Claims
- 1. Molding apparatus, comprising:
a female mold section including a base and a generally annular sidewall assembly coupled with and extending from the base, said sidewall assembly having substantially concentric, generally annular inner and outer sidewalls defining therebetween a space for receiving a molding material; a male mold section including a generally annular sidewall unit presenting a leading margin, and a mold section support assembly that supports the male mold section in general concentric alignment with the female mold section and including a drive operable to selectively move at least one of the male and female mold sections so that at least a portion of said sidewall unit telescopes unto said sidewall assembly to reach a molding position at least partially within said space between said inner and outer sidewalls, respective portions of said sidewall unit and at least one of the said inner and outer sidewalls cooperatively compressing said molding material during said mold section movement in order that the molding material assumes a desired shape.
- 2. The apparatus of claim 1, including a heating assembly operable to heat said material within said space.
- 3. The apparatus of claim 2, said heating assembly comprising resistance heating elements operably coupled with said inner and outer sidewalls and said sidewall unit.
- 4. The apparatus of claim 1, one of said inner and outer sidewalls having a tapered female surface, and said sidewall unit having a tapered male surface, said tapered surfaces portion being in general juxtaposition when said male mold sections is in said molding position, with said molding material compressed between the generally juxtaposed tapered surfaces.
- 5. The apparatus of claim 4, said tapered female surface being adjacent said base, said tapered male surface being adjacent the leading margin of said sidewall unit.
- 6. The apparatus of claim 5, said tapered female surface forming a part of said outer sidewall and tapering toward the central axis of the female mold section, said tapered male surface being complementally tapered with respect to said tapered female surface.
- 7. The apparatus of claim 4, said tapered female and male surfaces being substantially parallel to each other when said sidewall unit is in said molding position.
- 8. The apparatus of claim 4, said tapered surfaces each being substantially smooth.
- 9. The apparatus of claim 1, said inner and outer sidewall and said sidewall unit being substantially circular in cross-section.
- 10. The apparatus of claim 1, said sidewall assembly being upright with said sidewall unit above the sidewall assembly.
- 11. The apparatus of claim 10, said male mold section including an upper wall, said sidewall unit secured to and depending from said upper wall.
- 12. The apparatus of claim 11, said drive operably coupled with said upper wall.
- 13. The apparatus of claim 12, said drive comprising a hydraulic ram.
- 14. The apparatus of claim 10, including a lower frame beneath and supporting said female mold section for selective movement of the female mold section between a molding location beneath said male mold section and a load/unload location shifted away from said molding location.
- 15. The apparatus of claim 1, said sidewall assembly having an annular main body with a removable liner insert received therein, said insert having inner and outer walls which define said inner and outer sidewalls.
- 16. The apparatus of claim 1, said mold support assembly operable to retract said sidewall unit from said sidewall assembly after molding of an article.
- 17. The apparatus of claim 16, said male mold section having a molded article detach device operable to remove said molded article from said sidewall unit upon said retraction of the sidewall unit.
- 18. The apparatus of claim 17, said detach device comprising a plurality of rods spaced about the periphery of said sidewall unit and shiftable in response to said retraction of the sidewall unit to engage said molded article.
- 19. Molding apparatus, comprising:
a female mold section including a bottom wall and an upstanding, generally annular sidewall assembly coupled with said bottom wall, said sidewall assembly including substantially concentric, generally annular inner and outer sidewalls, defining therebetween a space for receiving a molding material, one of the inner and outer sidewalls having a tapered lower female surface; a male mold section including an upper wall and a depending, generally annular sidewall unit secured to the upper wall, the sidewall unit having a leading margin opposite said upper wall and a tapered, lower male surface; a support assembly that supports the male mold section above the female mold section and in general concentric alignment therewith, the support assembly including a drive for selectively moving the male sidewall unit into said space between said inner and outer sidewall of the female mold section until said tapered male surface comes into a molding position in general side-by-side proximity with said tapered female surface, thereby compressing said molding material therebetween; and a heating assembly operable to heat said material when the material is compressed between said tapered surfaces.
- 20. The apparatus of claim 19, said heating assembly comprising resistance heating elements operably couples with said inner and outer sidewalls and said sidewall unit.
- 21. The apparatus of claim 19, said tapered female surface being adjacent said base, said tapered male surface being adjacent the leading margin of said sidewall unit.
- 22. The apparatus of claim 21, said tapered female surface forming a part of said outer sidewall and tapering toward the central axis of the female mold section, said tapered female surface being complementally tapered with respect to said tapered male surface.
- 23. The apparatus of claim 21, said tapered female surface and tapered male surface being substantially parallel to each other when said sidewall unit is in said molding position.
- 24. The apparatus of claim 19, said tapered female surface and tapered male surface each presenting substantially smooth facing wall surfaces.
- 25. The apparatus of claim 19, said inner and outer sidewall and said sidewall unit being substantially circular in cross-section.
- 26. The apparatus of claim 19, said drive comprising a hydraulic ram.
- 27. The apparatus of claim 19, said sidewall assembly having an annular main body with a removable liner insert received therein, said insert having inner and outer walls which define said inner and outer sidewalls.
- 28. The apparatus of claim 19, said mold support assembly operable to retract said sidewall unit from said sidewall assembly after molding of an article.
- 29. The apparatus of claim 28, said male mold section having a molded article detach device operable to remove said molded article from said sidewall unit upon said retraction of the sidewall unit.
- 30. The apparatus of claim 29, said detach device comprising a plurality of rods spaced about the periphery of said sidewall unit and shiftable in response to said retraction of the sidewall unit to engage said molded article.
