Claims
- 1. A loudspeaker system, comprising:
a baffle having an opening adapted to receive a transducer, where the baffle is molded from a thermoset composite material.
- 2. The loudspeaker system according to claim 1, where the thermoset composite material comprises a polyester resin.
- 3. The loudspeaker system according to claim 2, where the polyester resin is in a styrene monomer form.
- 4. The loudspeaker system according to claim 1, where the thermoset composite material comprises a vinylester resin.
- 5. The loudspeaker system according to claim 4, where the vinylester resin is in a styrene monomer form.
- 6. The loudspeaker system according to claim 1, where the baffle is molded to form a wave-guide.
- 7. The loudspeaker system according to claim 6, where the wave-guide is a high frequency wave-guide.
- 8. The loudspeaker system according to claim 1, where the baffle is molded to form at least one port.
- 9. The loudspeaker system according to claim 1, further including a horn molded into the baffle such that a bottom section of the horn extends along an arc forming the opening adapted to receive the transducer.
- 10. The loudspeaker system according to claim 1, where the thermoset composite material comprises a thick molding compound (TMC).
- 11. The loudspeaker system according to claim 10, where the thermoset composite material further comprises a filler.
- 12. The loudspeaker system according to claim 11, where the filler comprises rubber.
- 13. The loudspeaker system according to claim 11, where the filler comprises glass.
- 14. The loudspeaker system according to claim 11, where the filler comprises calcium carbonate.
- 15. The loudspeaker system according to claim 11, where the filler comprises mica.
- 16. The loudspeaker system according to claim 11, where the filler comprises wood flour.
- 17. The loudspeaker system according to claim 11, where the thermoset composite material further comprises a fire retarding agent.
- 18. The loudspeaker system according to claim 17, where the fire retarding agent comprises aluminum trihydrate.
- 19. The loudspeaker system according to claim 11, where the thermoset composite material further comprises a mold-releasing agent.
- 20. The loudspeaker system according to claim 11, where the thermoset composite material further comprises a colorizing agent.
- 21. The loudspeaker system according to claim 1, where the thermoset composite material comprises a sheet-molding compound (SMC).
- 22. The loudspeaker system according to claim 21, where the SMC further comprises a filler.
- 23. The loudspeaker system according to claim 22, where the filler comprises rubber.
- 24. The loudspeaker system according to claim 22, where the filler comprises glass.
- 25. The loudspeaker system according to claim 22, where the filler comprises calcium carbonate.
- 26. The loudspeaker system according to claim 22, where the filler comprises mica.
- 27. The loudspeaker system according to claim 22, where the filler comprises sawdust.
- 28. The loudspeaker system according to claim 21, where SMC further comprises a fire retarding agent.
- 29. The loudspeaker system according to claim 28, where the fire retarding agent comprises aluminum trihydrate.
- 30. The loudspeaker system according to claim 21, where the SMC further comprises a mold-releasing agent.
- 31. The loudspeaker system according to claim 21, where the SMC further comprises a colorizing agent.
- 32. The loudspeaker system according to claim 1, where the thermoset composite material comprises a bulk-molding compound (BMC).
- 33. The loudspeaker system according to claim 32, where the TMC further comprises a filler.
- 34. The loudspeaker system according to claim 32, where the filler comprises rubber.
- 35. The loudspeaker system according to claim 32, where the filler comprises glass.
- 36. The loudspeaker system according to claim 32, where the filler comprises calcium carbonate.
- 37. The loudspeaker system according to claim 32, where the filler comprises mica.
- 38. The loudspeaker system according to claim 32, where the filler comprises sawdust.
- 39. The loudspeaker system according to claim 31, where BMC further comprises a fire retarding agent.
- 40. The loudspeaker system according to claim 39, where the fire retarding agent comprises aluminum trihydrate.
- 41. The loudspeaker system according to claim 31, where the BMC further comprises a mold-releasing agent.
- 42. The loudspeaker system according to claim 31, where the BMC further comprises a colorizing agent.
- 43. The loudspeaker system according to claim 1, where the baffle is molded to form a second opening for mounting a mid range transducer.
- 44. The loudspeaker system according to claim 1, where a horn molded into the baffle such that a bottom section of the horn extends along an arc forming the opening adapted to receive the transducer.
- 45. A loudspeaker system, comprising:
a baffle molded from a thermoset composite material; a wave-guide formed into the molded baffle; an opening for mounting a transducer formed into the molded baffle; and a loudspeaker enclosure adapted to couple with the baffle.
- 46. The loudspeaker system according to claim 45, where the thermoset composite material comprises a thick molding compound (TMC).
- 47. The loudspeaker system according to claim 45, where the thermoset composite material comprises a sheet-molding compound (SMC).
- 48. The loudspeaker system according to claim 45, where the thermoset composite material comprises a bulk-molding compound (BMC).
- 49. The loudspeaker system according to claim 45, where a horn molded into the baffle such that a bottom section of the horn extends along an arc forming the opening adapted to receive the transducer.
- 50. A method of manufacturing a loudspeaker baffle, comprising:
means for forming a baffle to minimize propagation of vibrational energy from the baffle, where the baffle is adapted to support a transducer.
- 51. The method of manufacturing a loudspeaker baffle according to claim 50, further comprising molding a wave-guide in the baffle.
- 52. The method of manufacturing a loudspeaker baffle according to claim 50, further comprising molding a horn in the baffle such that a bottom section of the horn extends along an arc forming an opening adapted to receive the transducer.
- 53. The method of manufacturing a loudspeaker baffle according to claim 50, where the means for forming the baffle comprises injection molding a thermoset composite material to form the baffle.
- 54. The method of manufacturing a loudspeaker baffle according to claim 50, where the means for forming the baffle comprises compression molding a thermoset composite material to form the baffle.
- 55. The method of manufacturing a loudspeaker baffle according to claim 50, where the means for forming the baffle comprises resin injection molding a thermoset composite material to form the baffle.
- 56. The method of manufacturing a loudspeaker baffle according to claim 50, where the means for forming the baffle comprises resin two-shot injection molding a thermoset composite material to form the baffle.
- 57. The method of manufacturing a loudspeaker baffle according to claim 50, where the means for forming the baffle comprises resin reaction injection molding (RIM) a thermoset composite material to form the baffle.
- 58. The method of manufacturing a loudspeaker baffle according to claim 50, where the means for forming the baffle comprises vacuum thermoforming a thermoset composite material to form the baffle.
- 59. The method of manufacturing a loudspeaker baffle according to claim 50, where the means for forming the baffle comprises pressure thermoforming a thermoset composite material to form the baffle.
CROSS-REFERENCES TO RELATED APPLICATIONS
[0001] This application claims priority from a provisional application having application Serial No. 60/273,883 that was filed on Mar. 7, 2001, and is incorporated by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60273883 |
Mar 2001 |
US |