Claims
- 1. An air gun for the production of a nonwoven fabric by delivering filaments as spun from a spinneret having spinning nozzles onto a screen belt while carrying the filaments together with an air stream, said air gun comprising:
- (I) a first nozzle having a filament inlet for receiving filaments delivered from the spinning nozzle, including:
- (a) a tapered tube in an interior of said filament inlet and reduced in diameter up to a middle portion thereof, and
- (b) a first generally straight tube provided in the interior of said filament inlet, having said same diameter from the middle portion to an extreme end forming a filament outlet;
- (II) a second nozzle connected to said first nozzle and including:
- (a) a blow port encircling a periphery of the extreme end of the first generally straight tube, an inner surface of the blow port being gradually reduced in diameter from a blow port air inlet side and then gradually increased in diameter downstream of a maximum constriction portion thereof and then forms a second generally straight tube having a slightly larger diameter than that of the filament outlet, and
- (b) a slight clearance formed between the inner surface of said blow port and an outer surface of said extreme end of said first generally straight tube;
- (III) a compressed air inlet communicated with the blow port air inlet of the blow port, and air introduced into the blow port from the compressed air inlet increases in flow velocity to a maximum at a time passing through the maximum constriction portion having the minimum inside diameter whereby air is jetted from the compressed air blow port so as to draw the filament;
- (IV) an accelerator tube, that is a straight tube having a path inside thereof for carrying filaments, connected to the second nozzle in a direction downstream of the maximum constriction portion to conduct and deliver the filaments, the inside diameter to length ratio of said accelerator tube being set in the range of between 1:50 and 1:100; and
- (V) an air flow rate regulator connected to the path for carrying filaments and an exhaust port branched off from said path for exhausting to the exterior a portion of the compressed air delivered from the path and an air cock connected to the exhaust port.
- 2. An air gun for the production of a nonwoven fabric according to claim 1, wherein the extreme end of said accelerator tube is connected to a guide tube, the inside diameter to length ratio of said guide tube being set in the range of between 1:50 and 1:300.
- 3. An air gun for the production of a nonwoven fabric according to claim 1, wherein said accelerator tube has a substantially smooth inner surface.
- 4. A nonwoven fabric producing apparatus for forming a nonwoven fabric by taking up filaments as spun from a spinneret having spinning nozzles and delivering onto a screen belt while carrying the filaments together with an air stream, said nonwoven fabric producing apparatus comprising:
- (I) a first nozzle having a filament inlet for receiving filaments delivered from the spinning nozzle, including:
- (a) a tapered tube in an interior of said filament inlet and reduced in diameter up to a middle portion thereof, and
- (b) a first generally straight tube provided in the interior of said filament inlet, having said same diameter from the middle portion to an extreme end forming a filament outlet;
- (II) a second nozzle connected to said first nozzle and including:
- (a) a blow port encircling a periphery of the extreme end of the first generally straight tube, an inner surface of the blow port being gradually reduced in diameter from a blow port air inlet side and then gradually increased in diameter downstream of a maximum constriction portion thereof and then forms a second generally straight tube having a slightly larger diameter than that of the filament outlet, and
- (b) a slight clearance formed between the inner surface of said blow port and an outer surface of said extreme end of said first generally straight tube;
- (III) a compressed air inlet communicated with the blow port air inlet of the blow port, and air introduced into the blow port from the compressed aid inlet increases in flow velocity to a maximum at a time passing through the maximum constriction portion having the minimum inside diameter whereby air is jetted from the compressed air blow port so as to draw the filament;
- (IV) a guide tube connected to said air nozzle to conduct the filament;
- (V) an air flow rate regulator connected to the extreme end of said guide tube, having sideways an exhaust port for exhausting to the exterior a portion of the compressed air delivered from the guide tube and an air cock connected to the exhaust port; and
- (VI) a separator nozzle connected to the extreme end of said air flow rate regulator through a connecting tube for diffusing the filaments toward the screen belt which filaments are delivered from the guide tube together with the compressed air through said air flow rate regulator, the interior of said separator nozzle being in a tapered shape which is smaller in diameter at the extreme end thereof than the diameter of the guide tube to form a nozzle base.
