US20594A - Bkick-machibte - Google Patents

Bkick-machibte Download PDF

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US20594A
US20594A US20594DA US20594A US 20594 A US20594 A US 20594A US 20594D A US20594D A US 20594DA US 20594 A US20594 A US 20594A
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wheel
revolution
shaft
under
molds
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C43/00Compression moulding, i.e. applying external pressure to flow the moulding material; Apparatus therefor
    • B29C43/32Component parts, details or accessories; Auxiliary operations
    • B29C43/50Removing moulded articles

Definitions

  • GEO L. SMULL, OF MEADVILLE, PENNSYLVANIA.
  • Figure l is a perspective view of my ma chine with all its parts adjusted in working order as far as they can be represented in such a view;
  • A, A is the frame of my machine.
  • C is a wheel on a perpendicular shaft Y; on the periphery of this wheel is fixed segments of cogs which gear into the pinion wheel G on the shaft X on which is another pinion H which gears into the half wheel I which is driven by the crank N the connect-ing rod 11 the crank M which are moved by the driving pulley B.
  • Fig. 2 shows the face of the molding wheel C with four pair of molds F, F, F, F, only two of which are shown in Fig. l one of the other two being under the press V and the other under the hopper E.
  • the pinion wheel Cr is just one fourth of the size of the molding wheel C, so that every revolution of G gives a quarter revolution ⁇ of C and therefore brings the mold which is under the hopper E under the press V and the mold which was under V in front at F.
  • the crank N is longer than the crank M and consequently one revolution of the driving pulley B causes only a half revolution of the half wheel I or a quarter of a whole revolution and as the driving pulley B revolves it is evident that H will make one revolution in one direction and one in another.
  • N ow G is hung loose on the shaft X and is turned in one direction by means of the catch or pawl W and as t-he shaft X revolves in the other direction the pawl IV moves around and drops into the notch l2 as before and when the motion X is reversed the pinion G is made to revolve again which causes a 4quarter revolution of C, as before described.
  • the molds F, F, F, F are holes of the size of a brick through the wheel C and in each of them are followers U U.
  • the molds are filled with clay from the hopper E they pass under the press V and the follower U is over the platform Z this platform is raised by the toggle joint P which is worked by the rod R with a hook S which receives the crank T at every revolution which of course operates the toggle joint P.
  • the toggle joint P forces the follower U up and the brick is pressed between U and V while the wheel Cr is not moving z'. e. while X is making its backward revolution.
  • C is an inclined plane on which the followers U, U, rest after passing off the platform Z. This inclined plane gradually rises from 8 to 6 and from 6 to 7 is on a level.
  • the clay is put into the hopper E and in this hopper is hung a shaft L with flanges on its lower end constructed in the form of the flanges of a screw propeller (see Fig. 3) on the upper end of this shaft is a pinion wheel K hung loosely and made to revolve exactly like the pinion G by means of a pawl l (Fig. 3) and a catch in the upper surface of the wheel like l2 (Fig. l).
  • the wheel K is made to revolve on the shaft L- in an opposite direction from X by placing the pawl and catch in a reverse position from G so that the shaft L revolves while the wheel C is standing still and as there is a mold under E at this time the clay is forced into it by the flanges at the end of the shaft L and is filled ready for the press.
  • Fig. l shows the half wheel I and the pinions K and H which drive the shafts L and X.
  • the wheel C may have any number of molds in its face and may be constructed of any size to suit the power that is desired to drive it and may be made of wood or ironv or any suitable material.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Press Drives And Press Lines (AREA)
  • Press-Shaping Or Shaping Using Conveyers (AREA)

