US1018317A - Machine for rolling screw-bolts. - Google Patents

Machine for rolling screw-bolts. Download PDF

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Publication number
US1018317A
US1018317A US593535A US1910593535A US1018317A US 1018317 A US1018317 A US 1018317A US 593535 A US593535 A US 593535A US 1910593535 A US1910593535 A US 1910593535A US 1018317 A US1018317 A US 1018317A
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Prior art keywords
bolt
axis
knife
machine
rolling
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Expired - Lifetime
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US593535A
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Julius Heller
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Schrauben und Schmiedewarenfabriks AG Brevillier & Co und A Urban & Soehne
Schrauben- und Schmiedewarenfabriks AG Brevillier & Co und A Urban & Soehne
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Schrauben und Schmiedewarenfabriks AG Brevillier & Co und A Urban & Soehne
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Priority claimed from US56604810A external-priority patent/US1017543A/en
Application filed by Schrauben und Schmiedewarenfabriks AG Brevillier & Co und A Urban & Soehne filed Critical Schrauben und Schmiedewarenfabriks AG Brevillier & Co und A Urban & Soehne
Priority to US593535A priority Critical patent/US1018317A/en
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Publication of US1018317A publication Critical patent/US1018317A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D51/00Making hollow objects
    • B21D51/16Making hollow objects characterised by the use of the objects
    • B21D51/26Making hollow objects characterised by the use of the objects cans or tins; Closing same in a permanent manner
    • B21D51/2615Edge treatment of cans or tins

