US157700A - Improvement in machines for threading bolts - Google Patents

Improvement in machines for threading bolts Download PDF

Info

Publication number
US157700A
US157700A US157700DA US157700A US 157700 A US157700 A US 157700A US 157700D A US157700D A US 157700DA US 157700 A US157700 A US 157700A
Authority
US
United States
Prior art keywords
dies
bolt
oil
machines
lever
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
Publication date
Application granted granted Critical
Publication of US157700A publication Critical patent/US157700A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23GTHREAD CUTTING; WORKING OF SCREWS, BOLT HEADS, OR NUTS, IN CONJUNCTION THEREWITH
    • B23G5/00Thread-cutting tools; Die-heads
    • B23G5/08Thread-cutting tools; Die-heads with means for adjustment
    • B23G5/10Die-heads
    • B23G5/12Die-heads self-releasing
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10STECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10S29/00Metal working
    • Y10S29/055Metal working with cutter drive
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10STECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10S29/00Metal working
    • Y10S29/068Hollow spindle contains
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10STECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10S29/00Metal working
    • Y10S29/091Plural discharge openings
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10STECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10S29/00Metal working
    • Y10S29/101Pan, bed, or table
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10STECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10S29/00Metal working
    • Y10S29/102Debris chute
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T408/00Cutting by use of rotating axially moving tool
    • Y10T408/18Cutting by use of rotating axially moving tool with stopping upon completion of prescribed operation
    • Y10T408/20Responsive to condition of work or product
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T408/00Cutting by use of rotating axially moving tool
    • Y10T408/44Cutting by use of rotating axially moving tool with means to apply transient, fluent medium to work or product
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T408/00Cutting by use of rotating axially moving tool
    • Y10T408/50Cutting by use of rotating axially moving tool with product handling or receiving means
    • Y10T408/51Ejector

