Mixing device with adjustment device for gap setting
11034059 · 2021-06-15
Assignee
Inventors
Cpc classification
B29B7/7657
PERFORMING OPERATIONS; TRANSPORTING
B29B7/60
PERFORMING OPERATIONS; TRANSPORTING
B29B7/7414
PERFORMING OPERATIONS; TRANSPORTING
B29B7/728
PERFORMING OPERATIONS; TRANSPORTING
B29B7/407
PERFORMING OPERATIONS; TRANSPORTING
B29B7/401
PERFORMING OPERATIONS; TRANSPORTING
B29B7/726
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29B7/74
PERFORMING OPERATIONS; TRANSPORTING
B29B7/60
PERFORMING OPERATIONS; TRANSPORTING
B29B7/58
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A mixing device includes a first feed opening for a first liquid—preferably gas-laden—plastics component, a second feed opening for a second liquid plastics component, and a discharge opening for discharging a mixture of the first and the second liquid plastics component. The mixing device has a rotating agitator for mixing the first and second liquid plastics components, and a gap remains between the agitator and the discharge opening. An adjustment device is provided which either varies the gap by a relative movement between the discharge opening and the agitator, or varies the size of the discharge opening. A regulating device is connected in signal-transmitting fashion to a sensor for determining a pressure prevailing in the mixing device. The regulating device sets the gap, or the size of the discharge opening, by the adjustment device such that the pressure prevailing in the mixing device has a predetermined value.
Claims
1. A mixing device comprising: a first feed opening for a first liquid plastic component; a second feed opening for a second liquid plastic component; a body having a mixing chamber and a discharge opening for discharge of a mixture to be produced in the mixing chamber and comprising the first liquid plastic component and the second liquid plastic component; a rotating agitator for mixing the first liquid plastic component and the second liquid plastic component, the agitator being arranged such that a gap remains between the agitator and the discharge opening; an adjusting device configured to either alter a size of the gap by a relative movement between the discharge opening and the agitator or alter the size of the discharge opening, the adjusting device including an axially-movable screw sleeve arranged concentrically with a shaft of the agitator such that an axial position of the agitator is adjusted as the screw sleeve is moved axially to thereby adjust a size of the gap; a sensor for determining a pressure prevailing in the mixing device; and a regulating device in a signal-conducting relationship with the sensor, wherein the regulating device is configured to set the gap or the size of the discharge opening by controlling the adjusting device such that the pressure prevailing in the mixing device is at a predetermined value; wherein an angle of inclination of a tip of the screw sleeve relative to a longitudinal axis of the screw sleeve is smaller than an angle of inclination of an end face of the mixing chamber.
2. The mixing device as set forth in claim 1, wherein the agitator is displaceable relative to the discharge opening.
3. The mixing device as set forth in claim 2, wherein the adjusting device further includes a gear driven by a motor, the gear engaging the screw sleeve so rotate the screw sleeve and thereby move the screw sleeve axially.
4. The mixing device as set forth in claim 1, wherein the discharge opening is variable in size.
5. The mixing device as set forth in claim 4, wherein the adjusting device is connected to the discharge opening to vary the size of the discharge opening.
6. The mixing device as set forth in claim 1, wherein the mixing device has an elongated configuration, and the first feed opening for the first liquid plastic component and the second feed opening for the second liquid plastic component are arranged at different axial positions of the mixing device.
7. The mixing device as set forth in claim 1, wherein the discharge opening of the mixing device is connected to a nozzle.
8. The mixing device as set forth in claim 1, wherein the regulating device is configured to control the adjusting device to maintain the pressure prevailing in the mixing device at the predetermined value, the predetermined value being less than 20 bars.
9. The mixing device as set forth in claim 8, wherein the predetermined value is less than 10 bars.
10. The mixing device as set forth in claim 9, wherein the predetermined value is between about 2 bars and about 4 bars.
11. An arrangement comprising the mixing device as set forth in claim 1, and a first source for the first liquid plastic component, the first source being connected to the first feed opening for the first liquid plastic component, and a second source for the second liquid plastic component, the second source being connected to the second feed opening for the second liquid plastic component.
12. The arrangement as set forth in claim 11, wherein each of the first liquid plastic component and the second liquid plastic component is mixed with a gas.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Embodiments of the invention are discussed with reference to the Figures, in which:
(2)
(3)
(4)
DETAILED DESCRIPTION OF THE INVENTION
(5)
(6) To produce the mixture consisting of the first and second liquid plastic components, the first liquid plastic component which is mixed with air in this example and which is provided by a first source 10 is introduced through the first feed opening 2, and the second liquid plastic component which is provided by a second source 11 is introduced through the second feed opening 3 at different axial positions of the mixing device 1 which here is of an elongated configuration. Mixing of those two components is effected by the rotating agitator 7.
