US569580A - Binding mechanism for harvesters - Google Patents

Binding mechanism for harvesters Download PDF

Info

Publication number
US569580A
US569580A US569580DA US569580A US 569580 A US569580 A US 569580A US 569580D A US569580D A US 569580DA US 569580 A US569580 A US 569580A
Authority
US
United States
Prior art keywords
shaft
crank
needle
wheel
frame
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
Publication date
Application granted granted Critical
Publication of US569580A publication Critical patent/US569580A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01DHARVESTING; MOWING
    • A01D59/00Equipment for binding harvested produce

Definitions

  • My invention relates to improvements in grain-binders of that class in which the needle is operated by a variable movement, whereby a greater power is exerted when the gavel is hein g compressed and greater speed is developed when the needle is returned after it has compressed the bundle, and is especially designed as an improvement on the construction set forth in my pending application, Serial No. 537,537, filed .February (5, 1895. 4
  • FIG. l is a right-hand side view with the operating parts in theirnormal position.
  • Fig. 2 is also a right-hand side view, but showing the position of the operating parts at the stage of one half-revolution of the operating-gears and when the needle is Jfully compressed home.
  • Fig. 3 is a longitudinal sectional view of the entire mechanism.
  • Figs. a and 5 are detail views of the frame and revoluble crank.
  • A, B, and O form the main frame, to which all the operating parts are connected.
  • D is the knetter-driving shaft and is journaled in the upper arm B of the frame.
  • the needle-operating shaft E is journaled in the lower arm O of the frame.
  • an eccentric F about the knetter-driving shaft.
  • this eccentric is j ournaled a cranked arm G, and on the crank-pin ll is j ournaled a roller I.
  • This roller engages the slot J of the wheel K.
  • This wheel is fast on the knetterdriving shaft D and is the means for giving power to all of the parts, as will he seen.
  • This wheel usually gets its power through an endless chain or a train of gears from the clutch- Vshaft in the way common in this style of binding mechanism.
  • the needle O is fast on the shaft E; also the crank-arm L.
  • a pitman N is journaled on the crank-pins H and lll, and thus power is communicated from the variable motion of the crank G to the needle or compressingarm O, as above described.
  • the knetter-operating wheel lJ is fast on the shaft D, and the knetter-frame Q is journaled on the shaft in the usual way and secured to the arm B of the main frame.
  • the knotter R is so timed in relation to the position of the slot J of the wheel K that when the needle O has placed the cord on the knotter in the usual way the knetter will complete the tying of the knot in less than one-sixth of a revolution of the shaft D and while the gavel is held fully compressed, and therefore less strain is on the twine in tying rthe knot than is the case when the knetter-driving shaft has a variable and slower motion at the time the tying of the knot takes place, as the compressing-arm O begins to recede and allows the gavel to expand before the knot is completed.
  • the combination with the binder-frame, the knetter and needle operating shafts, of a revoluble crank -journaled on said frame, means connecting it with the driving-gears of the knetter-driving shaft and the needleoperating shaft, and adapted to give a variable vibrating motion to the needle-shaft and a uniform rotating motion to the knetterdriving shaft.
  • a grain-binder the combination with a needle, and a needle-shaft, of mechanism for driving such shaft, comprising a knotterdriving shaft and a gear mounted concentrically thereon, and a crank mounted upon an axis eccentric to the knotter-driving shaft and having a sliding connection with the gear and devices connecting the crank with the needle-shaft; substantially as and for the purpose set forth.

Landscapes

  • Life Sciences & Earth Sciences (AREA)
  • Environmental Sciences (AREA)
  • Binders And Loading Units For Sheaves (AREA)

