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Pultruded Profiles
The fiberglass roving, continuous fiberglass blanket and surface felts are fully infiltrated with unsaturated polyester resin, then passed through a certain cross-sectional shape of the mold, under the traction of the pultrusion machine, through heating continuous curing molding, to produce FRP pultruded profiles. The weight ratio of the profile is 35% resin mixture and 65% glass fiber (according to the mechanical requirements, the lay-up design and yarn content can be adjusted), and the pultruded profile of Shirui meets and exceeds the relevant standards of EN13706 E23 or GB/T31539-2015 M23.
We can improve the performance not only by material selection and process design such as lay-up, but also by optimizing the cross-section and structure to meet specific requirements.


Profiles Specifications
NO. Profile type Size (A×B×t mm) Theoretical weight (Kg/m) Figure
1 I beam 60×36×5 1.33
2 76×38×6.35 1.6
3 100×60×6.5 2.48
4 150×80×8 4.7
5 152×76×6.5 3.64
6 150×150×8 7.78
7 200×100×10 7.42
8 200×200×15 16.18
9 250×152×12 10.35
10 300×150×15 16.5
11 Channel 25×20×3 0.33
12 32×30×3 0.42
13 44×20×3 0.45
14 44×60×5 1.48
15 50×30×5 0.98
16 54.5×41.5×8 2.1
17 56×36×5 1.03
18 70×30×5 1.2
19 76×25×5 1.06
20 76×35×5 1.32
21 80×43×5 1.42
22 100×44×6 2.1
23 100×48×6 2.22
24 120×40×5 1.8
25 150×50×6 2.89
26 150×60×9.5 4.47
27 200×44×8 4.13
28 200×60×8 4.36
29 200×80×8 6.34
30 Equal Leg Angle 35×35×4 0.48
31 38×38×5 0.62
32 43×40×5 0.7
33 50×50×5 0.91
34 50×50×6.35 1.1
35 55×55×2 0.36
36 55×55×3 0.58
37 50×35×5 1
38 56×56×4 0.8
39 60×60×8 1.66
40 60×48×8 1.54
41 60×50×8 1.56
42 76×76×8 2.5
43 100×40×6 1.45
44 100×60×6 2.8
45 100×100×10 3.42
46 L Angle 25×55×3 0.43
47 30×70×3 0.56
48 25×75×3 0.58
49 25×100×3 0.72
50 40×300×3 2.01
51 55×345×3 2.32
52 Square Tube 32×32×5 1
53 38×38×5 1.11
54 40×40×5 1.31
55 44×44×4 1.15
56 44×44×5
57 44×44×6 1.59
58 50×50×5 1.8
59 51×51×6.35 2.17
60 60×60×5 2.1
61 60×60×7.5 2.85
62 63×63×5 2.13
63 76×76×6.35 3.07
64 76×76×8 4.17
65 100×100×6.35 4.24
66 100×100×8 5.4
67 125×125×9.5 8.33
68 130×130×6 5.56
69 Rectangular Tube 40×20×3 0.64
70 42×30×2.5 0.6
71 44×20×3 0.66
72 60×40×5 1.64
73 90×63×5 3.01
74 150×100×8 6.95
75 Round Tube 26.5×2.5 0.33
76 32×2.5 0.5
77 34×5 0.82
78 38×3 0.58
79 38×6.35 1.21
80 40×4 0.88
81 50×3.5 1.02
82 50×5 1.33
83 75×7.5 2.88
84 Rod 5 0.04
85 10 0.164
86 11 0.18
87 12 0.23
88 14 0.29
89 16 0.368
90 18 0.41
91 25 0.93
92 30 1.33
93 Strip/Plate 20×3 0.12
94 32×8 0.49
95 40×25 1.89
96 50×3 0.27
97 50×8 0.75
98 54.5×9.5 1.1
99 55×12 1.26
100 80×3 0.44
101 90×3 0.5
102 100×3 0.53
103 100×10 1.83
104 1000×4 7.42
105 1030×3.8 7.8
106 1200×3.3 7.75
107 1205×5 11.07
108 1220×3.3 8.1
109 Handrail 60×60×5 1.5
110 75×63×4 1.3
111 76×60×5 1.5
112 Kickplate 104×12×3 0.85
113 152×13×3 1.03
114 Plum Tube 36×25×5.5 0.8
115 36×21×7.5 1.04
116 42×27×7.5 1.47
117 42×32×5 0.97
118 Cable Tray 50×50×3.5 1.02
119 100×50×4 1.18
120 100×80×4 1.87
121 100×100×4 2.42
122 150×100×3 2.24
123 200×50×4 2.76
124 200×100×4 3.48
125 Tray Cover 57×12×3 0.42
126 107×12.5×3 0.78
127 157×14.5×3 0.98
128 207×15×4 1.3
129 Corrugated Board 600×20×3 3.34
130 Trapezoid Shape A 90×40×3.5 0.93
131 Ω shape 88×30×3.9 0.88
132 Trapezium B 90×40×3 0.85
133 M shape 189×76×5 3.21
134 189×150×5 5.16
135 Deck 138×18×3 2.2
136 Trestle Deck 400×90 8.1
137 Plank 1000×100×4 19.65
Note: The reference weight in the table is the actual data of the weighing of existing products, and the weight of different batches of profiles may vary by about 5% due to the adjustment of raw materials and processes.
Pultruded profiles technical performance
The dense fiber core layer makes the profile tough and firm, and its absolute values of longitudinal bending strength and impact strength have exceeded those of ordinary steel. The use of glass fiber mat increases the transverse strength of the profile and forms a rich resin layer on the surface, which makes it have good anti-corrosion and anti-rupture characteristics.
Mechanical performance Unsaturated polyester profiles Epoxy resin profiles Polyurethane Unit Test Standard
Tensile strength LW 394 1114.3 782 MPa GB1447/ASTM D-638
CW 33.4 55.4
Tensile modulus LW 24.3 48.5 55.1 GPa GB1447/ASTM D-638
CW 7 12.56
Bending strength LW 495 1160 930 MPa GB1449/ASTM D-790
CW 80 314
Bending modulus LW 23 36 44.2 GPa GB1449/ASTM D-790
CW 13 20
Compressive strength LW 259 453.9 MPa GB1448/ASTM D-695
CW 85.9 123.4
Compressive modulus LW 20 18 GPa GB1448/ASTM D-695
CW 7 10
Interlaminar shear strength 29.1 37.3 22.5 MPa GB 3357/ASTM D-2344
Impact toughness 220 477 397 KJ/m2 GB 1451/ASTM D-256

