US2295935A - Spinning, twisting, and similae textile machines - Google Patents

Spinning, twisting, and similae textile machines Download PDF

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Publication number
US2295935A
US2295935A US332465A US33246540A US2295935A US 2295935 A US2295935 A US 2295935A US 332465 A US332465 A US 332465A US 33246540 A US33246540 A US 33246540A US 2295935 A US2295935 A US 2295935A
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Prior art keywords
spinning
frame
sections
section
plates
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US332465A
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English (en)
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Louis M Cotchett
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Saco Lowell Shops
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Saco Lowell Shops
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Priority to US332465A priority Critical patent/US2295935A/en
Priority to GB5478/41A priority patent/GB550248A/en
Priority to CH237765D priority patent/CH237765A/de
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    • DTEXTILES; PAPER
    • D01NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
    • D01HSPINNING OR TWISTING
    • D01H1/00Spinning or twisting machines in which the product is wound-up continuously
    • D01H1/14Details
    • D01H1/16Framework; Casings; Coverings ; Removal of heat; Means for generating overpressure of air against infiltration of dust; Ducts for electric cables
    • D01H1/162Framework; Casings; Coverings ; Removal of heat; Means for generating overpressure of air against infiltration of dust; Ducts for electric cables for ring type
    • DTEXTILES; PAPER
    • D01NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
    • D01HSPINNING OR TWISTING
    • D01H1/00Spinning or twisting machines in which the product is wound-up continuously
    • D01H1/14Details
    • D01H1/20Driving or stopping arrangements

Definitions

  • This invention relates -to spinning, twisting and roving frames and other textile machines adapted to be built in sectional form, all of which will be hereinafterreferred to 4generically as spinning frames.
  • the present invention deals especially vwith the foregoing conditions. and with the problem of overcoming them. It aims to devise a spinning "frame which will accommodate the misalignments caused bythe unpredictable and inevitable changes in floor level, to do away with most of the cast iron formerly used in machines of this character, and particularly to devise a construction which lends itselfto standardization so that -the parts caribe carried in stock and a resultant exibility in,V manufacture, production and delivery can be realized.
  • Figure 1 is a perspective view of a portion of a spinning frame constructed in accordance with this invention, the machine being partially disy mantled; y
  • FIG. 2 is a perspective view of the opposite end of the frame from that shown in Fig. 1;
  • Fig. 3 is a vertical, transverse, sectional view of the frame with many of the spinning instrumentalities omitted, some of the parts broken away and others shown in section;-
  • Fig. 4 is a front elevation showing chiey the gearing at the head end of the machine
  • Fig. 5 is a side elevation, with .some parts in Fig. 'l is a perspective view showing the rela tionship'between one of the lifter rods, the ring,
  • Figs. 8 and 9 are side and edge views, respectively, of a foot which rests on the floor and supports parts vof adjoining frame sections;
  • Figs. 10, 11 and 12 are sectional views approximately on the lines IIJ-i0, Il-ll and I2--I2, respectively, Fig. 3;
  • Fig. 13 is a vertical, sectional view through the spindle rail
  • Fig. 14 is a horizontal, sectional view on the plane of the lower drawing rolls at one side of the machine frame and illustrates the manner in which these rolls are connected with each other and with the gears at the head end;
  • Fig. 15 l is a side view, partly inv section, showing the manner in which the cylinder is supported.
  • this invention proposes to make ya spinning frame in relatively short standard'sections, connected together end tq end in such a manner that they can accommodate themselves individually to variations in floor level.
  • Each section is a substantially complete spinning unit.
  • a head end mechanism common to all the sections is provided to operate them. It consists of a unit independent of said sections and it drives the rst ⁇ own bearings regardless of the fact that corresponding rolls or shafts of adjoining sections, and which they drive or which are ldriven by them, may be out of alignment with them.
  • Fiv. 1 For purposes of explanation a spinning fram composed of three sections only has been illustrated in Fiv. 1, but since all of the sectionsare substantially identical in construction, any number of them may be assembled to form a single Vmachine havingthe desired number of spindles.
  • each section includes a frame comprising two end plates 2 and 3 of unique form. . While each of these plates is exactly like the other, the plates at the head and foot of each section are designated. by different numerals for convenience of description.
