Abstract:
A cyclonic separation device (20) is provided having improved pressure loss characteristics. A fluid supply conduit (46) in flow communication with an inlet (32) to a cyclone (30) is located and configured to extend longitudinally through a central portion of the cyclone (30), whereby the sharp bending of the conduit may be reduced, thereby reducing pressure losses in the device, without unduly interfering with the cyclonic flow within the cyclone. The present invention may be adapted for use with cyclonic separation devices of all types, including single- and multi-stage cyclonic separators. The cyclonic separation device may be incorporated in a vacuum cleaner such as an upright vacuum cleaner. A three dimensional conduit which is optionally used with a cyclonic separator is provided.
Abstract:
A cyclonic separation device. is provided having improved pressure loss characteristics. A fluid supply conduit in flow communication with an inlet to a cyclone is located and configured to extend longitudinall y through a central portion of the cyclone, whereby the sharp bending of the conduit may be reduced, thereby reducing pressure losses in the device, without unduly interfering with the cyclonic flow within the cyclone. The present invention may be adapted for use with cyclonic separation devices of all types, including single- and multi-stage cyclonic separators. The cyclon ic separation device may be incorporated in a vacuum cleaner such as an upright vacuum cleaner. A three dimensional conduit which is optionally used with a cyclonic separator is provided.
Abstract:
A cyclonic separation device is provided having improved pressure loss characteristics. A fluid supply conduit (46) in flow communication with an inlet (56) to a cyclone (28) is located and configured to extend longitudinally through a central portion of the cyclone (28), whereby the sharp bending of the conduit (56) may be reduced, thereby reducing pressure losses in the device, without unduly interfering with the cyclonic flow within the cyclone (28). The present invention may be adapted for use with cyclonic separation devices of all types, including single - and multi-stage cyclonic separators. The cyclonic separation device may be incorporated in a vacuum cleaner such as an upright vacuum cleaner. A three dimensional conduit (56) which is optionally used with a cyclonic separator is provided.
Abstract:
A cyclonic separation device is provided having improved pressure loss characteristics. A fluid supply conduit in flow communication with an inlet to a cyclone is located and configured to extend longitudinally through a central portion of the cyclone, whereby the sharp bending of the conduit may be reduced, thereby reducing pressure losses in the device, without unduly interfering with the cyclonic flow within the cyclone. The present invention may be adapted for use with cyclonic separation devices of all types, including single- and multi-stage cyclonic separators. The cyclonic separation device may be incorporated in a vacuum cleaner such as an upright vacuum cleaner. A three dimensional conduit which is optionally used with a cyclonic separator is provided.
Abstract:
A cyclone separator having an improved efficiency to remove a broader spectrum of contained particles is disclosed. The cyclone separator is provided with a member positioned to interact with at least the inner portion of a fluid circulating within the cyclone cavity to impart changes in the acceleration of the fluid as it rotates within the cyclone cavity.
Abstract:
A cyclonic separation device is provided having improved pressure loss characteristics. A fluid supply conduit in flow communication with an inlet to a cyclone is located and configured to extend longitudinally through a central portion of the cyclone, whereby the sharp bending of the conduit may be reduced, thereby reducing pressure losses in the device, without unduly interfering with the cyclonic flow within the cyclone. The present invention may be adapted for use with cyclonic separation devices of all types, including single- and multi-stage cyclonic separators. The cyclonic separation device may be incorporated in a vacuum cleaner such as an upright vacuum cleaner. A three dimensional conduit which is optionally used with a cyclonic separator is provided.
Abstract:
A cyclonic separation device is provided having improved pressure loss characteristics. A fluid supply conduit (46) in flow communication with an inlet (56) to a cyclone (28) is located and configured to extend longitudinally through a central portion of the cyclone (28), whereby the sharp bending of the conduit (56) may be reduced, thereby reducing pressure losses in the device, without unduly interfering with the cyclonic flow within the cyclone (28). The present invention may be adapted for use with cyclonic separation devices of all types, including single - and multi-stage cyclonic separators. The cyclonic separation device may be incorporated in a vacuum cleaner such as an upright vacuum cleaner. A three dimensional conduit (56) which is optionally used with a cyclonic separator is provided.
Abstract:
A cyclonic separation device is provided having improved pressure loss characteristics. A fluid supply conduit (46) in flow communication with an inlet (56) to a cyclone (28) is located and configured to extend longitudinally through a central portion of the cyclone (28), whereby the sharp bending of the conduit (56) may be reduced, thereby reducing pressure losses in the device, without unduly interfering with the cyclonic flow within the cyclone (28). The present invention may be adapted for use with cyclonic separation devices of all types, including single - and multi-stage cyclonic separators. The cyclonic separation device may be incorporated in a vacuum cleaner such as an upright vacuum cleaner. A three dimensional conduit (56) which is optionally used with a cyclonic separator is provided.
Abstract:
A cyclonic separation device is provided having improved pressure loss characteristics. A fluid supply conduit (46) in flow communication with an inlet (56) to a cyclone (28) is located and configured to extend longitudinally through a central portion of the cyclone (28), whereby the sharp bending of the conduit (56) may be reduced, thereby reducing pressure losses in the device, without unduly interfering with the cyclonic flow within the cyclone (28). The present invention may be adapted for use with cyclonic separation devices of all types, including single - and multi-stage cyclonic separators. The cyclonic separation device may be incorporated in a vacuum cleaner such as an upright vacuum cleaner. A three dimensional conduit (56) which is optionally used with a cyclonic separator is provided.