Background of the Invention
A feeding device for drilling tools with automatic reversal of the feeding speed has become known. With this known arrangement, the shifting over from fast traverse to working speed when the tool impacts upon the workpiece is effected in conformity with the increase of the torque or in conformity with the feeding pressure.
There has furthermore become known a deep hole drilling machine with control means controlling the changeover from "fast traverse forward" to "slow speed forward", according to which the tool carrier is, against the thrust of an axially effective spring, caused to engage an abutment of the displaceable tool carriage when the tool hits the workpiece. As control means in this connection there are employed an actuating cam which is coaxially arranged with the tool spindle, and furthermore a tool carriage cooperating with a limit switch cooperating with said actuating cam. Therefore, during the drilling operation, the tool carriage has to be adjusted with the tool carrier.
Furthermore, drilling devices have become known in which the drilling spindle is rotatable in a longitudinally displaceable spindle sleeve while the spindle sleeve is adapted through the intervention of complicated transmission means to be subjected to a faster and a lower rate of feed or advance.
The above mentioned devices have the drawback that either during the drilling operation, also the carriage has to be moved, or expensive transmissions have to be employed, or the duration of the fast traverse relative to the slow speed has to be adjusted in conformity with the distance of the spindle in its starting position from the workpiece of varying sizes. With horizontal drilling and milling machines and so-called machining centers, care is taken that the distance of the workpiece from the spindle in the starting position thereof is as constant as possible. This will be obtained by chucking the workpiece on the turntable of the boring mill or the machining center. With flights of drilling machines with which the device according to the invention may be employed, this aligning of the workpiece which in frequent instances represents a long profiled iron is not possible because the feeding roller bed of such flights determines the position of the workpiece which is held stationary.
Summary of the Invention
The present invention relates to a drilling device for workpieces of different sizes which engage a stationary abutment which is perpendicular to the drilling direction. More specifically, the present invention relates to a drilling device of the above mentioned type which is provided with a tool carrier that is adjustable relative to a slide or carriage movable in the direction of drilling. The advancing movement of said slide or carriage, when the tool abuts the workpiece while overcoming a spring force, is changed by control contacts from "fast traverse or forward" to "slowly forward", while the carriage is equipped with at least one return spring for returning said carriage to its starting position and is furthermore provided with an extension which carries a control contact for changing the feeding speed.
It is, therefore, an object of the present invention to provide a drilling device of the above mentioned type in which during the drilling operation not only the workpiece carrier is to be moved but the time point of the shiftover from fast traverse of the drilling spindle to the slow movement thereof is effected automatically independently of the duration of the fast traverse movement and thus independently of the initial spacing between the drilling spindle and the workpiece. During the above mentioned drilling operation the tool carriage is arrested and thus does not require any drive. Whether the workpiece engaging the stationary abutment is large or small can be disregarded. The fast traverse of the spindle will always at a predetermined time be shifted over to the slow speed prior to the starting of the drilling operation proper.
The drilling device according to the present invention is characterized primarily in that the extension of the carriage for instance in the form of a rod, carries an abutment which prior to the start of the drilling operation engages a stationary counterbearing. The said abutment is so arranged that the control contact on the extension actuates its stationarily fixed counter contact for reducing the feeding speed of the tool carrier prior to the abutment hitting the counterbearing.
According to a further development of the invention, between the stationary contact and the feeding transmission of the tool carrier there is arranged a time relay which becomes effective after actuation of the counter contact. After said time relay has been disengaged, the feeding movement of the tool carrier is changed over to "drilling feed.". This step is necessary in particular with thin tools. It will be appreciated that if the drilling of such tool hits the workpiece, it appears appropriate not immediately to cause the drilling feed to its full extent to act upon the tool but instead to permit the drilling tip to enter the workpiece with a low feeding force and only thereafter to cause the tool to work at the "drilling feed" speed through the workpiece.
According to a further development of the invention, the stationary counter contact has associated therewith a second stationary counter contact which, following the completion of the drilling operation, turns off the transmission of the tool carrier or shifts the same to carry out its return stroke.
