 to telescope up and down for driving the pressing mechanism 40 to move up and down, so that the riveting and pressing punches 440 can rivet and press workpieces 60 placed on the base 10.
Preferably, the pressing mechanism 40 also includes a plurality of setscrews 460. Each first receiving hole 411 has a screw structure engaged with the setscrew 460. Each setscrew 460 is mounted in the corresponding first receiving hole 411 and faces to a top end of the elastic member 430. Each riveting and pressing punch 440 is separately designed. Adjusting the position of the setscrew 460 in the first receiving hole 411 can change the compression of the corresponding elastic member 430 for controlling the press force of the riveting and pressing punch 440 thereby reducing the tolerance of the machining depth of the riveting and pressing punch 440.
Preferably, the base 10 has two guiding posts 110 perpendicularly stood on a top surface thereon. Two bearings 412 are separately mounted on two ends of the first supporting unit 410. Each bearing 412 is slidably coupled to the corresponding guiding post 110 so that the whole pressing mechanism 40 can slide up and down along the two guiding posts 110 in the perpendicular direction of the top surface of the base 10.
Preferably, two limiting stoppers 120 are disposed on the top surface of the base 10, and are located below the first supporting unit 410 to prevent the pressing mechanism 40 from overly pressing the workpieces thereby protecting the workpieces and the riveting and pressing punches 440.
Referring to
Preferably, the first supporting unit 410 disposes a photoelectric switch 413, which is connected to a control system (not shown in all FIGS) in the base 10. The pressing mechanism 40 also includes a press locating dowel 470 passing through the first supporting unit 410 and the second supporting unit 420. One end of the press locating dowel 470 is aligned to the photoelectric switch 413, and the other end thereof is corresponding to the positioning holes 521. The location of an arranging tray 63, which is placed on the movable platform 520 to carry the workpieces 60, can be checked by these designs of the press locating dowel 470 and photoelectric switch 413. If the location of the arranging tray 63 is wrong or has a little deviation, the locating dowel 470 can not be inserted into the corresponding positioning holes 521, but be lift up to touch and start the photoelectric switch 413 so that the control system connected with the photoelectric switch 413 can make every cylinder stop working Therefore, the riveting press 1 and the workpieces 60 can avoid to be damaged.
Referring to
First, insulating housings 62 and spring probes 61 are placed on the arranging tray 63 by an arranging machine (not shown in all FIGS). Second, the arranging tray 63 is placed on the movable platform 520 of the riveting press 1. Then, the movable platform 520 is push to an initial position. Next the riveting press 1 is started so that the control system can control every cylinder's actions. The actions of every cylinder are as follows.
After the riveting press 1 being started, the vertical movable portion 532 of the vertical cylinder 530 can move upward so that the material-feeding locating dowel 550 fixed thereon can be inserted into the corresponding positioning hole 521. Then, the horizontal movable portion 542 of the horizontal cylinder 540 can go horizontally forward one step, correspondingly the movable platform 520 moving along with it can go one step toward the pressing mechanism 40. Now, a first row of the workpieces 60 placed on the arranging tray 63 is aligned with the pressing punches 440 of the pressing mechanism 40, and they are one-to-one correspondence. Next, the riveting and pressing cylinder 30 extends its telescopic pole 310 to push the pressing mechanism 40 moving downward, and the two riveting and pressing feet 442 of every pressing punch 440 separately depress the corresponding two spring probes 61 so that the two spring probes 61 can be fixedly connected to the insulating housing 62, as shown in
As described above, the pressing punches 440 of the present riveting press 1 is movable mounted on the second supporting unit 420. The second supporting unit 420 is further removable mounted on the second supporting unit 420. Therefore the pressing punches 440 of the present riveting press 1 can be conveniently replaced as new punches for satisfying different need, thereby making the riveting press 1 have a wide use and largely save resources.
It is to be understood, however, that even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and function of the invention, the disclosure is illustrative only, and changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.
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Number | Date | Country |
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04365519 | Dec 1992 | JP |
Number | Date | Country | |
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20120036688 A1 | Feb 2012 | US |