Quality Production is the cornerstone of TCS values that starts with understanding our Customer's needs & then partnering closely through the production process to ensure we delight our Customers. Precision Metal Fabrication products are generated through both highly experienced & skilled personnel as well as reliable, time-tested equipment.
TCS Engineers & Technicians can lead customers from concept through Design Engineering & ultimately to a Product, while leveraging our precision sheet metal manufacturing experience. TCS Industries, was incorporated in 1993 and began operations in December of that year in Albuquerque, New Mexico. TCS was formed to provide precision sheet metal fabrication and related services to customers in New Mexico and the Southwestern region of the US.
TCS Engineers & Technicians can lead customers from concept through Design Engineering & ultimately to a Product, while leveraging our precision sheet metal manufacturing experience. TCS Industries, was incorporated in 1993 and began operations in December of that year in Albuquerque, New Mexico. TCS was formed to provide precision sheet metal fabrication and related services to customers in New Mexico and the Southwestern region of the US.
Services
TSC Industries' goal is to provide a value-added service to all customers through optimizing the production process of each part/assembly while meeting customers specifications. When a prototype is required, TCS will engage customers to provide optimal production solutions leveraging decades of knowledge in precision sheet metal manufacturing.
While the mainstream media continues its obsession with 3D Imaging, another impactful, disruption is revolutionizing the way products are designed, engineered, manufactured, inspected and archived. It's 3D scanning - the act of capturing data from objects in the real world and bringing them into the digital pipeline.
Shearing is a metal fabricating process used to cut straight lines on flat metal stock. During the shearing process, an upper blade and a lower blade are forced past each other with the space between them determined by a required offset. Normally, one of the blades remains stationary.
Its ability to cut relatively small lengths of material at any time since the shearing blades can be mounted at an angle to reduce the necessary shearing force required.The illustration that follows provides a two-dimensional look at a typical metal shearing process. Note how the upper shear blade fractures the metal workpiece held in place by the workholding devices.
Its ability to cut relatively small lengths of material at any time since the shearing blades can be mounted at an angle to reduce the necessary shearing force required.The illustration that follows provides a two-dimensional look at a typical metal shearing process. Note how the upper shear blade fractures the metal workpiece held in place by the workholding devices.
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