- 5. A nonwoven fabric producing apparatus according to claim 4, including an accelerator tube having two ends wherein one end is connected to said guide tube and the other end is connected to said air nozzle.
- 6. A nonwoven fabric producing apparatus according to claim 4, wherein said exhaust port of said air flow rate regulator has a diameter capable of exhausting 5 to 50% of compressed air based on the total amount of the compressed air supplied.
- 7. A nonwoven fabric producing apparatus according to claim 4, wherein the inside diameter to length ratio of said guide tube is set in the range of between 1:50 and 1:300.
- 8. A nonwoven fabric producing apparatus according to claim 4, wherein said exhaust port of said air flow rate regulator has a diameter capable to exhausting 10 to 30% of compressed air based on the total amount of the compressed air supplied.
- 9. A nonwoven fabric producing apparatus for forming a nonwoven fabric by taking up filaments as spun from a spinneret having spinning nozzles and delivering onto a screen belt while carrying the filaments together with an air stream, said nonwoven fabric producing apparatus comprising:
- (I) an air gun including:
- (a) a first nozzle having a filament inlet for receiving filaments delivered from the spinning nozzle, having:
- a tapered tube in an interior of said filament inlet and reduced in diameter up to a middle portion thereof, and
- a first generally straight tube provided in the interior of said filament inlet, having said same diameter from the middle portion to an extreme end forming a filament outlet,
- (b) a second nozzle connected to said first nozzle and having:
- a blow port encircling a periphery of the extreme end of the first generally straight tube, an inner surface of the blow port being gradually reduced in diameter from a blow port air inlet side and then gradually increased in diameter downstream of a maximum constriction portion thereof and then forms a second generally straight tube having a slightly larger diameter than that of the filament outlet, and
- a slight clearance formed between the inner surface of said blow port and an outer surface of said extreme end of said first generally straight tube,
- (c) a compressed air inlet communicated with the blow port air inlet of the blow port, and air introduced into the blow port from the compressed air inlet increases in flow velocity to a maximum at a time passing through the maximum constriction portion having the minimum inside diameter whereby air is jetted from the compressed air blow port so as to draw the filament, and
- (d) an accelerator tube, that is a straight tube, connected to the second nozzle in a direction downstream of the maximum constriction portion to conduct and deliver the filaments, the inside diameter to length ratio to said accelerator tube being set in the range of between 1:50 and 1:100;
- (II) a guide tube connected to the accelerator tube of said air gun to conduct the filaments;
- (III) an air flow rate regulator connected to the extreme end of said guide tube, having sideways an exhaust port for exhausting to the exterior a portion of the compressed air delivered from the guide tube and an air cock connected to the exhaust port; and
- (IV) a separator nozzle connected to the extreme end of said air flow rate regulator through a connecting tube for diffusing the filaments toward the screen belt which filaments are delivered from the guide tube together with the compressed air through said air flow rate regulator, the interior of said separator nozzle being in a tapered shape which is smaller in diameter at the extreme end thereof than the diameter of the guide tube to form a nozzle base.
- 10. A nonwoven fabric producing apparatus according to claim 9, wherein the inside diameter to length ratio of said guide tube being set in the range of between 1:50 and 1:300.
- 11. A nonwoven fabric producing apparatus according to claim 9, wherein the inside diameter to length ratio of said accelerator tube being set in the range of between 1:50 and 1:100.
- 12. A nonwoven fabric producing apparatus according to claim 9, wherein said exhaust port of said air flow rate regulator has a diameter capable of exhausting 5 to 50% of compressed air based on the total amount of the compressed air supplied.
- 13. A nonwoven fabric producing apparatus according to claim 9, wherein said exhaust port of said air flow rate regulator has a diameter capable of exhausting 10 to 30% of compressed air based on the total amount of the compressed air supplied.
- 14. A nonwoven fabric producing apparatus for forming a nonwoven fabric by taking up filaments as spun from a spinneret having spinning nozzles and delivering onto a screen belt while carrying the filaments together with an air stream, said nonwoven fabric producing apparatus comprising:
- (I) an air gun including:
- (a) an air nozzle having a filament inlet for receiving the filaments from the spinning nozzle, a filament outlet for delivering the filaments introduced from said inlet, a compressed air inlet, and a compressed air outlet being positioned around said filament outlet and blowing off compressed air to deliver the filaments from the filament outlet while applying a pulling force to the filaments, and
- (b) an acclerator tube, that is a straight tube, connected to the filament outlet of said air nozzle to conduct and discharge the filaments, the inside diameter to length ratio of said accererator tube being set in the range of between 1:50 and 1:100.