Definitions

  • the object of my invention is to furnish a means of actuating the opening mechanism of the dies of bolt-threading machines automatically, when the bolt has been threaded a proper distance from the point; to provide means for causing a current of lubricatinguid to pass through the revolving dies in the direction opposite to the motion of the bolt entering the dies, so as to wash out the chips to lubricate the cutting-edges and to keep the dies cool; and also to provide a means of regulating the supply of the fluid from a pump to the parts of the machine requiring it, as in threading bolts or in tapping, nuts and controlling or directing the force of the current so as to insure the performance of these objects and also to provide means for conducting the lubricating-fluid from a reservoir to the rear of the dies, and from the dies back to the reservoir.
  • My invention so far as the first object is concerned, is applicable to that class of boltthreading machines in which revolving dies open to liberate the bolt when cut; and consists in providing an adjustable stop in the center of a hollow spindle to be pushed against Vby the end of the bolt being threaded, and by proper devices to actuate the opening machinery and liberate the bolt at the proper time; second, in the same class of machines to utilize the levers and devices required for fourth, in providing a reservoir below the cutting-dies, ducts through which the lubricant is conveyed to the rear of the cutting-dies, and a duct which conveys the lubricant, after it passes the dies, back to the reservoir.
  • Figure 1 represents a sectional elevation ofthe Sellers boltthreading machine with my improvements added;
  • Fig. 2 a plan of the same;
  • Eig. 3 a rear end elevation;
  • Eig. 4L ay sectional front end elevation, showing lubricating-pump in section;
  • Figs. 5 and 6 enlarged views of the levers through which the stop-motion is operated, and which convey the lubricating-fluid to the dies.
  • the Wheel L may be drawn away from Gr and made to engage in a recess in the leg l', a beveled collar on wheel L fitting this recess after the manner of friction-clutches.
  • pinion L is driven by G it tends, by reason of the difference in diameter ofthe two pairs of wheels, to cause the cam-box to rotate faster than the die-box to the limit allowable by the stop U. This driving ahead of the cam-box closes the dies, but when the motion of wheel L is retarded by the friction on recess in leg Z' it causes the diesto open.
  • a tank 1, supported on one ofthe legs of the machine.
  • This tank is to contain oil or other liquid used.Ii ⁇ or convenience, I shall describe it as containing oil.
  • a pump, 2, driven by an eccentric on shaft E, takes oil from the tank and forces it through pipes 3 and 4, either to the dies or to a hose, 5, which canbe used to convey the oil to nuts being tapped. In both of these pipes are stop-cocks or valves to give direction to and control the amount of oil being delivered.
  • Pipe 3 communicates with a stand, 7, attached to leg Z.
  • the oil passing through this stand which is hollow, enters a lever, 8, socketed into the top of stand 7, and then passes into a duct, 9, which ts the spindle D sufficiently tight to prevent leakage of oil under a very light pressnre.
  • This duct has a much smaller interior diameter than the hollow spindle, so that the delivery end of the duct in the hollow spindle forms a dam, which prevents the oil from iiowing out at the rear of the spindle.
  • the duct passes through the center of a collar, which closes the rear end of the spindle, thus avoiding any necessity for packing, even when the duct ts the collar very loosely. It will be observed the end of lever 8 dips into a recess or socket in the duct 9. This makes any packing at this point needless.
  • lever 8 is socketed into the top of stand 7 a light string packing will prevent leakage.
  • a prolongation, 10, of lever 8 connects by means of a rod, 11, with a bell-crank latch, 12, hinged to the bed of the machine, which latch, engaging with a catch on lever V, holds the lever V back in the direction it would naturally be forced by the spring on shaft E. In this position the dies remain closed.
  • lever V I provide an arm, 13, with counter-weight 14, of sufticient amount to draw back the spring on shaft E and force the friction-clutch on wheel L into the recess in leg l with sufficient force to cause the dies to open.
  • This weight 14 is held up during the process of' cutting by the bell-crank 12.
  • This rod can be clamped so that its end nearest to the dies may be at any required position back of the diesk suited to the length the bolt is to be threaded. Thus, if it is set so that its end is one inch back of the entering-face of the cutting-dies, when the bolt has beenv threaded one inch from the point it will come in contact with the end of rod 15.
  • This rod being secured to the duct 9 by the cone-clamp 17 andv screw 18, forces the duct back, and thus, through levers S and 10, and rodfll, and bellcrank 12, it unlatches the lever V, and thus I allows the weight 14 to fall, driving back the wheel L, and causing the dies to open for the removal of the bolt.
  • the lever V is again latched back, the dies close. ready for the next bolt'to be cut.
  • I provide a coil-spring, 19, to hold rod 15 pressed toward the dies, and cause latch 12 to engage with the catch on lever V.
  • the stop-rod 15 is fixed in such a position that the latch 12 will be loosened when the bolt has been threaded the proper distance from the point.
  • the machine being put in motion the pump 2 forces oilup through the pipes 3 to stand 7, and then through levers 8 to the spindle, and, finally, it flows out of the die-box in a steady stream, regulated in quantity by the stop-cock in pipe 3.
  • I therefore provide a spout, 2l secured to the under side of thebed, through which the oil and chips may fall, and be received on a slantingv platform, 22, where the chips may gather in a pile, to be removed at leisure, while the oil will ow back into the tank l.
  • the devices used to operate the opening machinery form part of the apparatus used to convey oil from the tank to the dies.
  • the lubrication of the dieholder is not required, as it is customary to hold the shank of the tap in the die-box, and present the nuts to be cut to the end of the revolving tap by a proper sliding nut-holder.
  • the cock in pipe 3 is closed and the cock in pipe 4 opened, the oil being con veyed to the tap by means or' a hose, 5.
  • these dies are usually rotated at the end of a hollow mandrel, into which mandrel the nished threaded end of the bolt passes as it is cut to a greater or less length. Oil fed into the back end of the spindle of such machines will be expelled through the die-box, so as to meet the bolt entering the dies and present all the advantages ot'th is previous method of lubrication, as claimed for it in its application to the Sellers bolt-threading machine.
  • the arrangement of oiler that permits the oil to gushout from the revolving dies is essentially different from all the methods of supplying the lubricating uid, inasmuch as its tendency toward the front of the bolt, from behind, aided by the rotation of the die-box, spreads the liquid over the cutting-edges and causes them to be continually immersed in the cooling-liquid, while at the same time, as has been before said, the direction of the current eXpels the chips as they come from the dies.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Lubricants (AREA)

