scholarly journals Innovative Technology For Testing Of Protective Gloves Specific Performances

2015 ◽  
Vol 66 (1) ◽  
pp. 137-142
Author(s):  
Florin Adrian Păun ◽  
Mihaela Părăian ◽  
Adrian Jurca ◽  
Leonard Lupu ◽  
Muntean Florina Berzan

Abstract Presence of hazards along carrying on the work tasks by operators require making use of personal protective equipment, adequate from ensuring protection standpoint. Protecting workers against hazards implies the personal protective equipment to fulfill certain constructional and safety requirements which are very important for the level of protection that should be ensured. This paperwork aims at identifying the constructional and safety requirements for hand protection equipment, as well as the applicable test methods whose results would allow their farther characterization regarding the protection ensured. Innovative solutions are presented, regarding the test stand for determining the blade cut resistance of protective gloves.

2015 ◽  
Vol 27 (5) ◽  
pp. 705-719 ◽  
Author(s):  
Rafal Hrynyk ◽  
Iwona Frydrych

Purpose – The purpose of this paper is to check an applicability of aluminized basalt fabrics for production of gloves protecting simultaneously against thermal and mechanical factors. Design/methodology/approach – Six variants of protective gloves were manufactured using two different glove constructions: more simple and cheaper with the anatomical thumb arrangement (model A), and more ergonomic one with so called “distance gussets” (model B). Aluminized basalt fabrics were contained in the back side of all variants and in only one variant of palm side. Then the protective properties against thermal and mechanical factors were measured according to the up-to-date standards. Findings – The fulfillment of contact heat requirement was achieved for all glove variants at 100°C. Application of aluminized basalt fabrics in the glove back side allowed obtaining the fourth performance level in the case of resistance to small metal splashes and assuring the highest protection against the radiant heat and small metal splashes. Fulfillment of standard requirements for all examined mechanical parameters was achieved and significantly higher values than reqired for the highest performance level were registered. Research limitations/implications – The further research including upscalling strategy as well as industrial conditions requirements should be taking into account for basalt textiles development. Moreover functionalization of basalt yarns and fabrics seems to be promising feature. Practical implications – The preliminary utility trials were done and registered results are very promising, shows that this kind of gloves will be cheaper than produced so far and could be used in the glass, welder companies. Social implications – The basalt textiles applied for protective gloves or other personal protective equipment can ensure safety at work for end users operating in mechanical and thermal risk scenarios. Originality/value – Up till now the basalt fabrics have not been recognized as a material for the personal protective equipment, they were used mostly for technical purposes.


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