US383A - Henby a - Google Patents

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US383A
US383A US383DA US383A US 383 A US383 A US 383A US 383D A US383D A US 383DA US 383 A US383 A US 383A
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shaft
inches
pulley
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frame
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61FFILTERS IMPLANTABLE INTO BLOOD VESSELS; PROSTHESES; DEVICES PROVIDING PATENCY TO, OR PREVENTING COLLAPSING OF, TUBULAR STRUCTURES OF THE BODY, e.g. STENTS; ORTHOPAEDIC, NURSING OR CONTRACEPTIVE DEVICES; FOMENTATION; TREATMENT OR PROTECTION OF EYES OR EARS; BANDAGES, DRESSINGS OR ABSORBENT PADS; FIRST-AID KITS
    • A61F13/00Bandages or dressings; Absorbent pads
    • A61F13/15Absorbent pads, e.g. sanitary towels, swabs or tampons for external or internal application to the body; Supporting or fastening means therefor; Tampon applicators
    • A61F13/20Tampons, e.g. catamenial tampons; Accessories therefor
    • A61F13/2082Apparatus or processes of manufacturing

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  • Figure 1 is a front, and Fig. 2, an end view thereof.
  • This machine consists of a frame, A, A, A, six feet three inches long, and fourteen inches wide, and nineteen inches high, sup- ⁇ r ported by legs five inches inward from the corners, and marked A, A.
  • A2 On the outside of each top plate A2, A2 is screwed a piece of plate-iron, 1, l, the upper edge rising half an inch, which forms a rail-way for the traversing carriage hereafter described; and at each end of the frame, a stud, A3, A3, is bolted, extending to the floor, and rising one ⁇ foot above the top of the frame; and at the pulley, or driving, end, a second stud, marked H, is raised two feet three inches, six and a half inches from the stud on that end to which it is connected at the top, leaving a space of six and a half inches between studs.
  • these studs receive the bearing of the driving shaft, marked I, to which itis secured, by caps, in the usual way; this shaft-has on it a driving pulley J, twelve .inches in Idiameter, having on its outside a scored clutch connected with it, which pulley, being loose upon the shaft, is moved easily endwise upon it.
  • this pulley Upon the inner face of this pulley are the clutch pins 2, 2, to catch the arms upon the pinion next described.
  • This pinion marked L has usually sixteen cogs, and is fast upon the shaft, and has bolted to it two arms, marked K, K, extending outward from the center about three inches, in such a manner that when the pulley advances toward them.l the pins in the pulley will be brought against the arms, and the pinion and shaft will be carried around with the pulley.
  • This shaft has, upon its pulley end, a spur cog wheel, marked .middle girth, it has a similar pinion of the same number of cogs, and marked E.
  • a carrlage is then formedV with two axles, ywith four scored wheels, T, T, ⁇ ten inchesin diameter, and adapted to travel on the rail way vbefore described.l These axles are attache'd to, and connected by, aboard, 3, 3, two feet ten inches long. End pieces U, U,
  • a horizontal board, 5, 5, Fig. 2 is connected with the bottom edge lof the supporting board; it projects five inches beyond the back of thisboard, forming a shelf to support the webto be formed into hat bodies.
  • An upright shaft, V is placed inthe center of the frame, having its step in a girth connecting the middle legs, three inches from the floor and its upper bearing in the middle of the upper girth and being bolted to the plates of the frame on the top; upon this shaft is a bevel wheel, marked D, with, say eighty eight, cogs gearing into the pinion on the end of Ythe main shaft, marked E.
  • a bevel wheel, marked D with, say eighty eight, cogs gearing into the pinion on the end of Ythe main shaft, marked E.
  • an arm, g On the top of this shaft V, above the bearing, is an arm, g,
  • a guide, a, a which embraces a sliding pulley a', c; this guide may project three inches and a half outward and extend six inches upward, leaving a Vspace between of two inches for the scored,
  • sliding pulley, a, a.' A shaft half an inch square, marked b, b', having its bearings in the upright pieces A3, A3, at the end of the frame, stands ten and a half inches above the plate 1, l; this shaft has, on onel end, a pulley, R, of three and three quarters inches indiameter, standing immediately over and connected by. a Vband with, the pulley N.
  • This squareshaft passes'through the sliding pulley af, a', which has three scores, .or grooves; the first three inches, and the last four and a half inches in diameter; and it is so fitted as to slide easily on the shaft, and to take its motionfrom it.
  • VA pulley c, c is placed on the end of the roller, Z, or the roller Y, which is to be scored like the sliding pulley, the smallest diameter one and a half inch, and the other to correspond with the sliding pulley.
