US139299A - Improvement in dovetailing-machines - Google Patents

Improvement in dovetailing-machines Download PDF

Info

Publication number
US139299A
US139299A US139299DA US139299A US 139299 A US139299 A US 139299A US 139299D A US139299D A US 139299DA US 139299 A US139299 A US 139299A
Authority
US
United States
Prior art keywords
pulley
bar
pulleys
stands
shaft
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 US139299A publication Critical patent/US139299A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27FDOVETAILED WORK; TENONS; SLOTTING MACHINES FOR WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES
    • B27F1/00Dovetailed work; Tenons; Making tongues or grooves; Groove- and- tongue jointed work; Finger- joints
    • B27F1/02Making tongues or grooves, of indefinite length
    • B27F1/04Making tongues or grooves, of indefinite length along only one edge of a board

Definitions

  • the second part of my invention relates to the combination of the sliding stands with the said hinged bar.
  • the object is to enable the stands to be so adjusted that the necessary space between them may be given for the width of board; and it further consists in the construction and arrangement of the pulleys, by which the rotating cutters are driven, and the belts guided in their proper directions, as will be hereinafter fully set forth.
  • Figure 1 is an end elevation of the hinged bar, attached to the frame of the machine, embodying the first and second parts of my invention.
  • Fig. 2 is a side view of the movable stands upon the hinged bar, and showing the method of adjustment.
  • Fig. 3 is a sctional and end view of the divided pulley on the cutter-shaft.
  • Fig. 4 is a spanner, used for operatin g the divided pulley.
  • Fig. 5 is an end view of the double-disk pulley with its adjustable bushings, a part of one disk being broken away to show the oil-chamber and inside arrangement of the pulley.
  • Fig. 6 is a sectional view of the same pulley, showing the arrangement of the pulley and its adjustable bushings.
  • Fig. 7 presents a sectional view of the bushings.
  • Fig Sis a spring which is placed on the shaft to spray the oil in fast-runnin g pulleys.
  • B E are the perts of the frame showing the connection with the hinged bar A.
  • j H G are the movable parts for carrying the board past the cutters F on the shafts D in the stands K K, which are supported by the hinged bar A.
  • K K are the movable stands for supporting the cutters and guide-pulleys on the bar A, which is held in the required position by set-screwsR R R R.
  • O O is the divided pulley for the driving-shaft D and cutter F.
  • P are the pivots on which the bar A turns.
  • S S are, holes in the pulley O O for inserting the ends of the spanner shown in Fig. 4.
  • Q Q Show the two dovetailed ends of a board, Q, being the grooved end, and Q the tongued end.
  • 7 W X Y are bushings which are used for securing the pulleys L in different required positions on their shafts, the form represented by W being best adapted for loose pulleys on horizontal shafts.
  • X shows a divided bushing for a pulley made in halves.
  • Y is a bushing made tapering to hold a pulley on the shaft, when used as a tight pulley.
  • i 13 When the board is too long to admit of the cutting of both ends at the same time, it is necessary to remove all of the cutters on one side for dovetailing one end of the board;- then, to replace them and remove those on the.
  • the stands K K, Fig. 2 with the cutters, pulleys, and guide-pulley stands, can be turned down out of 'the way, and replaced in position for operation very quickly, and in .the exactposi tion required.
  • the stand K must have a sufficient range of movement upon the bar A, as to admitof.
  • shaft D is made adjustable by turning onehalf to the required position close to the box 0; then, by turning the other half until it issued November 28, 1871,for an improvement in dovetailing-machines.
  • the bar A provided with lugs at each end, in which are inserted the pivot-pins P, in combination with the frame E, having projections which receive the pivot-pins of the bar, substantially as described.
  • adjustable stands K K in combination with the hinged-bar A, as and for the purpose specified.
  • the guide-pulley L provided with bushings as shown, and carried upon the stud T, in combination with a supporting stand upon the bar A, substantially as described.

