The core of nickel titanium wire bending lies in compensating for springback during cold bending and locking during hot bending. The key is to utilize its superelasticity/shape memory characteristics to control stress and temperature.
Customization of nickel titanium alloy capillary tubes revolves around superelasticity/shape memory, precision dimensions and surface/heat treatment, and is suitable for medical, precision instruments, aerospace and other scenarios.
Nickel titanium undergoes solid-state phase transition under stress, just like ice melting absorbs heat and water freezing releases heat, only occurring inside the metal.
Nickel titanium alloy has achieved a breakthrough in the field of fluid heat transfer from "passive heat transfer" to "active regulation and efficient phase change heat transfer".
Nickel-titanium alloy plate is a high-end functional material that combines shape memory effect, superelasticity, and biocompatibility, with outstanding advantages but high processing and cost thresholds.
Deep processing of nickel titanium alloy sheet is the process of precision cold and hot processing, heat treatment, forming, surface treatment, and other processes to produce components that meet the requirements of shape memory and superelasticity.
Used as a precision fluid transport tube to transport high-temperature chemical reagents and high-purity gases, with thin wall uniformity ensuring stable flow rate.