  • the pulley c, c is connected with its corresponding roller by a band, 10, 10, Fig. 1, on the opposite end and with other rollers, if added.
  • the top rollers will continue in motion, as the sliding pulley will be caused to slide on its shaft with the carriage and will always, by means of the guide a, a, be kept in a vertical line with thepulley on the top roller, which it drives.
  • Fig. 2 3, but well known in hat-making machinery, and seen endwise at 11, Fig. 2, is mounted upon a standard in front of the above described machinel
  • the two plates, u, u represent the top and bottom of this standard, which may consist of triangular plates of cast-iron measuring fourteen inches on each side, separated by three studs, b, b", twenty-two inches long, at the respective angles.
  • an upright shaft, d, ai having its step in the lower piece, and a bearing in the top piece.
  • This triangular, or other formed frame is placed in front,and opposite to the middle of the traversing carriage, or railway, and, say twenty-four inches from it, with one angle and stud directly in a line with the upright shaft V, in the transverse frame, as shown in Fig. 2, in the end view; this stud,.b, has in it the bearing of a pinion shaft, 12, which has its other bearing on the middle leg, A, L, of the railway frame.
  • the lower piece of this frame is marked S, and may be three inches square ⁇ and five'feet long; this piece of wood has a hole in the center to receive the top of the upright shaft d, CZ, a small distance above the triangular piece Vof casting, u, having a washer, 13, three inches in diameter between the wood and the iron on which it vibrates.
  • upright pieces of wood are raised, marked S', and connected by a girth, S, at three and a half inches up from the bed piece; -above which the uprights, S, rise sixteen inches; and the one of them has an iron bearing, marked a2, (Figs.
  • this shaft has a square socket at a3, which receives, and turns the cone shaft, the upright S serving as a collar in which the shaft of the pulley b2 revolves; the upright piece on this end also Y une f, f, which communicates motion to the pulley last described;
  • this shaft has a pulley, marked Q, of the same size, and in a line with the upper pulley; and on the other end, a cog-wheel, marked g, g', with, say seventyfive cogs gearing into the pinion, marked m, on the top of the upright shaft;
  • the bearing sustaining this shaft on the other end is in a thimble clasping the upright and resting 011 a shoulder turned upon the shaft;
  • this thimble marked it, h, Figs. 2 and 3 is caused to turn with the vibrating carriage by a brace Connected with the thimble, and extending toward the other end of the vibrating frame.
  • a third upright shaft marked I', is placed, say sixteen inches from the traverse frame, and nineteen inches from the pulley end; the step is screwed to the floor, and the upper bearing projects forward from the plate of the railway; this shaft has on ita miter wheel, marked w, say with thirty cogs, and is connected with the main shaft by a horizontal shaft having on the front end a match miter wheel, and on the other a bevel wheel, marked F, Fig. 2, with say eighty-eight cogs gearing into the pinion described first on the main shaft.
  • the .upright rises above the upper bearing three and a half inches, and has an arm, marked j, nine and a half inches long, and slotted, say live inches, forming a crank.
  • an iron arm r2, r2 is bolted, to communicate the vibratory motion to the frame, the joint piece p2, p3, connecting it with crank arm j.
  • the connecting pin 7b2, 71,3, isv
  • this horizontal part has six or eight holes by which it is connected by a stud or pin 7c to the crank j, through the slit, and by a proper arrangement of this pitman any desirable vibrating motion is obtained, suitable to the cone to be covered.
  • the cones are made of f tin of the shape and size desired for the bodies, and they are covered with woolen cloth, with a score t, t, in the middle for the convenience of cutting the bodies apart; it is formed on a half inch shaft made to fit the socket at the pulley end, and a bearing to fit the other end, and for the convenience of carrying.
  • a tin trough l5 15 may be placed under the tin tube and the water carried to a pail by a leaden pipe; similar pipes and conveniences must be brought under the cone where the hardening process isV going on, for the intro-- duction of steam to the bodies while the hardening is being done.

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  • Health & Medical Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Vascular Medicine (AREA)
  • Epidemiology (AREA)
  • Biomedical Technology (AREA)
  • Heart & Thoracic Surgery (AREA)
  • Manufacturing & Machinery (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Treatment Of Fiber Materials (AREA)

Description

UNTTED sTATEs PATENT oEETcE.
HENRY A. WELLS, J. JAMES, AND R. W. PEGK, OF BROOKLYN, NEW YRK.
