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Voroshilova E.D., Petrosova I.A., Goguzev D.N., Andreeva E.G. A study of the ergonomic efficiency of protective clothing sleeve cuts for the restaurant of a hemostatic tourniquet. Journal of Clothing Science. 2026; 11(2). Available at: https://kostumologiya.ru/PDF/13TLKL226.pdf (in Russian).
A study of the ergonomic efficiency of protective clothing sleeve cuts for the restaurant of a hemostatic tourniquet
Voroshilova Ekaterina Dmitrievna
Russian State University named A.N. Kosygin (Technologies. Design. Art), Moscow, Russia
E-mail: ele0400@yandex.ru
Petrosova Irina Alexandrovna
Russian State University named A.N. Kosygin (Technologies. Design. Art), Moscow, Russia
E-mail: petrosova-ia@rguk.ru
RSCI: https://elibrary.ru/author_profile.asp?id=606302
Goguzev Daniil Nikolaevich
Russian State University named A.N. Kosygin (Technologies. Design. Art), Moscow, Russia
E-mail: goguzev-dn@rguk.ru
RSCI: https://elibrary.ru/author_profile.asp?id=1277804
Andreeva Elena Georgievna
Russian State University named A.N. Kosygin (Technologies. Design. Art), Moscow, Russia
E-mail: andreeva-eg@rguk.ru
RSCI: https://elibrary.ru/author_profile.asp?id=259825
Abstract. The article presents the results of a study aimed at finding the optimal place for embedding a hemostatic tourniquet in the sleeve of protective clothing. The key selection criterion was to preserve the ergonomic characteristics of the product: the freedom to lift the arms, move forward and other typical movements of the upper extremities. The paper compares four sleeve cuts (V-neck, shirt, raglan, as well as sleeves with a gusset and a one-piece cut-off side) using the three-dimensional virtual modeling method in the CLO3D program. A total of 80 virtual tests were conducted with varying degrees of tightening of the harness and its pressure. The assessment was carried out according to three groups of parameters: pressure on the fabric and on the tourniquet itself, deformation of the material, displacement of structural components (neck, armhole, shoulder seam). As a result, it was found that for each cut, the maximum height position of the tourniquet relative to the posterior angle of the armpit can be determined, at which the required range of arm movements is maintained. The highest overlap height (3 cm higher than that of other cuts) was achieved for a design with a gusset and a one-piece cut-off barrel. At the same time, the deformations of the material and the displacement of the nodes remain within acceptable limits, and the movements of the hands are not limited. Based on these criteria, the chosen cut is recommended for designing special clothing with a built-in harness.
Keywords: hemostatic tourniquet; special clothing; sleeve cut; ergonomics; CLO3D; virtual testing; trauma

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