US723403A - Self-adjusting screw-cutting machine. - Google Patents

Self-adjusting screw-cutting machine. Download PDF

Info

Publication number
US723403A
US723403A US13128502A US1902131285A US723403A US 723403 A US723403 A US 723403A US 13128502 A US13128502 A US 13128502A US 1902131285 A US1902131285 A US 1902131285A US 723403 A US723403 A US 723403A
Authority
US
United States
Prior art keywords
shaft
chuck
fixed
cutting machine
self
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
US13128502A
Inventor
Thompson Murray
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to US13128502A priority Critical patent/US723403A/en
Application granted granted Critical
Publication of US723403A publication Critical patent/US723403A/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
    • B23G1/00Thread cutting; Automatic machines specially designed therefor
    • B23G1/22Machines specially designed for operating on pipes or tubes
    • 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
    • Y10T279/00Chucks or sockets
    • Y10T279/17Socket type
    • Y10T279/17393One movable side
    • 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
    • Y10T408/55Cutting by use of rotating axially moving tool with work-engaging structure other than Tool or tool-support
    • Y10T408/563Work-gripping clamp
    • Y10T408/5633Adapted to coaxially grip round work
    • Y10T408/56343Base supported clamp

Definitions

  • My object is to provide a portable self-adjusting screwcutting machine adapted for securely fastening one end of a tube, bar, or bolt thereto, connecting interchangeable dies therewith, and manually rotating the dies and advancing them by simply turningacrank by hand.
  • FIG. 1 is a top view that shows the rela tive positions of the operative elements as combined with a fiat-bottomed base.
  • Fig. 2 is a side elevation of the machine.
  • Fig. 3 is an end view showing the clamp for detachably fasteninga tube or bolt.
  • Fig. at is a face view of a wheel adapted to serve as a lathechuck on a rotary shaft for holding and operating dies and also adapted to serve as a face-wheel for rotating a shaft.
  • Fig. 1 is a top view that shows the rela tive positions of the operative elements as combined with a fiat-bottomed base.
  • Fig. 2 is a side elevation of the machine.
  • Fig. 3 is an end view showing the clamp for detachably fasteninga tube or bolt.
  • Fig. at is a face view of a wheel adapted to serve as a lathechuck on a rotary shaft for holding and operating dies and also adapted to serve as a
  • FIG. 5 is a perspective view of a die formed in two separable parts .and adapted to be placed in the chuck loosely and secured therein in such a manner that it will be self-adjusting relative to the chuck as required to cut threads on a tube, rod, or bolt extended in the chuck.
  • the numeral designates a flat metal base of oblong shape, that may vary in size and weight as desired.
  • the lower member 11 of a clamp for fastening a tube or rod in the machine is fixed across the top of one end of the machine, and the mating member 12 is hinged thereto, as shown in Fig. 3 or in any suitable way, and terminates at its free end in a handle to engage a rack 15, fixed to the base as required to lock the hinged member fast upon an object extended across and resting upon the lower fixed member of the clamps.
  • a blockorframe 16 to serve as a bearer for a rotatable shaft 17, extended through the bearer, and also to serve as a guide for two parallel shaft-bearers 18 and 19, slidably mounted in bearings formed in or fixed to a crosspiece 20, fixed to the base in rear of the bearer 16, as shown in Fig. 1 or in any suitable way, for carrying a rotatable shaft 21 at their front ends.
  • Coil-springs 22 are placed on the bearers 18 and 19 to normally press the shaft 21 forward.
  • the rear end of the shaft 17 is rotatably connected with a movable holder 27, as shown in Fig. 1 or in any suitable way, so that the shaft can rotate and also move longitudinally.
  • a lever 28 is fulcrumed to the base 10 and pivotally connected with the end of the holder as required for thereby moving the holder longitudinally.
  • a rack 29 is fixed to the base in position as required to be engaged by a pawl 30, carried by the lever for locking the lever and retaining the holder 27 and shaft 17 stationary, while the end of a tube or rod is adjusted in the jaws of the clamping device preparatory to cutting a screw on its end.
  • the die -chuck 23 has a tapering angular cavity at its center to admit dies formed in separable parts 31 and 32 and corresponding in form and size with the cavity in the chuck.
  • a disk 33 is pivoted to the front face of the chuck and provided with a hook 34 to engage a fixed stud 35 to serve as a means of retaining the dies in the chuck 23 in such a manner that they will rotate with the chuck as required to cut threads on the end of the tube or rod'that extends into the cavity as the shaft 21 and chuck 23 are rotated and advanced by power stored in the coil-springs 22 and 25, that serve as a means of feeding the dies relative to a stationary tube or rod upon which they operate.
  • abase a rotatable shaft slidably mounted on the base, a die-chuck fixed to the front end of said shaft, a face-wheel fixed to said shaft on the rear side of the chuck, a rotatable shaft mounted in sliding bearers on the base and a gear-Wheel on said shaft to engage the facewheel, arranged and combined to operate in the manner set forth.
  • a base In a screw-cutting machine, a base, a rotatable shaft slidably mounted on the base, a die-chuck fixed to the front end of the shaft, an angular cavity in the front face of the chuck, a face-wheel fixed to said shafton the rear side of the chuck, a rotatable shaft mounted in sliding bearers on the base and a gear-Wheel on said shaft to engage the face- Wheel, means for moving the shaft that car-- ries the die-chuck longitudinally and means for rotating the shaft in sliding bearings and having a fixed gear wheel, arranged and combined to operate in the manner set forth.
  • a rotatable shaft slidably mounted in fixed bearings, a tool-holder connected with the rear end of the shaft, a lever pivoted to the tool-holder and means for locking the lever to retain the holder and rotatable shaft stationary, and a clamping device for fastening a tube or rod, arranged and combined to operate in the manner set forth for the purposes stated.
  • a portable screw-cutting machine comprising a base, a shaft-bearer fixed to the central portion of the base, a rotatable shaft slidably mounted in said bearer, a die-chuck fixed to the front end of said shaft, a face- Wheel on the rear side of the die-chuck, a rotatable shaft mounted in sliding bearings, coil-springs on the sliding bearings, a coilspring on the rotatable and sliding shaft that carries the die-chuck, a gear-Wheel'on the rotatable shaft in the-sliding bearings, a holder connected with the rear end of the shaftthat carries the chuck, means for moving the holder longitudinally, means for retaining the holder stationary and means for fastening a tube or rod to the base to extend into the die-chuck, arranged and combined to operate in the manner set forth for the pur poses stated.