  • Each of these end plates consists of a large piece of metal plate punched or died out to the desired shape and dimensions and provided around practically its entire margin with an edge ange of the nature illustrated in Fig. 6.
  • the machine shown is of the usual duplex type. That is, it includes two rows of spindles, one on each side.
  • the plates 2 and 3 are made with recesses a, Fig. 3, at opposite sides thereof to receive the spindles and the ring rails.
  • the plates also have aper- .tures b to take the shaft for the driving cylinder and legs c equipped with feet adapted to rest on the iioor. .A
  • each spindle rail 5 supports a seresjofgspindles, preferably ⁇ arranged in pairs, as shown in ⁇ section A, Fig. l, so that they may be'driven by tapes in the usual manner. While this construction lends itself to the manufacture of a wide variety of gauges and aords a rate and economy of production substantially greater than the prior arrangements, it is contemplated that for general purposes a standard section will be produced in which the distance between the centers of the rst and last spindle may be say thirty inches. Such a dimension will accommodate three 'common gauges, namely, three inches, three and threequarter inches and five inches. These may be regarded as fine, medium and coarse gauges. The numbers of spindles in each spindle rail will be ten, eight and six, respectively, for these different: gauges. This will satisfy most users.
  • a ring rail 3l Cooperating with each set of spindles is a ring rail 3l.
  • this rail is made in sections meeting approximately at the junction of adjoiningv framesections. Opposed ends of the rail sections, however, are cut on transverse lines d and e, Fig. 7, offset longitudinally of the rail, and these two offset cuts are connected by a length- Wise -fcut f, so that the two adjoining ends-over lap lengthwise of the frame while lying in the same plane. Both these end portions rest on a block 32 which is split to embrace a lifter'rod 33. The two sections of the block are secured together by screws 35 and are clamped by them firmly to the lifter rod. One end of a rail section is secured to the block by a screw 311v but the opposite end is free and simply rests on the block.
  • Each bank of spindles must be equipped withl a set of rolls for feeding the fibrous strands to it and, if desired, drawing or attenuating these strands;
  • Such feeding and drawing mechanisms Y may be similar to those heretofore used with machines of this type, but the present invention provides a novel arrangement for supporting and driving them.
  • Each machine section is equipped with two sets of rolls, one for each bank of spindles, and the lower rolls are supported solely by the roll stands I2-I2 at opposite ends of the section, no intermediate stands being provided for them. Referring to Figs. 3 and 14, it
  • the set of lower rolls includes 40.
  • the opposed end faces of these two roll sections are grooved or slotted diametrally but at right angles to each other to receive the correspondingly disposed tangs or ribs of an intermediate' disk-like key 4I. Consequently, this key transmits torque from one roll to the other.
  • Such a coupling structure is known as an Oldham joint. It will be evident that if the sections A and B should become so changed in position as to throw these two roll sections out of alignment with each other, such misalignment would be accommodated by a joint of the char'-,
  • each section is inherently rigid so that while such variations in floor level as those above referred to may throw a section out of a level position, the shafts and rolls in that section will still remain in their normal relationship to each other and to their ring rails and spindle rails. lThus the cooperative relationship of the elements of an individual sectional unit of the machine will not be disturbed by such a change in floor level.
  • each roll stand is equipped with acover 42, Figs. l and 2, held in place by one or more screws.
  • a similar arrangement is provided for connecting the shaft or shaft sections supporting the tape driving cylinder 2I as shown in Fig. 15.
  • Ball bearings at opposite ends of each cylinder length ysupport its shaft sections for self-alignment.
  • the opposed adjacent faces of the shaft ends at each bearing I8 are grooved at right angles to each other to receive arotary key 42 having diametral ribs or tangs extending from opposite sides thereof and fitting into said grooves, so that this joint connects the two shaft portions together in torque transmitting relationship and such relationship is not disturbed by any reasonable degree of angular misalignment of the sections.
  • a cap or cover 43 is provided for the bearing.
  • a thread board 45 which may consist simply of a length of angle iron, as shown in Figs. 3 and 7.
  • a very limited traversing movement of this thread board ' is desirable and a novel arrangement is provided for producing this movement from the' motion of the lifter rods 33.
