US500320A - Mold-press - Google Patents

Mold-press Download PDF

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US500320A
US500320A US500320DA US500320A US 500320 A US500320 A US 500320A US 500320D A US500320D A US 500320DA US 500320 A US500320 A US 500320A
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press
lever
follower
members
frame
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B22CASTING; POWDER METALLURGY
    • B22CFOUNDRY MOULDING
    • B22C15/00Moulding machines characterised by the compacting mechanism; Accessories therefor
    • B22C15/02Compacting by pressing devices only
    • B22C15/08Compacting by pressing devices only involving pneumatic or hydraulic mechanisms

Definitions

  • the main and primary object of the invention is to provide an improved press by means of which the operator is enabled to apply a concentrated pressure to the mold and remove the same quickly, which greatly facilitates forming molds.
  • FIG. 1 is a top plan view of a mold press constructed in accordance with this invention.
  • Fig. 2 is a vertical longitudinal sectional view of the same on the line 22 of Fig. 1.
  • Fig. 3 is a front elevation, closed.
  • Fig. 4 is a detail sectional view of the top joint.
  • Fig. 5 is a similar view of the connection with one of the sliding collars.
  • a A represent opposite vertical uprights arising from the opposite bases or sills B, and connected at their upper ends by the connecting bar 0, to complete an upright rectangular frame in which are mounted the various parts of the press, it being, of course, understood that the said frame may be construoted of connected piping or othersuitable frame pieces.
  • Pivotally suspended from the bar or rod 0 and working within the rectangular frame are the parallel upper lever members D, which, where piping is employed, may be screwed into the coupling collars d, loosely mounted upon said bar 0, while the lower ends of said lever members D, are screwed into the lower coupling collars d, pivotally mounted'upon the joint or hinge rod Serial No. 437,395. (No model.)
  • the said follower bar H has the opposite ends thereof connected to the opposite sliding guides 71, embracing and sliding upon the opposite frame pieces or standards A, so that as the joint or hinge of the lever members, which comprise a knee joint, is moved in and out, the said follower bar slides up and down to carry the follower head I upon and above the flask being operated upon.
  • the said follower head I is loosely connected to said follower bar, and the upper movement of the same, or the opening'of the press is limited by means of the stop collar J, adjustably mounted upon one of the standards A.
  • the lower adjustable lever members G are provided with sprocket wheels K over which passes the endless belt k,which provides for the simultaneous adjustment of the said lower members in their respective coupling collars, and therefore the consequent adj ustment of the press.
  • An operating forked lever L extends to the front of the press and is loosely connected to or mounted upon the joint or hinge rod E, and has one of the fork arms continued into an extension Z, projecting to the rear of the frame and accommodating an adjustable weight L, which, after the follower has been forced down upon the flask, breaks the hinge or joint and opens the press automatically.
  • the handle portion of the lever L at the front of the press is held ,in any desired elevation by means of the front brace bars M, pivotally connected to said lever and the opposite adjustable clamps m, adj ustably secured to the opposite upper lever members D.
  • the opposite side pieces N Connected to the opposite standards A, a slight distance above the sills B, are the opposite side pieces N, extending to the front of the machine and connected to the short front standards or uprights O, which are connected at their upper ends by the front transverse track supporting .rod or bed P, upon which rest the front ends of the rails Q,forming a track upon which travels the movable truck R, upon which the flask 'r, is placed to be moved directly under the follower head, and removed when the mold is completed.
  • the flask In operation the flask, or either part thereof, is placed on the truck R and filled with loose sand to be packed as will be readily understood.
  • the truck is now moved upon the track to bring the flask under the follower head.
  • the lever L is now-lowered, rapidly at first, thereby gradually closing the hinge or joint, until the angle of the lever members is finally reduced and the leverage is completed, it being readily seen that such amovement provides for a gradually increasing leverage to secure aheavy pressure upon the mold.
  • the track yields and transfers the strain to the lugs T, as already noted, whereby all lower parts of the press are relieved from pressure and the flask rigidly supported.
  • an upward motion of the lever releases the follower and the weight L returns it to its highest posi-. tion.
  • the springs U release the truck from the lugs, and the truck is then withdrawn.
  • StopsW connected to each end of the rod E prevent the joint from going beyond the standards A, which said stops engage when the joint members are straightened'out to operate the press, as will be at once apparent.
  • a vertical rectangular frame knee jointed levers suspended within said frame, means for simultaneously adjusting the lowermost of said levers, avertically movable follower connected with said lowermost levers, and a movable bed, substantially as set forth.
  • a vertical rectangular frame upper lever members pivotally suspended from the top of said frame, lower lever members pivotally and adjustably connected with the lower ends of said upper members, a sliding follower bar pivotally and adj ustably connected with said lower members, a weighted lever connected to the upper lever-members and to the joint of both lever members, and a flask bed, substantially as set forth.
  • a vertical'rectangular frame upper lever members pivotally suspended within said frame, lower lever members pivotally and adjustably connected at the lower ends of said upper members to form A a knee joint, a sliding follower bar sliding upon said frameand connected with said lower members, a vertically moving follower connected with said follower bar, a weighted lever connected with the joint of said lever members, a flask bed, and means for yieldingly supporting said bed substantially as set forth.
  • a vertical rectangular frame upper. lever members pivotally suspended within said frame and connected at their'lower ends, lower lever membersjointed with the connected ends of said upper members means for simultaneously adjusting said lower lever members, sliding guides moving on said frame, a transverse follower bar connected with said guides and pivotally with the lower ends of the lower lever members, an adjustable stop arranged above one of said guides, a forked lever pivotally connected with the joint of said lever members and ICC IIO