Description

c. sEL'LEns M'achinias lfur Thraading Bruits.
Pate nted-Uec.15,1874.
F`l G.1
'INVENTORr WITNSSES: n d? 2 Sheets-Sheet 2.
C. SELLERS.y Machines 'for Threading Baits. 910,151,700, Patented 036,151,137@
UNITED STATES PATENT OFFICE COLEMAN SELLERS, 0F PHILADELPHIA, PENNSYLVANIA, ASSIGNOE, BY MESNE ASSIGNMENTS, TO WILLIAM SELLERS, OF SAME PLACE.
IMPROVEMENT IN MACHINES FOR THREADING BOLTS.
Specification forming part of Letters Patent No. 157,700, dated December 15,1874; application iiled June 8, 1874. y
of, reference being had to the accompanying drawings forming part of this specilication.
The object of my invention is to furnish a means of actuating the opening mechanism of the dies of bolt-threading machines automatically, when the bolt has been threaded a proper distance from the point; to provide means for causing a current of lubricatinguid to pass through the revolving dies in the direction opposite to the motion of the bolt entering the dies, so as to wash out the chips to lubricate the cutting-edges and to keep the dies cool; and also to provide a means of regulating the supply of the fluid from a pump to the parts of the machine requiring it, as in threading bolts or in tapping, nuts and controlling or directing the force of the current so as to insure the performance of these objects and also to provide means for conducting the lubricating-fluid from a reservoir to the rear of the dies, and from the dies back to the reservoir. t
My invention, so far as the first object is concerned, is applicable to that class of boltthreading machines in which revolving dies open to liberate the bolt when cut; and consists in providing an adjustable stop in the center of a hollow spindle to be pushed against Vby the end of the bolt being threaded, and by proper devices to actuate the opening machinery and liberate the bolt at the proper time; second, in the same class of machines to utilize the levers and devices required for fourth, in providing a reservoir below the cutting-dies, ducts through which the lubricant is conveyed to the rear of the cutting-dies, and a duct which conveys the lubricant, after it passes the dies, back to the reservoir.
In illustration of my invention I will proceed to describe it as applied to the improved machine for threading bolts patented by William Sellers, of Philadelphia, December l, 1857, which patent was reissued to him February 8, 1859, having on its reissue the number 656, and afterward extended for the term of seven years from the 1st day of December, 1871. Y
In the annexed drawings, Figure 1 represents a sectional elevation ofthe Sellers boltthreading machine with my improvements added; Fig. 2, a plan of the same; Eig. 3, a rear end elevation; Eig. 4L, ay sectional front end elevation, showing lubricating-pump in section; Figs. 5 and 6, enlarged views of the levers through which the stop-motion is operated, and which convey the lubricating-fluid to the dies. y
Similar letters referto similar parts on each.
In the machines the dies A A A are placed in radial grooves in a cylindrical die-holder, B. This die-holder is secured to one end of a hollow spindle, D. "Io the other end is attached the driving' spur-wheel F. Surroundconsisting of cams M M M of equal eccentricity bolted to I on the endof the sleeve H,
and having other cams l? of similar eccentricity seeuredto a cover-plate, 0. The rotation of sleeve H back and forth around spindle D causes the dies A to be moved in radial directions, thus opening or closing the dies. To the sleeve H is secured a spurwheel, K, smaller in diameter than the Wheel F, and the extent of rotation of H around spindle D is limited by an adjustable stop, at U. The wheels E and K are driven by pinionsG'and L on shaft E, G being secured to shaft E positively. L is loose on the shaft, but, being pressed 'toward G by means of a spring, b, on the shaft E, is driven by friction of the surfaces of a leather disk interposed between them. By means of lever V and collar af the Wheel L may be drawn away from Gr and made to engage in a recess in the leg l', a beveled collar on wheel L fitting this recess after the manner of friction-clutches. When pinion L is driven by G it tends, by reason of the difference in diameter ofthe two pairs of wheels, to cause the cam-box to rotate faster than the die-box to the limit allowable by the stop U. This driving ahead of the cam-box closes the dies, but when the motion of wheel L is retarded by the friction on recess in leg Z' it causes the diesto open.
This, in substance, explains the operation of the Sellers bolt-threading machine as now constructed under his patent, the letters referring to the various parts being the same as were used by him in describing similar parts in his original patent. The more clearly` to specify my distinct invention, l will make use of numerals to indicate the addition.
To the machines, as above described, I add a tank, 1, supported on one ofthe legs of the machine. This tank is to contain oil or other liquid used.Ii`or convenience, I shall describe it as containing oil. A pump, 2, driven by an eccentric on shaft E, takes oil from the tank and forces it through pipes 3 and 4, either to the dies or to a hose, 5, which canbe used to convey the oil to nuts being tapped. In both of these pipes are stop-cocks or valves to give direction to and control the amount of oil being delivered.
As the pump is operated by the machine, which runs faster on small bolts than on large ones, ofcourse the pump-will discharge most oil when Working upon the smallest bolts, and
