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Akro-Plastic Akroloy® PA GF 50 (2706) PA 6.6 & PA6I/6T Dry, 50% Glass Filled

Category Polymer , Thermoplastic , Nylon , Nylon 66 , Nylon 66, 50% Glass Fiber Filled
Manufacturer Akro-Plastic
Trade Name Akroloy®
Port Shanghai port,China
Trade Terms FOB, CFR, CIF
Payment Terms L/C, T/T, Western Union
Download PDF Akro-Plastic Akroloy® PA GF 50 (2706) PA 6.6 & PA6I/6T Dry, 50% Glass Filled.pdf
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Material Notes:
One of the most characteristic properties of polyamide (PA 6.6) is the absorption of moisture. This essentially leads to increased toughness and elongation at break, to name the most important parameters. On the other side, there are important diminished design properties, such as rigidity, strength and creep modulus. It is also clear that the water molecules diffused into the polymer require a certain space, so that the dimensional stability suffers, as well. Applications that up to now have been manufactured of die-cast metals, usually involve extremely high demands on synthetic materials, running contrary to the above mentioned disadvantages. Even high levels of reinforcement in standard polyamides on the basis of PA 6 or PA 6.6 with, for example, 50 % or 60 % glass fibres, still exhibit drastic changes in mechanical characteristics. By blending of PA 6.6 with a partially aromatic CoPA (PA 6I/6T), it is possible to significantly reduce the influence of moisture on the product characteristics. While the drop in rigidity and strength of PA 6.6 GF 50 in a standard climate is still at approx. 25 %, a partially aromatic blend nevertheless exhibits a drop of less than 10 %. Furthermore, it becomes apparent that the toughness remains virtually unaffected. As a result of these findings, the swelling behaviour is improved, as well, which is favourable for dimensional stability. At the same time, this material mix also increases the glass transition temperature range. All in all, partly aromatic PA 6.6-Blends offer exactly the characteristics that are demanded by designers and users.Processing: AKROLOY® PA is based on a semi-crystalline PA 6.6 and an amorphous CoPA. This essentially determines the processing conditions. Accordingly, the melting point of AKROLOY® PA is at approx. 255 °C and is not influenced by the CoPA. With increasing temperatures, the amorphous contents provide a disproportionately low viscosity. The result is a very good reproduction of mould surfaces and a mass temperature that is up to 30 °C lower than required by comparable products. This results, aside from high quality surface finishes, frequently in reductions of cycle times, as well. Owing to production conditions, this must be verified in each individual case. Overall, AKROLOY® PA represents a step towards energy savings, in particular, when energy costs are compared to those in metal production and processing.Due to increasing cost pressure in many industrial sectors, AKROLOY® PA will become a very interesting alternative material in the area of substitutes for metal diecasting. Aside from already mentioned advantages in the service life of the mould, the omission of post processing allows an average cost reduction of up to 50 % – and more. The following list comprises imaginable and suitable areas of application, grouped by segments.Applications:Automotive Industry:Ignition key switch housingDoor handle componentsdoor lock componentsInstrument panels (centre console)Arm restsElectric motor housingsWiper componentsCarriers for wood decor stripsSeat sliding mechanisms, etc.Sanitary Installation:Single lever tapsWater filter housingsHousing for bath tapChrome-plated shower heads, levels, etc. Construction:Window locksDoor lock componentsExpanding nails for insulating plugsCorner connectors for lighting systemsShelving support elements, etc.Household:HandlesCoffee maker componentsJuice extractor componentsKnives and handlesBottle openersNutcrackers, etc. Electronic Industry:Mobile phone housingsPlastic tongsHousings for measuring unitsCarrier plates, etc. Machine Building:Plastic screwsCalipersScrew clamps, etc.Information from Akro-Plastic
Physical Properties Metric English Comments
Density 1.59 g/cc

@Temperature 23.0 °C
0.0574 lb/in³

@Temperature 73.4 °F
ISO 1183
Filler Content 50 %
50 %
ISO 1172
Water Absorption 1.1 %

@Temperature 70.0 °C
1.1 %

@Temperature 158 °F
62% r.h., Humidity; ISO 62
Water Absorption at Saturation 3.5 - 4.0 %
3.5 - 4.0 %
ISO 62
Viscosity 8000 cP

