US862105A - Method of forming round bales. - Google Patents

Method of forming round bales. Download PDF

Info

Publication number
US862105A
US862105A US35079507A US1907350795A US862105A US 862105 A US862105 A US 862105A US 35079507 A US35079507 A US 35079507A US 1907350795 A US1907350795 A US 1907350795A US 862105 A US862105 A US 862105A
Authority
US
United States
Prior art keywords
bale
press
bat
rolls
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
US35079507A
Inventor
Edgar Reagan
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
REAGAN BALE Co
Original Assignee
REAGAN BALE Co
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by REAGAN BALE Co filed Critical REAGAN BALE Co
Priority to US35079507A priority Critical patent/US862105A/en
Application granted granted Critical
Publication of US862105A publication Critical patent/US862105A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01FPROCESSING OF HARVESTED PRODUCE; HAY OR STRAW PRESSES; DEVICES FOR STORING AGRICULTURAL OR HORTICULTURAL PRODUCE
    • A01F15/00Baling presses for straw, hay or the like
    • A01F15/08Details
    • A01F15/0825Regulating or controlling density or shape of the bale
    • A01F15/0833Regulating or controlling density or shape of the bale for round balers

Definitions

  • This invention relates to a method of forming round bales of cotton and other material.
  • the principal object of the present invention is to overcome these and other difficulties which have been found in the formation of round cotton bales, and to provide an improved method of and apparatus for forming the bat into bales, and for taking care of the,
  • a further object of the invention is to providemeans whereby on the stopping of the press, the bat will be automatically severed and wound into the form of a core or small bale, this operation progressing at relatively slow speed, and the small core or bale being delivered to the press as soon as the latter is again started, and the winding and compressing of the bat being continued until the bale is completed.
  • a still further object of the invention is to provide an apparatus of this nature whereby a core or small bale may be formed, and the whole delivered to the main press without breaking or severing the bat, while the core forming apparatus is utilized as a bat compressing means during the operation of the press.
  • a still further object of the invention is to provide an apparatus whereby a core of cotton may be formed and delivered to the roller press.
  • Figure 1 is a side elevation of a bale forming apparatus arranged and constructed in accordance with the invention, and designed to carry the method into effect.
  • Fig. 2 is a vertical sectional view of the main baling press.
  • Fig. 3 is a similar view of the preliminary press in which the bat is taken care of during the time the main press is stopped for'the removal of the bale and the necessary readjustments.
  • Fig. 4 is a diagram illustrating the position of'the parts after the press has been stopped to remove the bale, and showing the manner in which the preliminary press winds the bat into the form of a core or small bale.
  • Fig. 5 is a similar View, showing the core or small bale transferred to the main press.
  • Fig. 6 is a similar view showing the process of working 7 5 the main press while the preliminary press acts as a bat condenser.
  • 10 indicates a cotton feeder, 11 the preliminary press, and 12 the main baling press.
  • the feeder may be in the form of any suitable mechanism, and in the present instance is shown as forming a part of a cotton cleaning and condensing machine to which the cotton is delivered from a gin, the cotton being cleaned and condensed into the form of a bat, which thence passes to the preliminary press 11.
  • This feeder may simply be at the end of the lint flue leading from the cotton gin, the apparatus contemplating the employment of any means by which the cotton bat may be fed to the preliminary press.
  • the preliminary press is mounted on a base 15 and is provided with a plurality of vertically disposed posts 16, of which there is preferably a pair at each side of the machine.
  • These posts carry housings or check plates l7-that are rigidly secured to the upper ends of the posts, and said housings are firmly connected by a cross bar 18 which carries bearings for the support of a driven shaft 19 through which motion is imparted to the several parts of the preliminary press.
  • the vertical posts 16, also, form guides for the reception of vertically movable housings 20, and these movable housings are connected by a cross bar 21 that is secured to the upper end of a plunger 22, the latter fitting within a fluid pressure cylinder 23 to which a fluid under pressure may be admitted 'for the purpose of raising said movable housings, and
  • the movable housings are provided with bearings for the reception of two shafts 26 and 27, which carry compression rollers 28 and 29, and around these rolls passes a belt or apron 30, which, also, extends over a roller 31 mounted in spring bearings on the main press 12.
  • the upper fixed housings have bearings for a shaft 32, carrying an upper compression roller 33 and an additional compression roller 34 is, also, supported by the fixed housings, but is free to move toward and from the lower rear compression roller 29, as hereinafter described.
  • a vertically disposed shaft 36 having a lower portion 37 of rectangular or other non-circular form in cross section.
  • a bevel gear 38 which is in constant mesh with a bevel pinion 39 that is mounted on a shaft 19.
  • the upper portion of the shaft 36 carries two loose bevel pinions 40 and 41, that are in constant mesh with a bevel gear 42 secured to a shaft 43 that extends transversely across the machine, and finds bearings in a hollow shaft 44, the latter being carried in bearings that are formed in the fixed housings 17.
