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Lightweight high-strength composite material electric pole and preparation method thereof
The invention discloses a light high-strength composite material electric pole which is characterized in that a second dipping material is wound on the outer side of a rod-shaped mold from the root of the rod-shaped mold to the top of the rod-shaped mold to form an electric pole core layer, and then a first dipping material is wound on the outer side of the electric pole core layer from the root of the electric pole core layer to the top of the electric pole core layer; and curing and demolding. The invention discloses a preparation method of the light high-strength composite material electric pole. According to the composite material electric pole, under the condition that the designed working conditions are met, the weight of the electric pole is obviously reduced, long-distance transportation and on-site turnover are facilitated, the electric pole can be manually carried to go uphill, the transportation difficulty is reduced, the anti-aging function is achieved, and therefore the service life of the electric pole is prolonged, and use safety is guaranteed.
本发明公开了一种轻质高强复合材料电杆,采用第二浸渍料在杆状模具外侧从杆状模具的根部向杆状模具的顶部进行缠绕形成电杆核层,再采用第一浸渍料在电杆核层外侧从电杆核层的根部向电杆核层的顶部进行缠绕,再经固化脱模得到。本发明公开了上述轻质高强复合材料电杆制备方法。本发明所得复合材料电杆在满足设计工况条件下,明显降低了电杆重量,便于长途运输和现场周转,可人工搬运上山,降低运输难度,而且还具有耐老化功能,从而延长了电杆的使用寿命,保证了使用的安全。
Lightweight high-strength composite material electric pole and preparation method thereof
The invention discloses a light high-strength composite material electric pole which is characterized in that a second dipping material is wound on the outer side of a rod-shaped mold from the root of the rod-shaped mold to the top of the rod-shaped mold to form an electric pole core layer, and then a first dipping material is wound on the outer side of the electric pole core layer from the root of the electric pole core layer to the top of the electric pole core layer; and curing and demolding. The invention discloses a preparation method of the light high-strength composite material electric pole. According to the composite material electric pole, under the condition that the designed working conditions are met, the weight of the electric pole is obviously reduced, long-distance transportation and on-site turnover are facilitated, the electric pole can be manually carried to go uphill, the transportation difficulty is reduced, the anti-aging function is achieved, and therefore the service life of the electric pole is prolonged, and use safety is guaranteed.
本发明公开了一种轻质高强复合材料电杆,采用第二浸渍料在杆状模具外侧从杆状模具的根部向杆状模具的顶部进行缠绕形成电杆核层,再采用第一浸渍料在电杆核层外侧从电杆核层的根部向电杆核层的顶部进行缠绕,再经固化脱模得到。本发明公开了上述轻质高强复合材料电杆制备方法。本发明所得复合材料电杆在满足设计工况条件下,明显降低了电杆重量,便于长途运输和现场周转,可人工搬运上山,降低运输难度,而且还具有耐老化功能,从而延长了电杆的使用寿命,保证了使用的安全。
Lightweight high-strength composite material electric pole and preparation method thereof
一种轻质高强复合材料电杆及其制备方法
LU YONGTONG (Autor:in) / FENG SUZHEN (Autor:in)
17.05.2024
Patent
Elektronische Ressource
Chinesisch
IPC:
E04H
Gebäude oder ähnliche Bauwerke für besondere Zwecke
,
BUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES
/
B29B
PREPARATION OR PRETREATMENT OF THE MATERIAL TO BE SHAPED
,
Vorbereiten oder Vorbehandeln der zu verformenden Masse
/
B29C
Formen oder Verbinden von Kunststoffen
,
SHAPING OR JOINING OF PLASTICS
/
C08K
Verwendung von anorganischen oder nichtmakromolekularen organischen Stoffen als Zusatzstoffe
,
USE OF INORGANIC OR NON-MACROMOLECULAR ORGANIC SUBSTANCES AS COMPOUNDING INGREDIENTS
/
C08L
COMPOSITIONS OF MACROMOLECULAR COMPOUNDS
,
Massen auf Basis makromolekularer Verbindungen
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