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.