Textile Engineering
High-Performance Sports & Extreme Environments
7 interactive High-Performance Sports & Extreme Environments tools. Every one shows its formula, a worked example and the standards it follows.
Professional tools
Full costing sheets, booking schedules and project appraisals. Enter your own figures and see the headline result before you buy.
- Air, Sea or Split: Late Shipment Expedite Sheet Worth of Choosing Style by Style
- Brownfield Expansion: What the Next Increment Costs Shared Plant the Proposal Forces
- Built Into the Fibre or Applied to the Cloth: What Protection Costs Over a Life What Moving to the Cheapest Protection Saves
- Buyer Chargeback: Contest, Fix or Accept Recoverable a Year
- Buyer Cost to Serve & Development Recovery Net Margin After Serving the Book
- Buyer Quotation Generator Order Value
- Buyer Terms & Effective Price Comparison Best Offer, Once Its Terms Are Paid For
- Buyer Test Plan & Laboratory Budget Laboratory Cost for the Range
7
tools
Technical & Performance Textiles
High-Performance Sports & Extreme Environments
Expand
Collapse
High-Performance Sports & Extreme Environments 7
- Built Into the Fibre or Applied to the Cloth: What Protection Costs Over a Life Premium Costs each route to a protective property - spun into the fibre, applied to the cloth, or applied and renewed - on the washes of protection it actually delivers rather than on the price of a garment. Reports the serviceable cloth retired with a failed finish and what it was worth, and whether the cheapest garment on the sheet is also the dearest protection on it. What Moving to the Cheapest Protection Saves cost/yr
- Multilayer Thermal & Vapour Stack Premium Adds a clothing system in series - every fabric layer and every trapped air gap between them - into total Rct, Ret, tog, clo and the Woodcock permeability index, then states it twice: as measured flat on a plate, and as worn once the gaps are compressed. Reports what share of the insulation is air rather than fabric, caps each gap at the thickness where convection begins, and reads the result against the insulation the stated conditions actually require. Insulation as Worn clo
- Cycling Aero-Suit Drag Area & Wattage Saving Predictor Estimates the aerodynamic benefit of a skinsuit: drag area after the fabric and seam contribution, baseline and reduced power at race speed, watts saved, the speed gain at constant power and time saved over a race distance. Power Saved W
- Fencing Plastron Puncture Resistance & Safety Margin Checks aramid fencing protection against broken blade puncture: resistance from areal density, layer count and blade tip sharpness, safety factor and margin against the required threshold, and the areal density or layer count the requirement demands. Puncture Resistance N
- High-Altitude Suit Hypobaric Moisture Transport Models sweat evaporation at extreme altitude: ambient pressure from the barometric profile, skin-to-air vapour pressure difference, evaporative resistance corrected for hypobaric diffusion, evaporative flux and capacity, and the sweat rate the metabolic load demands. Evaporative Capacity g/h
- Racing Suit Thermal Protective Performance & Escape Time Models flash fire protection in multi-layer aramid racewear: total TPP from base fabric, layer count and trapped air gap, incident heat flux, seconds to a second-degree burn, margin over the required escape time and the equivalent SFI rating. Time to Second-Degree Burn s
- Space Suit Multi-Layer Insulation Thermal Gradient Models EVA suit insulation between solar and deep-space extremes: effective emittance of the shield stack, radiative flux and total heat leak through the layers, equivalent conductance and thermal resistance, and the total load the cooling system must reject. Heat Leak Through Insulation W
No calculator matches that search. Try a fibre, a machine, a unit or a standard.