(7) Provided adjacent to the tip of the agitator 7 is a discharge opening 4 for discharge of the mixture comprising the first and second liquid plastic components from the mixing chamber 12. The mixture can be discharged from the discharge opening 4 in the direction of a nozzle 9 by a gap 6 remaining between the agitator 7 and the discharge opening 4.
(8) There is provided an adjusting device 5 by which a relative movement between the discharge opening 4 and the agitator 7 can be produced, and thus the gap 6 between the agitator 7 and the discharge opening 4 is variable. The adjusting device 5 has a stepping motor 20 which engages a gear 21 by way of a shaft 22, the gear 21 laterally engaging into a screw sleeve 23 arranged concentrically with respect to the shaft 16. Rotation of the gear 21 by the stepping motor 20 causes axial displacement of the screw sleeve 23 whereby height adjustment of the agitator 7 is effected, thereby setting the gap 6 between the agitator 7 and the discharge opening 4. Measurement of the adjustment made can be implemented by way of the diagrammatically illustrated scale and communicated to the regulating device 14 (the corresponding signal lines are not shown). During the metering operations, air is introduced into the region above the seal 15 in the direction of the diagrammatically illustrated arrow, which leads to lifting of the agitator 7 against the force applied by the force storage means 8 until reaching the abutment condition defined by the screw sleeve 23. When the air pressure is switched off, the force storage means 8 moves the agitator 7 in the direction of the discharge opening 4 (downwardly in this view) to such an extent that the agitator 7 closes the discharge opening 4.
(9) To determine a pressure prevailing in the mixing device 1 or the mixing chamber 12 thereof, a sensor 17 is in signal-conducting relationship with a regulating device 14 by way of a signal line 18. The regulating device 14 in turn is in signal-conducting relationship with the adjusting device 5 by way of a control line 19 so that the regulating device 14 can set the gap 6 by way of the adjusting device 5 in such a way that the pressure prevailing in the mixing device 1 or its mixing chamber 12 is at a predetermined value of, for example, less than 20 bars. As an alternative to the illustrated positioning of the sensor 17, it is also possible to conceive other positions, for example in the line 10.
(10) In the present embodiment, the pressure conditions are selected so that there is a constant pressure in the mixing chamber 12, which is sufficiently low that a foaming agent present in the mixture can foam out.
(11) If, during or after a process of discharging, the mixture from the mixing device 1, the pressure in the mixing device 1 or its mixing chamber 12 changes, that change in pressure can be detected by the sensor 17 and the regulating device 14 can actuate the adjusting device 5 in such a way that that change in pressure is counteracted by a corresponding relative movement between the agitator 7 and the discharge opening 4, and the desired predetermined pressure is maintained in the mixing device 1. In particular, suitable pressure adaptation can be implemented after each discharge process or after each metering operation.
(12) A seal 15 (which can act sealingly in one direction or in both directions) sealingly surrounds the rotating shaft 16 of the agitator 7 and seals off the mixing chamber 12 in the region of the shaft 16 of the agitator 7. The seal 15 can, for example, comprise Teflon and can permit smooth axial movement of the rotating shaft 16. By virtue of the fact that the shaft 16 rotates and the seal 15 causes slight friction, it is possible to achieve very fine positional adaptation of the agitator 7. In particular, it is possible in that way to avoid unwanted pressure fluctuations due to abrupt axial displacement of the agitator 7 as a consequence of a stick-slip effect. The axial displacement of the agitator 7 is also facilitated by the rotation of the shaft 16. Preferably, the seal 15 is in the form of a rotational and translational seal.
(13)
(14)
(15) As a difference from the illustrated configuration, the adjusting device 5 for example can also include a per se known cam drive, spindle drive or hydraulic drive.
LIST OF REFERENCES
(16) 1 mixing device 2 first feed opening for at least one first liquid plastic component 3 second feed opening for at least one second liquid plastic component 4 discharge opening 5 adjusting device 6 gap 7 agitator 8 force storage means 9 nozzle 10 source for at least one first liquid plastic component 11 source for at least one second liquid plastic component 12 mixing chamber 13 end face 14 regulating device 15 seal 16 shaft 17 sensor 18 signal line 19 control line