FIELD: footwear.
SUBSTANCE: invention relates to shoe industry. At the same time in addition is conducted instrumental examination of the object foot for receiving a plantogram and recording of measurements of foot of real object. Simulation of three-dimensional computer model of the foot of the object is carried out taking into account plantograms and measurements, taken at the foot of the real object, then, on the three-dimensional computer model place central supports, and file with digital data of three-dimensional computer model of the foot of the object with center supports is transmitted to the milling for production from a polyethylene bar blank an individual orthopedic shoe, which sizes verify taking into account a plantogram and measurements, taken from the foot of the real object for correction of fragments of the blank of orthopedic shoe to their compliance to a form of the sections of the foot of actual object corresponding to them. Then scanned custom-made orthopedic block to obtain scanning image in the form of a 3D image, on which simulate individual interinnersole layer and transfer data in a digital form in the machine for milling from block of insole, and the obtained insole which is an intterinnersole layer, is attached in heel and toe parts to a shoe with coincidence of a relief of the top of an interinnersole layer and boot tree to each other.
EFFECT: method of making individual orthopaedic boot tree with interinnersole layer consists in transfer of physical shape of foot of the real object to digital form by 3D method of scanning to obtain a mathematical model of the surface of model of the foot of object and simulation of three-dimensional computer model of the foot of the object in the form of polygonal model, production of polyethylene bar block an individual orthopedic boot tree by a milling method according to mathematical model of surface of the foot of object model.
1 cl, 8 dwg
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Authors
Dates
2016-08-27—Published
2015-09-30—Filed