  • a vertical rod 46 is guided through the bearing blocks I5 and IB for axial movement.
  • a U-shaped yoke 4l is secured to the lower end of the rod and is curved around the adjacent edge of the end plates 2 and 3.
  • the yoke carries two vertical rods 48-48 and the thread board 45 for any individual section is secured to and is supported on the upper ends of two ⁇ of these rods located at opposite ends of the section.
  • the traversing movement of the thread board is produced by means of an inclined bar 50, Fig. 3, pivoted to the upper end of the lifter rod 33 andextending backwardly and downwardly, this bar being located in the space between two end plates. It passes through a slot in a bell crank lever 5I and under a roll 52 carried by said lever, the lever being fulcrumed on a stationary frame piece 53.
  • the lifter rod 33 rises, it carries the right-hand end, Fig.
  • the creel or stand which supports the packages of sliver, roving, or other material to be fed to the spinning instrumentalities is mounted on upright rods orl bars 456, Fig. 1, and each of these bars is supported as shown at the righthand side of Fig. 3. That is, thellower end of the rod there illustrated rests in a socket formed in the bearing plate lwhile a higher portion of it passes through and is steadied inthe bearing block
  • the latter are covered by inclined plates 58 which shed lint and ily and prevent it from accumulating on the rolls. ,l
  • the head end mechanism or driving mechanisms for the various operating instrumentalities is alseparate'unit and is so associated with the spinning sections that it can readily be disconnected from them for repairs or forany other reason, and may be replaced by a new one, if desired.
  • spinning frames as heretofore constructed; the'gearing has been mounted on a large cast viron plate at the head end of the frame, and the bear,
  • a supporting. frame for the gearing comprising a main horizontal bar 68, Figs. l, 4, and 5, in which the lower ends of two pairs of upright parallel rods or posts 8
  • Located on one or more of these pairs of posts at suitable intervals are several heavy split brackets, each bracket consisting of two steel plates or bars machined to receive the posts 6I or 62, or both, on whichV it is mounted, the brackets being adjustably clamped to the posts by any suitable. number of bolts.
  • bars and, posts are of crcular section and may consist simply of standard steelv shapes readily obtainable in the open market.
  • brackets may be easily machined'and assembled in such a relationship that all the brackets will be "accurately positioned, ⁇ and because they 4are produced by fabricating operations which leaves -the metal vin a stable condition, a frame so made will be free from distortion due to 'inherent internal strains.l
  • The. plates :of which the bracket is composed may bebolted together and then drilled and Vreamed, to'receive the posts, the meeting faces of the plates being spaced suiciently to give theI desired clearance for clamping.
  • Several such brackets are shown in Fig. 4 at 63, 64, 65, 66, and 61.
  • the .main train of gearing comprises a pinion 'I2 fast on the shaft 28. It meshes with a gear 'I3 ,having a pinion 14 revolving therewith and.driving a. gear v'
  • Revolving with the latter is a pinion I6 driving [a gear 11 which operates through a pinion 'Il to drige a gear 88.
  • This gear meshes with another gear 8
  • Another gear 82 like the gear 88 and located beside it and meshing therewith, drives the gear 83 on the extension ⁇ 35' of the front roll at the opposite side of the frame.
  • From the pinion 84, revolving with .the gear 82,.motion is transmitted to the rear drawing roll 31 through gears 85, 86, 81, 88, 89, 99', and 98, the last mentioned gear being fast on the shaft 31'.
  • this train also drives y 85 being mounted to accommodate such change.
  • the twist put into the work depends upon the ratio between the speeds of the front drawing roll 35 and the cylinder 2
  • the gear 82 drives the builder mechanism through a gear 95, a change gear 96, another gear 91 cooper-atv ing therewith and, in the Present machine, additional gears 89, 98,
  • 84 1s secured to the frame at the back of the entire mechanism and is fastened to the end plate 2', Figs. 1 and 5, in essentially the same manner that the end plates 2 and 3 are fastened to eachother.
  • a removable casing partly shown at
  • the invention provides a machine which represents aradically new sol-ution for the problems dealt with in spinning, twistand roving frames.
  • Cast iron with its objectionable features, has been substantially eliminated.
