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供应 杜邦PA66 70G35HSLRA4 70G35HSLX 70G35HSRX

价格 35000.00/吨
起订量 ≥1
所在地 江苏 苏州 可售量 10000吨

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苏州寅旭塑化有限公司

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公司官网: http://18114591336.51pla.com

所在地区:江苏省 苏州市

主营产品: 塑胶原料及产品, 化工原料及产品,

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基本参数

牌号 70G35HLSLRA4 厂商 70G35HSLX
产地 中国 加工 注塑级
阻燃 填充
颜色 本色/黑色 特点 热稳定
水解稳定 70G35HSLX


Zytel? 70G35HSLRA4 BK267

NYLON RESIN
PA66-GF35

CHARACTERISTICS
Processing
Injection Molding
Delivery form
Pellets
Additives
Lubricants, Release agent
Special characteristics
Heat stabilized or stable to heat, Hydrolysis resistant
PRODUCT TEXT

Common features of Zytel? nylon resin include mechanical and physical properties such as high mechanical strength, excellent balance of stiffness and toughness, good high temperature performance, good electrical and flammability properties, good abrasion and chemical resistance. In addition, Zytel? nylon resins are available in different modified and reinforced grades to create a wide range of products with tailored properties for specific processes and end-uses. Zytel? nylon resin, including most flame retardant grades, offer the ability to be coloured.

 

The good melt stability of Zytel? nylon resin normally enables the recycling of properly handled production waste. If recycling is not possible, DuPont recommends, as the preferred option, incineration with energy recovery (-31kJ/g of base polymer) in appropriately equipped installations. For disposal, local regulations have to be observed.

 

Zytel? nylon resin typically is used in demanding applications in the automotive, furniture, domestic appliances, sporting goods and construction industry.

 

Zytel? 70G35HSLRA4 BK267 is a 35% glass fiber reinforced, heat stabilized, hydrolysis resistant polyamide 66 resin for injection molding. It has excellent flow characteristics.

 

PRODUCT INFORMATION

DRY/COND.
TEST NORM
Resin Identification
PA66-GF35
ISO 1043
Part Marking Code
>PA66-GF35<
ISO 11469
ISO designation
ISO 16396-PA66,GF35,M1CGHRW,S12-110
-

REGULATORY

Substance of Very High Concern Report

RHEOLOGICAL PROPERTIES

DRY/COND.
UNIT
TEST NORM
Viscosity number
125/*1
cm3/g
ISO 307, 1157, 1628
Molding shrinkage, parallel
0.4/-
%
ISO 294-4, 2577
Molding shrinkage, normal
1.1/-
%
ISO 294-4, 2577
1: sulfuric acid 96% (110 cm3/g in formic acid 90%)

MECHANICAL PROPERTIES

DRY/COND.
UNIT
TEST NORM
Tensile Modulus
11000/8000
MPa
ISO 527-1/-2
Stress at break
210/135
MPa
ISO 527-1/-2
Strain at break
3/5
%
ISO 527-1/-2
Flexural Modulus
10000/7500
MPa
ISO 178
Flexural Strength
300/230
MPa
ISO 178
Tensile creep modulus, 1h
*/7500
MPa
ISO 899-1
Tensile creep modulus, 1000h
*/5000
MPa
ISO 899-1
Charpy impact strength, 73°F
80/100
kJ/m2
ISO 179/1eU
Charpy impact strength, -22°F
80/80
kJ/m2
ISO 179/1eU
Charpy notched impact strength, 73°F
13/16
kJ/m2
ISO 179/1eA
Charpy notched impact strength, -22°F
10/10
kJ/m2
ISO 179/1eA
Charpy notched impact strength, -40°C
10/10
kJ/m2
ISO 179/1eA
Puncture energy, 73°F
6/-
J
ISO 6603-2
Izod notched impact strength, 73°F
14/16
kJ/m2
ISO 180/1A
Izod notched impact strength, -40°F
10/-
kJ/m2
ISO 180/1A
Izod impact strength, 73°F
60/-
kJ/m2
ISO 180/1U
Izod impact strength, -22°F
60/-
kJ/m2
ISO 180/1U
Hardness, Rockwell, M-scale
110/-
-
ISO 2039-2
Hardness, Rockwell, R-scale
125/117
-
ISO 2039-2
Ball indentation hardness, H 961/30
285/-
MPa
ISO 2039-1
Poisson's ratio
0.34/0.34
-
-

