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PLASTICS
FEBRUARY, 1948
FEBRUARY, 19*8
PLASTICS
85
pur sq. in. and a temperature of 150 degrees C. for one hour. The article produced was hard, insoluble, clear, transparent and free from fractures'
Intcrpolymerization products of allyl crolonatc and unsuturalcd aIkyd resins are suitable for coatings or moulded articles. They are formed from allyl crolonatc and at least one unsaturated alkyd resin.
Example: Allyl crolonatc, 10 parts, and , dieihylcne glycol malcute, 90 parts,
yielded a hard, tough, insoluble and infusible interpolyrner when co-polymerized for 2 hrs. at 80 degrees C. in the, presence of 0.5 part benzoyl peroxide. When the proportions of ally! crotpnate and diethylene glycol maleate were ' reversed, a white, opaque, non-flowing gel was obtained after 24 hrs.' heating at -.80 degrees C. and a fairly hard gel with rubbery characteristics after healing for 144 hrs.,-`"
Co-polymers with Vinyl or Vinylidcne Compounds
To illustrate the variation in properties of co-polymers of vinyl compounds ;md imsatmuled allyl esters and clhers, vinyl acetate may . be mixed with I/25th, 1/I0th. I and 3 pier cent, of allyl crotonatc. I per cent, of benzoyl peroxide being added in each instance, and healed in completely lilted iron Masks for 90 hrs. at 35 degrees C,, the soft, flexible polymers being removed from the flasks and hardened by heating in air for 15-30 mins, at 100-120 degrees C.
A product prepared in this manner from vinyl acetate alone is hard at room temperature, but is so soft at 120 degrees C. as to be almost liquid, and is easily , soluble in acetone. The products con taining allyl crotonate are equally hard at room temperature, but much less plastic and soluble, Ihc product containing l/25lh per cent, being a soft plastic at 12(1 degjecs C. and dissolving slowly in acetone. The product containing I/I0th per cent, being still plastic at 120 degrees C., but only partly soluble in acetone; thpse containing t or 3 per cent, are
elastic but not plastic at 120 degrees CH and swelling somewhat in acetone with
out dissolving.'1 *
, REFERENCES
(1) Shasvinijan Chemicals Lid,, mpuilidud rrtwi*, C. C. Ggfin, 1927. (2) U.S.P. 2,310.9W (1943), /. . Muscat, M. A. Pollack, F. Simla and n. A. Fronto, to Pittsburgh Plate Clou Co. (3) BJ>. 494.575 (1938). Distiller, Co. Lid., H. M. Stanley and H. P. Staudinger. (4) B.P. 530,37) n40). Distiller, Ca. Ltd. (S) B.P. 533,174 (1941), Distiller, Co. Ltd. (8) USJ>. 2,330.527 (1943). H, P- Stesudinfer, to Distillers Co. Ltd. (7) B.P. 547,328 (1942), BriliA Thoauon-Houston Co. Ltd, (*) US.P. 2^65,640 (194!), B. S. Carney andC. H. Alexander, to B. F. Goodrich Co. (9) U.S.P. 2,306,139 (1942). M. A. Pollack, to Piltsha,,k Plato Glass Co. (10) US.P. 2.260005 (1941), G. F. D'Alelio, to Ceneral Electric Co. (11) US.P. 2,202^46 (1940), & S. Garvey aad C. H. Ala-
ander, tB,F. Goodrich Co.
CELLULOSE ACETATE PLASTICS {continued jrctn page 69.)
Mottles can be simply made by blend ing two batches of stock of different vis cosity and different colour at the rolling stage and then ^pressing as before. Another method is to drop dice cut from a blanket of one colour into stock of another colour whilst on the lulls, again followed by sheeting and pressing, etc. This type of treatment, however, can only produce simple and comparatively uncont rolled colour ctTccts. In some cases alter nate sheets of different colours are pressed together, sliced, and the sliced sheets cut down and stacked on end and rewelded into a block.
For moire-type variations, the- bloet would then be cut, restacked and welded for a third lime. Grained-ivory finishes can be made by welding a block made up of alternate thin hides of dilferent shades of ivory, followed by slicing, cutting down, stacking vertically and rewelding. Finishes such as imitation mother-ofpearl and tortoiseshell are easy to make when only u rough imitation is required, but to produce a really first-class sheet, closely resembling he natural product, great skill is required; the exact method of producing these materials is kept a close secret.
{To 6c continual.)
Health Hazards for an! l0Acr^fe^?
