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After-sales Service: | Pre-in-Post |
Warranty: | Forever |
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Product Introduction
Discover the pinnacle of construction excellence with the indented PC Strand from Tianjin Wasungen Metal Products Co., Ltd. This exceptional prestressed concrete steel solution is meticulously crafted to reinforce your concrete structures with unparalleled strength. Its unique indented surface, combined with exceptional mechanical attributes, ensures superior performance across a multitude of construction applications, making it an indispensable element in wide-ranging engineering projects. Trust this innovation to deliver excellence and reliability for your structures.
Product Characteristics
Indented Surface Design: Our Indented PC strand is distinguished by its pioneering indented surface. This state-of-the-art feature dramatically enhances the bonding strength between steel and concrete, significantly boosting structural integrity and load-bearing capabilities. It guarantees that your constructions remain robust and dependable over time.
Outstanding Mechanical Properties: Engineered with precision, this PC strand showcases remarkable tensile strength and elasticity. It effectively manages immense tensile loads, providing steadfast prestressed support for concrete structures and ensuring enduring durability across diverse construction demands.
Corrosion Resistance: Every strand is equipped with advanced corrosion-resistant treatments or coatings, enabling it to withstand harsh environments. This fortification ensures an extended and reliable service life, even in the most demanding conditions.
Consistency: Through strict quality control measures, each indented PC strand is crafted with uniform dimensions and mechanical properties. This rigorous standard of engineering design ensures consistent performance and unwavering reliability.
Ease of Processing: With exceptional ductility and machinability, our indented PC strand simplifies the construction process. It facilitates easy bending, cutting, and connection, enhancing efficiency and significantly minimizing installation time for your projects.
Environmental Sustainability: Our production techniques incorporate eco-friendly materials and methods, aligning with sustainable development principles. This dedication minimizes environmental impact, positioning our indented PC strand as an eco-conscious selection for sustainability-focused builders.
Product Applications
Our adaptable Indented PC strand is the premier choice for reinforcing a diverse range of prestressed concrete structures, including, but not limited to:
Bridges and Overpasses: Perfectly suited for prestressed reinforcement in bridge girders, piers, and decks, offering steadfast support and unrivaled reliability.
Building Structures: Vital for bolstering structural stability and seismic resistance in buildings. It is crucial for prestressed reinforcement of columns, beams, slabs, and walls.
Roads and Railways: A reliable selection for prestressed reinforcement in highway pavements, railway sleepers, and concrete ties, enhancing infrastructure resilience.
Hydraulic Engineering: Essential for the prestressed reinforcement of dams, spillways, and reservoirs, ensuring structural integrity in hydraulic structures.
Industrial Facilities: Delivers unwavering support in the prestressed reinforcement of industrial plants, warehouses, and equipment foundations, adeptly meeting heavy-duty requirements with exceptional reliability.
The outstanding performance and broad applications of our indented PC strand render it an essential component in construction engineering. It assures the safety, durability, and longevity of concrete structures, playing a pivotal role in engineering projects.
PC STRAND--INDENTED | ||||
Structure | Nominal Dia.(mm) | Tensile Strength(MPa) | Relaxation(1000h) | Standards |
1x7 wires | 7.9, 8.0, 9.3, 9.53, 11.1, 12.5, 12.7, 12.9, 15.2, 15.7, 17.8, 21.6 | 1670,1770, 1820, 1860 | Low relaxation≤2.5% | ASTMA416, BS5896, EN10138-3, AS/NZS4672, GB/T5224, KS7002, ISO6934-4, SS213620, JIS G3536, UNE36094, ABNT NBR7483, NEN3868 |
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