THERMAL PROPERTIES

DRY/COND.
UNIT
TEST NORM
Melting temperature, 18°F/min
260/*
°C
ISO 11357-1/-3
Glass transition temperature, 18°F/min
65/20
°C
ISO 11357-1/-2
Temp. of deflection under load, 260 psi
250/*
°C
ISO 75-1/-2
Temp. of deflection under load, 65 psi
255/*
°C
ISO 75-1/-2
Vicat softening temperature, 90°F/h, 11 lbf
255/*
°C
ISO 306
Coeff. of linear therm. expansion, parallel
22/*
E-6/K
ISO 11359-1/-2
Coeff. of linear therm. expansion, normal
69/*
E-6/K
ISO 11359-1/-2
Coeff. of linear therm. expansion, Normal, -40-23°C
62/*
E-6/K
ISO 11359-1/-2
Coeff. of linear therm. expansion, Normal, 55-160°C
140/*
E-6/K
ISO 11359-1/-2
Coeff. of linear therm. expansion, Parallel, -40-23°C
23/*
E-6/K
ISO 11359-1/-2
Coeff. of linear therm. expansion, Parallel, 55-160°C
14/*
E-6/K
ISO 11359-1/-2
Thermal conductivity of melt
0.22
W/(m K)
-
Spec. heat capacity of melt
2300
J/(kg K)
-

FLAMMABILITY

DRY/COND.
UNIT
TEST NORM
Burning Behav. at 60mil nom. thickn.
HB/*
class
IEC 60695-11-10
Thickness tested
1.5/*
mm
IEC 60695-11-10
Burning Behav. at thickness h
HB/*
class
IEC 60695-11-10
Thickness tested
0.7/*
mm
IEC 60695-11-10
Oxygen index
21/*
%
ISO 4589-1/-2
Glow Wire Flammability Index, 80mil
650/-
°C
IEC 60695-2-12
Glow Wire Flammability Index, 120mil
750/-
°C
IEC 60695-2-12
FMVSS Class
B
-
ISO 3795 (FMVSS 302)
Burning rate, Thickness 1 mm
412
mm/min
ISO 3795 (FMVSS 302)
2: [Individual values: DNI B39 DNI DNI B41],

ELECTRICAL PROPERTIES

DRY/COND.
UNIT
TEST NORM
Volume resistivity
1E13/1E9
Ohm.m
IEC 62631-3-1
Surface resistivity
*/1E13
Ohm
IEC 62631-3-2
Comparative tracking index
450/-
-
IEC 60112

OTHER PROPERTIES

DRY/COND.
UNIT
TEST NORM
Humidity absorption, 80mil
1.7/*
%
Sim. to ISO 62
Water absorption, 80mil
5.5/*
%
Sim. to ISO 62
Density
1410/-
kg/m3
ISO 1183
Density of melt
1270
kg/m3
-
Water Absorption, Immersion 24h
1.1/*
%
Sim. to ISO 62

VDA PROPERTIES

DRY/COND.
UNIT
TEST NORM
Odor test
3
class
VDA 270
Fogging, G-value (condensate)
0.5/*
mg
ISO 6452

INJECTION

DRY/COND.
UNIT
Drying Recommended
yes
Drying Temperature
80
°C
Drying Time, Dehumidified Dryer
2 - 4
h
Processing Moisture Content
≤0.2
%
Melt Temperature Optimum
295
°C
Min. melt temperature
285
°C
Max. melt temperature
305
°C
Max. screw tangential speed
0.2
m/s
Mold Temperature Optimum
100
°C
Min. mold temperature
70
°C
Max. mold temperature
120
°C
Hold pressure range
50 - 100
MPa
Hold pressure time
3
s/mm
Ejection temperature
210
°C