Some medico! aspects of handling rubber
and plathcr, In manufacture or in uie. are iutrtftd by Or. George Blaine, of the itrangewayi Research Laboratory, Cambridge, jo the issue of "Chemical Products" far No,-Det,, 1947. By hind permission of that ' journal we give the' fallowing extracts.
reaction thus dejwndsShjIitiiitJjp on the contents of the plastic mixTV. C*
Polyvinyl chloride is extensively used in the production of anasthetic airways, etc., - in medical practice. Stoppers of penicillin solution containers cun also be
made in p.v.c. provided the least reactive
THE basic property to be considered type of material is used; with some from the me'dical point of view for polyvinyl stoppers rapid loss of penicillin
any material which is in contact with potency has been recorded.
human tissues', or to which such tissues , The hazards of manufacture for
are exposed, is the, reaction elicited by i.t. acrylics are of a different kind. The
A material cart be safety handled or used methyl methacrylate monomer is a strong
only if it is proved by suitable experi - respiratory irritant, and good ventilation
ments that it does not give rise to toxic 1 is essential to reduce the risk of exposure.
reactions. If the material is both indis In larger concentrations it may cause
pensable and somewhat toxic, precautions irritation and inflammation of the
have to be devised tq minimize damage respiratory passages, inhaled, it may act
to health.
as a narcotic and convulsant. Persons
The fact that rubber, manufacture is not used to it are liable to get headaches
subject to the Dangerous Trades Regu when exposed to minimal concentrations.
lations under Section (>0 of Ihc Factories Act is due to the solvents and accelerators which arc used.
Skin irritation and resulting dermatoses
It has little local action on the skin and few cases of dermatitis arc on tecoid. The polymer, however, produces no reaction whatsoever.
jre the most common sequels of exposure
Methyl methacrylate is used on a large
la these solvents and accelerators. The scale in dental laboratory practice. Since
toxicology of handling polyvinyl com the dental technique involves handling
pounds is similar to that of rubber proces- and mixing into a doughy or paslc-like
iing. Processing shops in the plastics ..mass, and is a process often done by
industry, however, are, on the whole, of hand, the lack of cases of dermatitis is
newer design than rubber factories and good evidence of its non-toxieity. In
the hazard of dustborne irritants and - animal experiments, too, acrylic plastic
lames is therefore reduced.
' was found to be the least irritant of all
An investigation of. polyvinyl chloride plastics, creating only a minimal tissue
compounds in the course of the last year reaction; there is no reaction from the revealed that the majority of welt-cured fully polymerized material.
tad produced products have a good (issue tolerance. The tissue reaction elicited by polyvinyls is always a local one; it is marked by a defensive junction on Ihc part of the tissue into which it is embedded. Material containing no dye etkited the least i.amount of tissue ttactbn.' The dyes and plasticizers used
teparately in control experiments,' were rirong protoplasmic poisons. The tissue
Further evidence of the non-toxicity of methyl methacrylate is afforded in - brain surgery with it new method of using this plastie. Monomer and polymer mixed in suitable proportions, rapidly become tacky and soon after become fully plastic, in which stage the mixture can be moulded. This whole process can be done under sterile conditions,
{Continued on page t08.)
UCC
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10S
PLASTICS
FEBRUARY. 1944
HEALTH HAZARDS FOR P.V.C. AND ACRYLICS?
iCcNJi.'iuit/ front AOL'r 83.)
nude the easier by the strong antiseptic properties of the monomer. Such plastic masses have been implanted into skull gaps and the skin sewn over them whilst the moulded mass was still comparatively soft. Rapid polymerization takes place under normal conditions inside the body tissues, and during this process some free monomer escapes. There were, however, no general reactions on the part of the patients thus treated.
Adhesive films for surgical use are' also made from acrylics. Here there
does not seem to be any. contra-indication to the use of such films, other than irritable or inflamed skin.
The cellulose plastics were among the first known plastics used as surgical appliances and dental prostheses. They
set up a fairly marked irritant reaction, but it must be kept in mind that solvents and plasticizers are apt to create the reaction. The risks, however, are both a general and a local type of reaction, as with rubber solvents and accelerators; the precautions to be taken with regard to dust, fume and gas control are the same and the need for effective barrier creams or emulsions cannot be too strongly emphasized.
Vol. XII. No. 130
MARCH, 1948
Profif/etorr
AUhoging Director
Editor'
Office*
HTf5*JLE PR|;ss LIMITED BOLAND E. DANGERF1ELD
Index to Advertisers
Page
Albert*, Government of
x Imperial Chemical Industries, Ltd,
Almex Ltd. ,.
xJviii Irene Products, Ud...................
Ashdowns Ltd...
Jetsop, Wn,, I Sons, Messrs.
Bat*. A. E, ..........................
Bafccllce Ltd.
., ..
Bardey* Bank Ltd......................
Barber lit Duffy, Ltd..................
B.B. Chemical Co., Lid.
Birkby't Ltd................................
Blackfriar* Engineering Co., Ltd.
British Gas Council
British Gcon, Ltd.......................
British Industrial Plastics, Ltd,
British Moulded Watties, Ltd.
