US476759A - bullock - Google Patents

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US476759A
US476759A US476759DA US476759A US 476759 A US476759 A US 476759A US 476759D A US476759D A US 476759DA US 476759 A US476759 A US 476759A
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aluminium
plate
printing
density
bullock
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41NPRINTING PLATES OR FOILS; MATERIALS FOR SURFACES USED IN PRINTING MACHINES FOR PRINTING, INKING, DAMPING, OR THE LIKE; PREPARING SUCH SURFACES FOR USE AND CONSERVING THEM
    • B41N3/00Preparing for use and conserving printing surfaces
    • B41N3/03Chemical or electrical pretreatment
    • B41N3/034Chemical or electrical pretreatment characterised by the electrochemical treatment of the aluminum support, e.g. anodisation, electro-graining; Sealing of the anodised layer; Treatment of the anodic layer with inorganic compounds; Colouring of the anodic layer

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  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Electrochemistry (AREA)
  • Printing Plates And Materials Therefor (AREA)

Description

(No Model.)
J. MULLALY 8; L. L. BULLOCK.
SURFACE PRINTING PLATE.
No. 476,759. Patented'June 7, 1892.
UNITED STATES PATENT OFFICE.
JOHN MULLALY AND LOTHROP L. BULLOCK, OF NEV YORK, N. Y.
SURFACE-PRINTING PLATE.
SPECIFICATION forming part of Letters Patent No. 476,759, dated June '7, 1892. Application filed December 29, 1390- Serial No. 376,121. (No model.)
To all whom it may concern.-
Be it known that we, JOHN MULLALY and LOTHROP L. BULLOCK, citizens of the United States, residing in the city, county, and State of New York, have invented certain new and useful Improvements in Surface Printing Plates, of which the following is a description sufficient to enable others skilled in the art to which the invention appertains to make and-use the same.
Our invention relates to surface-printing plates having a surface of pure or substantially pure aluminium, as described and claimed by us in our patent, No. 459,239, dated September 8, 1891.
An important discovery which we have made, and one which distinguishes clearly the difference between our use of the aluminium plate and the use of the stone, is that we are enabled to regulate the density of the plate, and consequently its porosity, during its manufacture, with relation to the work to be performed on it. Thus a finer grade of work can be produced on a plate of comparatively greater density than that desirable for work of a coarser nature,and this feature of variable density, in a measure, may be considered independently of that of the preparation of the surface by graining. It is true that both the density of the plate and the coarseness or fineness of the graining imparted to the surface act in conjunction in affecting the quality or grade of the plates; but the variation in donsity is of paramount im portancein regulating the actual degree of porosity upon which the absorbent quality of the plate mainly depends.
Our present invention consists, essentially, in adapting the absorbent quality or porosity of our aluminium surface-printing plates to the special character and requirements of the designs to be imposed thereon by regulating the density of said plates. This we accomplish by compressing the aluminium plate or surface, more or less, by mechanical means, as by rolling, &EC- The comparatively light spongy nature of the metal readily admits of this treatment, and the closeness or texture of the plate and printing surface can be thus varied or regulated with uniformity and precision.
In the accompanyingdrawings we illustrate the embodimentof our invention in practical form, although we do not confine ourselves to any special form or construction of parts, since it is obvious that various modifications in detail may be introduced without departing from the essential spirit of our invention.
Figure 1 is a plan of a fiat printing-plate with aluminium printing-surface upon which a design has been imposed; Fig. 2, an edge view of Fig. 1; Fig. 3, a sectional view indicating a plate of metal or other suitable ma terial provided with a facing of aluminium deposited by electrolysis, the thickness of the aluminium being exaggerated for purpose of illustration; Fig. 4, a similar view showing a sheet ofaluminium backed with metal or other suitable material; Fig. 5, a sectional View of a cylindrical printing-roller formed with a printing-surface of aluminium. Fig. 6 is an isometrical view of a comparatively thin sheet or printingplate of aluminium unsupported by any backing, and therefore sufficiently flexible to adapt itself readily to pressure d uring printing.
The printing-plate A as a whole may be formed or built up in any suitable or wellknown manner;provided it is formed with the facing a of aluminium. Thus the facing a may be afforded by the use of a comparatively thick plate a of aluminium attached to a platen or base Z), or a comparativelythin layer a, Fig. 3, of aluminium may be applied to the base or platen b by electro-deposition. Again, a thin plate of aluminium may be secured to the base or platen b by any suitable mechanical means of attachment, .as illus trated in Fig. 4, or to the surface of a rotary printing-roller 1), (indicated in Fig. 5,) or a simple thin sheet of the metal may be used for the printing-plate, which form is especially effective in some forms of printingas, for instance, for use in the hand-press.
In all of the constructions indicated, as well as in the case of others that maybe desirable to comply with the requirements of special use, the essential feature is the layeror plate a of aluminium, affordinga printing-surface a of that metal, and all questions of construction and application are secondary to that.
The density of the sheet or plate a of aluminium, or in which aluminium predominates, is regulated mechanically by compression, as by rolling, hammering, &c.,or by burnishing the surface to decrease its porosity.
It is to be understood that, while we use and claim substantially-pure aluminium for our improved surface-printing process, we do not limit ourselves to the pure article, as any compound plate in which aluminium predominates may be used, if desirable, without departing from the essential spirit of our invention.
What we claim as our invention, and desire to secure by Letters Patent, is
1. The process of manufacturing aluminium surface-printing plates of different prescribed grades of porosity, consisting in regulating the density of the aluminium plates mechani-
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