  • the construction of the machine in standard sectional units permits manufacture by more economical methods, Vfor which prior constructions were not adapted.
  • the inventionv also enables a manufacturer to carry the various parts or assemblies of parts of the machine in stock so that deliveries can be made-far more promptly than has been possible heretofore. This :fact permits a more uniform and stable manufacturing program to be followed.
  • a spinning frame comprising a series of substantially identical sections, each section being a substantially complete spinning unit with its own frame adapted to rest on the floor and with rotary shafts individual to it, means connecting the frames of said sections together end to end to hold them in a definite cooperative relationship toeach other, said means and said frames being constructed -and arranged to permit relative movement of adjoining frames to enable each of them to accommodate itself to the requirements of the oor on which it rests while supporting the shafts of its own section in substantially fixed operative relationship to the spinning elements with which it cooperates substantially undisturbecl by such relative movement.
  • a spinning frame comprising a series of substantially identical sections located end to end; each section having its own set of spinningY instrumentalities, including rotary shafts individual thereto and a frame rigidly supporting said instrumentalities; means securing the f'ames of said sections together end to end, and means flexibly connecting the shafts ofadjoining sections so as to drive those of one section from the corresponding shafts of the next section.
  • a spinning frame comprising a series of substantially identical sections located end to end; each section having its own set ofspinning instrumentalities, including rotaryshafts individual theretoand a frame supporting said instrumentalities; bearings at the junctions of said sections supporting the ends of the shafts' of adjoining sections; means securing the frames of said sections together end to end, andmeans flexibly connecting the shafts of adjoining sections so as to drive those of one section from the corresponding shafts of the next section.
  • a spinning frame comprising a series of substantially identical sections located end to end; each section having its own set of spinning instrumentalities, including rotary shafts individual thereto and a frame supporting said instrumentalities; the frame for each section including structural members supporting the elements of its respective spinning mechanism in a definite and cooperative relationship notwithstanding misalignment of an adjacent section with reference thereto and also including end plates havingA a limited degree of transverse flexibility, and rreans securing said end plates of adjoining sections together and thereby connecting said sections end. to end.
  • a spinning frame comprising a series of subv.stantially identical sections located end to end;
  • each section having its own set of spinning instrumentalities, including rotary shafts individual thereto and a frame and of such rigidity as.
  • a spinning frame comprising a series of substantialiy identical sections located end to end; each section having-its own set of spinning instrumentalities, including rotary, shafts individual thereto and' a frame supporting said instrumentalities; each of said frames including end plates having a limited degree of transverse flexibility and structural members fastened securely strumentalities, including rotary shafts individi,
  • a spinning frame comprising a series of substantially identical sections, located end to end;
  • each section having its own set of spinning instrumentalities, including rotary shafts individual thereto and a frame supporting said instru- 'mentalities; and means securing the frames of said sections together end to end, said instrui mentalities including a ring rail, and lifter rods located at the junctions of adjoining sections and supporting said ring rails.
  • a spinning fra-me comprising a vseries ofl sections located end to end; each section having its own set of spinning instrumentalities,V including spindles, a driving cylinder, and tapes driven by said cylinder for driving the spindles, each section ,also including a frame supporting said instrumentalities, means securing the frames of the sections together end to end in cooperative relationship with each other, and means connecting the cylinders of adjacent sections end to en d to drive onefrom another, the last mentioned means having sufficient flexibility to accommodate axial vmisalignment of adjacent cylinders.
  • a sectional unit for a spinning frame comv prising a set of spinning instrumentalities including spindles, a ring rail cooperating with -thein and a rigid frame supporting said instrumentalities in a fixed relationship to each other, said frame including two transversely disposed -upright plates at opposite ends of the frame,
  • spindle rails at opposite sides of said frame ⁇ for supporting the spindles, said rails being rigidly secured to said end plates, and one or more rigid horizontal structural members above the level of said rails, secured to said end plates, and cooperating with said rails to give rigidity'to said frame.
  • a spinning frame comprising a series of sections located end to end; each section having its own set o f spinning instrumentalities, including rotary shafts individual thereto and a frame supporting said instrumentalities; each of said frames including two transversely disposed plates at opposite ends thereof and structural members connecting said plates and securing them rigidly together, the edges of said end plates being flanged and the flanges of each extending toward the next adjacent section, and means securing the end plates of adjoining sections together with the flanges of the plates abutted one against another and the main portions of the plates being spaced apart.
