Apparatus for the production of a mixture of at least one gas and at least one liquid plastic component
10661478 · 2020-05-26
Assignee
Inventors
Cpc classification
F04B13/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29C45/17
PERFORMING OPERATIONS; TRANSPORTING
F04B9/133
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29B7/7414
PERFORMING OPERATIONS; TRANSPORTING
B29B7/7466
PERFORMING OPERATIONS; TRANSPORTING
B29B7/7485
PERFORMING OPERATIONS; TRANSPORTING
F04B9/113
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29B7/603
PERFORMING OPERATIONS; TRANSPORTING
F04B15/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
B29C45/17
PERFORMING OPERATIONS; TRANSPORTING
B29B7/60
PERFORMING OPERATIONS; TRANSPORTING
B29B7/74
PERFORMING OPERATIONS; TRANSPORTING
F04B15/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B13/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B9/133
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An apparatus, for producing a mixture of at least one gas and at least one liquid plastic component, includes a mixing device that is connected, via a first pipe, to an introducing device for the at least one gas and is connected, via a second pipe, to a conveying device for the at least one liquid plastic component. The introducing device and the conveying device are piston pumps that have pistons.
Claims
1. An apparatus for producing a mixture of at least one gas and at least one liquid plastic component, the apparatus comprising: a container or feed pump for the at least one liquid plastic component; a gas source; a mixing device; an introducing device for the at least one gas; a first passage which connects the mixing device to the introducing device, wherein a first end of the first passage defines an outlet passage from the introducing device and a second end of the first passage defines a first inlet passage into the mixing device; a conveying device for the at least one liquid plastic component; a second passage which connects the mixing device to the conveying device, wherein a first end of the second passage defines an outlet passage from the conveying device and a second end of the second passage defines a second inlet passage into the mixing device; a first connecting passage which connects the container or feed pump to the conveying device, wherein the conveying device is between the container or feed pump and the mixing device, and wherein a first end of the first connecting passage defines an outlet passage from the container or feed pump and a second end of the first connecting passage defines an inlet passage into the conveying device; and a second connecting passage which connects the gas source to the introducing device, wherein the introducing device is between the gas source and the mixing device, and wherein a first end of the second connecting passage defines an outlet passage from the gas source and a second end of the second connecting passage defines an inlet passage into the introducing device, wherein each of the introducing device and the conveying device is a piston pump having a piston.
2. The apparatus according to claim 1, wherein the piston of the introducing device and the piston of the conveying device are mechanically or electrically coupled.
3. The apparatus according to claim 2, wherein the piston of the introducing device and the piston of the conveying device are coupled such that, as gas is discharged from the introducing device, liquid plastic component is introduced into the conveying device, and, as liquid plastic component is discharged from the conveying device, gas is introduced into the introducing device.
4. The apparatus according to claim 2, wherein the piston of the introducing device and the piston of the conveying device are coupled such that, as gas is discharged from the introducing device, liquid plastic component is discharged from the conveying device, and, as gas is introduced into the introducing device, liquid plastic component is introduced into the conveying device.
5. The apparatus according to claim 2, wherein both piston pumps in each case alternately form the introducing device or the conveying device.
6. A system for producing foamed plastic parts, the system comprising the apparatus according to claim 1.
7. The system according to claim 6, wherein the foamed plastic parts are sealing beads.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Embodiments of the invention are discussed with reference to the figures.
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DETAILED DESCRIPTION OF THE INVENTION
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(11) Such a subunit is formed by an apparatus 16 for producing a mixture of at least one gas and at least one liquid plastic component. This apparatus 16 in turn comprises at least a mixing device 17, an introducing device 19 for the at least one gas connected to the mixing device 17 via a first pipe 18 and a conveying device 21 for the at least one liquid plastic component connected to the mixing device 17 via a second pipe 20. In addition, this apparatus 16 comprises a container 53 for the plastic component and a gas source 54, in particular an air compressor. A feed pump could also be provided instead of the container 53.
(12) In such an apparatus 16, in contrast to the state of the art, it is provided that the introducing device 19 and the conveying device 21 are designed as piston pumps 25 and 24 having pistons 22 and 23.
