Abstract:
Systems for delivering coating compositions are disclosed. The system may include a support base for supporting a container of a coating composition and a pressure canister movable in relation to the support base from an open position to a closed position in which the pressure canister surrounds the coating composition container and forms a seal with the support base. The system may include a pressure canister that is movable from a delivery position in which the canister is pressurized to a cleaning position in which the canister may be cleaned by a cleaning fixture. The pressure canisters are useful in automated systems for delivering various types of coating formulations.
Abstract:
The present disclosure relates to use of a sound and vibration damping system for use in automotive, appliance and other applications. Specifically, the sound and vibration damping system includes an elastomeric layer prepared from a low density butyl based composition and a constraining layer. The low density butyl based composition comprises at least one polybutene, at least one butyl rubber and light weight fillers. The sound and vibration damping system of the present disclosure has a specific gravity less than 1.0 and a loss factor of not more than 0.4 at 20°F, 40°F and 70°F for frequencies of 200 Hz, 400 Hz and 800 Hz.
Abstract:
Systems (10) for delivering coating compositions are disclosed. The system may include a support base (40) for supporting a container (30) of a coating composition and a pressure canister (20) movable in relation to the support base from an open position to a closed position in which the pressure canister surrounds the coating composition container and forms a seal with the support base. The system may include a pressure canister that is movable from a delivery position in which the canister is pressurized to a cleaning position in which the canister may be cleaned by a cleaning fixture (50). The pressure canisters are useful in automated systems for delivering various types of coating formulations.
Abstract:
The present disclosure relates to a reverse transfer method of forming a multi-layered roofing membrane composite that includes a release liner, a polyurethane pressure sensitive adhesive layer, and a single-ply roofing membrane. The disclosed methods include coating either a release liner or a single ply membrane with the pressure sensitive adhesive layer to form a composite roll for transport.