  • a spinning frame the combination with spinning instrumentalities and a frame operatively supportingthem, of a head'end mechanism for driving said instrumentalities, said mechanism including its own individual frame in which elements of the mechanism are supported in cooperative relationship to each other and being organized as a unit independent of the spinning frame, means releasably securing said unit to said spinning frame in cooperative relationship thereto, and joints releasably connecting shafts of said spinning frame with their respective driving elements in said mechanism.
  • a spinning frame the combination with I spinning shafts and aframe supporting said instrumeninstrumentalities including lrotary talities, of a head end mechanism for driving said .instrumentalities, said mechanism including elements for driving the respective shafts of saidspinning frame and being organized as a -unit independent of the spinning frame, means releasably securing said unit to ⁇ VV said spinning section from corresponding shafts of an adjoining section.
  • a spinning frame comprising a series of substantially identical sectionslocated end to end; each section having its own set of spinning instrumentalities, including rotary shafts individual thereto and a frame supporting said instrumentalities; means securing the frames of said sections together, end to end, a head end section for driving all of said spinning sections, said head end section including a frame individual to itself and means'securing said headend section releasably to the end of said series of sections and in cooperative relationship thereto.
  • a spinning frame comprising a series ofv tions to drive like shafts of one section from those of another, and 'means securing the frames of adjoining sections together end to end.
  • a spinning frame comprising a series of sections located endto end; each section having its own set of spinning instrumentalities, including rotary shafts individual thereto and a sections together end to end but permitting limited relative movement between them to enable the respective frames to accommodate themselves to variations in the level of the floor on which the spinning frame is supported, bearings at the opposite ends of e'ach section supporting the shafts for that section, and flexible joints connecting the opposed ends of each pair of corresponding shafts at said bearings, said joints including radially slidable members serving to transmit torque from one shaft to the other.
  • a spinning frame comprising a, series of sections located end to end; each section having its own set of spinning instrumentalities including rotary shafts individual thereto and a frame supporting said instrumentalities; each of said frames including two transversely disposed up'- right plates at opposite ends thereof and horizontal structural members connecting said plates and securing them rigidly together, the edges of said plates being flanged and the flanges of each extending toward and abutting against the end plate of an adjoining section, said plates being flexible transversely but stable in their own planes, and means connecting said end plates of adjoining sections togetherat points spaced substantially from their points of connection to their individual horizontal structural members.
  • a spinning frame comprising a series of sections located end to end; each section having its of another, said joints including radially slidable ⁇ members serving to transmit torque from one shaft to the other.
  • a spinning frame comprising a series of sections locatedend to end; each'section having its own set 'of spinning instrumentalities, including rotary shafts .individual thereto and a frame supporting the instrumentalities mounted therein in a xed cooperative relationship to each other, means connecting the frames of adjoining ⁇ i 24.
  • a spinning frame comprising a series of sections located end to end; each section having its own set of spinning instrumentalities including rotary shafts individual thereto and a frame supporting said instrumentalities; each of said frames including two transversely disposed upright plates at opposite ends thereof and structural members connecting said plates and securing them rigidly together, and means securing said end plates of adjoining sections together but spaced apart, certain of the operating instrumentalities for said sections being located between the end plates of adjoining sections.
  • a spinning frame comprising a series of sections located end to end; each section having its own set of spinning instrumentalities including rotary shafts individual thereto and a frame supporting said instrumentalities; each of said frames including two transversely disposed upright plates at opposite ends thereof and structural members 'connecting said plates and securing them rigidly together, the edges of said plates being anged and the flanges of each extending toward and abutting against the end plate of an adjoining section, said plates being iiexible transversely but stable in their own planes, and means connecting said end plates of adjoining sections together, including bearings having parts located between the plates, certain of said operating instrumentalities being supported in said bearings and enclosed between th'e end plates of adjoining sections. 5
  • a spinning frame comprising a series of sections, each section being a substantially complete spinning unit and including a set of spindles and a ring rail cooperating with them, means sespinning instrumentalities and a frame support-v ing'its own set of spinning instrumentalities. including rotary shafts individual thereto and a frame supporting said instrumentalities;
  • each of said frames including two uplright plates at opposite ends thereof and structural members connecting said plates and securing them together, said plates having legs, means for securing two corresponding legs of the abutting end plates of adjoining sections together, a foot in which said pair of said legs is mounted, said foot being adapted to rest on the floor, and a vertically disposed screw cooperating with one leg 'of said pair and with the footsupporting them for adjusting the relationship of said legs to said foot.
