US474222A - Blind-stile-boring machine - Google Patents

Blind-stile-boring machine Download PDF

Info

Publication number
US474222A
US474222A US474222DA US474222A US 474222 A US474222 A US 474222A US 474222D A US474222D A US 474222DA US 474222 A US474222 A US 474222A
Authority
US
United States
Prior art keywords
blind
wedges
stile
shafts
frame
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 US474222A publication Critical patent/US474222A/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
    • B23BTURNING; BORING
    • B23B39/00General-purpose boring or drilling machines or devices; Sets of boring and/or drilling machines
    • B23B39/16Drilling machines with a plurality of working-spindles; Drilling automatons
    • B23B39/161Drilling machines with a plurality of working-spindles; Drilling automatons with parallel work spindles
    • B23B39/162Drilling machines with a plurality of working-spindles; Drilling automatons with parallel work spindles having gear transmissions
    • 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
    • Y10T74/00Machine element or mechanism
    • Y10T74/19Gearing
    • Y10T74/19023Plural power paths to and/or from gearing

Definitions

  • Patented Ma (No Model.) 2Sheets-Sheet 2.
  • My invention relates to an improvement in blind-stile-boring machines; and it consists in certain novel features of construction and in the combination and arrangement of parts which will be fully described hereinafter, and more particularly referred to in the annexed claims.
  • the object of my invention is to construct a machine which will bore either one or two blind stiles at the same time and in which the bits may be adjusted laterally while the machine is in motion, thus regulating the distance of the holes being bored in the stiles without stopping the machine.
  • Figure 1 is perspective view of my improved machine.
  • Fig. 2 is a plan view of the same, the operating screw-shaft being removed.
  • Fig. 3 is a vertical sectional view on theline X X of Fig. 2.
  • Fig. 4 is a similar view on the lineY Y of Fig. 2.
  • Fig. 5 isadetached view of one of the bit-supporting frames.
  • Fig. 6 is a detached view of one of the wedges.
  • A represents the outer supporting-frame, which is provided with bearingB on its upper end, in which is journaled the screw-shaft O, having a pulley O on one of its ends.
  • the inner walls of the frame A are constructed with the parallel grooves D, in which move laterally the rollers D, which support the frames E.
  • the latter are provided with bearings E, in which are journaled the bitcarrying shafts F.
  • the opposite ends of the shafts F are provided with the recessed heads F, in which the bits are secured.
  • Mounted on the shafts F between their ends are the pinions G, which are engaged and revolved by the screw-shaft C.
  • a screw-shaft II Journaled in a horizontal position within the frame A is a screw-shaft II, which is provided with an operating-wheel H on its eX- tended end.
  • the frame I Adapted to be moved horizontally by this screw-shaft is the frame I, which slides on the cleats A on the inner side of the frame A.
  • the sides of the frame I are provided with the wedge-shaped projections J, which are engaged by the oppositely-slanting wedge-shaped projections K on the under side of the vertically-moving table L. It will be understood that by moving the frameIlaterthe table L may be vertically adjusted at m
  • Supported on the top of the table L are the wedges M, which extend upward between the opposite ends of the frames E and enter the slanting grooves E of the projections E.
  • the alternate wedges on each of the sides are placed in a line, as shown in Fig. 2, thus allowing the lower portion of the adjacent wedges to overlap when desired.
  • the adjacent wedges being out of line, it is evident that they may be made any length and size desired, whereas were all of the wedges on one side of the machine in line it is evident that the length of their combined widths at their widest ends could not be greater than the interior length of the frame. If the width of the wedges were thus limited, it is evident that "the adjustment of the frames E would be correspondingly restricted; but being out of line they may be any width and length desired, being free to lap without interfering with each other. Thus the relative positions of the bitshafts may be varied at will and to any desired extent. Extending horizontally through the frame A is a rod N, which rests upon the frames E, holding them in a horizontal position and preventing them from turning upon their bearings D.
  • Adj ustably secured to the sides of the frame A are the rests O, which form supports for the blind stiles while being operated upon.
  • the shaft 0 is revolved in the direction indicated by the arrow in Fig. 1, and being in engagement with the pinions G the shafts F are revolved all in the same direc that extent to the action of the screw 0 and drawing the bits closer together.
  • the wedges being the same size and being moved in unison, the distance between the frames E is kept uniform in any position to which they may be adjusted.
  • the screw-shaft 0 should be revolving While the table L is being adjusted vertically, so as to insure an even adjustment of the shaft-carrying frames E, as the action of the screwshafts keeps the bit-frames together and the distances between them relatively the same.
  • a boring-machine comprising amain frame, laterally-movable bearings -mounted therein, tool-carrying shafts journaled in said bearings, a means for revolving the shafts, and wedges adapted to be adjusted between said bearings.
  • a boring-machine comprising a main frame, laterally-movable bearings mounted therein, provided with slanting grooves, wedges adapted to be adjusted in said grooves, tool-carrying shafts j ournaled in the bearings, and a means for revolving the shafts.
  • a boringmachine comprising a main frame, laterally-movable tool-carrying bearings mounted therein, and wedges interposed between the said movable bearings, each Wedge being out of line with the next adjacent wedges, for the purpose described.
  • a boring-machine comprising a main frame, laterally-movable bearings mounted therein, shafts journaled in said bearings, a

