Deepti gupta biography template

The possibility of using these fibres as a substitute for the highly polluting and expensive cotton fibre for various industrial applications is being explored. Studies have been conducted with Pearl millet straw, and work on Himalayan Nettle fibre has been recently initiated. In addition to the above, our group also works on development of functional fabrics for special applications such as army uniforms, at leisure, pressure garments and sportswear.

Design of protective garments such as motorcycle riders clothing is another project. The group also works on collecting of anthropometric data and developing garment sizing systems. In addition to teaching and research activities, Professor Gupta is actively involved in administrative activities. Prof Gupta is engaged with corporate governance matters too and sits as an Independent Director on the Board of 3 multinational companies.

She has travelled widely and lectured extensively in institutes within India and abroad. The objective of this project is to identify and study indigenous agro waste and biowaste products that can be used as a source of cellulose fibres for value added industrial applications. Cellulose fibre has been extracted from Pearl Millet straw Pennisetum glaucum and characterised.

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The potential of using the extracted fibre for production of sanitary napkins and as an adsorbent for textile dyes has been explored. Since there is a dearth of literature and standards on properties and performance requirements of sanitary napkins, a variety of commercially available sanitary napkins were tested and characterised in terms of physical properties as well as absorbancy characteristics.

Method for testing and comparing the absorbancy of sanitary napkins has been standardised. Results show that PMS fibres can be used as an effective absorbent for sanitary napkins. The fibres can also be used as an adsorbant for removing textile dyes from waste waters. Himalayan nettle Girardinia diversifolia is abundant in habitats of Uttarakhand, Himachal Pradesh and Sikkim.

The fibre has high tenacity and several other properties. However, the technology for large scale extraction and processing of fibres is not available in the country. This project aims to develop scientific method of extraction and processing of Nettle fibre and develop value added products from the same. Surface functionalization using physical methods such as irradiation with plasma or UV excimer lamp brings about physico chemical modifications in the textile at nano level, without affecting the bulk properties.

A variety of finishes have been developed using natural materials which have been attached durably on cotton, wool, silk and polyester to create multifunctional effects. The project is aimed at reducing heavy water pollution caused by discharging of silk degumming liquor containing large quantities of sericin, soap and alkali into the waste waters.

Sericin- also a protein, has excellent oxygen permeability, cell protecting and antioxidant action, moisture regulating ability, protection from ultraviolet UV radiation and wound healing properties. Thus the product can be used to create value added multifunctional textiles. This will provide an additional source of income to the poor silk reelers and higher profits to silk processors.

While conventional methods of sericin extraction make use of soap and alkali, in our lab. Higher yield of sericin was obtained at lower temperature and time of treatment. A protocol was proposed for characterization of extracted sericin in terms of physical and thermal properties, morphology, protein quality, structure and molecular weight. Polyester fabric could be imparted properties such as enhanced wicking, moisture regain, antistat, anti ultraviolet as well as anti oxidant anti ageing.

Wool fabric was rendered shrink proof by imparting a sericin coating on UV irradiated fabric. Scaling up of the technology for commercialization is going on. Chitosan is another highly bioactive waste by product of the shell fish processing industry.

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Being polycationic in nature, chitosan exhibits strong antimicrobial properties. Application of a high molecular weight polymer on textiles poses several challenges. Studies were conducted to produce low molecular weight derivatives of chitosan and modification of chitosan was carried out to develop durable finish for cotton. In situ coloration of wool in a range of durable shades was carried out using potato juice and catechol.

Curcumin could be durably attached to polyester textiles that were pretreated with UV radiation of nm to create medical fabrics. Natural dyes were extracted from various plant sources and shade optimization done on natural and synthetic fibres. Mechanism of dyeing of textiles with plant dyes was established through theoretical studies.

Technology for dyeing coir fibre with natural dyes was transferred to Coir Board. Series of workshops was conducted to train carpet weavers of India in the technology of dyeing carpet wool in deep and consistent shades. Hospital textiles are known vectors of infections in a healthcare facility, yet very little is known about their role in spread of infections.

Understanding the mechanism of microbe- textile interactions can lead to design and selection of hospital fabrics which can minimise the adhesion, growth and transfer of microbes through textiles. This can work as an effective and affordable infection control strategy for India. Motorcycling as a sport as well as a means of commuting is growing at a rapid pace in India.

With the growing use of motorcycles, the number of accidents involving the same is also increasing at an alarming rate. Protective clothing use worldwide has been shown to reduce the incidence of injuries in motorcyclists. Indian weather and use conditions pose a unique challenge for clothing designers. Very little data is available on the ergonomic, physiological and social needs of Indian motorcyclists.

A detail survey of motorcycle riders across the country has been conducted to assess their habits, preferences and requirements from clothing. Kinematic analysis was employed to study the typical body postures of a motorcycle rider. It is well established that a static 2D anthropometry fails to accurately capture the dimensions of complex 3D human form and conventional patterns produced by 2D flat pattern methods fail to factor in the change in body shape and size during extreme postures.

Hence patterns designed by these methods yield poorly fitting garments. Therefore in this study, virtual, 3D human body models were developed in selected dynamic poses using 3D body scanners. Kinematic patterns for jacket and trousers were designed and fit assessment was also carried on the 3D form using 3D softwares. Garment prototypes will be developed and evaluated by users for comfort, performance and aesthetics.

The proposed approach can subsequently be applied to design any type of functional clothing for specific requirements. There is a huge unmet need in the form of therapeutic clothing, designed especially for the Indian population. Products that are suitable for hot weather conditions, are comfortable and affordable are generally not available.

I have been working in this area for the past four years mainly through design projects given to B. Several products have been developed and are in various deepti gupta biographies template of development- trials, prototyping or commercialization. Assistive device for Kangaroo mother care jacket for low birth weight babies. The project amalgamates design and technology to provide innovative solutions for children suffering with Autism Spectrum Disorder through wearable products.

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