  • a spinningA frame comprising spinning instrumentalities including rotary shafts individual thereto and a frame supporting said instrumentalities, a head and mechanism forl driving said shafts comprising a frame structure including a plurality of upright posts and brackets mountedl .on said posts and supported by them, gearing mounted on said brackets, said mechanism being constructed and organized as an independent unit, means releasably securing said unit to said spinning frame, and means for.
  • each of said frames including two transversely disposed upright plates at opposite ends thereof and longitudinal structural members connecting said plates and securing them together,V additional members resting on theiloor and supv porting said lend plates,l and means adjustably connecting said frames with said additional members and operable to adjust the corners of said frames independently of eachother.
  • a spinning frame comprising a series of sections, each section being a substantially complete spinning unit with its own frame adapted to rest on the floor and with rotary shafts individual l ⁇ to it, means releasably connecting the frames of saidsections together endv to end to hold them in a denite cooperativi?l relationship to each other, said means and said 'ifgaiies being constructed and arranged to permit .i'elative vmovement of adjoining -frames to enableeach of them to accommodate itself to the requirements of the floor on -which it rests, Oldham joints connecting together y. the shafts of adjoining sections so asto drive those of one section from the corresponding shafts of, the next section, and mechanisin at one end of said series of sections for' driving the shafts of all of said sections'in unison.
  • Vto drive one from another.
  • a spinning frame comprising a series of essentially identical sections located end to end; each section having its own set of spinning instrumentalities, including rotary shafts individual thereto and a frame supporting said instrumentalities; the frame for each section having parts adapted to rest on the iloor at opposite ends o1' the section and including structural members supporting the elements of its respective spinning mechanismin a ydeilnite and cooperative relationship notwithstanding misalignment of an adjacent section with reference thereto and also including end members having a limited degree of transverse ilexibility, and means securing said end members of adjoining sections together and thereby connecting said sections end to end.
  • v 35 'A spinning frame comprising a series of essentially identicalsections located end to'end; each section having its own set of spinninginstrumentalities, including spindles and driving'V mechanisms for said spindles; each section also including a frame supporting said instrumentalities, said spindlesand the driving mechanism for them; means securing the frames-of said sections together end to end in cooperative relationship to each other, and means connecting the spindle
  • a spinning frame comprising a series of essentially ident-ical sections located end to end; each section having .its own set of spinning instrumentalities, including spindles, driv mechn individual to said sections; each section also including a frame supporting saidv instrumentalities, spindles, driving mechanism and shafts: means securing the frames of said sections together end to end in cooperative relationship to each other,
  • a sectional unit for a spinning frame comprising a ⁇ set of spinning instrumentalities and means operativelyA supporting said ⁇ instrumental- 70 ities and including two upright end members and parallel horizontal members secured to and connecting said end members together and cooperating with them to form a rigidframe, said end 33;
  • a spinning frame comprising a series o! members being flexible transversely but stable inV sections located end to end; each section 'hav- 75 vertical planes.
  • a spinning frame comprising a series of essentially identical sections, each section being a substantially complete spinning unit and including spinning instrumentalities and rotary shafts individual thereto and a frame supporting said instrumentalities and said shafts, said frame including transversely disposed end members, means securing the frames o! said sections together with said transversely disposed members of one section in abutting relationship to those of an ad- Joining section, meansconnecting similar shafts of adjoining sections, and mechanism at one end of said series of sections for driving the shafts of all oi' said sections in unison.
  • a spinning frame comprising a series of substantially identical sections located end to en d, each section having its own set of spinning instrumentalities and a rigid frame supporting ⁇ said instrumentalities in fixed cooperative relationship to Veach other, and means securing the frames of said sections together end to end in a continuous series.