Landscapes

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

Description

2 Sheets-Sheet 1 (No Model.)
G. CURTIS.
BLIND STILE BORING MAGHINE.
Patented Ma (No Model.) 2Sheets-Sheet 2.
G. CURTIS BLIND STILE BORING MACHINE. No 474,222. Patented May 3, 1892.
WITNEEEEE F|G 6 Imam-um 5 NITED STATES PATENT OFFICE.
GILBERT CURTIS, OF CROWN POINT, NEWV YORK.
BLlND-STlLE-BORING MACHINE.
SPECIFICATION forming part of Letters Patent No. 474,222, dated May 3, 1892.
Application filed $eptemher 26, 1891. Serial No. 406,924. (No model.)
To aZZ whom it may concern:
Be it known that I, GILBERT CURTIS, of Crown Point, in the county of Essex and State of New York, have invented certain new and useful Improvements in Blind-Stile-Boring Machines; 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 pertains to make and use it, reference being had to the accompanying drawings, which form part ,of this specification.
My invention relates to an improvement in blind-stile-boring machines; and it consists in certain novel features of construction and in the combination and arrangement of parts which will be fully described hereinafter, and more particularly referred to in the annexed claims.
'The object of my invention is to construct a machine which will bore either one or two blind stiles at the same time and in which the bits may be adjusted laterally while the machine is in motion, thus regulating the distance of the holes being bored in the stiles without stopping the machine.
In the accompanying drawings, Figure 1 is perspective view of my improved machine. Fig. 2 is a plan view of the same, the operating screw-shaft being removed. Fig. 3 is a vertical sectional view on theline X X of Fig. 2. Fig. 4 is a similar view on the lineY Y of Fig. 2. Fig. 5 isadetached view of one of the bit-supporting frames. Fig. 6 is a detached view of one of the wedges.
A represents the outer supporting-frame, which is provided with bearingB on its upper end, in which is journaled the screw-shaft O, having a pulley O on one of its ends.
The inner walls of the frame A are constructed with the parallel grooves D, in which move laterally the rollers D, which support the frames E. The latter are provided with bearings E, in which are journaled the bitcarrying shafts F. The opposite ends of the shafts F are provided with the recessed heads F, in which the bits are secured. Mounted on the shafts F between their ends are the pinions G, which are engaged and revolved by the screw-shaft C. By having the power communicated to these shafts at their centers it will be seen that I am enabled to secure bits to each of their ends, thus boring two blind stiles at the same time.
Journaled in a horizontal position within the frame A is a screw-shaft II, which is provided with an operating-wheel H on its eX- tended end. Adapted to be moved horizontally by this screw-shaft is the frame I, which slides on the cleats A on the inner side of the frame A. The sides of the frame I are provided with the wedge-shaped projections J, which are engaged by the oppositely-slanting wedge-shaped projections K on the under side of the vertically-moving table L. It will be understood that by moving the frameIlaterthe table L may be vertically adjusted at m Supported on the top of the table L are the wedges M, which extend upward between the opposite ends of the frames E and enter the slanting grooves E of the projections E. The alternate wedges on each of the sides are placed in a line, as shown in Fig. 2, thus allowing the lower portion of the adjacent wedges to overlap when desired. The adjacent wedges being out of line, it is evident that they may be made any length and size desired, whereas were all of the wedges on one side of the machine in line it is evident that the length of their combined widths at their widest ends could not be greater than the interior length of the frame. If the width of the wedges were thus limited, it is evident that "the adjustment of the frames E would be correspondingly restricted; but being out of line they may be any width and length desired, being free to lap without interfering with each other. Thus the relative positions of the bitshafts may be varied at will and to any desired extent. Extending horizontally through the frame A is a rod N, which rests upon the frames E, holding them in a horizontal position and preventing them from turning upon their bearings D.
Adj ustably secured to the sides of the frame A are the rests O, which form supports for the blind stiles while being operated upon.
In operation the shaft 0 is revolved in the direction indicated by the arrow in Fig. 1, and being in engagement with the pinions G the shafts F are revolved all in the same direc that extent to the action of the screw 0 and drawing the bits closer together. The wedges being the same size and being moved in unison, the distance between the frames E is kept uniform in any position to which they may be adjusted.
When it is desired to widen the distance between the bits, the wedges and the table are raised in the manner above described, which will force the frames apart uniformly against-the tendency of the screw to hold them together.
The screw-shaft 0 should be revolving While the table L is being adjusted vertically, so as to insure an even adjustment of the shaft-carrying frames E, as the action of the screwshafts keeps the bit-frames together and the distances between them relatively the same.
Having thus described my invention, I claim- 1. A boring-machine comprising amain frame, laterally-movable bearings -mounted therein, tool-carrying shafts journaled in said bearings, a means for revolving the shafts, and wedges adapted to be adjusted between said bearings.
2. A boring-machine comprising a main frame, laterally-movable bearings mounted therein, provided with slanting grooves, wedges adapted to be adjusted in said grooves, tool-carrying shafts j ournaled in the bearings, and a means for revolving the shafts.
3. A boringmachine comprising a main frame, laterally-movable tool-carrying bearings mounted therein, and wedges interposed between the said movable bearings, each Wedge being out of line with the next adjacent wedges, for the purpose described.
4. A boring-machine comprising a main frame, laterally-movable bearings mounted therein, shafts journaled in said bearings, a
means for revolving the shafts, a vertical movable support, and wedges carried by said support, which extend between the said bearings. In testimony whereof I affix my signature in presence of two Witnesses.
GILBERT CURTIS. WVitnesses:
GARRISON W. FooTE, FREEMAN O. POND.
US474222D Blind-stile-boring machine Expired - Lifetime US474222A (en)