the supply of oil must be large enough at the slowest speed, so that regulation between the pump and the dies becomes anecessity to prevent a flood of oil from being thrown out by the very rapid motion of the cutters when operating upon small work. To the pump I add an overflow-valve, 6, which is shown in the form of an ordinary check-valve of commerce, with a light spring over the valve. When both cocks in pipes 3 and 4 are closed, the oil delivered from the pump is-discharged back into the tank 1. I am aware that an overflowvalve in a lubricating-pump operated by a bolt-threading machine is not new, but I am not aware that any provision has heretofore been made for obtaining the variable direction and regulated flow required in my improved system of lubricating the dies from the rear through the overflow valve 6, and when partially closed for regulation the surplus oil may be delivered into the tank. Pipe 3 communicates with a stand, 7, attached to leg Z. The oil passing through this stand, which is hollow, enters a lever, 8, socketed into the top of stand 7, and then passes into a duct, 9, which ts the spindle D sufficiently tight to prevent leakage of oil under a very light pressnre. This duct has a much smaller interior diameter than the hollow spindle, so that the delivery end of the duct in the hollow spindle forms a dam, which prevents the oil from iiowing out at the rear of the spindle. In larger machinesthe duct passes through the center of a collar, which closes the rear end of the spindle, thus avoiding any necessity for packing, even when the duct ts the collar very loosely. It will be observed the end of lever 8 dips into a recess or socket in the duct 9. This makes any packing at this point needless. Where lever 8 is socketed into the top of stand 7 a light string packing will prevent leakage.A By thus carrying the duct through the lever 8 I avoid the necessity of a separate conduit for the oil to the hollow spindle. A prolongation, 10, of lever 8 connects by means of a rod, 11, with a bell-crank latch, 12, hinged to the bed of the machine, which latch, engaging with a catch on lever V, holds the lever V back in the direction it would naturally be forced by the spring on shaft E. In this position the dies remain closed. 0n lever V I provide an arm, 13, with counter-weight 14, of sufticient amount to draw back the spring on shaft E and force the friction-clutch on wheel L into the recess in leg l with sufficient force to cause the dies to open. This weight 14 is held up during the process of' cutting by the bell-crank 12. In the center of the spindle D I provide a rod, 15, guided at one end by a loose collar, 16, the other end being held in the duct 9 by means of a split cone, 17, and clamping-screw 18. This rod can be clamped so that its end nearest to the dies may be at any required position back of the diesk suited to the length the bolt is to be threaded. Thus, if it is set so that its end is one inch back of the entering-face of the cutting-dies, when the bolt has beenv threaded one inch from the point it will come in contact with the end of rod 15. This rod, being secured to the duct 9 by the cone-clamp 17 andv screw 18, forces the duct back, and thus, through levers S and 10, and rodfll, and bellcrank 12, it unlatches the lever V, and thus I allows the weight 14 to fall, driving back the wheel L, and causing the dies to open for the removal of the bolt. When, after the removal of the bolt, the lever V is again latched back, the dies close. ready for the next bolt'to be cut. At the hub of lever 8 and stand 7 I provide a coil-spring, 19, to hold rod 15 pressed toward the dies, and cause latch 12 to engage with the catch on lever V.
To operate the machine, the dies being adjusted to the proper size of boltto be threaded, the stop-rod 15 is fixed in such a position that the latch 12 will be loosened when the bolt has been threaded the proper distance from the point. The machine being put in motion the pump 2 forces oilup through the pipes 3 to stand 7, and then through levers 8 to the spindle, and, finally, it flows out of the die-box in a steady stream, regulated in quantity by the stop-cock in pipe 3. A blank bolt held in the usualmanner, in a holder or clamp sliding on the bed of the machine, is pressed into the closed dies as the dies revolve about the bolt, cutting the thread, the oil forced by the pump through the ducts and hollow spindle to the rear of the dies floods the end of the bolt, and
the cutting-dies lubricating the parts in contact, conveying oft' the heat and washing out the chips by its volume of force. When the bolt end, carried on by the screwing process, reaches the end of rod 15 it actuates the opening-gear and liberates the bolt, while the oil continues to liow out through the dies. rlhe oil ilowing out of the center of spindle would accumulate in the bed or trough of the machine were not some means provided to carry it back to the tank4 from which the pump draws its supply. I therefore provide a spout, 2l secured to the under side of thebed, through which the oil and chips may fall, and be received on a slantingv platform, 22, where the chips may gather in a pile, to be removed at leisure, while the oil will ow back into the tank l.
It will be observed that the devices used to operate the opening machinery form part of the apparatus used to convey oil from the tank to the dies.
