Document XRM9aa7ZYarx4b8ppeeYn2Dw
POLYPHENYLENE RESINS
A High Heat Resistant Resin System
DATA SHEET - DEVELOPMENT PRODUCT AUGUST, 1968
Introduction A technique has been developed by Monsanto for the preparation of poly phenylenes - a thermo-oxidatively stable polymeric system that can be reinforced with fibres to yield useful composites.
This data sheet gives information on the polyphenylene prepolymer 1711 which is the basic component for crosslinking or chain extension and leading to high molecular weight, infusible polyphenylene resin. The method of crosslinking using PP Curing Agent B1 is described along with information on the fabrication of composites from asbestos and high modulus carbon fibre. Properties of laminates made in the laboratory are given.
The information contained in this bulletin is, to our best knowledge, true and accurate, but all recommendations or suggestions are made without guarantee, since the conditions of use are beyond our control. Monsanto Chemicals Limited disclaim any liability incurred in connection with the use of these data or suggestions.
Furthermore, nothing contained herein shall be construed as a recommendation to use any product in conflict with existing patents covering any material or its use.
Monsanto 10-18 Victoria Street London SWl 01-222 5678 1 Place Madou Brussels 3 02-19.11.01 9 Rue d'Argenson Paris (8) 265.65.20
0120924
TOWOLDMON0022732 WATER_PCB-00007201
PROPERTIES OF POLYPHENYLENE PREPOLYMER 1711 (Typical)
Physical Description
A mixture of low molecular weight polyphenylenes
Form
--
Colour
-
Softening Range
-
Boiling Point
-
Specific Gravity 25C
-
Solubility (gm/100 ml solvent) -
Solid (coarse powder) Dark Brown 133 - 175C above 400OC 1. 17
Solvent
Diphenyl Ether Toluene Chlorobenzene 1, 2 Dichloroethane Benzene Chloroform Dimethyl Formamide Water Ethanol Petroleum Ether
At Reflux Temp.
150 140 130 100
85 85 20 i ) Insoluble )
At 25C
30 40 50 45 35 50
5
Functional
The propolymer crosslinks with PP Curing Agent B1 when heated to above 275C and this may be done in the presence of a fibre support to yield composite structures.
Monsanto
0120925
2
TOWOLDMON0022733 WATER_PCB-00007202
POLYPHENYLENE/ASBESTOS LAMINATES
The following procedure is recommended when using chrysotile asbestos felts:
Impregnating Solution This is prepared from:
Polyphenylene Prepolymer 1711 PP Curing Agent B1 PP Catalyst C30 Chlorinated aliphatic hydrocarbon solvent
260 gm 140 gm 0.22 ml 2000 ml
With chloroform as solvent, a 17.5% w/v solution is obtained of density 1.45 gm/ml at 25C. Solution of the prepolymer is readily achieved if the powder is stirred slowly into the warmed solvent.
Asbestos Composite Fabrication
The asbestos felt contained in a suitable tray is completely saturated with impregnating solution. After lightly rolling, the felt is placed on a stainless steel mesh to dry either at room temperature under vacuum or at 50C.
Pre-Pressing
The felts are placed between two sheets of 5 thou aluminium foil that have already been sprayed with PTFE release agent. A pre-press treatment of 500 - 1000 p. s. i. at 130-140C for 5 minutes is optional but does assist the processing at the next stage.
Pressing Stage
Using a well ventilated press and with its platten temperature at 310C, the impregnated felts are inserted and kept under a slight positive pressure to ensure maximum heat transfer. This condition is maintained for 6 minutes in the case of a 12" x 12" x 1/8" board, during which time dry SO2 and HC1 gases are evolved. Then full pressure in the range of 50Q-1000 p. s. i. is applied. Pressure is released three times at 3 minute intervals. Pressing is complete after 4 hours and the laminate ejected when the temperature drops to 100C whilst maintaining pressure.
Monsanto
0120926
3
TOWOLDMON0022734 WATER_PCB-00007203
Post- Cure
The following schedule is recommended for post-curing the laminate
2750C........................................... 24 hours 3000 C........................................... 24 hours 325C........................................... 24 hours
Total loss due to cure volatiles estimated on the original weight of resin solids is approximately 25%.
For other forms of asbestos, e. g. flock, woven fabric the same general procedure will be applicable but the solids level of the impregnating solution may need adjustment.
Monsanto
012092 7
4
TOWOLDMON0022735 WATER_PCB-00007204
PROPERTIES OF THE P. P. /ASBESTOS LAMINATE
Using chrysotile asbestos the following laminate properties were obtained in the laboratory. The values quoted are typical.
0
1 4-
Resin content (w/w%)
Specific Gravity
Flexural Strength* (psi) Initial 25C 300C
Flexural Modulus* (psi)
Tensile Strength** (psi) Initial 25C 200C 300C
1.4 - 1. 7
30 - 37,000 25 - 30,000 1. 8 - 2. 5 X 106
20 - 27,000 15 - 20,000 10 - 14,000
Ageing Life
(Time taken for flex strength to fall below 5,000 p s
At 200C
240OC 300C 350C 400C
6-12 years (by extrapolation)
7000 - 15, 000 hours
1,000 - 1,500 hrs.