CHEMICAL MEDIA RESISTANCE

Acids
Acetic Acid (5% by mass), 23°C
Citric Acid solution (10% by mass), 23°C
Lactic Acid (10% by mass), 23°C
Hydrochloric Acid (36% by mass), 23°C
Nitric Acid (40% by mass), 23°C
Sulfuric Acid (38% by mass), 23°C
Sulfuric Acid (5% by mass), 23°C
Chromic Acid solution (40% by mass), 23°C
Bases
Sodium Hydroxide solution (35% by mass), 23°C
Sodium Hydroxide solution (1% by mass), 23°C
Ammonium Hydroxide solution (10% by mass), 23°C
Alcohols
Isopropyl alcohol, 23°C
Methanol, 23°C
Ethanol, 23°C
Hydrocarbons
n-Hexane, 23°C
Toluene, 23°C
iso-Octane, 23°C
Ketones
Acetone, 23°C
Ethers
Diethyl ether, 23°C
Mineral oils
SAE 10W40 multigrade motor oil, 23°C
SAE 10W40 multigrade motor oil, 130°C
SAE 80/90 hypoid-gear oil, 130°C
Insulating Oil, 23°C
Motor oil OS206 304 Ref.Eng.Oil, ISP, 135°C
Automatic hypoid-gear oil Shell Donax TX, 135°C
Hydraulic oil Pentosin CHF 202, 125°C
Standard Fuels
ISO 1817 Liquid 1 - E5, 60°C
ISO 1817 Liquid 2 - M15E4, 60°C
ISO 1817 Liquid 3 - M3E7, 60°C
ISO 1817 Liquid 4 - M15, 60°C
Standard fuel without alcohol (pref. ISO 1817 Liquid C), 23°C
Standard fuel with alcohol (pref. ISO 1817 Liquid 4), 23°C
Diesel fuel (pref. ISO 1817 Liquid F), 23°C
Diesel fuel (pref. ISO 1817 Liquid F), 90°C
Diesel fuel (pref. ISO 1817 Liquid F), >90°C
Diesel EN 590, 100°C
Salt solutions
Sodium Chloride solution (10% by mass), 23°C
Sodium Hypochlorite solution (10% by mass), 23°C
Sodium Carbonate solution (20% by mass), 23°C
Sodium Carbonate solution (2% by mass), 23°C
Zinc Chloride solution (50% by mass), 23°C
Other
Ethyl Acetate, 23°C
Hydrogen peroxide, 23°C
DOT No. 4 Brake fluid, 130°C
Ethylene Glycol (50% by mass) in water, 108°C
1% nonylphenoxy-polyethyleneoxy ethanol in water, 23°C
50% Oleic acid + 50% Olive Oil, 23°C
Water, 23°C
Water, 90°C
Phenol solution (5% by mass), 23°C
Coolant Glysantin G48, 1:1 in water, 125°C