In tapping nuts the lubrication of the dieholder is not required, as it is customary to hold the shank of the tap in the die-box, and present the nuts to be cut to the end of the revolving tap by a proper sliding nut-holder. In this case the cock in pipe 3 is closed and the cock in pipe 4 opened, the oil being con veyed to the tap by means or' a hose, 5.
rlhe advantage of feeding the oil so that it must ilow through the dies, over the plans in common use, of allowing the oil to run onto the bolt being cut, or, at best, squirting it against the face of the dies, or into the diebox from a pipe on the outside and in front, is very great. In the first place, it leaves the front of the dies wholly unobstructed by any kind of oiling device, an important consideration when very short bolts are being cut close up to the head; second, the lubricant, as applied, must flow over the whole surface ofthe dies, as well as of the bol-t, while in any ofthe methods heretofore in use the portion of the bolt which has passed the front of the dies and the rear of the dies themselves are very liable to be insufficiently lubricated; third, the direction ot' the current washes the chips from the dies, so that bolt-threading machines arranged with this through lubrication may be run at a higher rateof speed than if oiled in the ordinary manner; and, inasmuch as the possible high rate of rotation islikely to cause the oil to be thrown oit from the die-box by centrifugal force, I arrange a guard or cover, 20, to surround the die-box, which serves to catch the oil so thrown off, and directs it into the trough of the machine.
In describing my improved method of oiling I have shown it as I have applied it to the Sellers machine; but it is manifestly also applicable to all bolt-threading machines with revolving dies,rwhether the dies are made to open and release the bolt at the end of the cut or are arranged as solid dies to be backed off by reversing the direction of rotation. Thus I contemplate its use in connection with a class of bolt-threading machines which I will illustrate by reference to the patent of Philetus W. Gates, May 8,1847', describinga solid die for threaded bolts-that is, a die so made as to cut the thread upon the bolt at one operation, with once going over, but requiring to be unscrewed from the bolt when finished. As is well known in the art, these dies are usually rotated at the end of a hollow mandrel, into which mandrel the nished threaded end of the bolt passes as it is cut to a greater or less length. Oil fed into the back end of the spindle of such machines will be expelled through the die-box, so as to meet the bolt entering the dies and present all the advantages ot'th is previous method of lubrication, as claimed for it in its application to the Sellers bolt-threading machine. The arrangement of oiler that permits the oil to gushout from the revolving dies is essentially different from all the methods of supplying the lubricating uid, inasmuch as its tendency toward the front of the bolt, from behind, aided by the rotation of the die-box, spreads the liquid over the cutting-edges and causes them to be continually immersed in the cooling-liquid, while at the same time, as has been before said, the direction of the current eXpels the chips as they come from the dies.
The most common form of solid-die machine is provided with a forward and back motion, actuated by clutches, either friction or positive, and such machines have frequently been arranged in such a manner that when the bolt is threaded a proper distance, suitable devices, actuated either by the carriage which holds the bolt or the end of the bolt itself, are made to disen gage the clutch from the forward motion and engage itwith the back driving motion. application of my central stop-rod 'in combination with the levers which are used to form the connection from the pump to the spindle; but in regard to this application of the stop motion as a means orn accomplishing the double purpose, l wish to be understood as not limiting my claim for the application of oil back of the dies to the manner described, or to any of y the devices as described, as when no stop motion is required a simple connection by pipe or hose to the back of the hollow spindle, or to any part of the hollow spindle back of the dies, whereby the oil will be made to enter back of the dies and liow around the dies and outof their mouth or holder, I consider within the scope of my invention. This outward iow of the cil, in contradistinctiou to the pouring it on the bolt or squirtingit into the dies from the front, is what I consider an important feaq ture of my invention.
What I claim as my invention, and desire to secure by Letters Patent, is.
l. The combination of the adjustable stop l5, the latch 12, and the weighted lever V 13, substantially as and for the purposes described. I
2. The combination, in aboltthreading ma- To all such machines I contemplate the chine, of a pump operated by the machine, an overflow-val ve, and regulating cocks or valves, substantially as and for the purposes described.
3. The combination, with the central adjustable stop 15, of the conical clamp 17, adjusting-nut 18, duct 9, and. lever 8, substantially as and for the purposes described.
4. The combination, with the releasing mechanism for opening the dies, ofthe duct through the lever 8, substantially as and for the purposes set forth.
5. The combination, with a hollow spindle and revolving dies, of a duct, through which the lubricant is introduced to the rear of the COLEMAN SELLERS. Witnesses:
THEoDoRE BERGNER, L. SCHUTTE.
US157700D Improvement in machines for threading bolts Expired - Lifetime US157700A (en)