  • This shaft 43 carries at the opposite side of the machine a pinion 45 that is in constant mesh with two gear wheels 46 and 47, the gear 46 being fixed to the roller shaft 32, and the gear 47 being fixed to the shaft 48 of the movable roller 34, so that so long as the shaft 43 is rotated, both of the rolls will be positively driven.
  • the shaft 44 carries a pair of rocker arms 49, the outer ends of which serve as supports for the roller shaft 48, and. the housings are provided with arcuate slots 50 to permit the movement of the shaft and roller during the different stages of bale forming and bat compressing operations.
  • roller shaft 48 The ends of the roller shaft 48 are hung on sectional levers 52 which are supported by a rock shaft 53, provision being made for turning this rock shaft and thereby effecting raising and lowering of the roller shaft 48, but as this special mechanism forms no part of the present invention, it has not been illustrated in detail.
  • the adjacent faces of the two loose pinions are provided with clutch hubs 56 and 57, respectively, and these are arranged to be engaged by a double clutch sleeve 58 that is feathered on the shaft 36.
  • This clutch is operated in the manner hereinafter described for the purpose of alternately clutching the upper and lower bevel pinions to the shaft, so that movement is imparted to the upper rolls first in onedirection and then in the opposite direction, these rolls receiving movement in the direction indicated by the arrows in Fig. 3 during the formation of the core or small bale, and for rotating in the opposite direction when the auxiliary press is employed for compressing the bat.
  • an elongated sleeve 60 On the lower rectangular portion 37 of the shaft 36 is mounted an elongated sleeve 60, the ends of which find bearings in brackets 61 that project from the lower and movable housing.
  • This sleeve carries a bevel pinion 62 which intermeshes with a bevel gear 63 on a shaft 64 extending transversely across the ma chine and having bearings in the two movable housings.
  • a pinion 65 At the opposite end of the shaft 64 is a pinion 65 which intermeshes with a pair of gear wheels 66, so that movement will be imparted to these gear wheels, and the lower roll shafts 26 and 27 on which they are supported.
  • the lower housings will move down as the bale increases in size, and the bearings 61 will carry down the sleeve 60, and the bevel pinion 62, so that the latter will be maintained in constant mesh with the bevel wheel 63, no matter what the position of the rolls may be.
  • an arm 66 Projecting from one of the movable housings is an arm 66 that is provided with an opening for the reception of a vertically movable rod 67, the upper end of which is secured to a rocker arm 68 that projects from a clutch operating rock shaft 69, this shaft 69 being provided with an arm 70 that engages with the double clutch sleeve 58, so that when the shaft is rocked the clutch sleeve will be moved into engagement with one or other of the clutch hubs 56 and 57 for the purpose of locking either the bevel pinion 40 or the bevel pinion 41 to the shaft.
  • the rod Secured to the rod 67 are two collars 71 and 72, the positions of which may be adjusted in accordance with the size of the small bale or core to be formed.
  • the rod also, carries a pair of collars 73 and 74 which are engaged by compression springs 76 and 77, tending to move them away from the collars 71 and 72, and into engagement with the arm 66.
  • the arm 66 will engage first with one and then with the other of the two collars 73 and 74, and after the resistance of the springs has been overcome, the rod will move in the direction of its length, and will rock the shaft 69, thereby shifting the position of the double clutch sleeve 58.
  • the several rolls will assume the posi- 'tion shown in Fig. 4, and are rotated in the direction indicated by the arrow, so that the entering bat will be turned back by the roll 34, and will be wound up into the form of a small bale or core.
  • the roll 34 will be gradually raised until its axis is in the horizontal plane of the roll 33, and then as the bale increases in size, the rolls 28 and 29 will be forced downward against the pressure of fiuid in the lower cylinder.
  • the arm 66 When a bale of the desired size has been formed, the arm 66 will engage with the sleeve 74 and by moving the latter down, the rod 67 will, also, be pulled down, and the shaft 69 will be rocked, thus operating the clutch arm 70 and moving the clutch sleeve from engagement with the lower hub 57 and into engagement with the hub 56, so that the direction of rotation of the upper rolls 33 and 34 will be reversed, these rolls then operating in the direction indicated by the arrows, (Fig. 5). Shortly prior to this, however,
  • the pressure in the lower cylinder is relieved, so that the housings and lower rolls may move down for the purpose of opening the rolls and discharging the small bale or core, and it is only after the rolls have been opened to an extent sufficient to permit the discharge of the bale that the direction of movement of the upper rolls is reversed and the bale is discharged by the apron 30 and the roll 34, and is carried to the main press where the baling operation is completed.
  • the main press is mounted on sills 80 and is provided with end frames 81 which are connected by longitudinally disposed guide bars or tubes 82. Near one end of the press are fixed housings 83, carrying bearings for shafts 84 on which are mounted compression rolls 85.
  • the bars 82 serve further as guides for movable housings 86 carrying shafts 87, on which are mounted com pression rolls 88.
  • the movable housings are connected in any suitable mannertoa piston rod 89 that leads into a cylinder 90 and carries a suitable piston which is operated upon by a fluid under pressure admitted to the cylinder.
  • the rolls are driven from a longitudinally disposed shaft 92 which carries at one end a bevel pinion 93, inter-meshing with a bevel wheel 94 that is secured to a shaft 95, and this latter shaft is connected by suitable spur gears to the two shafts 84.
