OHLEMILLER et al., 1980 - Google Patents
Cellulosic Insulation Material I. Effect of Additives on Some Smolder CharacteristicsOHLEMILLER et al., 1980
- Document ID
- 860820362883060813
- Author
- OHLEMILLER J
- Rogers F
- Publication year
- Publication venue
- Combustion Science and Technology
External Links
Snippet
Minimum temperatures for the initiation of smolder in cellulosic insulation materials were measured by the method of Bowes and Townshend (1-D heat flow through a layer on a hot surface). The minimum temperature decreases rather rapidly with layer thickness; a range of …
- 238000009413 insulation 0 title abstract description 60
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Moussa et al. | Mechanism of smoldering of cellulosic materials | |
OHLEMILLER et al. | Cellulosic Insulation Material I. Effect of Additives on Some Smolder Characteristics | |
Milosavljevic et al. | Cellulose thermal decomposition kinetics: global mass loss kinetics | |
Di Blasi | Numerical simulation of cellulose pyrolysis | |
Courty et al. | External heating of electrical cables and auto-ignition investigation | |
Quintiere et al. | Wall flames and implications for upward flame spread | |
Di Blasi | Heat, momentum and mass transport through a shrinking biomass particle exposed to thermal radiation | |
Moghtaderi et al. | A new correlation for bench-scale piloted ignition data of wood | |
Wessies et al. | Experimental and analytical characterization of firebrand ignition of home insulation materials | |
Tang et al. | A Comparative study on fire hazards of cables used in nuclear power plants based on small-and large-scale experiments | |
Fernandez–Pello et al. | A study of the fire performance of electrical cables | |
Siat et al. | Combustion behaviour of ethylene vinyl acetate copolymer‐based intumescent formulations using oxygen consumption calorimetry | |
Kokkala et al. | Upward flame spread on wooden surface products: experiments and numerical modelling | |
Ohlemiller | Cellulosic insulation material III. Effects of heat flow geometry on smolder initiation | |
Leisch et al. | Smoldering combustion in horizontal dust layers | |
Gong et al. | Pyrolysis and autoignition behaviors of beech wood coated with an acrylic-based waterborne layer | |
Ohlemiller | Smoldering combustion hazards of thermal-insulation materials | |
Delichatsios et al. | Upward flame spread and critical conditions for PE/PVC cables in a tray configuration | |
Anderson et al. | Ignition signatures of a downward smolder reaction | |
Rychlý et al. | Modelling of heat release rate-time curves from cone calorimeter for burning of polymers with intumescence additives | |
Nelson et al. | A mathematical model of ignition in the cone calorimeter | |
Mansurov et al. | The role of carbonized layers for fire protection of polymer materials | |
Párničanová et al. | Laboratory Investigation of Sessile Oak Wood Thermal Degradation | |
Saatdjian et al. | Effects of binder decomposition on high-temperature performance of mineral wool insulation | |
Taylor | Fire spread in concealed foamed plastic insulation |