28.6mm unbonded PC Strand
Get Latest PricePayment Type: | T/T |
Incoterm: | FOB,CFR,CIF |
Transportation: | Ocean |
Port: | Tianjin Xingang |
Payment Type: | T/T |
Incoterm: | FOB,CFR,CIF |
Transportation: | Ocean |
Port: | Tianjin Xingang |
Brand: Chunpeng
Standard: Aisi, Astm, Bs, Jis
Place Of Origin: China
Application: Construction
Whether Alloy: Non-Alloy
The file is encrypted. Please fill in the following information to continue accessing it
Overview: The 28.6mm Unbonded PC Strand is a high-performance pre-stressed concrete tendon designed for use in modern construction projects that require exceptional strength, durability, and flexibility. This product is manufactured using advanced technology to ensure consistent quality and superior performance in various structural applications. Whether you are working on bridges, high-rise buildings, or industrial facilities, the 28.6mm un bonded PC Strand offers reliable support and long-term stability. Engineered with precision, this strand provides an ideal solution for projects that demand high tensile strength and resistance to environmental factors. Its versatility makes it suitable for both new construction and retrofitting of existing structures.
Key Features: The 28.6mm unbonded PC strand is known for its high tensile strength, which allows it to withstand heavy loads without deformation. It is constructed from high-grade steel wires that are tightly twisted together to form a single, robust unit. The unbonded design ensures that the strand can move freely within the surrounding concrete, reducing stress concentrations and enhancing overall structural integrity. This product is also resistant to corrosion, making it suitable for use in harsh environments. Additionally, the 28.6mm pc strand un bonded is easy to handle and install, saving time and labor costs during the construction process. Its lightweight yet strong composition makes it ideal for large-scale projects where efficiency is crucial.
Detailed Description: The 28.6mm unbonded PC strand is a critical component in the field of pre-stressed concrete construction. It is composed of multiple high-tensile steel wires that are individually coated and then bundled together to form a single strand. This unique structure allows the strand to distribute load evenly across its length, minimizing the risk of failure under extreme conditions. Unlike bonded strands, which are fixed in place within the concrete, the unbonded version remains flexible, enabling it to adjust to movement and stress without compromising its structural role. The coating on each wire acts as a protective barrier, preventing moisture and chemical exposure from weakening the material over time. This makes the 28.6mm un bonded pc strand particularly well-suited for coastal areas, industrial zones, and other locations where environmental exposure is a concern. The product is available in standard lengths and can be customized to meet specific project requirements, ensuring that it fits seamlessly into any construction plan.
Chunpeng Group is a leading and professional manufacturer of prestressed concrete (PC) steel materials, with over 30 years of industry experience.
We are committed to delivering high-quality products and innovative solutions for infrastructure and construction projects worldwide.
Our Core Products are pc steel strand (Ultra High Tensile Strength PC Strand, Normal Tensile Strength PC Strand), Unbonded PC Strand, Galvanized PC Steel Strand, Weather-Resistant & Anti-Corrosion PC Strand, and PC Steel Wire.
In addition to our PC strand products, we also supply Prestressed Anchorage Systems and Photovoltaic Mounting Systems.
Privacy statement: Your privacy is very important to Us. Our company promises not to disclose your personal information to any external company with out your explicit permission.
Fill in more information so that we can get in touch with you faster
Privacy statement: Your privacy is very important to Us. Our company promises not to disclose your personal information to any external company with out your explicit permission.