US292010A - Machine for making tassel-blanks - Google Patents

Machine for making tassel-blanks Download PDF

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US292010A
US292010A US292010DA US292010A US 292010 A US292010 A US 292010A US 292010D A US292010D A US 292010DA US 292010 A US292010 A US 292010A
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cutter
blanks
tassel
blank
machine
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27MWORKING OF WOOD NOT PROVIDED FOR IN SUBCLASSES B27B - B27L; MANUFACTURE OF SPECIFIC WOODEN ARTICLES
    • B27M1/00Working of wood not provided for in subclasses B27B - B27L, e.g. by stretching
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27CPLANING, DRILLING, MILLING, TURNING OR UNIVERSAL MACHINES FOR WOOD OR SIMILAR MATERIAL
    • B27C5/00Machines designed for producing special profiles or shaped work, e.g. by rotary cutters; Equipment therefor
    • B27C5/006Machines designed for producing special profiles or shaped work, e.g. by rotary cutters; Equipment therefor with non-rotating tools

Definitions

  • My invention relates to devices for forming wooden blocks having spiral sides or ribs, these blocks being intended, principally, for tassel-blan ks, which, after being wrapped with silk or other yarn, form parts of upholstery or other trimmings.
  • the main feature of my invention consists of a tubular cutter through which crude blanks of wood may be pushed and converted into finished blanks, substantially as described hereinafter.
  • Figure 1 is a side view, partly in section, of a machine of which the cuttingdie forms a part; Fig. 2, a sectional planof Fig. 1, Fig. 3, a section of the tubular cutter; Fig. 4, an end view of the same, showing the cutting-edge; and Figs. 5 and 6, views of the crude and finished blanks.
  • the finished blank shown in Fig. 6 is given as one example only of theproduct of my invention.
  • this blank when viewed endwise is hexagonal, and when bisected at any point throughout its length presents a hexagonal figure, each of the six sides of the blank being spiral.
  • the blank may be triangular, quadrangular, and of other forms, but in all cases there must be spiral sides, or whatever ribs or grooves there may be on the blank must be spirally arranged from end to end.
  • the finished blank A, Fig. 6, is formed by pushing a crude blank, A, Fig. 5, consisting of a cylinder of wood through a tubular cutter, B, which is spirally grooved or rifled internally to correspond with the said finished blank, the cutter terminating at one end in a sharp cutting edge, 02, which coincides in shape and dimensions with the bore of the cutter.
  • a crude blank, A, Fig. 5 consisting of a cylinder of wood
  • B which is spirally grooved or rifled internally to correspond with the said finished blank
  • the cutter terminating at one end in a sharp cutting edge, 02, which coincides in shape and dimensions with the bore of the cutter.
  • On pushing the crude blank A intoand through the cutter it will be reduced by the cutting-edge of the same to the desired hexagonal shape, and at the same time will pursue the spiral course determined by the rifled bore of the cutter.
  • the cutter which is fitted into an orifice in the plate D, as shown in Fig. 1, has a collar, y,for bearing on the plate; and above and in 5 5 line with the cutter is a plunger, E, guided in a standard, F, secured to the said plate, the plunger being connected tothe long arm of a lever, G, the weighted short arm of which tends to retain the plungerin an elevated position.
  • a guide, H having a central opening of a proper size to admit and guide the crude blank A, which, after being adjusted to the said opening, is forced through the same, through the cutter, and through the opening in the plate.
  • the lower end of the plunger should be smooth, for the blank must necessarily turn to a limited extent as it is being reduced to the desired shape.
  • the cutting-edge must in all cases correspond and "coincide with them; or, in other words, the cutting-edge a: must coincide with the rifled bore of the cutter.
  • the within-described cutter consisting of a tube having internal spiral grooves, and terminating at one end in a cut- 9 5 ting-edge coinciding with the bore of the tube, substantially as set forth.