Physical properties Unsaturated polyester profiles Epoxy resin profiles Polyurethane Unit Test Standard
Barcol Hardness 50 —— GB 3854/ASTM D-495
Water absorption (25℃,24h) 0.06 % GB 1462/ASTM D-570
Density 1.8 2.17 g/cm3 GB 1463/ASTM D-792
Coefficient of thermal expansion (LW) 37 10-6/℃ GB 2572/ASTM D-696
Thermal conductivity 0.08 W/(m.K) GB 3139/ASTM C-518

Electrical Properties Unsaturated polyester profiles Epoxy resin profiles Polyurethane Unit Test Standard
Arc resistance (LW) 182 181 seconds IEC 61621:1997
Dielectric strength (PF) 9.93 KV/mm GB 1408/ASTM D-149
Dielectric constant (PF) 4.19 @60hz GB 1409/ASTM D-150
Dye penetration test 15min Not penetrated 15min Not penetrated —— DL/T 1580-2016
Surface resistance coefficient 3.51*1012 7.2*1013 2*101515 Ω GB 1410/ASTM D257
Volume resistance coefficient 3.6*1014 1.5*1014 5.6*1013 Ω.cm GB 1410/ASTM D257

Fire retardant properties Unsaturated polyester profiles Epoxy resin profiles Polyurethane Unit Test Standard
Flame propagation rate 15 —— ASTM E84
Flammability (vertical method) V-0 V-0 Level UL 94-2013
Oxygen index 32 30 % GB 8924/ANSI UL-94
Note: The data in the table is for reference only, we will adjust the ratio of the profile and the design of the yarn layer to achieve specific performance indicators according to the customer's usage requirements.
FRP pultruded profile is a structural member with the advantages of light weight and high strength, corrosion resistance, insulation and non-magnetic.
FRP pultruded profiles also have good designability. Various profiles can be made into various products through proper connection and combination, such as: structural platform, frame beam, bracket, fence, inclined ladder, straight ladder, guardrail, etc., which are widely used in different fields.