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Aluminium Machined Part
Aluminium machined part for different instrument
Different surface treatment
Best aluminum raw material
Short production cycle
Features
An aluminium machined part refers to a component made from aluminium that has undergone a machining process. Machining is a manufacturing process that involves shaping or transforming a raw material, such as metal, through the use of various cutting tools and techniques.
Aluminium, also known as aluminum, is a lightweight and durable metal with n excellent strength-to-weight ratio, making it a popular choice for many industrial applications. Machining aluminium involves removing excess material from a larger piece of aluminium to achieve the desired shape, size, and surface finish.

The machining process for Aluminium Machined Part typically involves several steps, including:
1. Design and planning:
The part's design is created, and the CNC machining process is planned, considering factors such as dimensions, tolerances, and the required machining operations.
2. Material selection:
Aluminium alloy suitable for the desired application is chosen. Aluminium alloys offer different properties and characteristics, such as strength, corrosion resistance, and thermal conductivity.
3. Cutting and shaping:
Various cutting tools, such as lathes, milling machines, or CNC machines, are used to remove material and shape the CNC aluminium part according to the design specifications. This may involve operations like turning, milling, drilling, or grinding.
4. Precision Finishing: Once the desired shape is achieved, the Aluminium Machined Part may undergo finishing processes, such as polishing, deburring, or coating, to improve its surface smoothness, appearance, and functionality.

Henghui is a premier CNC machining provider specializing in high-quality aluminium machined Part. With over 11 years of expertise in precision machining, we possess a diverse range of CNC machines capable of delivering exceptional accuracy and meticulous attention to detail. Our dedicated team is committed to delivering top-notch CNC services, catering to projects of any size.
At Henghui, we offer comprehensive one-stop CNC machining solutions, including CNC prototype making, small batch trial production, mass production, surface treatment, and assembly. Our services encompass various industries, encompassing mechanical parts CNC machining, automotive parts machining, precision parts machining, and more. We excel in CNC machining aluminum, utilizing advanced techniques such as CNC turning aluminum, to meet your exact specifications with utmost precision.

Product Display
We could make many parts according to your drawings, Such as Shafts, Gear, Bushes, Milled Enclosure, Case, Brackets, Gaskets, Nuts, Bolts, Light parts, Aviation Accessories, Pulleys, or other customized parts, etc.

Aluminium machined parts are widely used in numerous industries, including aerospace, marine submarines, automotive, electronics, machinery, construction, medical and beauty equipment, consumer electronics, instrumentation, high-end toys, 3D printer equipment, drones, robots, LED lights, furniture and audio equipment, industrial equipment, agricultural equipment, etc. Common examples of aluminium machining and turning parts include engine components, aircraft fittings, electronic enclosures, heat sinks, brackets, and various structural elements. These parts offer several advantages, including lightweight construction, corrosion resistance, high thermal conductivity, and ease of machinability. Aluminium milling machined parts are often preferred when weight reduction, strength, and reliability are important factors in the application.

FAQ
1. Does machined aluminum rust?
No, machined aluminum does not rust. Rust is a term used specifically for the corrosion of iron and steel when exposed to moisture and oxygen. Aluminum, on the other hand, is a non-ferrous metal that is highly resistant to corrosion. When exposed to air, aluminum forms a thin layer of oxide on its surface, which acts as a protective barrier against further corrosion. This oxide layer helps prevent the metal from rusting or corroding. However, aluminum can undergo other forms of corrosion, such as pitting or galvanic corrosion, under certain conditions, but it is not rust in the traditional sense.
2. What is machined vs forged parts?
Machined parts are manufactured by removing material from a solid block using various cutting tools and machines, such as lathes, milling machines, or CNC machines. This process allows for precise shaping and customization of the part according to specific design requirements. Forged parts are created by applying heat and pressure to reshape and deform a solid metal billet into the desired shape. This method increases the strength and durability of the part by aligning the grain structure and eliminating weak points. Both CNC machining and forging processes have their advantages and are used in different applications based on factors like complexity, material properties, and cost considerations.
3. Is machined aluminum stronger than forged aluminum?
No, forged aluminum is generally stronger than CNC machined aluminum. The forging process aligns the grain structure of the metal, making it more resistant to fatigue and increasing its overall strength. The pressure applied during forging compacts the aluminum, resulting in a denser and more uniform material with improved mechanical properties. Machining, on the other hand, involves the removal of material from a solid block, which does not alter the grain structure or enhance its strength in the same way as forging. However, it's important to note that the specific application and design requirements can also impact the comparative strength between machined and forged aluminum components.
4. Is machined aluminum stronger than cast aluminum?
Machined aluminum is generally stronger than cast aluminum. Machining involves removing material from a solid block, resulting in a more refined and controlled grain structure that enhances the mechanical properties of the aluminum. In contrast, cast aluminum is formed by pouring molten aluminum into a mold, which can introduce defects and irregularities in the grain structure, potentially leading to reduced strength. Machined aluminum also allows for precise customization and removal of any potential weak areas, making it a preferred choice in applications where strength and reliability are crucial.

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