Landscapes

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

Description

PATENTED MAR. 24, 1903.
T. MURRAY.
SELF ADJUSTING SCREW CUTTING MACHINE.
APPLICATION FILED NOV. 13, 1902.
I0 MODEL.
m: Norms PETERS co, wQm-Ln'wvv WAShINbTO-N, u. c.
UNITED STATES PATENT OFFICE.
THOMPSON MURRAY, OF DES MOINES, IOWA.
SELF-ADJUSTING SCREW-CUTTING MACHINE.
SPECIFICATION forming part of Letters Patent N 0. 723,403, dated March 24, 1903. Application filed November 13, 1902. Serial No. 131,285. (No model.)
To all whmn it may concern.-
Be it known that I, THOMPSON MURRAY, a
citizen of the United States, residing at Des Moines, in the county of Polk and State of Iowa, have invented a new and useful Self- Adjusting Screw-Cutting Machine, of which the following is a specification.
My object is to provide a portable self-adjusting screwcutting machine adapted for securely fastening one end of a tube, bar, or bolt thereto, connecting interchangeable dies therewith, and manually rotating the dies and advancing them by simply turningacrank by hand.
My invention consists in the construction, arrangement, and combination of parts, as hereinafter set forth,pointed outin my claims, and illustrated in the accompanying drawings, in which Figure 1 is a top view that shows the rela tive positions of the operative elements as combined with a fiat-bottomed base. Fig. 2 is a side elevation of the machine. Fig. 3 is an end view showing the clamp for detachably fasteninga tube or bolt. Fig. at is a face view of a wheel adapted to serve as a lathechuck on a rotary shaft for holding and operating dies and also adapted to serve as a face-wheel for rotating a shaft. Fig. 5 is a perspective view of a die formed in two separable parts .and adapted to be placed in the chuck loosely and secured therein in such a manner that it will be self-adjusting relative to the chuck as required to cut threads on a tube, rod, or bolt extended in the chuck.
The numeral designates a flat metal base of oblong shape, that may vary in size and weight as desired. The lower member 11 of a clamp for fastening a tube or rod in the machine is fixed across the top of one end of the machine, and the mating member 12 is hinged thereto, as shown in Fig. 3 or in any suitable way, and terminates at its free end in a handle to engage a rack 15, fixed to the base as required to lock the hinged member fast upon an object extended across and resting upon the lower fixed member of the clamps.
On top of the central portion of the base 10 is fixed a blockorframe 16 to serve asa bearer for a rotatable shaft 17, extended through the bearer, and also to serve as a guide for two parallel shaft- bearers 18 and 19, slidably mounted in bearings formed in or fixed to a crosspiece 20, fixed to the base in rear of the bearer 16, as shown in Fig. 1 or in any suitable way, for carrying a rotatable shaft 21 at their front ends. Coil-springs 22 are placed on the bearers 18 and 19 to normally press the shaft 21 forward. A die-chuck 23, that has a facewheel 24 formed on or fixed thereto, is fixed to the front end of the shaft 17, and a coilspring 25 is placed on the shaft to normally press the die-chuck forward, and a gear-wheel 26 is fixed on the shaft 21 to engagethe facewheel 24 in such a manner that when a crankhandle is placed on the end of the shaft the die-chuck can be rotated as required for operating dies placed in the chuck. The rear end of the shaft 17 is rotatably connected with a movable holder 27, as shown in Fig. 1 or in any suitable way, so that the shaft can rotate and also move longitudinally. A lever 28 is fulcrumed to the base 10 and pivotally connected with the end of the holder as required for thereby moving the holder longitudinally. A rack 29 is fixed to the base in position as required to be engaged by a pawl 30, carried by the lever for locking the lever and retaining the holder 27 and shaft 17 stationary, while the end of a tube or rod is adjusted in the jaws of the clamping device preparatory to cutting a screw on its end.
The die -chuck 23 has a tapering angular cavity at its center to admit dies formed in separable parts 31 and 32 and corresponding in form and size with the cavity in the chuck. A disk 33 is pivoted to the front face of the chuck and provided with a hook 34 to engage a fixed stud 35 to serve as a means of retaining the dies in the chuck 23 in such a manner that they will rotate with the chuck as required to cut threads on the end of the tube or rod'that extends into the cavity as the shaft 21 and chuck 23 are rotated and advanced by power stored in the coil- springs 22 and 25, that serve as a means of feeding the dies relative to a stationary tube or rod upon which they operate.