- (II) a guide tube connected to the extreme end of said accelerator tube of said air gun to conduct the filaments to a separator nozzle, the inside diameter to length ratio of said guide tube being set in the range of between 1:50 and 1:300;
- (III) a separator nozzle connected to the extreme end of said guide tube to diffuse the filaments toward the screen belt which filaments are delivered from the guide tube together with the compressed air the separator nozzle being smaller in diameter at the extreme end thereof than the diameter of the guide tube; and
- (IV) an air flow rate regulator interposed between said guide tube and said separator nozzle and having an exhaust port for exhausting to the exterior a portion of the compressed air delivered from the guide tube.
- 15. A nonwoven fabric producing apparatus according to claim 14, wherein said exhaust port of said air flow rate regulator has a diameter capable of exhausting 10 to 30% of compressed air based on the total amount of the compressed air supplied.
- 16. A non-woven fabric producing apparatus for forming a non-woven fabric by taking up filaments as spun from a spinneret having spinning nozzles and discharging onto a screen belt while carrying the filaments together with an air stream, said non-woven fabric producing apparatus comprising:
- an air gun including: (a) an air nozzle comprising a first nozzle and a second nozzle connected to the first nozzle, the first nozzle having a filament inlet for receiving filaments discharged from the spinneret, the interior of the first nozzle being continuous to said filament inlet comprising a tapered tube which is reduced in diameter to an intermediate part toward the front end of the tapered tube and a straight tube formed by a straight nozzle tube extending at a constant inside diameter from the front end of said tapered tube to a first filament outlet, the second nozzle having a second filament outlet at the reverse side of the filament inlet of the first nozzle and being provided sideways with a compressed air inlet and also provided with a compressed air outlet nozzle in a surrounding relation to said first filament outlet corresponding to the front end portion of said straight tube of the first nozzle so that a clearance is formed between the inner surface of said compressed air outlet nozzle and the outer surface of said straight tube, said compressed air outlet nozzle having a compressed air outlet around said first filament outlet and having an air inlet communicating with said compressed air inlet of the second nozzle, the inner surface of the compressed air outlet nozzle being gradually reduced in diameter from said air inlet side to have a maximum constriction and thereafter gradually becoming larger in diameter and finally becoming constant in diameter, and (b) an accelerator tube connected to the second filament outlet of said air nozzle to conduct and discharge the filaments, the inside diameter to length ratio of said accelerator tube being set in the range of between 1:50 and 1:100;
- a guide tube connected to the accelerator tube of said air gun to conduct the filaments, wherein the inside diameter to length ratio of said guide tube is set in the range of between 1:50 and 1:300;
- an air flow rate regulator connected to the front end of said guide tube, having sideways an exhaust port for exhausting to the exterior a portion of the compressed air discharged from the guide tube and an air cock connected to the exhaust port, wherein said exhaust port of said air flow rate regulator has a diameter capable of exhausting 10 to 30% of compressed air based on the total weight of the compressed air supplied; and
- a separator nozzle connected to the front end of said air flow rate regulator though a connecting tube for diffusing the filaments toward the screen belt which filaments are discharged from the guide tube together with the compressed air through said air flow rate regulator, the interior of said separator nozzle being in a tapered shape which is smaller in diameter at the front end thereof than the diameter of the guide tube to form a nozzle seat.
Priority Claims (2)
Number |
Date |
Country |
Kind |
2-63453 |
Mar 1990 |
JPX |
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2-63454 |
Mar 1990 |
JPX |
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Parent Case Info
This application is a continuation of application Ser. No. 07/669,094, filed Mar. 13, 1991, now abandoned.
US Referenced Citations (21)
Foreign Referenced Citations (3)
Number |
Date |
Country |
2083551 |
Dec 1971 |
FRX |
60-151357 |
Aug 1985 |
JPX |
1423213 |
Apr 1976 |
GBX |
Continuations (1)
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Number |
Date |
Country |
Parent |
669094 |
Mar 1991 |
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