British Mouldcx Rubber Co., Ltd.
British Resin Produces Led. ..
Butcher, Henry, Co.
BX Plastic*. Ltd.
Byton Appliance Co., Ltd. ..
Cattiin, Ltd. Chamberlain Willow*
Cohen. George, Sons Co., Ltd. Cole, E. K., Ltd.......................... Cole, R. H., Co., Ltd. Cotlis, i., Sons, Ltd. Cornercrofc (Plastics), Ltd. .. Cryttalite, Ltd. (and Subsidiary
,. hri ,. xxxfv
u .. lx ,. xiviii
.. XJtxifl
.. xlvi xxiv
xliii Nx .. xxxvl
.. I
lx InsiIido Front Cover
Ivi
Insldlie Back Cover
.. Mil
.. iv
. . aclie
xxMii xlix
xxxi
.. xsvi
shies)
.. xl
Jones. E. H. (Machine Tools), Ltd* Kent Mouldings Kcnur*. T. F-, lu Law, f. W.. Sons, Ltd. Londex, Ltd. . M.C.L. and Ropotitfea* Ltd, ., M.C.M. {Tools). Ltd. .. Melwood Thermoplastic!, Ltd. Micanit* Insulators Co., Ltd., The
Mica Product* Ltd.
Minittrr ol Fuel ud Power Ministry of Labour ..
Ministry o( Supply Monsanto Chemicals, Ltd,
Monsanto Chemicals Ltd, (Lunron). Moulded Product*, Lid. National Saving* Newell Engineering Co,, Page, W,, Sons moil Engineering Co., Ltd., TJm Peace, Harold E., Co., Lid. Potu Engineers, Ltd.
Radio Heaters Ltd. Read Brea. (Enflsstrind, Ud. Rubber Improvement, Ltd. ..
Detouecer Bros,, Ltd,.,
Runbaken Electrical Products, Ltd, .
Dingwall, T. Ltd. ..
(viii Schorl Matalialag Process, t
Dohro. Ltd.
Ixi Scott, Bader Co. Ltd,
Dominion Export Co., Ltd. ,.
Seaward Engineering Ltd,
Duraplex (Plastics) Ud.
..
Sehotapo
Duratube Wire, Ltd,
.. xlvi) SJIcosna Ltd.
Erinoid, Ltd. ..
.. ..
Bade Cover Swala Cowliahaw, Ltd,
Ether. Ltd....................................
.. xM Ttnaola*. Ltd. * ..
Evans, Frederick W,, Ltd. Ferguson, Jimes, Sons, Ltd.
.. lx Tarry, Herbert, Son*, Ltd..
Ml Thompson Norris Ltd.
Ferodo, Ltd...........................
.. i* Toolmakers Design* (Coventry), Ud.
Firth, Thoa., John Brown Ltd.
.. Vi Trapleex, Ltd, ..
Firth-Vicker* Stainless Steels, Ltd. Floxtol Engineering Co., Ltd.
I Tuffi*. RuuoU Co.. Ltd. ..
llx Turner Brea. Asbwtoa Cm* Ud,
Foe Chemical Engineering Work* Li
.. Mi Tumor Mfg, Co, Ud,
Fraser, Andrew, Ltd. .. ,.
Galea, Gilbert .,
.. .
,. vili U.K. Ptsstics. Ltd. ,,
Ul UidlW Ebo.lt. loritru, ltd.
oon
Gardner, Wn Sons (Gloucester), Ltd.
.. XXXV Unlnrol Tool., Ltd. .
Gee, William, Ltd.
xjiv Util**, Lid. ..
Gosheron, John, Co,, Ltd, C.R.L. Plastics, Ltd....................
Ul VI*eo En,i,,v]ni Co. Lid. .. Ivi ' Wriwra Kueio udr..
i\i Haigh, John, Co., Ltd.
.. Ilv Wltilni Tup* A A1>* Hri, <Sal*>, I
HartfieM industrial Products Ltd,
.. Ivi VniunMa ItuMor Linux. Ud.
CONTENTS
Editorials ..
Page
110
Flexible Moulds from Vinyl
Compounds, by Dr. H.
Reichard
113
Cellulose Acetate Plastics,
by Vivian Stannett
IIS
Cup and Saucer of Novel
Design......................... 125
World's Industry Employs
Plastics' ......................... 126
New Uses for Nylon Mono
filament in Brush Making 128 .
Plastics In Germany ,. 130
Perspex Caskets
131
Page
Hard Nickel Electro-formed
Moulds, by P. Spiro
132
Letters to the Editor
137-
Production News
139
New Productions from the
Moulding Shops..
141
Quality Control in Plastic
Moulding, by W. M. Halliday......................... 142
Microscopic Examination
of Plastic Products, by
J. H. Wreddon.............. 1S2
Patent Review
161
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