  • the shalt 92 has a rectangular portion 97 onwhich is mounted a sleeve 98 that extends through a bearing opening formed in a bracket 99 projecting from one of the movable housings.
  • This sleeve carries a bevel pinion 100 that intermeshes with a bevel wheel 101 on a shaft 102, extending through bearings formed in the movable housings, and the opposite end of the shaft is connected by suitable spur gearing to the roller shafts 87.
  • the small bale or core formed in the preliminary press When the small bale or core formed in the preliminary press is discharged from that press, it is carried by the apron 30 to the main press, and being received in the baling chamber formed between the four rolls, the winding of the bat is proceeded with in the manner shown in Figs. 5 and 6, until a bale of the desired size has been formed. It is to be especially noted that during the movement of the small bale or core from the preliminary press to the final press, there is no breakage of the bat, the bat partly unwinding and being carried down with the bale into the main press, so that the bale is formed of a continuous unbroken bat.
  • a pressure regulating valve 105 which controls the flow of a fluid from a source of pressure supply through the pipe 106 to the cylinder.
  • the stem of this valve is engaged by a lever 108, and one arm of the lever carries an adjustable weight 109, which normally tends to prevent operation of the pressure regulating valve by the opposite arm of the lever 108.
  • This opposite arm of the lever carries a movable weight 110 that is connected by a link 111 to a lever 112.
  • the lever 112 is pivoted at its lower end, and at its upper end carries an outwardly bent arm 113 through which passes a rod 114.
  • the upper end of the rod 114 is threaded and receives an adjusting nut 115 that bears on the arm 113.
  • the lower end of the rod 114 is connected to the rear end of a rod 117 which embraces the lever 112.
  • the rod 117 is connected to the movable housings and as the housings move back during the progress of formation of the bale, rod 117 will swing the lever 112 to the rear, and the weight 110 will be carried rearward away from the fulcrum of the lever 108, thus acting with greater leverage force on the stem of the pressure regulating valve 105, and gradually increasing the fluid pressure of the cylinder and increasing the resistance offered to the movement of the rear compression rollers and their housings.
  • the cylinder is also provided-with a valved discharge pipe 120 which may be opened to allow the escape of the actuating fluid, while the movable housings are drawn back to release the bale, and the front end of the cylinder carries a valved inlet pipe 121, and a valved discharge pipe 122 which control the inlet and discharge of fluid pressure for actuating the piston in the reverse direction and moving the rolls apart, to 'permit the discharge of the bale.
  • the actuating fluid of cylinder 23 enters through a pipe 125 which is provided with a valve 126, and the stem of said valve is connected to an operating arm 1.27.
  • This arm is under the control of a slidable rod 128, having a pair of adjustable collars 129 and 130 which are engaged by a finger 131 depending from the movable bracket 99.
  • the attendant opens the discharge valve in pipe 120 at the rear end of the cylinder, and opens the inlet pipe 121, so that fluid under pressure is allowed to enter the front end of the cylinder, and this fluid acts through the piston to withdraw the movable housings and the rear pair of compression rolls, so that the finished bale is allowed to drop down on to an endless conveyer 134, by which it is carried to a weighing scale or other suitable point.
  • the gradual increase in size of the bale will carry the movable housings rearward and the finger 131 will engage the collar 130, moving the slidable rod 128 the front end of which falls.
  • valve 126 is turned for the purpose of permitting the fluid under pressure to pass into the cylinder 23 of the preliminary press, whereupon the housings and lower rolls of said press are moved upward, and the arm 66 will engage the collar 73 and by imparting movement to the rod 67 will operate the clutch, forcing the latter into engagement with the lower clutch hub 57, and thus reversing the direction of rotation of the upper set of rolls.
  • the size of the finished bale will depend on the point of adjustment of the collar 130, and by altering the position of this collar, the bat may be severed at the preliminary press sooner or later in the formation of the main bale, and thus form a bale of any diameter.
  • the downward movement of the arm 66 causes said arm to engage with the collar 74 and exert a downward pull on the rod 67.
  • This immediately shifts the position of the clutch 58, and the direction of rotation of the upper rolls 33 and 34 is reversed, said rolls then turning in the direction indicated by the arrows in Fig. 5, and the bale or core is carried out over the apron 30, and carries the bat with it until the bale is received in the main press.
  • the roll 34 is then allowed to drop, while the lower rolls may be slightly raised until the rolls 34 and 29 act as bat condensing members in order to compress the bat before it reaches the main press.
  • the bale forming operation then continues in the main press in the manner shown in Fig.
  • the herein described method of forming bales consisting in first forming a bat, rolling a portion of the bat to form a core, transferring the core to a roller press, and winding and compressing the bat around said core to form a bale.
  • the herein described method of forming round bales consisting in first forming a bat, rolling the bat to form a core, transferring the core to a roller press without severing the bat, and winding, and compressing the bat around said core to form a bale.

