Industry News

  • Aluminum Welding- Welding Procedure Qualification

    3. Environmental & Equipment Control: Details Determine Quality Aluminum alloys are highly sensitive to environmental conditions and equipment status, demanding strict control: Environment: Welding area must be clean, dry, and draft-free. Ideal conditions: Temperature >5°C (41°F) , Humidi...
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  • Aluminum Welding

    Welding Method Core Principle Applications Key Technical Requirements TIG (AC) Utilizes the ”cathodic cleaning” effect of AC to effectively break up and remove the oxide layer. The most versatile method. Thin sheets, precision parts, all-position welding where weld appearance ...
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  • Core Technical Elements of S S Welding

    Core Technical Elements of S S Welding

    III. Main Forging Process Routes 1. Hot Forging (Mainstream) The vast majority of stainless steel forgings are produced via hot forging. Heating Temperature: Depends on grade. Austenitic: 1150-1250°C; Ferritic: lower. Key Steps: Heating: Step heating or controlled ramp rates to prevent thermal ...
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  • Stainless Steel Forging

    Stainless Steel Forging

    Stainless steel forging is fundamentally different from carbon steel forging. The core challenges lie in the narrow forging temperature window, high deformation resistance, and strict microstructure control. The following provides a complete technical framework covering material characteristics, ...
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  • Technical Introduction to Aluminum Welding

    Technical Introduction to Aluminum Welding

    The core challenges of aluminum welding boil down to three “enemies”: Oxide Film (Al₂O₃), High Thermal Conductivity, and Hydrogen Porosity. Welding aluminum is not an “upgraded version” of welding steel—it is a completely different discipline. From cleanliness and equipmen...
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  • The difference between 316 and 304 stainless steel casting

    The difference between 316 and 304 stainless steel casting

    The difference between 316 and 304 stainless steel casting   316 and 304 china precision casting stainless steel castings are widely used where corrosion resistance is required. 316 and 304 custom investment casting are widely used in everything from construction and medical to food equipmen...
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  • From Molten Metal to Finished Part: A Guide to Aluminum Manufacturing Processes

    From Molten Metal to Finished Part: A Guide to Aluminum Manufacturing Processes

    Aluminum’s versatility stems not only from its alloys but also from the wide array of manufacturing processes that shape it. Each technique offers unique advantages in terms of design freedom, production volume, mechanical properties, and cost. This guide explores key methods, from high-vol...
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  • Shift Fork

    Shift Fork

    The shift fork belongs to the operating mechanism, which connects and disconnects the transmission mechanism. For example, gear shifting fork, clutch shifting fork, such as changing the position of the slipping gear of the lathe to achieve speed change; or used in the mechanism that controls the ...
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  • Marine C5 Corrosion Test

    Marine C5 Corrosion Test

    Marine C5 Corrosion Test refers to corrosion testing designed for marine C5 environments, primarily used to evaluate the corrosion resistance of materials or coatings in extremely harsh marine industrial conditions. Meaning of “C5″ • C5 is a corrosivity category defined in ISO 12944 ...
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  • Turbo drill

    Turbo drill

    The turbo drill is a downhole power tool used for oil and gas drilling. The drilling fluid drives the turbine to rotate, which in turn drives the drill bit to break the rock. It is mainly used for complex drilling operations such as directional drilling and horizontal drilling. 1. Structural comp...
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  • Functions of gears

    Functions of gears

    Functions of gears Gears are the most commonly used mechanical elements and are widely used in mechanical transmission devices. The most important reason why gears are so popular today is probably the wide range of transmission power. From small gears for watches to large gears for ship turbines,...
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  • gears

    gears

    There are many types of gears, and the most common classification method is based on the gear axiality. Generally, they are divided into three types: parallel axis, intersecting axis and staggered axis: Parallel axis gears include spur gears, helical gears, internal gears, racks and helical racks...
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