Method for printing three-dimensional parts wtih crystallization kinetics control
US-9527242-B2 · Dec 27, 2016 · US
US11104039B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11104039-B2 |
| Application number | US-201916534748-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 7, 2019 |
| Priority date | Jun 18, 2015 |
| Publication date | Aug 31, 2021 |
| Grant date | Aug 31, 2021 |
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A melting device includes a container capable of melting a material supplied in a free-flowing state and storing the material in a liquid state. The container includes a first storage section for storing the material in the free-flowing state, a second storage section for storing the material in the liquid state, and a dividing section provided between the first storage section and the second storage section and configured to hold back the material, when the material is in a non-molten or free-flowing state and to allow passage of the material from the first storage section into the second storage section, when the material is in a molten or liquid state.
Opening claim text (preview).
What is claimed is: 1. A mixing arrangement, comprising: a mixing chamber capable of mixing reactive plastic components into a reactive mixture; a first melting device comprising a container capable of melting one of the plastic components supplied in a free-flowing state and storing the one of the plastic components in a liquid state, said container comprising a first storage section for storing the one of the plastic components in the free-flowing state, a second storage section for storing the one of the plastic components in the liquid state, and a dividing section provided between the first storage section and the second storage section and configured to hold back the one of the plastic components, when the one of the plastic components is in a non-molten or free-flowing state and to allow passage of the one of the plastic components from the first storage section into the second storage section, when the one of the plastic components is in a molten or liquid state; a first supply and dispensing section including a first vacuum conveyor for measured, continuous supply of the one of the plastic components in the free-flowing state to the first storage section; and a second supply and dispensing section for measured, discontinuous discharge of the one of the plastic components from the second storage section to the mixing chamber, wherein the first and second supply and dispensing sections are synchronised with one another so that only a prescribed quantity of the one of the plastic components is melted in the melting device, which quantity corresponds to an immediate demand for the one of the plastic components, wherein the first storage section and the second storage section are formed as one piece. 2. The mixing arrangement of claim 1 , wherein the quantity of the one of the plastic components is limited to 2 to 10 downstream plastics processing operations or limited to an amount sufficient for processing within less than or equal to 30 minutes. 3. The mixing arrangement of claim 1 , further comprising a second melting device comprising a container capable of melting another one of the plastic components supplied in a free-flowing state and storing another one of the plastic components in a liquid state, said container of the second melting device comprising a first storage section for storing the other one of the plastic components in the free-flowing state, a second storage section for storing the other one of the plastic components in the liquid state, and a dividing section provided between the first storage section and the second storage section and configured to hold back the other one of the plastic components, when the other one of the plastic components is in a non-molten or free-flowing state and to allow passage of the other one of the plastic components from the first storage section into the second storage section, when the one of the plastic components is in a molten or liquid state. 4. The mixing arrangement of claim 3 , wherein the one of the plastic components is caprolactam with an activator, and wherein the other one of the plastic components is caprolactam with a catalyst. 5. The mixing arrangement of claim 1 , further comprising: a third supply and dispensing device for a measured supply of an activator to the mixing chamber; and a fourth supply and dispensing device for a measured supply of a catalyst to the mixing chamber, wherein a supply of the one of the plastic components and the first and second additives by means of the second, third and fourth supply and dispensing devices are synchronised with one another as a function of time and quantity, so that the one of the plastic components and the activator and catalyst are mixed together in the mixing chamber to form the reactive mixture. 6. The mixing arrangement of claim 1 , wherein the first storage section is arranged vertically above the second storage section, said dividing section configured as a grid defined by a mesh size which is smaller than a particle size of the one of the plastic components in the free-flowing state. 7. The mixing arrangement of claim 1 , wherein the first storage section is arranged vertically above the second storage section, said dividing section configured as a perforated plate defined by a hole diameter which is smaller than a particle size of the one of the plastic components in the free-flowing state. 8. The mixing arrangement of claim 1 , further comprising a heating device arranged to heat at least one of the first storage section and the dividing section so as to melt the one of the plastic components in the free-flowing state. 9. The mixing arrangement of claim 8 , wherein the healing device operates continuously. 10. The mixing arrangement of claim 1 , wherein the first supply and dispensing section is configured for measured supply of the material in the free-flowing state to the first storage section, and/or the second supply and dispensing section is configured for measured discharge of the material from the second storage section. 11. The mixing arrangement of claim 10 , wherein the first supply and dispensing section operates continuously, and the second supply and dispensing section operates discontinuously. 12. The mixing arrangement of claim 8 , further comprising: a fill-level measuring device configured to measure a fill level of the one of the plastic components stored in the liquid state in the second storage section; and a control device configured to control a supply of the one of the plastic components in the free-flowing state by means of the first supply and dispensing section and/or to control a melting of the one of the plastic components by means of the heating device, in response to the fill level measured by the fill-level measuring device. 13. The mixing arrangement of claim 12 , wherein the control device controls operation of the first supply and dispensing section and/or the heating device so that a quantity of the one of the plastic components in the second storage section corresponds to the immediate demand. 14. The mixing arrangement of claim 1 , wherein the one of the plastic components is caprolactam with an activator.
comprising recirculation channels; ducts formed in the plunger · CPC title
Parts; Accessories · CPC title
characterised by arrangements for controlling, measuring or regulating, e.g. for feeding or proportioning the components · CPC title
Parts; Accessories (B29B7/7684 takes precedence) · CPC title
using measuring chambers of piston or plunger type (B29B7/7621 takes precedence; for mixing in general B01F35/882) · CPC title
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