Description

UNITED STATES CFFICE.
GEO. L. SMULL, OF MEADVILLE, PENNSYLVANIA.
BRICK-MACHINE.
Specification of Letters Patent N o. 20,594, dated June 15, 1858.
To all whom fit may concern:
Be it known that I, GEORGE L. SMULL, of Meadville, in the county of Crawford, in the State of Pennsylvania, have invented a new and Improved Machine for Making Pressed Bricks; and I do declare that the following is' a full and exact description of the same, reference being had to the accompanying drawings and the letters of reference marked thereon.
Figure l is a perspective view of my ma chine with all its parts adjusted in working order as far as they can be represented in such a view; A, A, is the frame of my machine. C, is a wheel on a perpendicular shaft Y; on the periphery of this wheel is fixed segments of cogs which gear into the pinion wheel G on the shaft X on which is another pinion H which gears into the half wheel I which is driven by the crank N the connect-ing rod 11 the crank M which are moved by the driving pulley B. Fig. 2 shows the face of the molding wheel C with four pair of molds F, F, F, F, only two of which are shown in Fig. l one of the other two being under the press V and the other under the hopper E.
Now the pinion wheel Cr is just one fourth of the size of the molding wheel C, so that every revolution of G gives a quarter revolution` of C and therefore brings the mold which is under the hopper E under the press V and the mold which was under V in front at F. Now the crank N is longer than the crank M and consequently one revolution of the driving pulley B causes only a half revolution of the half wheel I or a quarter of a whole revolution and as the driving pulley B revolves it is evident that H will make one revolution in one direction and one in another. N ow G is hung loose on the shaft X and is turned in one direction by means of the catch or pawl W and as t-he shaft X revolves in the other direction the pawl IV moves around and drops into the notch l2 as before and when the motion X is reversed the pinion G is made to revolve again which causes a 4quarter revolution of C, as before described.
The molds F, F, F, F, are holes of the size of a brick through the wheel C and in each of them are followers U U. When the molds are filled with clay from the hopper E they pass under the press V and the follower U is over the platform Z this platform is raised by the toggle joint P which is worked by the rod R with a hook S which receives the crank T at every revolution which of course operates the toggle joint P. Now the toggle joint P forces the follower U up and the brick is pressed between U and V while the wheel Cr is not moving z'. e. while X is making its backward revolution. C is an inclined plane on which the followers U, U, rest after passing off the platform Z. This inclined plane gradually rises from 8 to 6 and from 6 to 7 is on a level. Now it is evident that asv the Wheel C revolves the followers U U are gradually pushed up by the inclined plane C, until when they get to 6 the bricks in the molds are lifted out of the molds and are on a level with the upper surface of the wheel C and as it revolves they are pushed onto the apron D which has a thin knife edge which rests on the Wheel C and as the wheel revolves passes under the brick lifting them off the wheel C and from D they may be carried to the kiln by means of an endless belt or otherwise as desired.
The clay is put into the hopper E and in this hopper is hung a shaft L with flanges on its lower end constructed in the form of the flanges of a screw propeller (see Fig. 3) on the upper end of this shaft is a pinion wheel K hung loosely and made to revolve exactly like the pinion G by means of a pawl l (Fig. 3) and a catch in the upper surface of the wheel like l2 (Fig. l). Now the wheel K is made to revolve on the shaft L- in an opposite direction from X by placing the pawl and catch in a reverse position from G so that the shaft L revolves while the wheel C is standing still and as there is a mold under E at this time the clay is forced into it by the flanges at the end of the shaft L and is filled ready for the press.
Fig. l shows the half wheel I and the pinions K and H which drive the shafts L and X.
The wheel C may have any number of molds in its face and may be constructed of any size to suit the power that is desired to drive it and may be made of wood or ironv or any suitable material.
What I claim as my invention and desire to secure by Letters Patent of the United States is as follows to wit:
l. I claim the molding wheel C in combination with the press V toggle joint P and the inclined plane O for operating the followers U U when these several part-s are constructed arranged and operated as described and for the purposes set forth.
2. I cla-im the hook S constructed as described and operated by the crank J for operating through the rod R the toggle joint P in the manner and for the purpose set forth.
3. I claim the half Wheel I in combination with the pinions I-I and Gr cranks n and m
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