Description

(No Model.)
M. A.-KBLLBR. BIImINGv MECHANISM FOR HARVESTERS.
No. 569,580. 'Patented ont. 13, 1896.
IN VE /V T01? fafa/w22@ UNITED STATES PATENT OFFICE.
MOSES A. KELLER, OF
BATAVIA, NEI7 YORK.
BINDING MECHANISM FOR HARVESTERS.
SPECIFICATION forming part of Letters Patent No. 569,580, dated October 13, 1896.
Application filed March 14, 1895.
To @ZZ wwn it may concern.'
Be it known that l, MOSES A. KELLER, a citizen of the United States, residing at Batavia, in the county of Genesee and State of New York, have invented a new and useful lmprovement in Binding Mechanism for Harvesters, of which the following is a specification.
My invention relates to improvements in grain-binders of that class in which the needle is operated by a variable movement, whereby a greater power is exerted when the gavel is hein g compressed and greater speed is developed when the needle is returned after it has compressed the bundle, and is especially designed as an improvement on the construction set forth in my pending application, Serial No. 537,537, filed .February (5, 1895. 4
Like letters refer to the same parts in the several figures in the drawings, in which- Figure l is a right-hand side view with the operating parts in theirnormal position. Fig. 2 is also a right-hand side view, but showing the position of the operating parts at the stage of one half-revolution of the operating-gears and when the needle is Jfully compressed home. Fig. 3 is a longitudinal sectional view of the entire mechanism. Figs. a and 5 are detail views of the frame and revoluble crank.
A, B, and O form the main frame, to which all the operating parts are connected.
D is the knetter-driving shaft and is journaled in the upper arm B of the frame.
The needle-operating shaft E is journaled in the lower arm O of the frame. At the upper end on the right-hand side of the frame is formed or otherwise secured an eccentric F about the knetter-driving shaft. As shown, on this eccentric is j ournaled a cranked arm G, and on the crank-pin ll is j ournaled a roller I. This roller engages the slot J of the wheel K. This wheel is fast on the knetterdriving shaft D and is the means for giving power to all of the parts, as will he seen. This wheel usually gets its power through an endless chain or a train of gears from the clutch- Vshaft in the way common in this style of binding mechanism. Itis immaterial whether the power is communicated to the wheel K by a chain or gears. Therefore the wheel K only is shown. This wheel makes one complete revolution, no more, no less, to each tying op- Serial No. 541,690. (No model.)
eration and has a uniform motion throughout its complete revolution.
It ywill be seen by this construction and arrangement that when the crank G starts from its normal point (shown in Fig. l) the roller I and the crank-pin H must move gradually in the slot toward the axis of the Ywheel in the first half-revolution of the wheel K, when they will be in the position shown in Fig. 2 at 4a half-revolution of the wheel K. Bythis gradual moving toward the axis oi' the wheel the motion of the crank-pin H grows slower and the power increases as the leverage or power of the wheel is greater at its axis than at its circumference, and as the crank-pin H approaches and departs from the position shown in Fig. 2 the compressing-arm or needle O shows hardly any movement for one-sixth of a revolution of the wheel K, which is more than is required to tie the knot.
The needle O is fast on the shaft E; also the crank-arm L. A pitman N is journaled on the crank-pins H and lll, and thus power is communicated from the variable motion of the crank G to the needle or compressingarm O, as above described. The knetter-operating wheel lJ is fast on the shaft D, and the knetter-frame Q is journaled on the shaft in the usual way and secured to the arm B of the main frame. The knotter R is so timed in relation to the position of the slot J of the wheel K that when the needle O has placed the cord on the knotter in the usual way the knetter will complete the tying of the knot in less than one-sixth of a revolution of the shaft D and while the gavel is held fully compressed, and therefore less strain is on the twine in tying rthe knot than is the case when the knetter-driving shaft has a variable and slower motion at the time the tying of the knot takes place, as the compressing-arm O begins to recede and allows the gavel to expand before the knot is completed. Hence there must be more strain on the twine than when the gavcl is held fully compressed while theknot is tied; but as shown in this invention lighter and cheaper twine can be used and with better results than with a variable motion of the knetter-driving shaft. Thus all the desirable points are obtained in my present invention forming the subject-matter of this application, namely, an increasing' compressing power of the binding-needle or compressing-arm to prevent the clogging of the binder in diflicult grain or an unusually large bundle and 'by holding the gavel fully compressed while the knot is being tied.
Having thus fully described the construction and operation of myinvention, what I desire to secure by Letters Patent is* l. The combination with the binder-frame and knotter-d rivin g shaft, of a stationary eccentric formed on or secured to the frame about the said shaft, a crank journaled on the eccentric, and a driving-gear or sprocketwheel rigidly secured on the knotter-driving shaft and provided with means connecting it with the crank, whereby said crank is caused to have a variable motion through a uniform motion of the knotter-driving shaft, substantially as and for the purpose set forth.
2. The combination with the binder-f rame, the knotter-driving shaft and need le-shaf t, of a crank eccentrically journaled on the frame about the knetter-driving shaft, a driving gear or wheel fast on the kuotter driving shaft, means for movably connectin g it with the crank to give said crank a variable motion by a uniform motion of the wheel, and
means connecting the crank with and operating the needle-shaft, substantially as and for the purpose set forth.
3. The combination with the binder-frame, the kn otter-driving shaft and the needle-operating shaft, of acrank journaled on the frame eccentrically to the knetter-driving shaft, a driving gear or wheel fast on the knotterdriving shaft and provided with a radial slot,
means adapted to move in said slot for connecting the said crank with the said gear or wheel, whereby the crank is caused to have a variable motion through a uniform motion of the driving-gear, and the pitman connecting the said crank with the cranked arm of the needle-shaft whereby the needle or compressing-arm is caused to have a variable motion through a uniform motion of the knotter-driving shaft, substantially as shown and described.
4. The Combination with the binder-frame, the knotter and needle operating shafts journaled in the frame, a revoluble crank journaled on the frame eccentric to the knetteroperating shaft, a driving gear or wheel fixed to the said knotter-operating shaft, means connecting the crank with said driving-gear adapted to allow relative radial movement, and means connecting the crank with the needle -shaft, whereby a variable vibrating motion is given to the needle-shaft, and a uniform rotating motion to the knotter-driving shaft bya uniform rotating motion of the driving-gear.
5. The combination with the binder-frame, the knetter and needle operating shafts, of a revoluble crank -journaled on said frame, means connecting it with the driving-gears of the knetter-driving shaft and the needleoperating shaft, and adapted to give a variable vibrating motion to the needle-shaft and a uniform rotating motion to the knetterdriving shaft.
- 6. ln a grain-binder, the combination with a needle, and a needle-shaft, of mechanism for driving such shaft, comprising a knotterdriving shaft and a gear mounted concentrically thereon, and a crank mounted upon an axis eccentric to the knotter-driving shaft and having a sliding connection with the gear and devices connecting the crank with the needle-shaft; substantially as and for the purpose set forth.
M. A. KELLER. Vitnesses:
ROBERT PRESTON, JOHN T. VANCE.
US569580D Binding mechanism for harvesters Expired - Lifetime US569580A (en)