According to a still further development of the invention, the carriage or the feed piston of the tool carrier may include a contact limiting the return stroke of the tool carrier while a safety switch for the advance of the tool carrier is associated with said last mentioned contact. The advance or feed piston of the tool carrier preferably carries a contact which limits the drilling depths or the drilling feed or advance.
These and other objects and advantages of the invention will appear more clearly from the following specification in connection with the accompanying drawings, in which:
FIGS. 1 to 3 diagrammatically illustrate the drilling device according to the invention and its parts in various working positions.
FIG. 4 diagrammatically illustrates two workpieces of different sizes in engagement with a roller arranged perpendicularly with regard to the drilling device and also illustrates the different spacing of the drilling spindle in its starting position from the two differently sized workpieces.
Detailed Description
Referring now to the drawings in detail, the arrangement shown therein comprises a support or base 1 on which by means of wheels or rollers 2 a drilling carriage 3 is displaceable along a path in the direction of the arrow 4. The upper portion of the drilling carriage is provided with receiving means for the tool carrier 5 which is movable relative to carriage 3 by power operable means 25 likewise in the direction of the arrow 6 and which carries the drilling tool 7.
Above the feeding cylinder 8 there is provided a stationary holder 9 which may be considered as part of support 1. Holder 9 is equipped with two switches 10, 11. The feeding or advancing cylinder 8 of the tool carrier 5 is equipped with a rear contact emitter 12 and a front contact emitter 13 which are operatively connected to power operable means 25. Limit switches 10, 11 along with contact emitters 12, 13 define limit switch means for limiting the stroke of tool carrier 5 in the drilling direction as well as the return stroke in the opposite direction, as will be described later. The backside of the carriage 3 which faces away from the tool carrier 5 includes a fixed extension means in the form of a rod 14 which latter has one end thereof provided with a contact disc 15 fixedly connected thereto and in the vicinity of the wall 16 of the carriage 3 is provided with a further abutment disc 17 likewise fixedly connected to said rod 14. The rod 14 extends in the direction of movement of the drilling carriage 3 and of the tool carrier 5 and moves along the path for carriage 3. The abutment disc 17 cooperates with a stationary counterbearing 18, secured to support 1 to define stop means for carriage 3 whereas the contact disc 15 cooperates with two switches 19 and 20. Switches 19 and 20 are secured to support 1 and define first and second switch means connected to power operable means 25 and control actuation thereof as will be explained later.
On the rear section of rod 14 which extends freely through a bore 21a of a stationary bearing part 21, there are arranged two springs 22 and 23. The counterbearings of spring 22 are formed on one hand by the disc 15 connected to the rod 14 and on the other hand by the stationary bearing part 21. Spring 23 engages the bearing part 21 from the other side and rests against an additional disc 24 which is fixedly mounted on rod 14. Stated another way, discs 15 and 24 define first and second spaced abutment means on rod 14 with bearing part 21 defining a bearing means secured to support 1 intermediate abutment means 15, 24 and springs 22, 23 are respectively interposed between bearing means 21 and abutment means 15, 24. These elements cooperate to define biasing means which normally maintains carriage 3 in an intermediate predetermined position with respect to the path, as will be explained later.
The arrangement of the abutment disc 17 on rod 14 is, as will be explained further below, such that the disc 17 engages the counterbearing 18 after the disc 15 has actuated the switch 19. Between the switch 19 and power operable means 25 for tool carrier 5 there is preferably arranged a time relay or timing relay means 26.