Landscapes

  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Wood Science & Technology (AREA)
  • Mechanical Engineering (AREA)
  • Forests & Forestry (AREA)
  • Treatment Of Fiber Materials (AREA)

Description

UNITED STATES ADISAHEL' DAVIS, OF LowELL, MASSACHUSETTS.
IMPROVEMENT IN DOVETAILING-MACHINES.
Specification forming part of Letters Patent No. 139,299, dated May 27, 1873 application filed.
February 6, 1873.
a the cutters with their necessary supports on a hinged bar for dovetailing one end of the board,
that whenthe bar is turned down all the cutters and their necessary shafts, stands, and pulleys, may be turned below the track of a board when too long to pass between the cutters for forming both ends simultaneously. The second part of my invention relates to the combination of the sliding stands with the said hinged bar. The object is to enable the stands to be so adjusted that the necessary space between them may be given for the width of board; and it further consists in the construction and arrangement of the pulleys, by which the rotating cutters are driven, and the belts guided in their proper directions, as will be hereinafter fully set forth.
Figure 1 is an end elevation of the hinged bar, attached to the frame of the machine, embodying the first and second parts of my invention. Fig. 2 is a side view of the movable stands upon the hinged bar, and showing the method of adjustment. Fig. 3 is a sctional and end view of the divided pulley on the cutter-shaft. Fig. 4 is a spanner, used for operatin g the divided pulley. Fig. 5 is an end view of the double-disk pulley with its adjustable bushings, a part of one disk being broken away to show the oil-chamber and inside arrangement of the pulley. Fig. 6 is a sectional view of the same pulley, showing the arrangement of the pulley and its adjustable bushings. Fig. 7 presents a sectional view of the bushings. Fig Sis a spring which is placed on the shaft to spray the oil in fast-runnin g pulleys.
In the following description similar letters of reference represent corresponding parts in the different figures of the drawing. I
B E are the perts of the frame showing the connection with the hinged bar A. j H G are the movable parts for carrying the board past the cutters F on the shafts D in the stands K K, which are supported by the hinged bar A.
K K are the movable stands for supporting the cutters and guide-pulleys on the bar A, which is held in the required position by set-screwsR R R R. O O is the divided pulley for the driving-shaft D and cutter F. P are the pivots on which the bar A turns. S S are, holes in the pulley O O for inserting the ends of the spanner shown in Fig. 4. Q Q Show the two dovetailed ends of a board, Q, being the grooved end, and Q the tongued end. 7 W X Y are bushings which are used for securing the pulleys L in different required positions on their shafts, the form represented by W being best adapted for loose pulleys on horizontal shafts. X shows a divided bushing for a pulley made in halves. Y is a bushing made tapering to hold a pulley on the shaft, when used as a tight pulley. i 13 When the board is too long to admit of the cutting of both ends at the same time, it is necessary to remove all of the cutters on one side for dovetailing one end of the board;- then, to replace them and remove those on the.
other side for cutting the other end of the board but by means of the hinged bar A the stands K K, Fig. 2, with the cutters, pulleys, and guide-pulley stands, can be turned down out of 'the way, and replaced in position for operation very quickly, and in .the exactposi tion required.
As it is necessary to pass the whole width of the board by the first cutter in order to clear the end for the next cutter, it is obvious that the stand K must have a sufficient range of movement upon the bar A, as to admitof.
its position being changed so as to suitb'oards p The divided pulley O O on the.
of all widths. shaft D is made adjustable by turning onehalf to the required position close to the box 0; then, by turning the other half until it issued November 28, 1871,for an improvement in dovetailing-machines.
For cutting the grooved end Q I use three stands with three saws or cutters, and three divided pulleys, and three hollow-hushed pulleys for driving and guiding the belts. For cutting the tongue Q I use three cutters on two heads and four pulleys. These pulleys are of different sizes, and are placed in difl'erent positions, and each requires modified bushings to suit the case. L, Fig. 6, shows the hub of the pulley a little thickened at the center, to allow for a screw-thread, m, on the inside, wherein is put an outside-threaded bushing, W, with a hole of any desired size to fit the shaft T, upon which it is placed. These bushings can be easily changedfor new ones when worn, or may be changed for different sized shafts. I do not let these bushings come quite together in the center, thus leaving a small space for oil to reach the shaft. In very fastrunning pulleys I put a spring, Z, upon the shaft which will reach out to the oil, which will be in that part of the cavity farthest from the shaft; this sprays the oil so that some of it is sure to reach the shaft. In slow-running pulleys too much oil may reach the shaft, causing waste through the hearings, in which case, instead of the spring Z, a porous packing may be used to prevent such waste.
It is obvious that these combinations may be somewhat modified by substituting a different joint from the one shown at P. The whole end of the bar A may be made to form the joint, or the pivot may be fastened in the bar A, and turn in a projection upouthe frame E; or the sliding stands K K may be fastened by wedges, or by screws in another part of the stand; or the divided pulley maybe made with bushings, as shown in Figs. 6 and 7 or the hollow pulley may be made partly disked, and partly with arms, hollow, or solid.
For pulleys more than eight inches in diameter, I use hollow arms outside the disk, in which to put the material used as balance, it being driven in or fastened by glue, or otherwise the balancethen being inside the pulley no accidents can arise from its being thrown off when they run at a high speed.
I do not claim dovetailing one end of the board at a time, and after that the other end neither do I claim adjusting the stands for wide or narrow boards, or fastening the pulleys on their shafts with a screw-thread but What I do claim, and wish to secure by Letters Patent, is
1. The bar A, provided with lugs at each end, in which are inserted the pivot-pins P, in combination with the frame E, having projections which receive the pivot-pins of the bar, substantially as described.
2. The adjustable stands K K, in combination with the hinged-bar A, as and for the purpose specified.
3. The cutter-shaft D, provided with the divided pulley O 0, in combination with the stand K and bar A, as specified.
4. The guide-pulley L, provided with bushings as shown, and carried upon the stud T, in combination with a supporting stand upon the bar A, substantially as described.
5. The guide-pulley L and driving-pulley O 0 upon the shaft D, in combination with the adjustable stands and hingedbar A, all the parts being constructed and arranged as, and for the purpose specified.
. ASAHEL DAVIS.
Witnesses M. K. CHANDLER, O. D. IRELAN.
US139299D Improvement in dovetailing-machines Expired - Lifetime US139299A (en)