Having thus described my invention, its purpose, and operation, its practical utility will be readily understood by persons familiar with the art to which it pertains, and what I claim as new, and desire to secure by Letters Patent, is-
1. In a screw-cutting machine, abase, a rotatable shaft slidably mounted on the base, a die-chuck fixed to the front end of said shaft, a face-wheel fixed to said shaft on the rear side of the chuck, a rotatable shaft mounted in sliding bearers on the base and a gear-Wheel on said shaft to engage the facewheel, arranged and combined to operate in the manner set forth.
2. In a screw-cutting machine, a base, a rotatable shaft slidably mounted on the base, a die-chuck fixed to the front end of the shaft, an angular cavity in the front face of the chuck, a face-wheel fixed to said shafton the rear side of the chuck, a rotatable shaft mounted in sliding bearers on the base and a gear-Wheel on said shaft to engage the face- Wheel, means for moving the shaft that car-- ries the die-chuck longitudinally and means for rotating the shaft in sliding bearings and having a fixed gear wheel, arranged and combined to operate in the manner set forth.
3. In a screw-cutting machine, a rotatable shaft slidably mounted in fixed bearings, a tool-holder connected with the rear end of the shaft, a lever pivoted to the tool-holder and means for locking the lever to retain the holder and rotatable shaft stationary, and a clamping device for fastening a tube or rod, arranged and combined to operate in the manner set forth for the purposes stated.
4. A portable screw-cutting machine comprising a base, a shaft-bearer fixed to the central portion of the base, a rotatable shaft slidably mounted in said bearer, a die-chuck fixed to the front end of said shaft, a face- Wheel on the rear side of the die-chuck, a rotatable shaft mounted in sliding bearings, coil-springs on the sliding bearings, a coilspring on the rotatable and sliding shaft that carries the die-chuck, a gear-Wheel'on the rotatable shaft in the-sliding bearings, a holder connected with the rear end of the shaftthat carries the chuck, means for moving the holder longitudinally, means for retaining the holder stationary and means for fastening a tube or rod to the base to extend into the die-chuck, arranged and combined to operate in the manner set forth for the pur poses stated.
THOMPSON MURRAY.
Witnesses:
L. H. ORWIG, THOMAS G. ORWIG.
US13128502A 1902-11-13 1902-11-13 Self-adjusting screw-cutting machine. Expired - Lifetime US723403A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US13128502A US723403A (en) 1902-11-13 1902-11-13 Self-adjusting screw-cutting machine.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US13128502A US723403A (en) 1902-11-13 1902-11-13 Self-adjusting screw-cutting machine.

Publications (1)

Publication Number Publication Date
US723403A true US723403A (en) 1903-03-24

Family

ID=2791917

Family Applications (1)

Application Number Title Priority Date Filing Date
US13128502A Expired - Lifetime US723403A (en) 1902-11-13 1902-11-13 Self-adjusting screw-cutting machine.

Country Status (1)

Country Link
US (1) US723403A (en)

Similar Documents

Publication Publication Date Title
US825151A (en) Vise.
US723403A (en) Self-adjusting screw-cutting machine.
US1077661A (en) Jeweler's vise.
US436641A (en) squier
US568364A (en) Bench-vise
US906385A (en) Vise.
US142470A (en) Improvement in vises
US1181821A (en) Attachment for vises.
US561349A (en) Saw-swaging machine
US568353A (en) James milton kennedy
US718972A (en) Mortising-machine.
US1076112A (en) Saw-filing machine.
US650635A (en) Convertible machine.
US387337A (en) William h
US258980A (en) John a
US994186A (en) Drill.
US1004801A (en) Device for spirally twisting blades for cutter-heads.
US858556A (en) Saw-setting machine.
US311241A (en) Henry flateb
US263495A (en) Charles m
US685738A (en) Drill.
US110198A (en) Improvement in vises
US79565A (en) Orlando v
US323414A (en) giles
US513348A (en) Portable boring and mortising machine