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21/08 16:52
< On August 21, there was no significant fluctuation in the price of cold-rolled steel sheet & coil in Shanghai. SPCC (ASTM A1008 CS) Baosteel 0.6*1250*C 588.27, down 1.39. (USD/ton)
21/08 16:51
< On August 21, the price of hot rolled steel coil in Shenyang fell slightly. Q235B (ASTM A36) Bengang 3.0*1500*C mm 472.57, down 5.58. (USD/ton)
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21/08 16:48
< On August 21, the price of galvalume steel sheet & coil in Guangzhou remained stable. DX51D+AZ120 (ASTM A792/A792M CS) Pangang 2.0*1250*C 638.45. (USD/ton)
21/08 16:32
< On August 21, the price of hot rolled steel strip in Wuxi fell slightly. 65Mn (ASTM 1566) Nangang 2.5-5.0*131-230mm 574.33, down 6.97. (USD/ton)
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21/08 16:31
< On August 21, the price of H-beam in Tangshan fell slightly. Q235B (ASTM A36) Jinxi 200*200*8*12 (hot rolled) 464.20, down 4.18. (USD/ton)
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21/08 16:30
< On August 21, the price of bridge steel plate in Anyang remained stable. Q420qD (ASTM A709 Grade 50) Angang 10mm 703.97. (USD/ton)

Answers

  • What are the properties of 304 stainless steel finned heat pipes?

    304 stainless steel is a general-purpose stainless steel containing 18% chromium and 8% nickel, offering excellent corrosion resistance and mechanical strength. 304 stainless steel maintains excellent stability in high-temperature environments and is not easily oxidized or deformed, making it an ideal material for heat pipes. Compared to ordinary carbon steel, 304 stainless steel performs better in humid or corrosive environments, significantly extending the service life of heat pipes. 304 stainless steel also has excellent thermal conductivity, with a coefficient of approximately 16.3 W/(m·K), effectively transferring heat from the heat source to the heat dissipation surface.

    The primary function of fins is to increase the heat dissipation surface area and improve heat exchange efficiency. Common fin types include spiral fins, longitudinal fins, and annular fins.


  • What is the difference between precision rolled threaded steel and threaded steel?

    Basic Concepts of Steel Materials

    In the field of construction engineering, threaded steel bars are one of the most commonly used steel materials. Ordinary threaded steel bars have ribs on their surfaces, which enhance their bond strength with concrete. In contrast, precision-rolled threaded steel bars are high-strength, high-precision ribbed steel materials widely used in engineering fields such as prestressed concrete structures, bridges, dams, tunnels, and slope anchoring.

    Differences in Appearance and Dimensions

    Ordinary threaded steel has transverse ribs in the shape of a crescent, spiral, or chevron, with diverse dimensional specifications. Precision-rolled threaded steel has a more regular threaded surface shape and higher dimensional accuracy, meeting the requirements of high-precision engineering projects.Yangtze Steel Group (China) Co., Ltd. , equipped with advanced machinery and modern production lines, produces precision-rolled threaded steel with precise dimensions that comply with stringent engineering standards.

    Performance Characteristics Comparison

    Ordinary threaded steel has average yield strength and tensile strength, making it suitable for general building structures. Precision-rolled threaded steel has high strength, capable of withstanding greater tensile and compressive forces, offering significant advantages in large-scale engineering projects.Yangtze Steel Group (China) Co., Ltd. employs mature production processes to produce precision-rolled threaded steel and other products with excellent mechanical properties, providing reliable structural support for engineering projects.

    Different Application Scenarios

    Ordinary threaded steel is primarily used in ordinary residential buildings, small bridges, and similar structures. Precision-rolled threaded steel is commonly used in projects with high requirements for structural strength and stability, such as large bridges, dams, and similar structures. The products of Yangtze Steel Group (China) Co., Ltd. have played a crucial role in these major engineering projects, providing robust support for construction efforts.


  • What is the spacing between rebar mesh bindings?

    In concrete structures, reinforcement is generally placed in both longitudinal and transverse directions. Because reinforcement in concrete is subjected to both tension and compression, the spacing between transverse and longitudinal differs.
    Generally, the spacing between longitudinal reinforcement should not exceed 150mm, and the spacing between transverse reinforcement should not exceed 200mm.


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