Publications (1)

Publication Number Publication Date
US139299A true US139299A (en) 1873-05-27

Family

ID=2208713

Family Applications (1)

Application Number Title Priority Date Filing Date
US139299D Expired - Lifetime US139299A (en) Improvement in dovetailing-machines

Country Status (1)

Country Link
US (1) US139299A (en)

Similar Documents

Publication Publication Date Title
US610272A (en) Dovetai ling-machine
US139299A (en) Improvement in dovetailing-machines
US142173A (en) Improvement in machines for gumsviing saws
US206360A (en) Improvement in variety molding machines
US255394A (en) John t
US80392A (en) Milton w
US1239268A (en) Tool and work holder and driver.
US387757A (en) baillie
US26060A (en) Machine fob making box-joints
US207455A (en) Improvement in barrel-head machines
US389057A (en) Assigistob of oke
US262370A (en) Box-trimming machine
US120594A (en) Improvement in dovetailing-machines
US66519A (en) Frank j
US793187A (en) Woodworking-machine.
US167749A (en) Improvement in planing-machinej
US316301A (en) Shingle-sawing machine
US747337A (en) Machine for cutting wood fiber.
US403368A (en) Wood-worker
US1004345A (en) Attachment for veneer-cutting machines.
US247764A (en) Screw-cutting lathe
US341320A (en) Feed-cutter
US501512A (en) Machine for dressing spools
US76677A (en) Londus b
US70192A (en) Improvement in machines foe cutting wood-gear