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  • Mechanical Engineering (AREA)
  • Press Drives And Press Lines (AREA)

Description

H. E. DENNIS. MOLD PRESS.
(No Model.) 2 Sheets-Sheet 1. 1
No. 500,320. Patented June 27, 1893.
W H k 31m I'M Pd E17 I y ZS zgzys, 877/7? 6/1015 1n: hOR ls PsYcns cn. PHOYO-UYHO WASHMGTON, n c
(No Model.) 2 Sheets-Sheet 2.
H. E. DENNIS.
MOLD PRESS.
No. 500,320. Patented June 27, 1893.
in 2 fl? Denna-s fig mmws UNITED STATES PATENT OFFICE.
HENRY E. DENNIS, OF BUFFALO, NEW YORK.
MOLD-PRESS.
SPECIFICATION forming part of Letters Patent No. 500,320, dated June 27, 1893.
Application filed June 20, 1892.
To all whom it may concern:
Be it known that I, HENRY E. DENNIS, a citizen of the United States, residing at Buffalo, in the county of Erie and State of New York, have invented a new and useful Mold- ?ress, of which the following is a specifica- This invention relates to mold presses; and it has for its object to provide an improved mold press by means of which snap-flask. or bench molding may be accomplished more rapidly and with less expenditure of power than by means now in common use.
To this end the main and primary object of the invention is to provide an improved press by means of which the operator is enabled to apply a concentrated pressure to the mold and remove the same quickly, which greatly facilitates forming molds.
, With these and many other objects in view, which will readily appear as the nature of the invention is better understood, the same consists in the novel construction, combination and arrangement of parts hereinafter more fully described, illustrated and claimed.
a In the accompanying drawings:-Figure 1 is a top plan view of a mold press constructed in accordance with this invention. Fig. 2 is a vertical longitudinal sectional view of the same on the line 22 of Fig. 1. Fig. 3 is a front elevation, closed. Fig. 4 is a detail sectional view of the top joint. Fig. 5 is a similar view of the connection with one of the sliding collars.
Referring to the accompanying drawings A A represent opposite vertical uprights arising from the opposite bases or sills B, and connected at their upper ends by the connecting bar 0, to complete an upright rectangular frame in which are mounted the various parts of the press, it being, of course, understood that the said frame may be construoted of connected piping or othersuitable frame pieces. Pivotally suspended from the bar or rod 0 and working within the rectangular frame are the parallel upper lever members D, which, where piping is employed, may be screwed into the coupling collars d, loosely mounted upon said bar 0, while the lower ends of said lever members D, are screwed into the lower coupling collars d, pivotally mounted'upon the joint or hinge rod Serial No. 437,395. (No model.)
E, connecting the lower ends of said lever members. Loosely mounted upon the joint or hinge rod E, are the threaded coupling collars F, into which are adjustably screwed the upper threaded ends of the lower adj ust able lever members G. The lower adjustable lever members G are reversely threaded at their opposite ends as at g, and are adapted to have the lower ends thereof adj ustably engage the coupling collars g, which collars are loosely mounted upon the sliding follower bar H. The said follower bar H has the opposite ends thereof connected to the opposite sliding guides 71, embracing and sliding upon the opposite frame pieces or standards A, so that as the joint or hinge of the lever members, which comprise a knee joint, is moved in and out, the said follower bar slides up and down to carry the follower head I upon and above the flask being operated upon. The said follower head I is loosely connected to said follower bar, and the upper movement of the same, or the opening'of the press is limited by means of the stop collar J, adjustably mounted upon one of the standards A. In order to provide for the adjustment of the follower for flasks of different heights and therefore regulate the movement of the knee joint, the lower adjustable lever members G are provided with sprocket wheels K over which passes the endless belt k,which provides for the simultaneous adjustment of the said lower members in their respective coupling collars, and therefore the consequent adj ustment of the press.
An operating forked lever L extends to the front of the press and is loosely connected to or mounted upon the joint or hinge rod E, and has one of the fork arms continued into an extension Z, projecting to the rear of the frame and accommodating an adjustable weight L, which, after the follower has been forced down upon the flask, breaks the hinge or joint and opens the press automatically. The handle portion of the lever L at the front of the press is held ,in any desired elevation by means of the front brace bars M, pivotally connected to said lever and the opposite adjustable clamps m, adj ustably secured to the opposite upper lever members D. The movements of the several press devices actuating the follower head will be readily apparent.
Connected to the opposite standards A, a slight distance above the sills B, are the opposite side pieces N, extending to the front of the machine and connected to the short front standards or uprights O, which are connected at their upper ends by the front transverse track supporting .rod or bed P, upon which rest the front ends of the rails Q,forming a track upon which travels the movable truck R, upon which the flask 'r, is placed to be moved directly under the follower head, and removed when the mold is completed. The rear portion of the rails of the track rests upon the movable supporting bar S, having the ends connected to the opposite sliding spring supported collars 8, moving upon the opposite standards A, and normally held against the supporting lugs T, adjustably mounted upon the said opposite standards, and provided with the inwardly projecting supporting ledges tadapted to project under the sides of the truck. Springs U mounted over the opposite standards and bearing under said collars 3, hold said collars in such position, so that when the follower head is brought down upon the flask, the truck is forced down upon the supporting lugs which receive the entire pressure of the press and consequently relieves the bed or track of the press from undue pressure.
