MACHINING
MACHINING
PRECISION • INNOVATION • DEDICATION
DETAILS / MATERIALS / INDUSTRIES
PRECISION • INNOVATION • DEDICATION
DETAILS
CERTIFICATIONS
ISO
9001:2015
13485: 2016
4001:2015
AS 9100
IATF 16949
ITAR
NADCAP
SOT
FFL
available upon request
COUNTRY OF ORGIN
United States
Mexico
Asia
India
SAMPLING PROCESS
PPAP
FAI
(First Article Inspection)
ENGINEERING
2D PDF
3D Models
File Types
.STP
.IGES
CAD
OUTSIDE PROCESSING
Example: Plating/anodizing is done outside with approved vendor
LEAD TIME
To Be TBD/ARO
MATERIALS
ALUMINUM
6061: Good weldability, corrosion resistance, and machinability.
7075: High strength, used in aerospace applications.
STEEL
Mild Steel (A36): Versatile, good machinability, and weldability.
Stainless Steel (304, 316): Corrosion-resistant, good strength, used in food and medical applications.
Tool Steel: High hardness and wear resistance, used for cutting tools.
CARBON STEEL: High strength and hardness, used in structural components.
BRASS: Easy to machine, good corrosion resistance, often used in fittings and fixtures.
COPPER: Excellent electrical conductivity, often used in electrical applications.
TITANIUM: High strength-to-weight ratio, corrosion-resistant, used in aerospace and medical applications.
NICKEL ALLOYS: High resistance to heat and corrosion, used in high-performance applications.
BRONZE: Good wear resistance and machinability, used in bearings and marine applications.
ZINC ALLOYS: Good cast-ability and corrosion resistance, often used in die casting.
EXOTICS: Inconel, Titanium and Hasteloy’s
INDUSTRIES SERVED
ELECTRONICS
ENERGY
FOOD PROCESSING
MEDICAL
CONSUMER
TRANSPORTATION
LAWN & GARDEN
INDUSTRIAL
FIREARMS
BUILDING CONSTRUCTION
MEDICAL/PHARMA
AEROSPACE
AUTOMOTIVE
CONTRACT
DEFENSE
MORE…
PROCESSES
PRECISION • INNOVATION • DEDICATION
5-axis machining refers to the use of a Computer Numerical Control (CNC) machine that moves a part or cutting tool along five different axes simultaneously. Unlike traditional 3-axis machining, which moves in X, Y, and Z directions, 5-axis machining allows for the rotation of the part on two additional axes (usually A and B) alongside the linear movement. This increased flexibility enables the machine to approach a part from multiple angles without the need for multiple setups.
5-axis machines are commonly used in industries like aerospace, automotive, and medical device manufacturing, where precision and complex parts are critical.
9-axis machining refers to an advanced form of multi-axis machining where a machine tool can move and manipulate a workpiece along nine different axes, allowing for extremely complex shaping and detailing. Typically, nine-axis machining combines the functionalities of both a five-axis milling machine and a four-axis lathe, enabling simultaneous operations like turning and milling.
In nine-axis machines, there are three primary linear axes (X, Y, Z) and additional rotational axes (often A, B, and C), along with secondary support axes that allow even greater flexibility and precision. This setup allows for a workpiece to be machined from virtually any angle without the need for repositioning, significantly improving accuracy, reducing setup time, and allowing for complex geometries in a single setup.
9-axis machining is most beneficial for high-value, precision-demanding industries and parts where multiple operations must be performed seamlessly, reducing production time and increasing overall accuracy.
Hydromat machining is a specialized manufacturing process that uses a rotary transfer machine to perform high-precision, high-volume machining operations on metal components. Here’s an overview of its key features and benefits:
Horizontal machining refers to a machining process that uses a horizontal spindle to cut and shape materials, typically metal. This method is often employed in CNC (Computer Numerical Control) machining centers, which are capable of performing a variety of operations, such as milling, drilling, and boring.
A CNC lathe (Computer Numerical Control lathe) is a machine tool used for shaping materials, typically metal or plastic, by removing material from a rotating workpiece. The CNC aspect allows for precise control over the cutting process through programmed instructions, making it possible to create complex shapes and intricate designs with high accuracy.
Key Features:
Applications:
CNC Swiss, or Swiss machining, refers to a precision manufacturing process that uses CNC (Computer Numerical Control) machines designed specifically for producing small, intricate parts with tight tolerances. This method is particularly well-suited for producing cylindrical components and is often used in industries like medical, automotive, and aerospace.
Key Features:
CNC turning is a manufacturing process where a computer-controlled lathe is used to rotate a workpiece while a cutting tool shapes it. This process is highly precise and is commonly used to create cylindrical parts, such as shafts, bolts, and bushings.
KEY ASPECTS OF CNC TURNING:
A CNC multi-spindle machine is a type of computer numerical control (CNC) machining system that features multiple spindles. This allows for simultaneous machining of multiple parts or multiple operations on a single part, significantly increasing productivity and efficiency in manufacturing.
KEY FEATURES:
Applications:
Is a highly precise manufacturing process that uses computerized controls to operate machine tools. This technique is ideal for creating prototypes because it allows for high accuracy and repeatability, making it suitable for complex designs. Here’s a brief overview:
Common Processes:
Considerations:
Vertical machining refers to a type of milling process where the spindle axis is oriented vertically. This setup is commonly used in CNC (Computer Numerical Control) machines to create precise and complex parts. Here are some key features and benefits:
KEY FEATURES:
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