200 - 400 hrs. 30-150 hrs.
Chemical Resistance
Initial results have shown good hydrolytic and solvent resistance. (Further work is in progress on more resistant supports).
* A STM D7 90-66 ** ASTM D638-64T
Monsanto
0120938
5
TOWOLDMON0022736 WATER_PCB-00007205
POLYPHENYLENE/HIGH MODULUS CARBON FIBRE COMPOSITES
For the preparation of carbon fibre composites a mould is used and the time in press before application of pressure is dependent on the size of the mould. The impregnating solution should be 20-25% w/v, but otherwise the procedure for fabrication is essentially that used for asbestos.
Certain properties of the composite are affected by various surface treat ments of the fibre, as illustrated in the following table:
PROPERTIES
Resin Content (w/w%) Specific Gravity Flexural Strength* (psi)
Initial 25C 240C
Flexural Modulus** (psi)
Ageing Life
Untreated Fibre
30 - 50 1. 3 - 1. 5
Treated Fibre
30 - 50 1.4 - 1.5
50 - 80, 000 40 - 55,000
80 - 116,000
12 - 13 x 106
12 - 17 x 106 (max. value found 23 x 106)
Similar to asbestos
* ASTM D790-66 ** ASTM D638-64T
Monsanto
6
TOWOLDMON0022737 WATER_PCB-00007206
Chemical Resistance
Tlic following results on polyphenylene/carbon fibre (untreated) composites were obtained after 2, 000 hours unless otherwise stated.
Knvironment
'1'cst Temp. C
Flexural Strength PS1 (Cold)
Initial
Final
Weight Loss
Dimensional Change %
H2SO4 (Cone. ) II2SO4 (50% w/w) UNO;; (Cone.)
R. T. 90 C
R. T. 90C
90 C
11N0;j (50% w/w)
n. t. 90C
IICl (Cone.)
<)0C
HC1 (7. 5% w/w)
90C
UK (40% w/w)
R. T.
NaOII (75% w/w)
90C
NaOH (SO'J.w/wl
R. T.
NaOH (20% w/w)
90C
Na Cl (20% w/w)
R. T.
NnOCl (15. (S% w/ v) R, T.
H2O2 {100 vol. )
K. T.
I). M. V.
90C
Pyridine
90C
67, 300 59, 700 67, 000 59, 700 5 9, 700
G7, ;soo 5 9, 700 59, 700 57. 800 07,300 57, 800 07,300 57,800 07,300 67,300 07.300 57,800 57,800
70,300
Nil
GO,900 Slight increase
Nil Nil
63, 300 57,700
Nil Nil
Nil Nil
Nil After 69G hrs. sample swollen but had sonic strength. After 1784 hrs strength less than 3,000 psi.
62,200 24,300
* 12. 7
Swelling at ends < 2.6
58, 600
Nil
Nil
64, 800
Nil
Nil
67,100
Nil
Nil
64,200
Nil
Nil
71, 700
Nil
Nil
67,500
Nil
Nil
74,100
Nil
Nil
63, 900
Nil
Nil
72,700
Nil
Nil
49, 100
Nil
-1. 0
17,000 After 288 hrs.
No change after drying
Very Swollen
K fleet of Steam and boiling Water
Stea m Roiling Water
100C 100C
67,300 64,000
65,000 63, 100
Nil Nil
Nil Nil
The pure resin shows good resistance to cone. HC1, II2SO4 and pyridine after 2,000 hrs. at 90C. elemental analysis showed that the resin was essentially unchanged. Treat ment with cone. HNO3 however results in nitration of the resin.
7
Monsanto
0120930
TOWOLDMON0022738 WATER_PCB-00007207
Storage and Handling
The impregnating solution made up of Polyphenylene Prepolymer 1171, PP Curing Agent B1 and Catalyst C30 is best stored in a cool place. Storage life can be increased by refrigerated storage. The Prepolymer 1171 is stable in the solid state and in solvent. Curing Agent B1 is stable in the solid state if kept dry, but in solution containing alcohol, it slowly releases HC1. Catalyst C30 contains alcohol solvent and is stable. All solutions should preferably be contained in glass lined vessels especially if long storage times are involved.
When handling this resin system the normal precautions should be taken regarding the use of protective clothing, eye shields, etc. During the curing operation, volatile products are released, and these are dry SO2 and HC1 gases plus solvent. Mechanical exhaust ventilation should be associated with the press so as to vent these vapours to the external atmosphere.
Patents
Monsanto have British Patent No. 1, 037, 111 and other patents and patent applications covering the polyphenylene resins and their production in the United Kingdom and other countries.
0120931
Monsanto
8
TOWOLDMON0022739 WATER_PCB-00007208