Landscapes

  • Life Sciences & Earth Sciences (AREA)
  • Environmental Sciences (AREA)
  • Preliminary Treatment Of Fibers (AREA)

Description

No. 862,105. PATENTED JULY 30,1907.
' v E..RBAGAN.
METHOD OF FORMING ROUND BALES.
APPLICATION FILED JAN. 4, 1907.
4 SHEETS-SHEET 1.
J26 J27 J29 J15 By W A TTORNE Y5 1n: NORRIS PETERS cm, wnsmnmon, n c
PATENTBD JULY 30, 1907.
E. REAGAN. METHOD OF FORMING ROUND BALES.
A PPLIOATION FILED JAN. 4, 1907.
4 SHEETS-SHEET 2.
ZZZ
WITNESSES A TTORNE YS I THE nomzls EEfERS can, vlAsnynarom-nrc- PATENTED JULY 30, 1907. E. REAGAN.
METHOD OF FORMING ROUND BALES.
APPLIOATION FILED JAN. 4, 1907;
4 SHBETBBHEET 3.
I r r WITNESSES A TTORNEYS,
ls .rlrsls cm, vusnma'mu, n. c.
W/TNESSES; I Egg? 6 a [NI/ENTOR. I I By I No. 862,105. v PATENTED JULY 30, 1907.
B. REAGAN.
- METHOD OF FORMING ROUND BALBS. Arruou lon rn-nn JAN. 4, 1901.
4 SHEETS-SHEET 4.
A TTORNE Y5 THE NORRIS PETERS Cu, WASHINGTON, 0.1:
UNITED STATES PATENT OFFICE.
EDGAR REAGAN, OF SAN ANTONIO, TEXAS, ASSIGNOR TO I tEAGAN BALE COMPANY, OF SAN ANTONIO, TEXAS.
METHOD OFIFORMING BOUND BALES.
Specification of Letters Patent.
Patented July 30, 1907.
Application filed January 4, 1907. Serial No. 350,795.
To all whom it may concern: 7
Be it known that I, EDGAR REAGAN, a citizen of the United States, residing at San Antonio, in the county of Bexar and State of Texas, have invented a new and usful Method of Forming Round Bales, of which the following is a specification.
This invention relates to a method of forming round bales of cotton and other material.
In the baling of cotton it is usual to take the cotton directly from the gin to the press, and in the formation of round bales, it is usual to form a bat at a point between the gin and the roller press. To secure economy of operation it is desirable that the gin operate continuously, and as the press must stop to deliver the finished bale and be readjusted before the commencement of another bale forming operation, it has been found a matter of difliculty to take care of the cotton being delivered from the gin between the intervals of operation of the press, and in many cases it has been found necessary to employ two presses, the bat being diverted from one press to the other after the completion of each bale, and while the second press is at work there is ample time to bag or cover the bale formed at the first press, and to remove the same and readjust the press in readiness for another operation when the secondpress starts to deliver its bale. In other cases the lint has been retained in reservoirs adjacent tothe press, and it has, also, been proposed to wind the bat on an auxiliary roller as soon as the press stops, and then unwind the same from the roller and start the press feeding operation before the commencement of another bale.
The principal object of the present invention is to overcome these and other difficulties which have been found in the formation of round cotton bales, and to provide an improved method of and apparatus for forming the bat into bales, and for taking care of the,
bat between intervals of operation of the press.
A further object of the invention is to providemeans whereby on the stopping of the press, the bat will be automatically severed and wound into the form of a core or small bale, this operation progressing at relatively slow speed, and the small core or bale being delivered to the press as soon as the latter is again started, and the winding and compressing of the bat being continued until the bale is completed.
A still further object of the invention is to provide an apparatus of this nature whereby a core or small bale may be formed, and the whole delivered to the main press without breaking or severing the bat, while the core forming apparatus is utilized as a bat compressing means during the operation of the press.
A still further object of the invention is to provide an apparatus whereby a core of cotton may be formed and delivered to the roller press.
With these and other objects in view, the invention consists in the improved method of forming round bales, hereinafter described, illustrated in the accompanying drawings, and particularly pointed out in the appended claims.
' In the accompanying drawings:Figure 1 is a side elevation of a bale forming apparatus arranged and constructed in accordance with the invention, and designed to carry the method into effect. Fig. 2 is a vertical sectional view of the main baling press. Fig. 3 is a similar view of the preliminary press in which the bat is taken care of during the time the main press is stopped for'the removal of the bale and the necessary readjustments. Fig. 4 is a diagram illustrating the position of'the parts after the press has been stopped to remove the bale, and showing the manner in which the preliminary press winds the bat into the form of a core or small bale. Fig. 5 is a similar View, showing the core or small bale transferred to the main press.
Fig. 6 is a similar view showing the process of working 7 5 the main press while the preliminary press acts as a bat condenser.
Similar numerals of reference are employed to indicate corresponding parts throughout the several figures of the drawings.
