Claims
- 1. A melt spinning apparatus for extruding at least first and second types of liquid into multi-component filaments having a side-by-side cross-sectional configuration of the first and second types of liquid, comprising:
a die tip block including a recess communicating with a set of first liquid discharge outlets and a set of second liquid discharge outlets arranged in respective pairs of said first and second liquid discharge outlets communicating with each other; and an insert received in said recess and separating said recess into first and second liquid passages, said first liquid passage communicating with said set of first liquid discharge outlets and said second liquid passage communicating with said set of second liquid discharge outlets, said insert including a first liquid input configured to receive the first type of liquid and to communicate with said first liquid passage and including a second liquid input configured to receive the second type of liquid and to communicate with said second liquid passage, said first and second liquid passages respectively delivering the first and second types of liquid to said first and second sets of liquid discharge outlets to form the multi-component filaments.
- 2. The apparatus of claim 1, further comprising a spacer received within said recess between said die tip block and said insert, said spacer having a predetermined thickness to selectively offset said insert with respect to said recess and change respective width dimensions of said first and second liquid passages.
- 3. The apparatus of claim 1, wherein said recess includes a converging port and said first and second liquid passages are contained in said converging portion.
- 4. The apparatus of claim 3, wherein said converging portion of said recess comprises a trough formed from angled side walls and having said plurality of multi-component filament discharge outlets longitudinally aligned along a vertex of said angled trough.
- 5. The apparatus of claim 4, wherein said insert comprises:
a converging block having first and second sides parallel with and spaced away from said angled side walls of said trough to respectively form said first and second liquid passages as slots.
- 6. The apparatus of claim 1, wherein said die tip block further includes a plurality of first outlet passages and a plurality of second outlet passages, each multi-component filament discharge outlet formed by a pair of first and second outlet passages that communicate respectively with said first and second liquid passages.
- 7. An apparatus for extruding at least first and second types of liquid into multi-component meltblown filaments having a side-by-side cross-sectional configuration of the first and second types of liquid, comprising:
a die tip block including a recess communicating with a set of first liquid discharge outlets and a set of second liquid discharge outlets arranged in respective pairs of said first and second liquid discharge outlets communicating with each other; an insert received in said recess and separating said recess into first and second liquid passages, said first liquid passage communicating with said set of first liquid discharge outlets and said second liquid passage communicating with said set of second liquid discharge outlets, said insert including a first liquid input configured to receive the first type of liquid and to communicate with said first liquid passage and including a second liquid input configured to receive the second type of liquid and to communicate with said second liquid passage, said first and second liquid passages respectively delivering the first and second types of liquid to said first and second sets of liquid discharge outlets to form the multi-component filaments; and air discharge outlets positioned adjacent said liquid discharge outlets for supplying pressurized air to impinge the multi-components filaments upon discharge from said liquid discharge outlets.
- 8. An apparatus for extruding at least first and second types of liquid into multi-component filaments having a sheath-core cross-sectional configuration of the first and second types of liquid, comprising:
a die tip block including a recess having a converging portion communicating with a plurality of multi-component filament discharge outlets; and an insert having a central liquid passage and received in said recess to separate said converging portion of said recess into first and second liquid passages, said first and second liquid passages adapted to receive the first type of liquid and said central liquid passage adapted to receive the second type of liquid, said first and second liquid passages converging toward said central liquid passage and intersecting with said central liquid passage at said multi-component filament discharge outlets to form the multi-component filaments.
- 9. The apparatus of claim 8, further comprising:
a pair of air knife members forming air discharge outlets positioned adjacent said filament discharge outlets for supplying pressurized air to impinge the multi-components filaments upon discharge from said filament discharge outlets.
- 10. The apparatus of claim 9, wherein said die tip block and air knife members cooperatively define converging air channels communicating with said air discharge outlets.
- 11. The apparatus of claim 10, wherein said die tip block includes air passages communicating with said converging air channels.
- 12. The apparatus of claim 1, wherein said converging portion of said recess comprises an angled trough having said plurality of multi-component filament discharge outlets longitudinally arranged along a vertex of said angled trough.
- 13. The apparatus of claim 12, wherein said insert comprises:
a converging block having first and second sides parallel with and spaced away from longitudinal surfaces of said converging portion of said recess to form said first and second liquid passages as respective slots, said converging block further having a plurality of central passages respectively aligned with said plurality of multi-component filament discharge outlets.
- 14. A configurable system for extruding at least first and second types of liquid into a selected one of side-by-side filaments and sheath-core filaments, the system comprising:
a die tip block including a recess having a converging portion communicating with a plurality of multi-component filament discharge outlets; a first insert configured to be received in said recess and having a converging portion configured to separate said converging portion of said recess into first and second liquid passages adapted to respectively receive the first and second type of liquid, said first and second liquid passages communicating with said multi-component filament discharge outlets to form the multi-component filaments having a side-by-side cross-sectional configuration of the first and second types of liquid materials; and a second insert configured to be received in said recess and having a central liquid passage and a converging portion configured to separate said converging portion of said recess into first and second liquid passages, said first and second liquid passages adapted to receive the first type of liquid and said central liquid passage adapted to receive the second type of liquid, said first and second liquid passages converging toward said central liquid passage and intersecting with said central liquid passage at said multi-component filament discharge outlets to form the multi-component filaments, first and second inserts being selectively interchangeable within said recess to change between extruding side-by-side filaments and sheath-core filaments.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is related to the following co-pending and commonly-owned application which was filed on even date herewith, namely U.S. Ser. No. ______, entitled “APPARATUS AND METHOD FOR EXTRUDING SINGLE-COMPONENT LIQUID STRANDS INTO MULTI-COMPONENT FILAMENTS” (Attorney Docket No. NOR-989) and the disclosure of which is hereby incorporated by reference herein in its entirety.