[go: up one dir, main page]

Singh et al., 2020 - Google Patents

Comparative performance assessment of pineapple and Kevlar fibers based friction composites

Singh et al., 2020

View HTML
Document ID
5648264032948158577
Author
Singh T
Pruncu C
Gangil B
Singh V
Fekete G
Publication year
Publication venue
Journal of materials research and technology

External Links

Snippet

Novel friction composites materials using pineapple fiber as a sustainable alternative for automotive industry were developed by increasing its amount from 5− 20 wt.% in the step of 5%. To compare the performance of pineapple fiber, friction composites with 5− 10 wt.% of …
Continue reading at www.sciencedirect.com (HTML) (other versions)

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING ENGINES OR PUMPS
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16DCOUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
    • F16D69/00Friction linings; Attachment thereof; Selection of coacting friction substances or surfaces
    • F16D69/02Compositions of linings; Methods of manufacturing
    • F16D69/025Compositions based on an organic binder
    • F16D69/026Compositions based on an organic binder containing fibres

Similar Documents

Publication Publication Date Title
Singh et al. Comparative performance assessment of pineapple and Kevlar fibers based friction composites
Xin et al. Friction properties of sisal fibre reinforced resin brake composites
Matějka et al. Jute fibers and powderized hazelnut shells as natural fillers in non-asbestos organic non-metallic friction composites
Rashid et al. Dry sliding wear behavior of untreated and treated sugar palm fiber filled phenolic composites using factorial technique
Sathyamoorthy et al. Brake friction composite materials: a review on classifications and influences of friction materials in braking performance with characterizations
Krishnan et al. Investigation of Caryota urens fibers on physical, chemical, mechanical and tribological properties for brake pad applications
Öztürk et al. Hot wear properties of ceramic and basalt fiber reinforced hybrid friction materials
Babu Influence of benzoyl chloride treatment on the tribological characteristics of Cyperus pangorei fibers based non-asbestos brake friction composites
Gweon et al. The effect of short glass fiber dispersion on the friction and vibration of brake friction materials
Ilanko et al. Wear behavior of asbestos-free eco-friendly composites for automobile brake materials
Singh et al. Natural fiber reinforced non-asbestos brake friction composites: influence of ramie fiber on physico-mechanical and tribological properties
Raghunathan et al. Effective utilization of surface-processed/untreated Cardiospermum halicababum agro-waste fiber for automobile brake pads and its tribological performance
El-Tayeb et al. Effect of water spray on friction and wear behaviour of noncommercial and commercial brake pad materials
JP2014527566A (en) Friction material for brake
Sugözü Investigation of using rice husk dust and ulexite in automotive brake pads
KR102609939B1 (en) Friction materials, particularly for manufacturing brake pads, and related manufacturing methods
Yashwhanth et al. Present knowledge and perspective on the role of natural fibers in the brake pad material
Gupta et al. Effect of sisal fibre loading on wear and friction properties of jute fibre reinforced epoxy composite
Ma et al. Tribological and mechanical properties of pine needle fiber reinforced friction composites under dry sliding conditions
Kalel et al. Exploration of Zylon fibers with various aspect ratios to enhance the performance of eco-friendly brake-pads
Kumar et al. A comparative study of alkali treated date palm fiber based brake friction composites and standard Kevlar‐based brake friction composites
Chandrasekar et al. Effect of adding sisal fiber on the sliding wear behavior of the coconut sheath fiber-reinforced composite
Monreal-Perez et al. Full-scale dynamometer tests of composite railway brake shoes including latxa sheep wool fibers
Kchaou et al. Design, characterization, and performance analysis of Miscanthus fiber reinforced composite for brake application
Kumar et al. Characterization of Allium sativum stalk-based biomass for automotive brake pad applications