MACHINERY FOR MAKING BODIES TO HATS OF FUR. l
' Specification of Letters Patent No. 383, dated September 20, 1837.
To all whom t may concern:
Be it known that we, HENRY A. WELLS, J AMES J AMES, and ROBERT W. PECK, all of the cityv of Brooklyn, county of Kings, and State of New York, have invented a newand vuseful Improvement in the Machinery for Making Bodies to Hats of Fur from a Delicate Web of Fur, and that the following is a full and accurate description of the construction and manner of operating said improved -machine as jointly invented by us.
Figure 1 is a front, and Fig. 2, an end view thereof.
This machine consists of a frame, A, A, A, six feet three inches long, and fourteen inches wide, and nineteen inches high, sup-`r ported by legs five inches inward from the corners, and marked A, A. On the outside of each top plate A2, A2 is screwed a piece of plate-iron, 1, l, the upper edge rising half an inch, which forms a rail-way for the traversing carriage hereafter described; and at each end of the frame, a stud, A3, A3, is bolted, extending to the floor, and rising one `foot above the top of the frame; and at the pulley, or driving, end, a second stud, marked H, is raised two feet three inches, six and a half inches from the stud on that end to which it is connected at the top, leaving a space of six and a half inches between studs. At seven and a half inches, these studs receive the bearing of the driving shaft, marked I, to which itis secured, by caps, in the usual way; this shaft-has on it a driving pulley J, twelve .inches in Idiameter, having on its outside a scored clutch connected with it, which pulley, being loose upon the shaft, is moved easily endwise upon it. Upon the inner face of this pulley are the clutch pins 2, 2, to catch the arms upon the pinion next described. This pinion marked L, has usually sixteen cogs, and is fast upon the shaft, and has bolted to it two arms, marked K, K, extending outward from the center about three inches, in such a manner that when the pulley advances toward them.l the pins in the pulley will be brought against the arms, and the pinion and shaft will be carried around with the pulley. On the stud H, on the pulley end of the frame, and eight inches fromthe floor, are the bosses for the main shaft of the machine, marked B, which at the other end is sustained by a girth connecting the middle legs at the same distance up from the fioor. This shaft has, upon its pulley end, a spur cog wheel, marked .middle girth, it has a similar pinion of the same number of cogs, and marked E. A carrlage is then formedV with two axles, ywith four scored wheels, T, T,`ten inchesin diameter, and adapted to travel on the rail way vbefore described.l These axles are attache'd to, and connected by, aboard, 3, 3, two feet ten inches long. End pieces U, U,
are raised from the ends of this board; they may be nineteen incheshigh', and ten inches wide. These end pieces are supported' by 'a connecting pieceofl board, 4:, 4t, fastened onV their front edges. y
A horizontal board, 5, 5, Fig. 2, is connected with the bottom edge lof the supporting board; it projects five inches beyond the back of thisboard, forming a shelf to support the webto be formed into hat bodies. On each end board, at the top, there are two standards, or arms, 6, 6-7, 7, Fig. 2, to receive the bearings of two rollers, marked Y and Z, which rollers are covered with cloth, and are to `carry over the web, so that when the rollers, which are two inches in diameter, are placed upon the standards, or arms, they will be in a line with each other, and may rise from five to seven inches higher than the top of the end board; and other similar rollers, as 8, 8, may be added, if thought necessary, to carry over and regulate the web. To the under side of the carriage board, 3, 3, is bolted a piece of hard wood b, ZJ, three feet long, one and three quarters of an inch wide, and one and a half inch thick, scored, or grooved, on the under side, the groove being half an inch wide, and half an inch deep; the center of this piece is placed at right angles with the board, and midway betweenV its ltwo ends. An upright shaft, V, is placed inthe center of the frame, having its step in a girth connecting the middle legs, three inches from the floor and its upper bearing in the middle of the upper girth and being bolted to the plates of the frame on the top; upon this shaft is a bevel wheel, marked D, with, say eighty eight, cogs gearing into the pinion on the end of Ythe main shaft, marked E. On the top of this shaft V, above the bearing, is an arm, g,
carriage toward the pulley, near the bottom of the end` board, U, is a guide, a, a, which embraces a sliding pulley a', c; this guide may project three inches and a half outward and extend six inches upward, leaving a Vspace between of two inches for the scored,
sliding pulley, a, a.' A shaft half an inch square, marked b, b', having its bearings in the upright pieces A3, A3, at the end of the frame, stands ten and a half inches above the plate 1, l; this shaft has, on onel end, a pulley, R, of three and three quarters inches indiameter, standing immediately over and connected by. a Vband with, the pulley N. This squareshaft passes'through the sliding pulley af, a', which has three scores, .or grooves; the first three inches, and the last four and a half inches in diameter; and it is so fitted as to slide easily on the shaft, and to take its motionfrom it. Theshaft passes through holes in the end boards 'of' the carriage in which holes it plays freely, below the shelf, or bottom, 5, 5. VA pulley c, c, is placed on the end of the roller, Z, or the roller Y, which is to be scored like the sliding pulley, the smallest diameter one and a half inch, and the other to correspond with the sliding pulley. The pulley c, c, is connected with its corresponding roller by a band, 10, 10, Fig. 1, on the opposite end and with other rollers, if added.