@Frequency 10000 Hz,
Temperature 322 °C
8000 cP

@Frequency 10000 Hz,
Temperature 612 °F
10000 cP

@Frequency 10000 Hz,
Temperature 307 °C
10000 cP

@Frequency 10000 Hz,
Temperature 585 °F
15000 cP

@Frequency 10000 Hz,
Temperature 292 °C
15000 cP

@Frequency 10000 Hz,
Temperature 558 °F
20000 cP

@Frequency 10000 Hz,
Temperature 277 °C
20000 cP

@Frequency 10000 Hz,
Temperature 531 °F
30000 cP

@Frequency 1000 Hz,
Temperature 322 °C
30000 cP

@Frequency 1000 Hz,
Temperature 612 °F
40000 cP

@Frequency 1000 Hz,
Temperature 307 °C
40000 cP

@Frequency 1000 Hz,
Temperature 585 °F
50000 cP

@Frequency 100 Hz,
Temperature 277 °C
50000 cP

@Frequency 100 Hz,
Temperature 531 °F
70000 cP

@Frequency 1000 Hz,
Temperature 292 °C
70000 cP

@Frequency 1000 Hz,
Temperature 558 °F
90000 cP

@Frequency 10.0 Hz,
Temperature 277 °C
90000 cP

@Frequency 10.0 Hz,
Temperature 531 °F
90000 cP

@Frequency 100 Hz,
Temperature 322 °C
90000 cP

@Frequency 100 Hz,
Temperature 612 °F
100000 cP

@Frequency 1000 Hz,
Temperature 277 °C
100000 cP

@Frequency 1000 Hz,
Temperature 531 °F
110000 cP

@Frequency 10.0 Hz,
Temperature 322 °C
110000 cP

@Frequency 10.0 Hz,
Temperature 612 °F
120000 cP

@Frequency 100 Hz,
Temperature 307 °C
120000 cP

@Frequency 100 Hz,
Temperature 585 °F
130000 cP

@Frequency 10.0 Hz,
Temperature 307 °C
130000 cP

@Frequency 10.0 Hz,
Temperature 585 °F
135000 cP

@Frequency 100 Hz,
Temperature 292 °C
135000 cP

@Frequency 100 Hz,
Temperature 558 °F
160000 cP

@Frequency 10.0 Hz,
Temperature 292 °C
160000 cP

@Frequency 10.0 Hz,
Temperature 558 °F
Linear Mold Shrinkage, Flow <= 0.0030 cm/cm
<= 0.0030 in/in
ISO 294-4
Linear Mold Shrinkage, Transverse 0.0050 cm/cm
0.0050 in/in
ISO 294-4
Melt Flow 9.0 g/10 min

@Load 5.00 kg,
Temperature 275 °C
9.0 g/10 min

@Load 11.0 lb,
Temperature 527 °F
MVR; ISO 1133
Spiral Flow 536 cm
211 in
Akro
Mechanical Properties Metric English Comments
Ball Indentation Hardness 290 MPa
42100 psi
H 961/30; ISO 2039-1
Tensile Strength at Break 250 MPa
36300 psi
5 [mm/min]; ISO 527-1/2
125 MPa

@Temperature 140 - 150 °C,
Time 1.80e+7 sec
18100 psi

@Temperature 284 - 302 °F,
Time 5000 hour
5 [mm/min], 50% Loss of Tensile Strength; ICE 216
125 MPa

@Temperature 140 - 150 °C,
Time 7.20e+7 sec
18100 psi

@Temperature 284 - 302 °F,
Time 20000 hour
5 [mm/min], 50% Loss of Tensile Strength; ICE 216
Tensile Stress 25.0 MPa