Definitions

  • My invention relates to an improved machine for rolling screw bolts.
  • the main object of; my invention is to provide an improved machine for turning down the point or end of the bolt while the thread is being rolled into the same.
  • the knife serving for turning down the end or point of the bolt an edge is provided which acts on the bottom side of the bolt head. Further simultaneously with the turning down of the bolt end also the outer surface of the threads while being formed may be turned down in order to impart to the thread directly by the rolling a predetermined outer diameter. For this purpose the knife besides being moved parallel to the axis of the bolt during rolling is also moved at right angles to the said axis.
  • Figures 1 and 1 illustrate diagrammatically the operation of my improved machine.
  • Fig. 2 shows in vertical longitudinal section my improved machine. y.
  • the thread is rolled into the bolt 3 in the well known manner by dies moving relatively and parallel to each other and at right angles to the axis of the bolt so that the bolt rolls on both dies.
  • one of the dies may be stationary and the other may move or both dies may move in opposite directions.
  • the knife M for turning down the end or point of the'bolt while the thread is being rolled is moved according to my invention parallel to the axis of the bolt.
  • the knife M is in the position indicated by dotted lines in Fig. 1 in which position the edge serving for turning down the end of the bolt is out of contact with the same.
  • the knife M is moved toward the bolt parallel to the axis of the latter whereby the edge 0 comes into engagement with the end of the bolt and turns it down to the desired extent as indicated in Fig. 1 in full lines.
  • the knife is moved back away from the bolt into the position indicated in dotted-lines in Fig. 1 for re-- leasing the bolt so that it may be removed after rolling.
  • a movement at right angles to such axis may be imparted to the knife as illustrated by Fig. 1.,..andv the knife may be provided with a cutting edge M parallel to the axis of the bolt.
  • the knife'M is out of contact with the bolt S as indicated in dotted lines in Fig. 1*.
  • the knife M is moved toward the bolt not only parallel to its axis for turning down the endor point of the bolt as above described, but also in a direction at right angles to the axis of the bolt so that it reaches the position indicated by full lines in Fi 1*. In this way the cutting edge M par lel to the axis of the bolt turns down the outersurface of the thread being formed.
  • the metal of the bolt is forced outward so that the outer diameter of the'thread obtained by rolling would be greater than that of the shank of the bolt. If now the outer surface of the thread is turned down during rolling as set forth, the amount by which the outer diameter of the thread exceeds that of the shank may be reduced to any desired extent and even to zero or the outer diameter of the rolled thread may be made smaller than that of the shank. According to the desired outer diameter of the thread the cutting edge M of the knife M is more or less approached to the axis of the bolt in the course of the rolling operation but the knife must recede from the bolt before completing the rolling in order that the thread may receive exactly the contour of the dies.
  • the underside of the bolt head may be turned down by providing on the knife M a cutting edge acting on the said underside.
  • This cutting edge is shaped to correspond with the desired contour of the underside of the bolt head.
  • this cutting edge Q is straight and at rightangles to the axis of the bolt so that it turns down plane the outer edge or part of the underside of the bolt head '1. In so doing it'removes the bur U which is formed in pressing the head through a die hole.
  • this second cutting edge K is so shaped that it turns down conically the underside of the bolt head.
  • the edge Q or K must be in such a position relatively to the cutting edge O turning down the point of the bolt that the bolt head is finished at the same time as the bolt end.
  • the movement of the knife parallel to the axis of the bolt is imparted to the knife M by a guide N, Figs. 1 and 1" on a part of the machine which during rolling moves relatively to the bolt and at right angles to its axis.
  • This part is preferably the frame of the machine if one of the dies is fast in such frame and the other is movable. If the dies move in the frame in opposite directions and with the same speed so that the bolt does not move at right angles to its axis relatively to the frame during rolling, the guide N will have to be arranged on one of the dies.
  • the movable die is reciprocated by a link C pivotally connected with a crank pin on the said cam.
  • a link C pivotally connected with a crank pin on the said cam.
  • its end engaging with the cam D may be pivotally connected with a crank arm E mounted on a shaft E journaled in the machine frame.
  • the link E may be made in two parts between which a spring E is interposed as shown in Fig. 2.
  • the movement of the knife M parallel to the axis of the bolt is brought about by a guide N secured to 1 the frame of the machine on which the knife runs preferably by means of a roller.
  • the guide is provided with inclines which move the knife toward and away from the bolt with the required speed.
  • the cam groove in the cam is so shaped that at the beginning and at the end of the rolling operation the knife so far recedes from the bolt in a direction at right angles to its axis that the bolt may be conveniently put in and removed from the machine.
  • the movement of the knife relatively to the axis of the bolt and at right angles to the same in the course of the rolling operation is secured by properly shaping the cam groove in the cam D.
  • a machine for rolling screw bolts the combination of a pair of dies, means for moving such dies relatively and parallel to each other and at right angles to the axis of the bolt, a guide on a part of the machine moving relatively to the bolt at right angles to its axis during rolling and a .knife adapted to move along such guide whereby the said knife is moved relatively to the bolt parallel to its axis.
  • a machine for rolling screw bolts the combination of a pair of dies, means for moving such dies relatively .and parallel to each other and at right angles to the axis of the bolt, a guide on a part of the machine moving relatively to the bolt at right angles to its axis during rolling and a knife adapted to move along such guide whereby the said knife is moved relatively to the bolt parallel to its axis and means for moving the said knife relatively to the bolt at right angles to its axis.

