PUR foam models for lower leg prostheses are a reliable solution for specialists who value high quality, repeatability and comfort of work. Each model is prepared individually – based on a 3D scan (.stl) or measurement card – with a view to optimal fit and readiness for the next stage of prosthetic fitting.
PUR foam – the ideal material for prosthetic models
Our lower leg prosthesis models are made of PUR foam with a minimum density of 70 kg/m³. This material combines durability with lightness and excellent dimensional stability. The models are suitable for thermoforming and laminating – without the need for a plaster layer. This saves a considerable amount of time and makes work easier for every prosthetic workshop.
Thanks to the properties of PUR foam, these models are ideal as a basis for making denture trays – both in classic methods and modern digital processing techniques.
High repeatability and ease of processing the 3D model
Each PUR foam model for lower-leg prostheses is easy to machine by hand—no specialized equipment is required. Thanks to the use of CNC technology, we guarantee high precision in reproducing the geometry and full repeatability for mass production orders.
Our experience and personalized approach to each order allow us to provide solutions tailored to the real needs of prosthodontists—ready-to-use, functional, and in line with clinical guidelines.
Model of a lower leg prosthesis
A lower-leg prosthesis model serves as the basis for preparing a custom prosthetic socket and for subsequent stages of prosthetic fitting. At NEOPUR, we produce it based on a 3D scan or measurement chart, ensuring precise reproduction of the shape, dimensional stability, and readiness for further processing in the lab. Thanks to the use of PUR foam, the model is lightweight, durable, and easy to work with, which streamlines the prosthetist’s daily work.
Model for a lower-leg prosthesis
The PUR foam lower-leg prosthesis model is a practical solution for prosthetic laboratories that require consistent quality and quick preparation of a base for the socket. The material performs well during thermoforming, lamination, sanding, and manual shape correction. The ready-made lower-leg prosthesis model helps reduce turnaround time while maintaining high precision in the work involved in custom-fitting the prosthesis to the patient.