@Strain 0.500 %,
Temperature 60.0 °C
3630 psi

@Strain 0.500 %,
Temperature 140 °F
30.0 MPa

@Strain 0.500 %,
Temperature 23.0 °C
4350 psi

@Strain 0.500 %,
Temperature 73.4 °F
80.0 MPa

@Strain 1.00 %,
Temperature 120 °C
11600 psi

@Strain 1.00 %,
Temperature 248 °F
100 MPa

@Strain 1.00 %,
Temperature 80.0 °C
14500 psi

@Strain 1.00 %,
Temperature 176 °F
100 MPa

@Strain 2.00 %,
Temperature 120 °C
14500 psi

@Strain 2.00 %,
Temperature 248 °F
120 MPa

@Strain 4.00 %,
Temperature 120 °C
17400 psi

@Strain 4.00 %,
Temperature 248 °F
125 MPa

@Strain 2.00 %,
Temperature 80.0 °C
18100 psi

@Strain 2.00 %,
Temperature 176 °F
130 MPa

@Strain 6.00 %,
Temperature 120 °C
18900 psi

@Strain 6.00 %,
Temperature 248 °F
135 MPa

@Strain 1.00 %,
Temperature 60.0 °C
19600 psi

@Strain 1.00 %,
Temperature 140 °F
135 MPa

@Strain 3.00 %,
Temperature 80.0 °C
19600 psi

@Strain 3.00 %,
Temperature 176 °F
140 MPa

@Strain 4.00 %,
Temperature 80.0 °C
20300 psi

@Strain 4.00 %,
Temperature 176 °F
145 MPa

@Strain 8.00 %,
Temperature 120 °C
21000 psi

@Strain 8.00 %,
Temperature 248 °F
160 MPa

@Strain 1.00 %,
Temperature 23.0 °C
23200 psi

@Strain 1.00 %,
Temperature 73.4 °F
180 MPa

@Strain 2.00 %,
Temperature 60.0 °C
26100 psi

@Strain 2.00 %,
Temperature 140 °F
195 MPa

@Strain 3.00 %,
Temperature 60.0 °C
28300 psi

@Strain 3.00 %,
Temperature 140 °F
235 MPa

@Strain 2.00 %,
Temperature 23.0 °C
34100 psi

@Strain 2.00 %,
Temperature 73.4 °F
Tensile Strength, Yield 140 MPa

@Temperature 80.0 °C
20300 psi

@Temperature 176 °F
255 MPa

@Temperature 23.0 °C
37000 psi

@Temperature 73.4 °F
265 MPa

@Temperature -20.0 °C
38400 psi

@Temperature -4.00 °F
Elongation at Break 3.0 %
3.0 %
5 [mm/min]; ISO 527-1/2
Creep Strength 60.0 MPa

@Strain 0.700 %,
Time 360000 sec
8700 psi

@Strain 0.700 %,
Time 100 hour
60.0 MPa

@Time 360 sec,
Strain 0.400 %
8700 psi

@Time 0.100 hour,
Strain 0.400 %
60.0 MPa

@Strain 0.500 %,
Time 3600 sec
8700 psi

@Strain 0.500 %,
Time 1.00 hour
60.0 MPa

@Strain 0.600 %,
Time 36000 sec
8700 psi

@Strain 0.600 %,
Time 10.0 hour
90.0 MPa

@Strain 0.600 %,
Time 36000 sec
13100 psi

@Strain 0.600 %,
Time 10.0 hour
90.0 MPa

@Strain 0.650 %,
Time 360000 sec
13100 psi

@Strain 0.650 %,
Time 100 hour
90.0 MPa

@Time 360 sec,
Strain 0.500 %
13100 psi

@Time 0.100 hour,
Strain 0.500 %
90.0 MPa

@Strain 0.550 %,
Time 3600 sec
13100 psi

@Strain 0.550 %,
Time 1.00 hour
100 MPa

@Strain 0.650 %,
Time 3600 sec
14500 psi

@Strain 0.650 %,
Time 1.00 hour
100 MPa

@Strain 0.700 %,
Time 36000 sec
14500 psi

@Strain 0.700 %,
Time 10.0 hour
100 MPa

@Strain 0.800 %,
Time 360000 sec
14500 psi

@Strain 0.800 %,
Time 100 hour
100 MPa

@Strain 0.880 %,
Time 3.60e+6 sec
14500 psi

@Strain 0.880 %,
Time 1000 hour
Tensile Modulus 17.5 GPa
2540 ksi
1[mm/min]; ISO 527-1/2
Flexural Strength 380 MPa
55100 psi
2 [mm/min]; ISO 178
Flexural Modulus 16.4 GPa
2380 ksi
2 [mm/min]; ISO 178
Charpy Impact Unnotched 9.50 J/cm²

@Temperature -30.0 °C
45.2 ft-lb/in²

@Temperature -22.0 °F
ISO 179/1eU
11.0 J/cm²

@Temperature 23.0 °C
52.3 ft-lb/in²

@Temperature 73.4 °F
ISO 179/1eU
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