In the drawings, 10 indicates a cotton feeder, 11 the preliminary press, and 12 the main baling press. The feeder may be in the form of any suitable mechanism, and in the present instance is shown as forming a part of a cotton cleaning and condensing machine to which the cotton is delivered from a gin, the cotton being cleaned and condensed into the form of a bat, which thence passes to the preliminary press 11. This feeder, however, may simply be at the end of the lint flue leading from the cotton gin, the apparatus contemplating the employment of any means by which the cotton bat may be fed to the preliminary press. The preliminary press is mounted on a base 15 and is provided with a plurality of vertically disposed posts 16, of which there is preferably a pair at each side of the machine. These posts carry housings or check plates l7-that are rigidly secured to the upper ends of the posts, and said housings are firmly connected by a cross bar 18 which carries bearings for the support of a driven shaft 19 through which motion is imparted to the several parts of the preliminary press. The vertical posts 16, also, form guides for the reception of vertically movable housings 20, and these movable housings are connected by a cross bar 21 that is secured to the upper end of a plunger 22, the latter fitting within a fluid pressure cylinder 23 to which a fluid under pressure may be admitted 'for the purpose of raising said movable housings, and
during the operation of the press the fluid contents of the cylinder tend to resist downward movement of the housings and thus act to compress the bale or core which is formed in this press. The movable housings are provided with bearings for the reception of two shafts 26 and 27, which carry compression rollers 28 and 29, and around these rolls passes a belt or apron 30, which, also, extends over a roller 31 mounted in spring bearings on the main press 12. The upper fixed housings have bearings for a shaft 32, carrying an upper compression roller 33 and an additional compression roller 34 is, also, supported by the fixed housings, but is free to move toward and from the lower rear compression roller 29, as hereinafter described.
Mounted in suitable bearings that project from the outer face of the fixed housing is a vertically disposed shaft 36 having a lower portion 37 of rectangular or other non-circular form in cross section. At the up-' per end of this shaft is a bevel gear 38 which is in constant mesh with a bevel pinion 39 that is mounted on a shaft 19. The upper portion of the shaft 36 carries two loose bevel pinions 40 and 41, that are in constant mesh with a bevel gear 42 secured to a shaft 43 that extends transversely across the machine, and finds bearings in a hollow shaft 44, the latter being carried in bearings that are formed in the fixed housings 17. This shaft 43 carries at the opposite side of the machine a pinion 45 that is in constant mesh with two gear wheels 46 and 47, the gear 46 being fixed to the roller shaft 32, and the gear 47 being fixed to the shaft 48 of the movable roller 34, so that so long as the shaft 43 is rotated, both of the rolls will be positively driven. The shaft 44 carries a pair of rocker arms 49, the outer ends of which serve as supports for the roller shaft 48, and. the housings are provided with arcuate slots 50 to permit the movement of the shaft and roller during the different stages of bale forming and bat compressing operations. The ends of the roller shaft 48 are hung on sectional levers 52 which are supported by a rock shaft 53, provision being made for turning this rock shaft and thereby effecting raising and lowering of the roller shaft 48, but as this special mechanism forms no part of the present invention, it has not been illustrated in detail.
The adjacent faces of the two loose pinions are provided with clutch hubs 56 and 57, respectively, and these are arranged to be engaged by a double clutch sleeve 58 that is feathered on the shaft 36. This clutch is operated in the manner hereinafter described for the purpose of alternately clutching the upper and lower bevel pinions to the shaft, so that movement is imparted to the upper rolls first in onedirection and then in the opposite direction, these rolls receiving movement in the direction indicated by the arrows in Fig. 3 during the formation of the core or small bale, and for rotating in the opposite direction when the auxiliary press is employed for compressing the bat.
On the lower rectangular portion 37 of the shaft 36 is mounted an elongated sleeve 60, the ends of which find bearings in brackets 61 that project from the lower and movable housing. This sleeve carries a bevel pinion 62 which intermeshes with a bevel gear 63 on a shaft 64 extending transversely across the ma chine and having bearings in the two movable housings. At the opposite end of the shaft 64 is a pinion 65 which intermeshes with a pair of gear wheels 66, so that movement will be imparted to these gear wheels, and the lower roll shafts 26 and 27 on which they are supported. During the operation of the device, the lower housings will move down as the bale increases in size, and the bearings 61 will carry down the sleeve 60, and the bevel pinion 62, so that the latter will be maintained in constant mesh with the bevel wheel 63, no matter what the position of the rolls may be.
Projecting from one of the movable housings is an arm 66 that is provided with an opening for the reception of a vertically movable rod 67, the upper end of which is secured to a rocker arm 68 that projects from a clutch operating rock shaft 69, this shaft 69 being provided with an arm 70 that engages with the double clutch sleeve 58, so that when the shaft is rocked the clutch sleeve will be moved into engagement with one or other of the clutch hubs 56 and 57 for the purpose of locking either the bevel pinion 40 or the bevel pinion 41 to the shaft.
Secured to the rod 67 are two collars 71 and 72, the positions of which may be adjusted in accordance with the size of the small bale or core to be formed. The rod, also, carries a pair of collars 73 and 74 which are engaged by compression springs 76 and 77, tending to move them away from the collars 71 and 72, and into engagement with the arm 66. During the vertical movement of the lower housings, the arm 66 will engage first with one and then with the other of the two collars 73 and 74, and after the resistance of the springs has been overcome, the rod will move in the direction of its length, and will rock the shaft 69, thereby shifting the position of the double clutch sleeve 58.