In operation the flask, or either part thereof, is placed on the truck R and filled with loose sand to be packed as will be readily understood. The truck is now moved upon the track to bring the flask under the follower head. The lever L is now-lowered, rapidly at first, thereby gradually closing the hinge or joint, until the angle of the lever members is finally reduced and the leverage is completed, it being readily seen that such amovement provides for a gradually increasing leverage to secure aheavy pressure upon the mold. As the pressure is received by the truck, the track yields and transfers the strain to the lugs T, as already noted, whereby all lower parts of the press are relieved from pressure and the flask rigidly supported. When the pressing is completed, an upward motion of the lever releases the follower and the weight L returns it to its highest posi-. tion. The springs U release the truck from the lugs, and the truck is then withdrawn.
StopsW connected to each end of the rod E prevent the joint from going beyond the standards A, which said stops engage when the joint members are straightened'out to operate the press, as will be at once apparent.
Having thus described my invention, what I claim, and desire to secure by Letters Patent, is-
1. In a molding machine, a vertical rectangular frame, knee jointed levers suspended within said frame, means for simultaneously adjusting the lowermost of said levers, avertically movable follower connected with said lowermost levers, and a movable bed, substantially as set forth.
2. In a mold press, a vertical rectangular frame, upper lever members pivotally suspended from the top of said frame, lower lever members pivotally and adjustably connected with the lower ends of said upper members, a sliding follower bar pivotally and adj ustably connected with said lower members, a weighted lever connected to the upper lever-members and to the joint of both lever members, and a flask bed, substantially as set forth.
3. In a mold press, a vertical'rectangular frame, upper lever members pivotally suspended within said frame, lower lever members pivotally and adjustably connected at the lower ends of said upper members to form A a knee joint, a sliding follower bar sliding upon said frameand connected with said lower members, a vertically moving follower connected with said follower bar, a weighted lever connected with the joint of said lever members, a flask bed, and means for yieldingly supporting said bed substantially as set forth.
4. In a mold press, opposite vertical uprights connected at their upper ends to form a rectangular frame, upper lever members pivotally suspended from the top of said frame, a joint or hinge rod connecting the lower ends of said lever members, a sliding follower bar moving within said frame, threaded coupling collars looselyconnecte'dwith said joint or hinge rod and said follower bar, lower hinge members adjustably engaging said coupling collars, means for simultaneously adjusting said lower hinge members an operating lever connected with said hinge rod, means for oVerbalancing-said lever, and a flask bed, substantially asset forth.
5. In a mold press, the frame, upper lever members pivotally suspended within said frame, a hinge rod connecting the lower ends of said lever members, opposite guides moving on the frame, a sliding follower bar connected with said guides, threaded coupling collars loosely mounted upon said hinge rod and said follower bar, lower lever members having reversely threaded ends engaging the collars on the hinge rod and follower bar respectively, sprocket wheels mounted on said lower lever members, an endless chain passing over said sprocket wheels, means for moving said lever members, and a bed, substantially as set forth.
6. In a mold press, a vertical rectangular frame, upper. lever members pivotally suspended within said frame and connected at their'lower ends, lower lever membersjointed with the connected ends of said upper members means for simultaneously adjusting said lower lever members, sliding guides moving on said frame, a transverse follower bar connected with said guides and pivotally with the lower ends of the lower lever members, an adjustable stop arranged above one of said guides, a forked lever pivotally connected with the joint of said lever members and ICC IIO
provided with an extension arm, an adj ustable weight mounted upon said arm,braoe bars pivotally connected with said lever and adj ustably pivoted on the upper lever members, and a flask bed, substantially as set forth.
7. In a mold press, the combination of a vertical rectangular frame, the follower moving in said frame, a yielding track arranged within the frame below the follower, supporting lugs adj ustably secured to the frame above said track, and a flask truck moving over said track and adapted to rest upon said lugs under pressure, substantiallyas set forth.
8. In a mold press, the vertical rectangular frame having the opposite vertical standards, an extension bed frame connected with the lower ends of said standards,a fixed sup- HENRY E. DENNIS.
Witnesses:
ALEX. SHEPHERD, F. W. HULL.
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