)Vhen the pins 2, 2, on the driving pulley J, are brought into contact with the arms K, K, on the pinion, and the machine is caused to operate, the main shaft, B, will thereby receive its motion; the pulley N, will communicate motion to the square shaft b', b, which will set the top rollers Y, Z, in motion; the pinion E, will give motion to the upright shaft V and the pin in the arm g, will cause the carriage to traverse to such a distance on the railway as its situation on the arm may determine, which distance may be regulated at pleasure. The carriage being thus caused to pass forward and backward on the railway, the top rollers will continue in motion, as the sliding pulley will be caused to slide on its shaft with the carriage and will always, by means of the guide a, a, be kept in a vertical line with thepulley on the top roller, which it drives.
The foregoing pieces of machinery complete the motion for traversing of the carriage. But as it is necessary that the cone upon which the web is to be wound, should have a rotary motion, and also be caused to vibrate, the following machinery is added. The conical former, shown separately in Fig.
3, but well known in hat-making machinery, and seen endwise at 11, Fig. 2, is mounted upon a standard in front of the above described machinel The two plates, u, u, represent the top and bottom of this standard, which may consist of triangular plates of cast-iron measuring fourteen inches on each side, separated by three studs, b, b", twenty-two inches long, at the respective angles. And in the center of these is an upright shaft, d, ai, having its step in the lower piece, and a bearing in the top piece. This triangular, or other formed frame, is placed in front,and opposite to the middle of the traversing carriage, or railway, and, say twenty-four inches from it, with one angle and stud directly in a line with the upright shaft V, in the transverse frame, as shown in Fig. 2, in the end view; this stud,.b, has in it the bearing of a pinion shaft, 12, which has its other bearing on the middle leg, A, L, of the railway frame. On this shaft is a pinion, marked W, with, say twentyetwo cogs, gearing into the large wheel, D, on the upright shaft, V, of the rail-way frame; and on the other end-it has a bevel wheel, marked V, with, say seventy-five cogs gearing into the lower pinion, X, of the shaft in the triangular frame, and having, say twenty, teeth. A vibrating frame is formed to sustain the conical former, which is shown separately in Fig. 3. The lower piece of this frame is marked S, and may be three inches square` and five'feet long; this piece of wood has a hole in the center to receive the top of the upright shaft d, CZ, a small distance above the triangular piece Vof casting, u, having a washer, 13, three inches in diameter between the wood and the iron on which it vibrates. Upon each end of this piece of wood, upright pieces of wood are raised, marked S', and connected by a girth, S, at three and a half inches up from the bed piece; -above which the uprights, S, rise sixteen inches; and the one of them has an iron bearing, marked a2, (Figs. 1 and 3) torreceive the shaft of the cone, and having the bearing for said shaft open at top to admit the cone shaft to be taken away, and a new one substituted. This bearing receives the shaft of the cone fourteen inches up from the girth; at the same distance from the girth, the upright on the pulley end has a pulley, marked b2, with its bearing resting in the upright piece, and sustained at the other by a stand projecting outward, marked c, (Figs. 1 and 8,) with a pulley, b2, say four inches in diameter, fastened on the shaft which it carries. The inside end of this shaft, has a square socket at a3, which receives, and turns the cone shaft, the upright S serving as a collar in which the shaft of the pulley b2 revolves; the upright piece on this end also Y une f, f, which communicates motion to the pulley last described; this shaft has a pulley, marked Q, of the same size, and in a line with the upper pulley; and on the other end, a cog-wheel, marked g, g', with, say seventyfive cogs gearing into the pinion, marked m, on the top of the upright shaft; the bearing sustaining this shaft on the other end is in a thimble clasping the upright and resting 011 a shoulder turned upon the shaft; this thimble marked it, h, Figs. 2 and 3, is caused to turn with the vibrating carriage by a brace Connected with the thimble, and extending toward the other end of the vibrating frame.