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  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Wood Science & Technology (AREA)
  • Forests & Forestry (AREA)
  • Adornments (AREA)

Description

(S pecimens.)
.D. HEER. MACHINE FOR MAKINGTASSEL BLANKS.
Batented Jan. 15,1884.
Nrrsn STATES DAVID HEER, OF PHILADELPHIA, PENNSYLVANIA.
MACHINE FOR MAKING TASSEL-BLANKS.
SPECIFICATION forming part of Letters Patent No. 292,010, dated January 15, 1884.
Application filed August20,1883. (Specimensfl T at whom it may concern..-
Be it known that I, DAVID HEER, a citizen of the United States, and a resident of Philadelphia, Pennsylvania, have invented certain Improvements in Machines for Making Tassel- Blanks, &c., of which the following is a specification.
My invention relates to devices for forming wooden blocks having spiral sides or ribs, these blocks being intended, principally, for tassel-blan ks, which, after being wrapped with silk or other yarn, form parts of upholstery or other trimmings.
The main feature of my invention consists of a tubular cutter through which crude blanks of wood may be pushed and converted into finished blanks, substantially as described hereinafter.
In the accompanying drawings, Figure 1 is a side view, partly in section, of a machine of which the cuttingdie forms a part; Fig. 2, a sectional planof Fig. 1, Fig. 3, a section of the tubular cutter; Fig. 4, an end view of the same, showing the cutting-edge; and Figs. 5 and 6, views of the crude and finished blanks.
It should be understood in the outset that the finished blank shown in Fig. 6 is given as one example only of theproduct of my invention. In the present. instance this blank when viewed endwise is hexagonal, and when bisected at any point throughout its length presents a hexagonal figure, each of the six sides of the blank being spiral. The blank may be triangular, quadrangular, and of other forms, but in all cases there must be spiral sides, or whatever ribs or grooves there may be on the blank must be spirally arranged from end to end.
The finished blank A, Fig. 6, is formed by pushing a crude blank, A, Fig. 5, consisting of a cylinder of wood through a tubular cutter, B, which is spirally grooved or rifled internally to correspond with the said finished blank, the cutter terminating at one end in a sharp cutting edge, 02, which coincides in shape and dimensions with the bore of the cutter. On pushing the crude blank A intoand through the cutter it will be reduced by the cutting-edge of the same to the desired hexagonal shape, and at the same time will pursue the spiral course determined by the rifled bore of the cutter.
The cutter, which is fitted into an orifice in the plate D, as shown in Fig. 1, has a collar, y,for bearing on the plate; and above and in 5 5 line with the cutter is a plunger, E, guided in a standard, F, secured to the said plate, the plunger being connected tothe long arm of a lever, G, the weighted short arm of which tends to retain the plungerin an elevated position.
Between the cutter and the lower end of the plunger is a guide, H, having a central opening of a proper size to admit and guide the crude blank A, which, after being adjusted to the said opening, is forced through the same, through the cutter, and through the the opening in the plate. The lower end of the plunger should be smooth, for the blank must necessarily turn to a limited extent as it is being reduced to the desired shape.
It will be understood that whatever may be the number or character of the internal spiral grooves of the cutter, the cutting-edge must in all cases correspond and "coincide with them; or, in other words, the cutting-edge a: must coincide with the rifled bore of the cutter.
I am aware that spirally-fluted circular blocks are common, the grooves being formed in the revolving block by traversing gougelike cutters; and also that straight blocks of polygonal cross-section, and having a number of flat sides, have been made by forcing a blank through a plain cutter of the proper outline, and hence I claim neither of these things. The block or strip which I produce is of the same character as the last of the above, with the additional feature, however, of the spiral twist due to the spiral grooves 0 of the cutter.
I claim as my invention 1. The within-described cutter, the same consisting of a tube having internal spiral grooves, and terminating at one end in a cut- 9 5 ting-edge coinciding with the bore of the tube, substantially as set forth.
2. The combination of the internally and spirally grooved cutter, with the guide H, In testimony whereof I have signed my 10 the guided plunger E, and mechanism forjopname to this specification in the presence of erating the said plunger, substantially as two subscribing wit-nessrs. specified.
3. As a new article of manufacture, thewithill-described block or strip, having throughout a uniform polygonal cross-section, and having flat sides with a longitudinal twist, as set forth. I
. DAVID HEEI.
" Witmsses:
HARRY L. ASHENFLLTER, HARRY SMITH.
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