Publications (1)

Publication Number Publication Date
US569580A true US569580A (en) 1896-10-13

Family

ID=2638285

Family Applications (1)

Application Number Title Priority Date Filing Date
US569580D Expired - Lifetime US569580A (en) Binding mechanism for harvesters

Country Status (1)

Country Link
US (1) US569580A (en)

Similar Documents

Publication Publication Date Title
US257837A (en) John e
US364972A (en) Grain-binder
US566727A (en) Binding mechanism for harvesters
US323386A (en) John f
US366240A (en) Grain-binder
US641127A (en) Sheaf-shocking mechanism for grain-binders.
US774894A (en) Sheaf binding or trussing mechanism.
US267119A (en) Grain-binder
US468552A (en) Grain-binder
US307577A (en) Grain-binder
US209059A (en) Improvement in grain-binders
US785165A (en) Grain-binder.
US265199A (en) whiteley
US266866A (en) Self-binding harvester
US169043A (en) Improvement in grain-binders
US358918A (en) Grain-binder
US614466A (en) Li two
US222986A (en) Improvement in sulky grain-binders
US525672A (en) Knottee foe geain bindees
US230383A (en) Grain-binder
US521508A (en) Grain-binder
US441168A (en) E norris peters co
US994711A (en) Grain-binder.
US443176A (en) Grain-binder
US332218A (en) Grain-binder