Special HME fiber glass for wind turbine blades
A technology of fiberglass and wind turbine blades, which can be used in wind power generation, wind engines consistent with the wind direction, wind engines, etc., and can solve environmental pollution and other problems
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Embodiment 1
[0009] Wind turbine blade HME fiberglass is composed of the following components by mass percentage: SiO 2 : 59%; TiO 2 : 0.5%; Al 2 o 3 : 13%; Fe 2 o 3 : 0.3%; CaO: 22.5%; LiO 2 : 0.2%; MgO: 3%; WO 3 : 0.5%; CeO 2 : 0.5%, NaO 2 : 0.5%; K 2 O: 0.5%.
[0010] The raw materials containing the above components are prepared by the following process to produce HME fiberglass for wind power blades. The specific process is as follows:
[0011] Raw material preparation: (taking 1000g of HME fiberglass as an example): 101g of quartz sand, 655g of pyrophyllite, 339g of limestone, 132g of dolomite, 5g of lithium carbonate, and 5g of cerium oxide; Then, the above-mentioned raw materials are added to the tank kiln and melted at a temperature of 1460°C to become liquid glass fibers; then, the liquid glass fibers are conventionally drawn by a wire drawing machine, and the drawing temperature is 1250°C. After the wire drawing is completed, it is conventional doffing, dipping, maki...
Embodiment 2
[0017] Process is identical with embodiment 1, and component mass percent is: SiO 2 : 59.2%; TiO 2 : 1%; Al 2 o 3 : 13.2%; Fe 2 o 3 0.3%; CaO: 22.2%; LiO 2 : 0.2%; MgO: 3.2%; CeO 2 : 0.2%.
[0018] The product was tested in a pilot test, and the data results after the pilot test were compared with EC-R glass and a patent number (4026715) in the United States. The data are as follows:
[0019] Element
EC-R(%)
US Patent 4026715(%)
Jiuding 2 (%)
SiO 2
55.6-56.5
57.7
59.2
al 2 o 3
11.4-11.6
11.4
13.2
CaO
17.7-21.9
21.5
22.2
MgO
1.0-4.3
2.0
3.2
Fe 2 o 3
0.25
0.1
0.3
Na 2 o
0.9
1.0
0.32
K 2 o
0.15
--
0.18
TiO 2
3.4-3.5
2.3
1
LiO 2
--
--
0.2
WO 3
--
--
--
CeO 2
--
--
0.2
Zno
5.3
3.9
--- ...
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