Operation
The operation of the drilling device according to the invention is as follows:
In the starting position of the parts as shown in FIG. 1, the two springs 22, 23 are uniformly tensioned between their couterbearings 15, 21 and 24. The abutment disc 17 will occupy the position shown in FIG. 1, which means occupy a position spaced from the stationary counterbearing 18. If now the tool carrier 5 moves at fast traverse or fast speed from the position shown in FIG. 1 to the position shown in FIG. 2 while the tool 7 engages the workpiece W, the carriage 3 is displaced toward the right in the direction indicated by the arrow 4a which will compress spring 23. The contact discs 15 will in this connection slide onto the stationary switch 19 and cause the latter to convey a pulse to the time relay 26 as a result of which power operable means 25 of the tool carrier 5 turns off the high pressure hydraulic means and advances the tool carrier at a reduced speed prior to the abutment 17 engaging the counterbearing 18. The difference in stroke between the contact disc 15 and switch 19 on one hand and between the disc 17 and its counter-bearing 18 on the other hand may be kept very short while nevertheless the time relay 26 will not immediately cause the advance of the tool carrier 5 to shift again the drilling feet. Rather, the tool carrier 5 is due to the low pressure hydraulics in its cylinder 8 for the time being still held at its slow speed until the drill of the tool 7 has with its tip 7a adapted itself to the workpiece, in other words has drilled a short depression in the workpiece and abutment disc 17 engages counterbearing 18 to define a fixed drilling position for carrier 3. This is necessary particularly with drills of a short diameter in order to prevent the drill from breaking.
Thereupon the time relay 26 causes power operable means 25 of tool carrier 5 again to shift over to the feed or drilling speed so that at this speed the drill will penetrate the workpiece W.
Inasmuch as after the completed drilling of the workpiece W the resistance by means of which the spring 23 was tensioned no longer prevails, the spring 23 pushes the carriage 3 in the direction of the arrow 4b (in FIG. 3 toward the left) and more specifically beyond the initial starting or predetermined position of the carriage, in such a way that the contact disc 15 comes into contact with the second switch 20 so that the switch 20 will actuate power operable means 26 and initiate the return movement of the tool carrier 5 in the direction of the arrow 6a (FIG. 3). During the return movement of the tool 7 from the effected bore, the carriage 3 again moves to its starting or predetermined position.
The return movement of the tool carrier 5 in the direction of the arrow 6a can be braked by the switch 11 and the contact 12. Switch 11 and contact 13 are safety devices which become effective when the contact disc 15 on rod 14 does not come into action or when the drilling depths as for instance with blind holes, is to be limited. Advantageously, the switches 10, 11 or the contact emitters 12, 13 or both are adjustable in the longitudinal direction of the tool carrier.
The extension 14 is in its longitudinal direction adjustable and arrestable on the carriage 3. In other words, the counterbearing 15, 18, 21 and 24 of the abutment 17 and the contacts 19, 20 are adjustable and arrestable.
These adjustments can be made by means well known in the art. For example, switches 10 and 11, could be movable on holder 9 and held in adjusted positions by set screws (not shown). Also, rod 14 could be located in a threaded opening in carriage 3 to be adjustable and abutments 15 and 17 could be adjustable in the same fashion.
FIG. 4 shows the function of the device to realize the objects mentioned above. The lateral roller 30 of a roller bed forms the stationary abutment for the two workpieces Wa and Wb which are of different sizes and which rest against the horizontal roller 31. The stationary abutment for the two workpieces Wa and Wb extends in a direction perpendicular to the drilling direction. The flange 33 of the workpiece Wa which flange has to be drilled through, is spaced by a distance a from the drilling spindle 7 in the starting position of the latter, whereas the flange 34 of the workpiece Wb to be drilled is spaced by the distance b from the spindle 7. With this device according to the present invention, the spindle 7 will without previous control or switching movements automatically always at fast traverse speed perform the stroke a,b independently of the size of the respective stroke. Only thereafter, the parts 15 and 16 will shift the device automatically to slow speed. After the slow speed for spindle 7 has been made effective, also the carriage 3 will move at low speed and thus permits the abutment 17 also only slowly to engage the counterbearing 18 so that breakage of the tool will for all practical purposes be avoided.
It is, of course, to be understood that the present invention is, by no means, limited to the specific showing in the drawings but also comprises any modifications within the scope of the appended claims.