By connecting the two pulleys with a band the cone when entered in place will have a rotary motion; but, as this frame must also have a vibrating motion, so as to properly distribute thev web, a third upright shaft, marked I', is placed, say sixteen inches from the traverse frame, and nineteen inches from the pulley end; the step is screwed to the floor, and the upper bearing projects forward from the plate of the railway; this shaft has on ita miter wheel, marked w, say with thirty cogs, and is connected with the main shaft by a horizontal shaft having on the front end a match miter wheel, and on the other a bevel wheel, marked F, Fig. 2, with say eighty-eight cogs gearing into the pinion described first on the main shaft. The .upright rises above the upper bearing three and a half inches, and has an arm, marked j, nine and a half inches long, and slotted, say live inches, forming a crank. To the back side of the vibrating frame, an iron arm r2, r2, is bolted, to communicate the vibratory motion to the frame, the joint piece p2, p3, connecting it with crank arm j. The connecting pin 7b2, 71,3, isv
bent downward, say two and a half inches, as seen at h3, to clear the piece u, already described, when it is again turned horizontally lying level with the crank this horizontal part has six or eight holes by which it is connected by a stud or pin 7c to the crank j, through the slit, and by a proper arrangement of this pitman any desirable vibrating motion is obtained, suitable to the cone to be covered. But as it is of great importance that steam should be applied while the bodies are being formed on the cone, a suffi-f cient quantity should be taken from a boiler and conducted through a pipe placed close by the back stud of the triangular frame, which pipe turning over the center of the upright enters the lower end of a cock marked O, which rests on a stand marked Z, bolted to the top triangular piece and projecting over the bed piece of the vibrating frame where it is made circular and sustains the cock and a pipe which passes from its upper end up through the girth, where it is connected with a tin tube s, s,
steam upon the web; the cones are made of f tin of the shape and size desired for the bodies, and they are covered with woolen cloth, with a score t, t, in the middle for the convenience of cutting the bodies apart; it is formed on a half inch shaft made to fit the socket at the pulley end, and a bearing to fit the other end, and for the convenience of carrying. off the condensed water a tin trough l5 15, may be placed under the tin tube and the water carried to a pail by a leaden pipe; similar pipes and conveniences must be brought under the cone where the hardening process isV going on, for the intro-- duction of steam to the bodies while the hardening is being done.
All those pipes through which the steam is brought must have stop cocks in them to regulate the steam. And for the more perfect explanation of our said machine we have hereunto annexed two sheets of drawings representing the several parts of our machine distinguished from each other by letters of reference.
The above machinery combined and brought to operate as above set forth is our joint invention and the result 0f many laborious and expensive experiments.
We do not claim as our invention any of the parts 0f said machines or machinery or motions separately and independently of their connection in the machinery and the combinations herein described, but
We do claim as our invention and improvement and as new and useful- The above arrangement and combination of the parts of said machinery in manner as above described or in any other manner substantially the same, which combination consists essentially in the producing the transner much easier, better and more expeditious i and cheaper than 'has been heretofore done in any other way.
HENRY A. WELLS. JAMES JAMES. ROBT. W. PEC'K. Witnesses:
l/V. ROCKWELL, CHAs. HARDY.
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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2008674A1 (en) 2002-01-23 2008-12-31 Boston Scientific Limited Balloons made from liquid crystal polymer blends
US20110110696A1 (en) * 2006-10-31 2011-05-12 David Siebert Adjustable Stenographic Keyboard Device and Method for Electronically Adjusting Key Depth Sensitivity
WO2020118215A1 (en) 2018-12-06 2020-06-11 Jacobs Vehicle Systems, Inc. Finger follower for lobe switching and single source lost motion
WO2020240479A1 (en) 2019-05-28 2020-12-03 Jacobs Vehicles Systems, Inc. Finger follower for lobe switching and single source lost motion

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2008674A1 (en) 2002-01-23 2008-12-31 Boston Scientific Limited Balloons made from liquid crystal polymer blends
US20110110696A1 (en) * 2006-10-31 2011-05-12 David Siebert Adjustable Stenographic Keyboard Device and Method for Electronically Adjusting Key Depth Sensitivity
WO2020118215A1 (en) 2018-12-06 2020-06-11 Jacobs Vehicle Systems, Inc. Finger follower for lobe switching and single source lost motion
WO2020240479A1 (en) 2019-05-28 2020-12-03 Jacobs Vehicles Systems, Inc. Finger follower for lobe switching and single source lost motion

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