Description

J. HELLER.
MACHINE FOR ROLLING SCREW BOLTS.
APPLIOATION FILED NOV. 21 1910.
1 ,0 1 8, 3 1 '7. Patented Feb. 20, 1912.
Lu Llllvmup UNITED STATES PATENT JULIUS HELLER, OF VIENNA, AUSTRIA-HUNGARY, ASSIGNOR TO THE FIRM OF SGHRAUBEN- UND SCHMIEDEWARENFABRIKS AKTIENGESEILSCHAFT BBEVIL'. LIER & CO. UND" A. URBAN & S6HN E,.-'OF'VIENNA, AUSTRIA-HUNGARY.
MACHINE FOR ROLLING SCREW-BOLTS.
Specification of Letters Patent.
Original application filed .Tune 9, 1910, Serial No. 566,048 Divided and this application filed November 21,
- 1910. Serial No. 593,585.
To all whom it may concern:
Be it lmown that I, JULIUs HELLER, a-
subject of the Emperor of Austria-Hun gary, residing at Vienna, Empire of Austria-Hungary, have invented certain new and useful Improvements in Machines for Rolling Screw-Bolts; and I do hereby declare the following to be a full, clear, and exact description of the invention, such as will enable others skilled in the art to which it appertains to make and use the same.
My invention relates to an improved machine for rolling screw bolts.
The main object of; my invention is to provide an improved machine for turning down the point or end of the bolt while the thread is being rolled into the same.
This process for rolling screw bolts is described in my application filed June 9th, 1910, Serial No. 566,048, of which the present application is a division, and consists in moving "the knife serving foi' turning down the end or point of the bolt during the rolling of the thread relatively to the thread in the direction'of the axis of the bolt. This is brought about in the machine serving for carrying into practice the said process and formin the subject matter of my present application by moving the. knife parallel to the axis of the bolt by meansof a guide on a part of the machine moving at right angles to the axis of the bolt-while the thread is being rolled. Simultaneously with the turning down of the end or point of the bolt the bottom side of the bolt head may be turned down. For this purpose on the knife serving for turning down the end or point of the bolt an edge is provided which acts on the bottom side of the bolt head. Further simultaneously with the turning down of the bolt end also the outer surface of the threads while being formed may be turned down in order to impart to the thread directly by the rolling a predetermined outer diameter. For this purpose the knife besides being moved parallel to the axis of the bolt during rolling is also moved at right angles to the said axis.
In the annexed drawings Figures 1 and 1 illustrate diagrammatically the operation of my improved machine. Fig. 2 shows in vertical longitudinal section my improved machine. y.
The thread is rolled into the bolt 3 in the well known manner by dies moving relatively and parallel to each other and at right angles to the axis of the bolt so that the bolt rolls on both dies. Obviously one of the dies may be stationary and the other may move or both dies may move in opposite directions.
The knife M for turning down the end or point of the'bolt while the thread is being rolled is moved according to my invention parallel to the axis of the bolt. At the beginning of the rolling operation the knife M is in the position indicated by dotted lines in Fig. 1 in which position the edge serving for turning down the end of the bolt is out of contact with the same. In the course of the rolling operation the knife M is moved toward the bolt parallel to the axis of the latter whereby the edge 0 comes into engagement with the end of the bolt and turns it down to the desired extent as indicated in Fig. 1 in full lines. At the end of the rolling operationthe knife is moved back away from the bolt into the position indicated in dotted-lines in Fig. 1 for re-- leasing the bolt so that it may be removed after rolling. Besides the movement parallel to the axis of the bolt above described a movement at right angles to such axis may be imparted to the knife as illustrated by Fig. 1.,..andv the knife may be provided with a cutting edge M parallel to the axis of the bolt.
-At the beginning of the rolling operation the knife'M is out of contact with the bolt S as indicated in dotted lines in Fig. 1*. In the course of the rolling operation the knife M is moved toward the bolt not only parallel to its axis for turning down the endor point of the bolt as above described, but also in a direction at right angles to the axis of the bolt so that it reaches the position indicated by full lines in Fi 1*. In this way the cutting edge M par lel to the axis of the bolt turns down the outersurface of the thread being formed.
The movement of the knife in a direction at right angles to the axis of the bolt is so Patented Feb. 20, 1912.
governed that a predetermined outer diameter is imparted to the thread of the bolt directly by the rolling as disclosed in my prior Patent No. 967 ,768 of August 16th,
1910. By rolling the thread part of the.
metal of the bolt is forced outward so that the outer diameter of the'thread obtained by rolling would be greater than that of the shank of the bolt. If now the outer surface of the thread is turned down during rolling as set forth, the amount by which the outer diameter of the thread exceeds that of the shank may be reduced to any desired extent and even to zero or the outer diameter of the rolled thread may be made smaller than that of the shank. According to the desired outer diameter of the thread the cutting edge M of the knife M is more or less approached to the axis of the bolt in the course of the rolling operation but the knife must recede from the bolt before completing the rolling in order that the thread may receive exactly the contour of the dies. Simultaneously with the turning down of the point or end of the bolt alsothe underside of the bolt head may be turned down by providing on the knife M a cutting edge acting on the said underside. This cutting edge is shaped to correspond with the desired contour of the underside of the bolt head. As shown in Fig. 1 this cutting edge Q is straight and at rightangles to the axis of the bolt so that it turns down plane the outer edge or part of the underside of the bolt head '1. In so doing it'removes the bur U which is formed in pressing the head through a die hole. In Fig. 1 this second cutting edge K is so shaped that it turns down conically the underside of the bolt head. The edge Q or K must be in such a position relatively to the cutting edge O turning down the point of the bolt that the bolt head is finished at the same time as the bolt end.