- 31. A molding method comprising the steps of:
providing a generally annular sidewall assembly having a female mold section including generally concentric, inner and outer sidewalls; providing a male mold member including a generally annular sidewall unit; placing a quantity of molding material within said female mold section between said inner and outer sidewalls; causing relative movement between said male and female mold sections so that said sidewall unit telescopes into said sidewall assembly and reaches a molding position therein, and, during such movement, compressing said molding material between respective portions of said sidewall unit and at least one of said inner and outer sidewalls; and allowing said compressed molding material to harden and form a molded article.
- 32. The method of claim 31, including the stop of heating said compressed molding material.
- 33. The method of claim 31, said molding material being a compressible particulate material.
- 34. A biodegradable and edible composite in the form of a self-sustaining body formed from a mixture comprising an adhesive and a quantity of a fiber, the ratio of fiber solids to adhesive solids in said mixture being from about 4:1 to about 20:1, and said body having an ASTM D1037-93 compressive strength of at least about 5 MPa.
- 35. The composite of claim 34, wherein said fiber is derived from a fiber source selected from the group consisting of straw, corn stalks, sorghum stalks, soybean hulls, peanut hulls, fibers derived from grain milling by-products, and mixtures thereof.
- 36. The composite of claim 34, wherein the moisture content of said mixture prior to the forming of said body is less than about 20% by weight, based upon the total weight of the mixture taken as 100% by weight.
- 37. The composite of claim 34 wherein the moisture content of said body is less than about 10% by weight, based upon the total weight of the body taken as 100% by weight.
- 38. The composite of claim 34, wherein said body is essentially free of preservatives.
- 39. The composite of claim 34, said body including an outer surface and further including a moisture barrier applied to said outer surface.
- 40. The composite of claim 39, wherein said moisture barrier comprises a wax.
- 41. The composite of claim 34, wherein said composite is in the form of a container comprising a base and upright sidewalls, said sidewalls presenting an opening and said container further including a quantity of an animal feed in said opening.
- 42. The composite of claim 34, wherein said adhesive is formed by reacting in an aqueous system a component selected from the group consisting of flours, starches, and proteins, with a modifier selected from the group consisting of:
(1) alkaline materials; (2) saturated and unsaturated alkali metal C8-C22 sulfate and sulfonate salts; (3) compounds having the formula I: 2 wherein each R is individually selected from the group consisting of H and C1-C4 saturated and unsaturated groups, and X is selected from the group consisting of O, NH, and S; and (4) mixtures of (1), (2), and (3), wherein said flour comprises at least about 25% by weight protein.
- 43. The composite of claim 42 wherein said component is a protein selected from the group consisting of soybean protein, wheat protein, corn protein, sorghum protein, and mixtures thereof.
- 44. The composite of claim 42, wherein said component is a protein and the quantity of protein utilized to form said adhesive is at least about 5% by weight, based upon the total weight of the mixture taken as 100% by weight.
- 45. The composite of claim 42, wherein said modifier is selected from the group consisting of NaOH, urea, sodium dodecyl sulfate, sodium dodecylbenzene sulfonate, guanidine hydrochloride, and mixtures thereof.
- 46. A biodegradable and edible composite in the form of a self-sustaining body formed from a mixture comprising an adhesive and a quantity of a fiber, the ratio of fiber solids to adhesive solids in said mixture being from about 2.5:1 to about 20:1, the particle size of the fiber being such that less than about 10% of the particles have a particle size of less than about 678 μm, and said body having an ASTM D1037-93 compressive strength of at least about 5 MPa.
- 47. The composite of claim 48, wherein said fiber is derived from a fiber source selected from the group consisting of straw, corn stalks, sorghum stalks, soybean hulls, peanut hulls, fibers derived from grain milling by-products, and mixtures thereof.
- 48. The composite of claim 48, wherein the moisture content of said mixture prior to the forming of said body is less than about 20% by weight, based upon the total weight of the mixture taken as 100% by weight.
- 49. The composite of claim 48, wherein the moisture content of said body is less than about 10% by weight, based upon the total weight of the body taken as 100% by weight.
- 50. The composite of claim 48, wherein said body is essentially free of preservatives.
- 51. The composite of claim 48, said body including an outer surface and further including a moisture barrier applied to said outer surface.
- 52. The composite of claim 51, wherein said moisture barrier comprises a wax.
- 53. The composite of claim 48, wherein said composite is in the form of a container comprising a base and upright sidewalls, said sidewalls presenting an opening and said container further including a quantity of an animal feed in said opening.
- 54. The composite of claim 48, wherein said adhesive is formed by reacting in an aqueous system a component selected from the group consisting of flours, starches, and proteins, with a modifier selected from the group consisting of:
(1) alkaline materials; (2) saturated and unsaturated alkali metal C8-C22 sulfate and sulfonate salts; (3) compounds having the formula I: 3 wherein each R is individually selected from the group consisting of H and C1-C4 saturated and unsaturated groups, and X is selected from the group consisting of O, NH, and S; and (4) mixtures of (1), (2), and (3), wherein said flour comprises at least about 25% by weight protein.
- 55. The method of claim 31, said molded article having a cross-sectional shape selected from the group consisting of circular and polygonal shapes.
RELATED APPLICATIONS
[0001] This is a continuation-in-part of application Ser. No. 09/408,373 filed Sep. 29, 1999.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09408373 |
Sep 1999 |
US |
Child |
09813777 |
Mar 2001 |
US |