  • a spinning frame comprising a series of substantially identical sections located end to end, each section having its own set 0f spinning instrumentalities and a rigid frame supporting said instrumentalities in iixed cooperative relationship to each other, said frame having upright transversely disposed end members, and means securing said end members of adjoining sections together in abutting relationship to each other.
  • a sectional unit for a spinning frame comprising a set of spinning instrumentalities including spindles, and a frame supporting said Y' instrumentalities and comprising longitudinal frame members supporting said spindles, transout of line with an adjoining section without disturbing the cooperative relationship between the elements of the individual sections.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Textile Engineering (AREA)
  • Spinning Or Twisting Of Yarns (AREA)
US332465A 1940-04-30 1940-04-30 Spinning, twisting, and similae textile machines Expired - Lifetime US2295935A (en)

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US332465A US2295935A (en) 1940-04-30 1940-04-30 Spinning, twisting, and similae textile machines
GB5478/41A GB550248A (en) 1940-04-30 1941-04-28 Spinning, twisting and similar textile machines
CH237765D CH237765A (de) 1940-04-30 1941-04-28 Spinnmaschine.

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Cited By (21)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2416126A (en) * 1945-08-01 1947-02-18 William E Somerville Rope machine
US2514634A (en) * 1948-10-26 1950-07-11 Eastman Kodak Co Multisection yarn feeding roll
US2615297A (en) * 1948-12-13 1952-10-28 Howard & Bullough Ltd Ring spinning, doubling, and twisting machine
US2658327A (en) * 1949-10-29 1953-11-10 Schiess Ag Spinning machine drive
US2690641A (en) * 1949-10-29 1954-10-05 Schiess Ag Sectional spinning machine
US2694896A (en) * 1952-03-03 1954-11-23 Stevens & Co Inc J P Yarn winding machine
DE921015C (de) * 1948-12-13 1954-12-06 James Jackson Haythornthwaite Ringspinn-, Dublier- oder Zwirnmaschine
US2880565A (en) * 1953-12-30 1959-04-07 Brevets Aero Mecaniques Spindle spinning machines of the direct type
US2923119A (en) * 1957-06-05 1960-02-02 Alsacienne Constr Meca Textile machine frame
US2994182A (en) * 1957-12-04 1961-08-01 Brevets Aero Mecaniques Spinning and like textile machines of the direct drive type
US3035314A (en) * 1959-03-30 1962-05-22 Machinecraft Inc Spinning frames
US3054250A (en) * 1958-04-05 1962-09-18 Schurr Hans Spinning and twisting machines
US3058170A (en) * 1959-03-30 1962-10-16 Machinecraft Inc Spinning frames
US3075341A (en) * 1958-03-07 1963-01-29 Allgauer Maschb G M B H Spinning or doubling frame
US3381458A (en) * 1965-09-11 1968-05-07 Vyzk Ustav Bavlnarsky Textile machine, particularly for ringless continuous spinning and divided into identical longitudinal sections
US3942733A (en) * 1972-03-23 1976-03-09 Fried. Krupp Gesellschaft Mit Beschrankter Haftung Device for removing full bobbins on open-end spinning machines
WO2006024362A1 (de) * 2004-09-02 2006-03-09 Saurer Gmbh & Co. Kg Ringspinnmaschine
WO2007028547A1 (de) * 2005-09-07 2007-03-15 Oerlikon Textile Gmbh & Co. Kg Spinnereimaschine mit profilbauteilen
WO2007028546A1 (de) * 2005-09-07 2007-03-15 Oerlikon Textile Gmbh & Co. Kg Drehbares tragrohr an ringspinnmaschinen
DE102005050539A1 (de) * 2005-10-21 2007-05-03 Texparts Gmbh Anordnung von Streckwerken an einer Textilmaschine
US20190145024A1 (en) * 2017-11-10 2019-05-16 Maschinenfabrik Rieter Ag Ring Spinning Machine with Displaceably Supported Spindle Rail

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE882967C (de) * 1949-10-29 1953-07-13 Johann Keyser Aus Einzelabschnitten zusammengesetzte Maschine grosser Laengenausdehnung, insbesondere Spinnereimaschine
DE1238821B (de) * 1963-02-18 1967-04-13 Klaus Nimtz Spindelbank fuer Spinn- und Zwirnmaschinen
DE2755590C3 (de) * 1977-12-14 1981-10-15 Zinser Textilmaschinen Gmbh, 7333 Ebersbach Ringspinn- oder -zwirnmaschine
IT1095319B (it) 1978-04-24 1985-08-10 Marzoli & C Spa Incastellatura a singole sezioni strutturali per macchina di filatura,ritorcitura e simile
IT216671Z2 (it) * 1989-06-15 1991-09-18 Savio Spa Piastra piana metallica di sostegno di piu' fusi di filatura.