The movement of the knife parallel to the axis of the bolt is imparted to the knife M by a guide N, Figs. 1 and 1" on a part of the machine which during rolling moves relatively to the bolt and at right angles to its axis. This part is preferably the frame of the machine if one of the dies is fast in such frame and the other is movable. If the dies move in the frame in opposite directions and with the same speed so that the bolt does not move at right angles to its axis relatively to the frame during rolling, the guide N will have to be arranged on one of the dies.
In my improved machine shown in Fig. 2 only one of the dies is moved while theother die (not shown in the drawing) is station ary and the bolt moves during rolling with half of the speed of the movable die at right angles to its axis. In this case the knife M must move in the frame at right angles to the axis of the bolt. This is done by so mounting the knife M in a slide F that it is adapted to move in such slide parallel to the axis of the bolt while the slide F is moved in the frame of the machine in a direction at right anglesto the axis of the bolt. The slide F is reciprocated in this direction by a link E operated by a cam D mounted on a revolving shaft. The movable die is reciprocated by a link C pivotally connected with a crank pin on the said cam. For better guiding the link E its end engaging with the cam D may be pivotally connected with a crank arm E mounted on a shaft E journaled in the machine frame. For deadening shocks, the link E may be made in two parts between which a spring E is interposed as shown in Fig. 2. The movement of the knife M parallel to the axis of the bolt is brought about by a guide N secured to 1 the frame of the machine on which the knife runs preferably by means of a roller. The guide is provided with inclines which move the knife toward and away from the bolt with the required speed. The cam groove in the cam is so shaped that at the beginning and at the end of the rolling operation the knife so far recedes from the bolt in a direction at right angles to its axis that the bolt may be conveniently put in and removed from the machine. The movement of the knife relatively to the axis of the bolt and at right angles to the same in the course of the rolling operation (if according to the process illustrated by Fig. 1 the outer surface of the thread has to be turned down) is secured by properly shaping the cam groove in the cam D.
Claims:
1. In a machine for rolling screw bolts, the combination of a pair of dies, means for moving such dies relatively and parallel to each other and at right angles to the axis of the bolt, a guide on a part of the machine moving relatively to the bolt at right angles to its axis during rolling and a .knife adapted to move along such guide whereby the said knife is moved relatively to the bolt parallel to its axis.
2. In a machine for rolling screw bolts, the combination of a pair of dies, means for moving such dies relatively .and parallel to each other and at right angles to the axis of the bolt, a guide on a part of the machine moving relatively to the bolt at right angles to its axis during rolling and a knife adapted to move along such guide whereby the said knife is moved relatively to the bolt parallel to its axis and means for moving the said knife relatively to the bolt at right angles to its axis.
3. In a machine for rolling screw bolts. the combination of a pair of dies, means for moving such dies relatively and parallel tr each other and at right angles to the axis 01 the bolt, a guide on a part of the machine moving relatively to the bolt at right angles to its axis during rolling, a knife adapted to move along such guide, a slide, adapted to guide such knife parallel to the axis of the bolt and means for moving the said slide relatively to the bolt in a direction parallel to the said dies and at right angles to the axis of the bolt, substantially as and for the purpose described;
In testimony whereof, I afix my signature in presence of two witnesses.
' JULIUS HELLER. Witnesses:
ARTHUR BAUMANN, ADA MARIA BERGER.
US593535A 1910-06-09 1910-11-21 Machine for rolling screw-bolts. Expired - Lifetime US1018317A (en)

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US593535A US1018317A (en) 1910-06-09 1910-11-21 Machine for rolling screw-bolts.

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US56604810A US1017543A (en) 1910-06-09 1910-06-09 Process for rolling screw-bolts.
US593535A US1018317A (en) 1910-06-09 1910-11-21 Machine for rolling screw-bolts.

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10369380B2 (en) 2010-02-04 2019-08-06 Procept Biorobotics Corporation Tissue sampling, cancer detection and treatment methods

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10369380B2 (en) 2010-02-04 2019-08-06 Procept Biorobotics Corporation Tissue sampling, cancer detection and treatment methods

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