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Precision lathe machining parts Copper T1 CNC part for electrical and thermal conductivity applications

    Buy cheap Precision lathe machining parts Copper T1 CNC part for electrical and thermal conductivity applications from wholesalers
     
    Buy cheap Precision lathe machining parts Copper T1 CNC part for electrical and thermal conductivity applications from wholesalers
    • Buy cheap Precision lathe machining parts Copper T1 CNC part for electrical and thermal conductivity applications from wholesalers
    • Buy cheap Precision lathe machining parts Copper T1 CNC part for electrical and thermal conductivity applications from wholesalers
    • Buy cheap Precision lathe machining parts Copper T1 CNC part for electrical and thermal conductivity applications from wholesalers
    • Buy cheap Precision lathe machining parts Copper T1 CNC part for electrical and thermal conductivity applications from wholesalers

    Precision lathe machining parts Copper T1 CNC part for electrical and thermal conductivity applications

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    Brand Name : JIA SHAN
    Model Number : DIN, ASEM, ISO
    Certification : ISO
    Price : USD0.2/pcs-USD1/pcs
    Payment Terms : T/T, Western Union
    Supply Ability : Batch order abailable
    Delivery Time : 1-5 weekds
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    Precision lathe machining parts Copper T1 CNC part for electrical and thermal conductivity applications

    Precision lathe machining parts Copper T1 CNC part for electrical and thermal conductivity applications



    Product Description:

    CNC products achieve superior detail and consistency, allowing for mass production without compromising on dimensional accuracy.
    CNC products are known for their ability to achieve superior detail and consistency, which is particularly advantageous in mass production environments where maintaining dimensional accuracy is crucial. CNC machining is highly automated, and once a design program is input, the machine can produce parts with minimal variation, no matter how complex the geometry. This capability is essential in fields like telecommunications, automotive, and aerospace, where high-precision components must be manufactured at scale. CNC machines can perform intricate cuts, drilling, and shaping operations to exact measurements, ensuring that each product meets the required tolerances. Unlike traditional machining methods, CNC machining maintains consistency even at high volumes, reducing the likelihood of errors that could otherwise affect large batches of products. The precision CNC machines provide translates to lower rejection rates and less need for manual adjustments or rework. As a result, companies can achieve consistent quality in every unit, all while meeting deadlines and fulfilling customer demands. By enabling mass production with high detail and dimensional accuracy, CNC technology enhances productivity while maintaining high standards.
    Copper T1
    Characteristics: Copper T1 offers excellent electrical and thermal conductivity, making it ideal for electrical wiring and heat exchangers. It’s highly resistant to corrosion.
    Maintenance: Copper requires regular cleaning to maintain conductivity. Coating or applying protective finishes can help reduce oxidation.
    Brass H70
    Characteristics: Known for its good strength and corrosion resistance, Brass H70 is often used in mechanical and decorative applications.
    Maintenance: Clean with a soft cloth to avoid scratches. Apply an anti-tarnish coating to preserve the appearance and prevent oxidation.


    Applications

    Sandblasting is a process for surface treatment of workpieces. Adopting compressed air as the power, in order to form a high-speed jet beam will spray material (copper ore, quartz sand, emery, iron sand, sea sand) high-speed jet to the surface of the workpiece to be processed, so that the appearance or shape of the surface of the workpiece changes. Due to the impact and cutting effect of the abrasive on the surface of the workpiece, the surface of the workpiece obtains a certain degree of cleanliness and different roughness, so that the mechanical properties of the surface of the workpiece can be improved, thus improving the fatigue resistance of the workpiece, increasing the adhesion between it and the coating, prolonging the durability of the coating film, and also conducive to the levelling of the coating and decoration.


    Cadmium plating is also prone to ‘cadmium brittle’ phenomenon, usually at higher temperatures, and at the same time the existence of certain stress conditions, can make steel and titanium alloys produce cadmium brittle. As cadmium plating layer in 232 ℃ above can be leached into the steel parts of the matrix, can cause the so-called ‘cadmium brittle’ phenomenon, so the use of temperature should not exceed 232 ℃.
    Cadmium-plated layer can be welded, the plating can reduce the oxidation of copper-plated electrical contacts, but also does not increase the contact resistance. Cadmium-plated layer is usually used in steel fasteners, piping and other stressed parts, aluminium and aluminium alloy parts, magnesium alloy parts, and rubber contact with the steel and copper parts. Especially some elastic parts, threaded parts, standard parts and aerospace, shipbuilding, electronics and military products are used to use cadmium plating. But cadmium vapour and its soluble salts are highly toxic and seriously pollute the environment. Therefore, the application of cadmium plating layer is subject to strict limitations, has been rarely used, most of the zinc plating layer and zinc alloy layer to replace the cadmium plating layer.


    1Anodizing
    2Sandblasting
    3Matt anodizing
    4polish 0.8
    5Painting
    6Brush

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