Publications (1)

Publication Number Publication Date
US157700A true US157700A (en) 1874-12-15

Family

ID=2227110

Family Applications (1)

Application Number Title Priority Date Filing Date
US157700D Expired - Lifetime US157700A (en) Improvement in machines for threading bolts

Country Status (1)

Country Link
US (1) US157700A (en)

Similar Documents

Publication Publication Date Title
TW579315B (en) Multi spindle machine tool, and method optimizing the flow rate of coolant mist of each spindle thereof
US1789841A (en) Automatically-controlled circulating system for oils or other liquids
US1629451A (en) Lubrication for screw making and turning lathes
US438633A (en) Machine for grinding wood to pulp
US365744A (en) John worth heyer
US447713A (en) sponsel
US719569A (en) Drilling-machine.
US1862668A (en) Metal cutting machine
US406003A (en) reiss
US1147267A (en) Nut-tapping machine.
US273348A (en) douglas
US2045726A (en) Wire drawing machine
US1090299A (en) Bolt-cutting machine.
US1160150A (en) Means for making nipples.
US989524A (en) Ball-grinding machine.
US70862A (en) Improved nut-tapping machine
US2248485A (en) Lubricating device for machine tools
US1017557A (en) Oil-circulating system for lubricating and regulating.
US1825749A (en) Screw machine
US126538A (en) Improvement in machines for turning shafting
US454197A (en) Screw-thread-cutting machine
US1323268A (en) Lubricating system
US311311A (en) Machine for tapping pipe fittings
US424527A (en) Island
US132396A (en) Improvement in machines for boring and tapping valves