Publications (1)

Publication Number Publication Date
US474222A true US474222A (en) 1892-05-03

Family

ID=2543080

Family Applications (1)

Application Number Title Priority Date Filing Date
US474222D Expired - Lifetime US474222A (en) Blind-stile-boring machine

Country Status (1)

Country Link
US (1) US474222A (en)

Similar Documents

Publication Publication Date Title
US474222A (en) Blind-stile-boring machine
US142015A (en) Improvement in machines for raising panels
US255618A (en) henry hagee
US77606A (en) Improvement in sawing-maohines
US105159A (en) Improvement in machine for dressing stone
US9220A (en) Machine fob
US404377A (en) Convertible machine for grooving and sawing wood
US511712A (en) ryland
US360616A (en) philbrick
US146668A (en) Improvement in boring and tenoning machines
US344610A (en) Coal-mining machine
US112228A (en) Improvement in mortisimg-machines
US167727A (en) Improvement in dovetailing-machines
US169803A (en) Improvement in panel-raising machines
US350892A (en) Gilbert s
US540657A (en) Combined bit and routing-tool
US177652A (en) Andeew p
US134197A (en) Improvement in machines for finishing stone
US615116A (en) Mortising or gang-drilling machine
US484102A (en) Carving-machine
US274886A (en) Shire
US176569A (en) Improvement in stone-dressing machines
US483671A (en) greaves
US388069A (en) Band-saw mill
US458323A (en) baldwin