During the initial core or small bale forming operation of the press, the several rolls will assume the posi- 'tion shown in Fig. 4, and are rotated in the direction indicated by the arrow, so that the entering bat will be turned back by the roll 34, and will be wound up into the form of a small bale or core. During this operation .the roll 34 will be gradually raised until its axis is in the horizontal plane of the roll 33, and then as the bale increases in size, the rolls 28 and 29 will be forced downward against the pressure of fiuid in the lower cylinder. When a bale of the desired size has been formed, the arm 66 will engage with the sleeve 74 and by moving the latter down, the rod 67 will, also, be pulled down, and the shaft 69 will be rocked, thus operating the clutch arm 70 and moving the clutch sleeve from engagement with the lower hub 57 and into engagement with the hub 56, so that the direction of rotation of the upper rolls 33 and 34 will be reversed, these rolls then operating in the direction indicated by the arrows, (Fig. 5). Shortly prior to this, however,
the pressure in the lower cylinder is relieved, so that the housings and lower rolls may move down for the purpose of opening the rolls and discharging the small bale or core, and it is only after the rolls have been opened to an extent sufficient to permit the discharge of the bale that the direction of movement of the upper rolls is reversed and the bale is discharged by the apron 30 and the roll 34, and is carried to the main press where the baling operation is completed.
The main press is mounted on sills 80 and is provided with end frames 81 which are connected by longitudinally disposed guide bars or tubes 82. Near one end of the press are fixed housings 83, carrying bearings for shafts 84 on which are mounted compression rolls 85. The bars 82 serve further as guides for movable housings 86 carrying shafts 87, on which are mounted com pression rolls 88. The movable housings are connected in any suitable mannertoa piston rod 89 that leads into a cylinder 90 and carries a suitable piston which is operated upon by a fluid under pressure admitted to the cylinder. The rolls are driven from a longitudinally disposed shaft 92 which carries at one end a bevel pinion 93, inter-meshing with a bevel wheel 94 that is secured to a shaft 95, and this latter shaft is connected by suitable spur gears to the two shafts 84. The shalt 92 has a rectangular portion 97 onwhich is mounted a sleeve 98 that extends through a bearing opening formed in a bracket 99 projecting from one of the movable housings. This sleeve carries a bevel pinion 100 that intermeshes with a bevel wheel 101 on a shaft 102, extending through bearings formed in the movable housings, and the opposite end of the shaft is connected by suitable spur gearing to the roller shafts 87.
When the small bale or core formed in the preliminary press is discharged from that press, it is carried by the apron 30 to the main press, and being received in the baling chamber formed between the four rolls, the winding of the bat is proceeded with in the manner shown in Figs. 5 and 6, until a bale of the desired size has been formed. It is to be especially noted that during the movement of the small bale or core from the preliminary press to the final press, there is no breakage of the bat, the bat partly unwinding and being carried down with the bale into the main press, so that the bale is formed of a continuous unbroken bat.
During the operation of the main press, it becomes desirable to gradually increase the pressure on the bale, so that the outer layers will be condensed to a greater extent than the inner layers. This is preferably accomplished by the employment of a pressure regulating valve 105 which controls the flow of a fluid from a source of pressure supply through the pipe 106 to the cylinder. The stem of this valve is engaged by a lever 108, and one arm of the lever carries an adjustable weight 109, which normally tends to prevent operation of the pressure regulating valve by the opposite arm of the lever 108. This opposite arm of the lever carries a movable weight 110 that is connected by a link 111 to a lever 112. The lever 112 is pivoted at its lower end, and at its upper end carries an outwardly bent arm 113 through which passes a rod 114. The upper end of the rod 114 is threaded and receives an adjusting nut 115 that bears on the arm 113. The lower end of the rod 114 is connected to the rear end of a rod 117 which embraces the lever 112. I
The rod 117 is connected to the movable housings and as the housings move back during the progress of formation of the bale, rod 117 will swing the lever 112 to the rear, and the weight 110 will be carried rearward away from the fulcrum of the lever 108, thus acting with greater leverage force on the stem of the pressure regulating valve 105, and gradually increasing the fluid pressure of the cylinder and increasing the resistance offered to the movement of the rear compression rollers and their housings. The cylinder is also provided-with a valved discharge pipe 120 which may be opened to allow the escape of the actuating fluid, while the movable housings are drawn back to release the bale, and the front end of the cylinder carries a valved inlet pipe 121, and a valved discharge pipe 122 which control the inlet and discharge of fluid pressure for actuating the piston in the reverse direction and moving the rolls apart, to 'permit the discharge of the bale.