(13) The piston 22 of the introducing device 19 (piston pump 25) and the piston 23 of the conveying device 21 (piston pump 24) are in this example mechanically coupled in a diametrically opposed manner via a pressure transformer 26. This allows the use of an actuator which operates at relatively low pressure (e.g. pneumatic), as the necessary increase in force is achieved via the force transformation. In addition, inlet valves 27, 28 and outlet valves 29, 30 can be seen.
(14) As shown in more detail in
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(16) In contrast,
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(19) Returning to
(20) The apparatus 36 additionally comprises a metering device 38, preferably a metering pump, for which the plastic component is provided by the transfer device. Moreover, the apparatus 36 comprises a buffer device 39 with a variable buffer volume 40 arranged between the source 37 of the at least one liquid plastic component and the metering device 38, by means of which buffer device 39 the liquid plastic component intermittently conveyed to it is constantly made available to the metering device 38 in sufficient quantity with sufficient charging pressure. After the metering device 38, the plastic component arrives at a metering valve 60, after which the plastic component is discharged directly (see nozzle 61 represented by a dashed line)or, as represented in
(21) In order to enable as even as possible a transfer it is preferably provided that the pressure prevailing in the liquid plastic component between buffer device 39 and metering device 38 can be controlled by the buffer device 39. The liquid plastic component passes via an inlet opening 41 from the source 37 into the buffer volume 40 of the buffer device 39. The buffer volume 40 is in turn connected to the metering device 38 via an outlet opening 42. In
(22) Furthermore, it is provided that a pressure sensor 46 is arranged on an exit side of the metering device 38. This pressure sensor 46 is connected to a control device 47 via a control line 48. The control device 47 controls the buffer device 39 such that the pressure applied on the entry side of the metering device 38 tracks the pressure prevailing on the exit side of the metering device 38. Furthermore, the control device 47 can be designed so as to close both the inlet valve 51 and the outlet valve 52 and to compress the liquid plastic component located in the buffer volume 40. A sensor that is not represented can also be provided, by means of which an irregular compression of the buffer volume 40 can be detected.
(23) Furthermore, the buffer device 39 is connected to a device 49 for pressurizing the buffer device 39. This can be controlled either by the control device 47 (dashed line drawn in) or by an independent control device 50.
(24) In principle, the two apparatuses 16 and 36 would already be sufficient for the production of foamed plastic parts in the form of sealing beads. However, it can additionally preferably be provided that a second plastic component is foamed in parallel with the first plastic component or mixed with the first plastic component to form the plastic part, preferably physically. For this reason, a further subunit of the apparatus 100 is formed by an apparatus 62 for multi-component foaming (once again see
(25) Stop valves can also be provided in the metering valves 57 and/or 60, as are used in
LIST OF REFERENCE NUMBERS
(26) 16 Apparatus 17 Mixing device 18 First pipe 19 Introducing device 20 Second pipe 21 Conveying device 22 Piston 23 Piston 24 Piston pump 25 Piston pump 26 Pressure transformer 27 Inlet valve 28 Inlet valve 29 Outlet valve 30 Outlet valve 31 Sensor 32 Signal line 33 Control device 34 Cylinder 35 Cylinder 36 Device for transferring a liquid plastic component 37 Source 38 Metering device 39 Buffer device 40 Buffer volume 41 Inlet opening 42 Outlet opening 43 Housing 44 Piston rod 45 Piston 46 Pressure sensor 47 Control device 48 Control line 49 Pressurization device 50 Control device 51 Inlet valve 52 Outlet valve 53 Container for plastic component 54 Gas source 55 Container for second plastic component 56 Mixing device 57 Metering valve 58 Mixing element 59 Metering valve 60 Metering valve 61 Nozzle 62 Apparatus for multi-component foaming 63 Coupling mechanism 64 Control device 65 Switching device 66 Switching device 67 Control device 68 First pipe 69 Second pipe 70 Third pipe 71 Fourth pipe 72 Position sensor 73 Sealing bead 100 Apparatus for producing foamed plastic parts