DIAGRAMS

Viscosity-shear rate Zytel? 70G35HSLRA4 BK267 1E2 1E3 1E4 Shear rate in 1/s 1E1 1E2 1E3 Viscosity in Pa.s 285 °C 295 °C 305 °C
Shearstress-shear rate Zytel? 70G35HSLRA4 BK267 1E2 1E3 1E4 Shear rate in 1/s 1E4 1E5 1E6 Shearstress in Pa 285 °C 295 °C 305 °C
Dynamic Tensile modulus-temperature Zytel? 70G35HSLRA4 BK267 (dry) -100 0 100 200 300 Temperature in °C 1E1 1E2 1E3 1E4 1E5 Dyn. Tensile modulus in MPa 0 0.1 0.2 0.3 0.4 tan d 1E-1 1E0 1E1 1E2 1E3 E'' MPa
Stress-strain Zytel? 70G35HSLRA4 BK267 (dry) B - Break 0 2 4 6 8 10 Strain in % 0 100 200 300 Stress in MPa B B B B B B B B B B -20 °C 0 °C 23 °C 40 °C 60 °C 90 °C 120 °C 150 °C 180 °C 220 °C
Stress-strain Zytel? 70G35HSLRA4 BK267 (cond.) B - Break 0 2 4 6 8 Strain in % 0 100 200 300 Stress in MPa B B B B B B B B -20 °C 0 °C 23 °C 40 °C 60 °C 90 °C 120 °C 150 °C
Secant modulus-strain Zytel? 70G35HSLRA4 BK267 (dry) B - Break 0 2 4 6 8 10 Strain in % 0 5000 10000 15000 20000 Secant modulus in MPa B B B B B B B B B B -20 °C 0 °C 23 °C 40 °C 60 °C 90 °C 120 °C 150 °C 180 °C 220 °C
Secant modulus-strain Zytel? 70G35HSLRA4 BK267 (cond.) B - Break 0 2 4 6 8 Strain in % 0 5000 10000 15000 Secant modulus in MPa B B B B B B B B -20 °C 0 °C 23 °C 40 °C 60 °C 90 °C 120 °C 150 °C
Stress-strain (isochronous) 100 °C Zytel? 70G35HSLRA4 BK267 (measured on Zytel? 70G35HSLX BK357) (dry) 0 0.2 0.4 0.6 0.8 Strain in % 0 10 20 30 40 Stress in MPa 1 h 10 h 100 h 1000 h
Creep modulus-time 100 °C Zytel? 70G35HSLRA4 BK267 (measured on Zytel? 70G35HSLX BK357) (dry) 1E0 1E1 1E2 1E3 Time in h 4500 5000 5500 6000 Creep modulus in MPa 5 MPa 10 MPa 15 MPa 20 MPa 25 MPa 30 MPa
Stress-strain (isochronous) 130 °C Zytel? 70G35HSLRA4 BK267 (measured on Zytel? 70G35HSLX BK357) (dry) 0 0.5 1 1.5 2 Strain in % 0 10 20 30 40 50 Stress in MPa 0.1 h 1 h 10 h 100 h 1000 h
Creep modulus-time 130 °C Zytel? 70G35HSLRA4 BK267 (measured on Zytel? 70G35HSLX BK357) (dry) 1E-1 1E0 1E1 1E2 1E3 Time in h 2000 2500 3000 3500 4000 Creep modulus in MPa 10 MPa 20 MPa 30 MPa 40 MPa 45 MPa
Stress-strain (isochronous) 180 °C Zytel? 70G35HSLRA4 BK267 (measured on Zytel? 70G35HSLX BK357) (dry) B - Break 0 1 2 3 4 Strain in % 0 20 40 60 Stress in MPa B 1 h 10 h 100 h 1000 h
Creep modulus-time 180 °C Zytel? 70G35HSLRA4 BK267 (measured on Zytel? 70G35HSLX BK357) (dry) 1E0 1E1 1E2 1E3 Time in h 1500 2000 2500 3000 3500 Creep modulus in MPa 10 MPa 20 MPa 30 MPa 40 MPa 50 MPa
Stress-strain (isochronous) 200 °C Zytel? 70G35HSLRA4 BK267 (dry) 0 1 2 3 4 Strain in % 0 10 20 30 40 Stress in MPa 1 h 10 h 100 h 1000 h
Creep modulus-time 200 °C Zytel? 70G35HSLRA4 BK267 (dry) 1E0 1E1 1E2 1E3 Time in h 0 1000 2000 3000 4000 Creep modulus in MPa 5 MPa 10 MPa 15 MPa 20 MPa 25 MPa 30 MPa
Specific volume-temperature (pvT) Zytel? 70G35HSLRA4 BK267 0 100 200 300 Temperature in °C 0.65 0.7 0.75 0.8 Spec. volume in E-3 m3/kg 0.1 MPa 40 MPa 120 MPa 200 MPa
Tensile modulus-temperature Zytel? 70G35HSLRA4 BK267 (dry) -100 0 100 200 300 Temperature in °C 1E3 1E4 1E5 Tensile modulus in MPa
Tensile modulus-temperature Zytel? 70G35HSLRA4 BK267 (cond.) -50 0 50 100 150 Temperature in °C 1E3 1E4 1E5 Tensile modulus in MPa
Coeff. of linear thermal expansion Zytel? 70G35HSLRA4 BK267 -50 0 50 100 150 Temperature in °C 18 19 20 21 22 CLTEp in E-6/K 60 80 100 120 140 CLTEn in E-6/K
Tensile Fatigue, 10Hz, R=0.1 Zytel? 70G35HSLRA4 BK267 (dry) 1E3 1E4 1E5 1E6 1E7 Cycles 40 60 80 100 120 Stress in MPa 23 °C 150 °C 200  




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