CA2899554C

Dispensing device with elastically driven mixer

Abstract

The invention relates to a mixing device for polymethylmethacrylate bone cements (PMMA bone cements), comprising a mixing space (2) for mixing the PMMA bone cement; at least one mixing element (4) supported in the mixing space (2) such that it can rotate; a gear, by means of which the rotation of the at least one mixing element (4) can be driven; at least one elastically deformable energy-storing element (16) that is connected to the gear such that the gear can be driven by an elastic energy from the energy-storing element (16) and such that the at least one mixing element (4) can be rotated in the mixing space (2) by means of the gear upon the release of elastic energy from the energy-storing element (16). The invention further relates to a vacuum mixing system comprising a mixing device of this type and to a method for mixing a cement, in particular a PMMA bone cement.

CA2899554C, drawing sheet 1
Sheet 1 of 5

Term

Projected expiry 5 August 2035.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Projected expiry

22 claims: 1 independent, 21 dependent

  1. 1
    THE EMBODIMENTS OF THE INVENTION IN WHICH AN EXCLUSIVE PROPERTY OR PRIVILEGE IS CLAIMED ARE DEFINED AS FOLLOWS:1. Mixing device for polymethylmethacrylate bone cements (PMMA bone cements), comprising a mixing space (2, 52) for the mixing of the PMMA bone cement;at least one mixing element (4, 54) that is supported in the mixing space (2, 52) so as to be rotatable;a gear by means of which the rotation of the at least one mixing element (4, 54) is drivable;at least one elastically deformable energy-storing element (16, 66) that is connected to the gear such that the gear is drivable by an elastic energy from the energy-storing element (16, 66) and such that the at least one mixing element (4, 54) is rotatable in the mixing space (2, 52) by means of the gear upon the release of elastic energy from the energy-storing element (16, 66), the motion of the at least one mixing element (4, 54) during the rotary motion is influenced by means of a cam disc (36, 86) such that the at least one mixing element (4, 54) also performs a periodical axial stroke motion during the rotary motion.
  2. 5
    Mixing device according to any one of claims 1 to 4, characterised in that the at least one mixing element (4, 54) is a plurality of mixing vanes (4, 54), whereby the mixing vanes (4, 54) extend into the mixing space (2, 52) such as to be radial to the rotation axis during the rotation of the mixing vanes (4, 54) in the mixing space (2, 52) and are inclined with respect to a plane perpendicular to the rotation axis.
  3. 9
    Mixing device according to any one of claims 1 to 8, characterised in that the gear and/or the elastically deformable energy-storing element (16, 66) are locked by means of at least one detachable mechanical lock (18) such that a release of the energy from the energy-storing element (16, 66) is prevented, whereby the at least one mechanical lock (18) is preferred to be a safety catch and/or a safety pin (18).
  4. 10
    Mixing device according to any one of claims 1 to 9, characterised in that the gear is a cogwheel gear or a friction wheel gear or a power transmission gear.
  5. 11
    Mixing device according to any one of claims 1 to 10, characterised in that the elastically deformable energy-storing element (16, 66) is a spring element (16, 66) that is connected to the gear, whereby the gear is drivable by the spring force of the tensioned spring element (16, 66).
  6. 12
    Mixing device according to any one of claims 1 to 11, characterised in that a release of elastic energy from the energy-storing element (16, 66) effects a rotary motion of the gear, that the gear effects a transmission ratio of at least 2:1 with respect to the at least one mixing element (4, 54).
  7. 13
    Vacuum mixing system for the mixing of a PMMA bone cement, comprising a mixing device according to any one of claims 1 to 12, further comprising a cement powder contained in the mixing space (2, 52);a monomer container that is filled with a fluid monomer;and a conduit means (22, 72) that connects the monomer container to the mixing space (2, 52) in liquid-permeable manner or by means of which the monomer container is connectable to the mixing space (2, 52) in liquidpermeable manner. CA 2899554 2017-10-27
  8. 16
    Vacuum mixing system according to any one of claims 13 to 15, characterised in that the mixing space (2, 52) is a part of a cement cartridge (1, 51), whereby the cement cartridge (1, 51) is closed on one side by a dispensing plunger or a dispensing plunger system (26, 28, 76, 78), whereby the dispensing plunger or the dispensing plunger system (26, 28, 76, 78) is axially mobile in the mixing space (2, 52) and is intended for expelling the ready-mixed PMMA bone cement, and in that the closure thus formed is impermeable for the cement powder particles and is permeable for gas, in particular for ethylene oxide, whereby the cement cartridge (1, 51), before the cement components are being mixed, is closable appropriately in vacuum-tight manner such that a transfer of the monomer liquid into the mixing space (2, 52) of the cement cartridge (1, 51) to the cement powder under the effect of a vacuum is made feasible. CA 2899554 2017-10-27
  9. 17
    Vacuum mixing system according to any one of claims 13 to 16, characterised in that a device for generating a vacuum is integrated into the vacuum mixing system.
  10. 18
    Method for the mixing of a cement, wherein the method is performed using a device according to any one of claims 1 to 17 and in which at least two starting components of the cement are mixed in the mixing space (2, 52) by the at least one mixing element (4, 54), whereby the at least one mixing element is rotated in the mixing space about a rotation axis and, in the process, mixes the starting components in the mixing space (2, 52), whereby the rotation of the at least one mixing element (4, 54) is driven by means of the gear and the energy driving the gear is removed from an elastically deformable energy-storing element (16, 66), whereby the elastically deformable energy-storing element (16, 66) relaxes while the energy is being removed, and whereby the at least one mixing element (4, 54) is periodically moved in an axial direction and, in the process, mixes the starting components in the mixing space (2, 52) and the periodical axial motion of the at least one mixing element (4, 54) is driven by means of the cam disc (36, 86), and the energy for driving the motion of the cam disc (36, 86) is removed from the elastically deformable energystoring element (16, 66), whereby the elastically deformable energy-storing element (16, 66) relaxes while the energy is being removed.
  11. 21
    Method according to any one of claims 18 to 20, characterised in that the energy-storing element (16, 66) is a tensioned metal spring (16, 66) that relaxes upon the release of elastic energy to the gear and thus drives the gear.
  12. 22
    Method according to any one of claims 18 to 21, characterised in that the elastic energy is removed from the energy-storing element (16, 66) by detaching a mechanical lock (18) that locks the gear and/or the elastically deformable energy-storing element (16, 66), whereby, after said detachment, the elastic energy is released from the energy-storing element (16, 66) to the gear. CA 2899554 2017-10-27