The actuating fluid of cylinder 23 enters through a pipe 125 which is provided with a valve 126, and the stem of said valve is connected to an operating arm 1.27. This arm is under the control of a slidable rod 128, having a pair of adjustable collars 129 and 130 which are engaged by a finger 131 depending from the movable bracket 99.
When a bale has been completed, bagged or covered, and is about to be discharged, the attendant opens the discharge valve in pipe 120 at the rear end of the cylinder, and opens the inlet pipe 121, so that fluid under pressure is allowed to enter the front end of the cylinder, and this fluid acts through the piston to withdraw the movable housings and the rear pair of compression rolls, so that the finished bale is allowed to drop down on to an endless conveyer 134, by which it is carried to a weighing scale or other suitable point. Prior to the bale discharging operation, however, the gradual increase in size of the bale will carry the movable housings rearward and the finger 131 will engage the collar 130, moving the slidable rod 128 the front end of which falls. This results in movement of the operating arm 127, and valve 126 is turned for the purpose of permitting the fluid under pressure to pass into the cylinder 23 of the preliminary press, whereupon the housings and lower rolls of said press are moved upward, and the arm 66 will engage the collar 73 and by imparting movement to the rod 67 will operate the clutch, forcing the latter into engagement with the lower clutch hub 57, and thus reversing the direction of rotation of the upper set of rolls. This results immediately in the gripping of the bat between the upper and lower rolls 34 and 29, and the bat is severed and turned back to start another core or small bale forming operation, while that part which has already passed between the rolls 29 and 34 will continue over the apron and will be wound on the main bale.
It will be seen that the size of the finished bale will depend on the point of adjustment of the collar 130, and by altering the position of this collar, the bat may be severed at the preliminary press sooner or later in the formation of the main bale, and thus form a bale of any diameter.
The entire operation in brief is as follows :When the parts are in the position shown in Fig. 4, a bale has been finished in the main press, and the bat has been severed and the end of the bat is being turned for the purpose of forming a small bale or core by the rolls of the preliminary press, these rolls rotating in the direction indicated by the arrows. During the progress of formation of the small bale or core, the lower rolls 28 and 29 will be moved down, and while the rolls are moving down, the finished bale in the main press is covered with bagging and removed, and the rolls of the main press are adjusted approximately to the position shown in Fig. 5. When the small bale of the preliminary press has reached its desired diameter, the downward movement of the arm 66 causes said arm to engage with the collar 74 and exert a downward pull on the rod 67. This immediately shifts the position of the clutch 58, and the direction of rotation of the upper rolls 33 and 34 is reversed, said rolls then turning in the direction indicated by the arrows in Fig. 5, and the bale or core is carried out over the apron 30, and carries the bat with it until the bale is received in the main press. The roll 34 is then allowed to drop, while the lower rolls may be slightly raised until the rolls 34 and 29 act as bat condensing members in order to compress the bat before it reaches the main press. The bale forming operation then continues in the main press in the manner shown in Fig. 6, until the rolls 88 of the main press move rearward and the finger 131 engages the collar 1.30, where upon the valve 126 is operated .and pressure is admitted to the cylinder 23. This causes the lower housings of the preliminary press to rise, and in so doing the arm 66 will engage against the collar 7 3 and movement will be imparted to the clutch, shifting of the latter causing the direction of rotation of the rolls 33 and 34 to again reverse, the rolls then moving in the direction indicated by the arrows in Fig. 4. The end oi the bat is then turned back in the manner shown in Fig. 4 in order to permit the formation of the small bale or core. That portion of the bat which has previously passed beyond the rolls is carried on to and wound around the main bale. After this the backing or wrapping material is introduced into the main press and wound around the finished bale and the latter is discharged and carried to the weighing scales or other suitable point.
I claim:
1. The herein described method of forming bales, said method consisting in first forming a bat, rolling a portion of the bat to form a core, transferring the core to a roller press, and winding and compressing the bat around said core to form a bale.
2. The herein described method of forming round bales, said method consisting in first forming a bat, rolling the bat to form a core, transferring the core to a roller press without severing the bat, and winding, and compressing the bat around said core to form a bale.
In testimony that I claim the foregoing as my own, I have hereto afiixed my signature in the presence of two witnesses EDGAR REAGAN.
Witnesses S. G. TAYLOR, A. .T. SWnAmNonN.
US35079507A 1907-01-04 1907-01-04 Method of forming round bales. Expired - Lifetime US862105A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US35079507A US862105A (en) 1907-01-04 1907-01-04 Method of forming round bales.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US35079507A US862105A (en) 1907-01-04 1907-01-04 Method of forming round bales.