Cited By (25)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2416126A (en) * 1945-08-01 1947-02-18 William E Somerville Rope machine
US2514634A (en) * 1948-10-26 1950-07-11 Eastman Kodak Co Multisection yarn feeding roll
US2615297A (en) * 1948-12-13 1952-10-28 Howard & Bullough Ltd Ring spinning, doubling, and twisting machine
DE921015C (de) * 1948-12-13 1954-12-06 James Jackson Haythornthwaite Ringspinn-, Dublier- oder Zwirnmaschine
US2658327A (en) * 1949-10-29 1953-11-10 Schiess Ag Spinning machine drive
US2690641A (en) * 1949-10-29 1954-10-05 Schiess Ag Sectional spinning machine
US2694896A (en) * 1952-03-03 1954-11-23 Stevens & Co Inc J P Yarn winding machine
US2880565A (en) * 1953-12-30 1959-04-07 Brevets Aero Mecaniques Spindle spinning machines of the direct type
US2923119A (en) * 1957-06-05 1960-02-02 Alsacienne Constr Meca Textile machine frame
US2994182A (en) * 1957-12-04 1961-08-01 Brevets Aero Mecaniques Spinning and like textile machines of the direct drive type
US3075341A (en) * 1958-03-07 1963-01-29 Allgauer Maschb G M B H Spinning or doubling frame
US3054250A (en) * 1958-04-05 1962-09-18 Schurr Hans Spinning and twisting machines
US3058170A (en) * 1959-03-30 1962-10-16 Machinecraft Inc Spinning frames
US3035314A (en) * 1959-03-30 1962-05-22 Machinecraft Inc Spinning frames
US3381458A (en) * 1965-09-11 1968-05-07 Vyzk Ustav Bavlnarsky Textile machine, particularly for ringless continuous spinning and divided into identical longitudinal sections
US3942733A (en) * 1972-03-23 1976-03-09 Fried. Krupp Gesellschaft Mit Beschrankter Haftung Device for removing full bobbins on open-end spinning machines
WO2006024362A1 (de) * 2004-09-02 2006-03-09 Saurer Gmbh & Co. Kg Ringspinnmaschine
JP2008511763A (ja) * 2004-09-02 2008-04-17 ザウラー・ゲゼルシャフト・ミト・ベシュレンクテル・ハフツング・ウント・コンパニー・コマンディトゲゼルシャフト リング式紡績機
CN101010455B (zh) * 2004-09-02 2010-06-09 绍勒有限责任两合公司 环锭纺纱机
WO2007028547A1 (de) * 2005-09-07 2007-03-15 Oerlikon Textile Gmbh & Co. Kg Spinnereimaschine mit profilbauteilen
WO2007028546A1 (de) * 2005-09-07 2007-03-15 Oerlikon Textile Gmbh & Co. Kg Drehbares tragrohr an ringspinnmaschinen
DE102005050539A1 (de) * 2005-10-21 2007-05-03 Texparts Gmbh Anordnung von Streckwerken an einer Textilmaschine
CN101287868B (zh) * 2005-10-21 2010-07-28 欧瑞康阿库泰斯泰斯博斯德国公司 纺织机上的并条系统装置
US20190145024A1 (en) * 2017-11-10 2019-05-16 Maschinenfabrik Rieter Ag Ring Spinning Machine with Displaceably Supported Spindle Rail
US10968542B2 (en) * 2017-11-10 2021-04-06 Maschinenfabrik Rieter Ag Ring spinning machine with displaceably supported spindle rail

Also Published As

Publication number Publication date
GB550248A (en) 1942-12-31
CH237765A (de) 1945-05-31

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