Publications (1)

Publication Number Publication Date
US862105A true US862105A (en) 1907-07-30

Family

ID=2930557

Family Applications (1)

Application Number Title Priority Date Filing Date
US35079507A Expired - Lifetime US862105A (en) 1907-01-04 1907-01-04 Method of forming round bales.

Country Status (1)

Country Link
US (1) US862105A (en)

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2589837A (en) * 1949-05-11 1952-03-18 Francis J Mcalpine Bale conveyer for rotary baler
US2613591A (en) * 1948-08-05 1952-10-14 Louis E Bruns Bale loading attachment for balers
US2643604A (en) * 1949-05-11 1953-06-30 Hansen Carl Bale loader
US2672808A (en) * 1949-01-31 1954-03-23 Raymond D Eldert Baler attachment
US2947242A (en) * 1955-07-20 1960-08-02 Eastman Kodak Co Tow baling apparatus
US3191366A (en) * 1963-03-18 1965-06-29 Univ Michigan State Hay wafer forming machine
US3230867A (en) * 1961-12-04 1966-01-25 Benjamin J H Nelson Paper finishing mechanism
US3338158A (en) * 1963-10-03 1967-08-29 Sperry Rand Corp Pelleting device
DE2443838A1 (en) * 1974-09-13 1976-04-01 Welger Geb ROLL BALER
US20100319301A1 (en) * 2006-10-23 2010-12-23 Teknomac S.R.L. Machine For packaging Mattresses

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2613591A (en) * 1948-08-05 1952-10-14 Louis E Bruns Bale loading attachment for balers
US2672808A (en) * 1949-01-31 1954-03-23 Raymond D Eldert Baler attachment
US2589837A (en) * 1949-05-11 1952-03-18 Francis J Mcalpine Bale conveyer for rotary baler
US2643604A (en) * 1949-05-11 1953-06-30 Hansen Carl Bale loader
US2947242A (en) * 1955-07-20 1960-08-02 Eastman Kodak Co Tow baling apparatus
US3230867A (en) * 1961-12-04 1966-01-25 Benjamin J H Nelson Paper finishing mechanism
US3191366A (en) * 1963-03-18 1965-06-29 Univ Michigan State Hay wafer forming machine
US3338158A (en) * 1963-10-03 1967-08-29 Sperry Rand Corp Pelleting device
DE2443838A1 (en) * 1974-09-13 1976-04-01 Welger Geb ROLL BALER
US20100319301A1 (en) * 2006-10-23 2010-12-23 Teknomac S.R.L. Machine For packaging Mattresses
US8046973B2 (en) * 2006-10-23 2011-11-01 Teknomac S.R.L. Machine for packaging mattresses

Similar Documents

Publication Publication Date Title
US862105A (en) Method of forming round bales.
US963775A (en) Baling mechanism.
US999352A (en) Paper-winding machine.
US865316A (en) Bale-forming apparatus.
US963823A (en) Press for baling fibrous material.
US1027393A (en) Baler.
US1145630A (en) Method of forming cotton and the like into bales.
US3024721A (en) High speed tramper and bat feeding mechanism
US642099A (en) Roller baling-press.
US661349A (en) Cotton-press.
US1257798A (en) Cotton preparing and baling machinery.
US636380A (en) Roller baling-machine.
US798969A (en) Machine for reeling edible fibrous material and grain.
US980706A (en) Cotton-press.
US657028A (en) Cotton-press.
US1215613A (en) Baling-press.
US2002850A (en) F l cross
US567548A (en) Cotton baling press
US699114A (en) Roller-press.
US623020A (en) Cotton-press
US475117A (en) Apparatus for baling cotton
US529969A (en) Baling-press
US1087002A (en) Round-bale cotton-compress.
US1246988A (en) Friction-drum winding mechanism.
US987790A (en) Bat-former.