1461164195-dfb1af6f-8744-4db1-9c5a-75c43b982034

1. An apparatus for supporting a windchime, comprising:
a base, said base having a bottom and a top;
at least one pillar, said pillar having a first end supported from said base and a second end extending above said base;
a fan for discharge of air toward said second end of said pillar;
proximate said second end of said pillar, a hanger for suspending a windchime.
2. The apparatus as set forth in claim 1, further comprising an airflow disrupter, said air flow disrupter providing at least some randomization in either quantity or velocity of air discharged from said fan.
3. The apparatus as set forth in claim 1, wherein said base comprises a case for said fan.
4. The apparatus as set forth in claim 2, wherein said base further comprises an inlet damper, said inlet damper comprising a first plate having at least one opening therethrough for allowing passage of air therethrough, and a second plate situated for adjustably occluding at least some past one opening, so as to vary the resistance to passage of inlet air to said fan.
5. The apparatus as set forth in claim 3, wherein said first plate has a center, and said second plate is pivotably affixed to said first plate at said center.
6. The apparatus as set forth in claim 5, wherein said first plate comprises three spaced apart generally triangular cutout portions therethrough, said cutout portions each defined by edge wall portions including an arcuate outer edge wall portion, said cutout portions spaced outwardly from a center land and located along centerlines about 120 degrees apart.
7. The apparatus as set forth in claim 5, wherein said second plate comprises comprises a central hub portion and three spaced apart generally triangular portions, said triangular portions each defined by edge wall portions including an arcuate outer edge wall portion, said triangular portions spaced outwardly from said central hub portion and located along centerlines about 120 degrees apart, said first plate and said second plate sized and shaped of complementary size in a manner that said second plate can be rotated relative to said first plate to occlude passage of air through one or more of said at least one openings.
8. The apparatus as set forth in claim 3, further comprising an outlet screen, said outlet screen perforated for passage of air from said fan out therethrough.
9. The apparatus as set forth in claim 8, further comprising an outlet screen perimeter cover plate, said outlet screen cover plate providing an opening defined by an interior edge wall for outward passage of air from said fan therethrough.
10. The apparatus as set forth in claim 9, wherein said air flow disrupter comprises a plurality of balls, said balls disposed and supported on said outlet screen and confined laterally by said interior edge wall of said outlet screen cover plate.
11. The apparatus as set forth in claim 10, wherein said plurality of balls comprises two balls of differing diameter.
12. The apparatus as set forth in claim 11, wherein said balls each comprise wooden spheres.
13. The apparatus as set forth in claim 1, further comprising a plurality of base support legs, said base support legs configured to space said bottom of said base above a selected substrate, so that said fan can accept inlet air through said bottom of said base.
14. The apparatus as set forth in claim 13, wherein a pillar extends upward from each one of said plurality of base support legs.
15. The apparatus as set forth in claim 14, further comprising a plurality of tower dome arch portions, said plurality of tower dome arch portions extending radially inwardly from an upper end of said pillar toward a arch center.
16. The apparatus as set forth in claim 15, wherein a chain hook is provided extending downwardly proximate said arch center, said hook adapted for suspending a wind chime therefrom.
17. The apparatus as set forth in claim 1, wherein said fan comprises an electrically powered fan motor, and wherein an on-off switch is provided in said base.
18. The apparatus as set forth in claim 17, further comprising (a) an alternating current electrical fan motor, and (b) an electrical cord and plug adapted for supply of alternating current electrical energy to said fan.
19. An apparatus for supporting a windchime, comprising:
a fan;
a base, said base containing said fan and having a bottom adapted to provide inlet air to said fan, and a top adapted for discharge of air from said fan, said base further comprising an inlet damper, said inlet damper comprising a first plate having at least one opening therethrough for allowing passage of air therethrough, and a second sectioned plate situated for adjustably occluding at least some of said at least one opening, so as to vary the resistance to passage of inlet air to said fan;
a plurality of base support legs supporting said base;
a pillar extending upwardly from each one of said plurality of base support legs, each one of said pillars having a first end supported from said base support leg and a second end extending above said first end;
a plurality of tower dome arch portions, each one of said plurality of tower dome arch portions extending radially inward from an upper end of said pillar toward a arch center;
a chain hook extending downwardly proximate said arch center, said hook adapted for suspending a wind chime therefrom;
said base further comprising an outlet screen, said outlet screen perforated for passage of air from said fan out therethrough;
said base further comprising an outlet screen perimeter cover plate, said outlet screen cover plate providing an opening defined by an interior edge wall for outward passage of air from said fan therethrough;
an air flow disrupter, said air flow disrupter comprising a plurality of balls, said balls disposed and supported on said outlet screen and confined laterally by said interior edge wall of said outlet screen cover plate.
20. The apparatus as set forth in claim 19, wherein said plurality of balls comprises two balls of differing diameter.
21. The apparatus as set forth in claim 20, wherein said balls each comprise wooden spheres.
22. The apparatus as set forth in claim 19, wherein said fan comprises an electrically powered fan motor, and wherein an on-off switch is provided in said base.
23. The apparatus as set forth in claim 22, further comprising (a) an alternating current electrical fan motor, and (b) an electrical cord and plug adapted for supply of alternating current electrical energy to said fan.
24. The apparatus as set forth in claim 19, further comprising a windchime, said windchime comprising a plurality of chimes supported from a supporting bracket and a striker for striking any one of said plurality of said chimes.
25. The apparatus as set forth in claim 24, said chimes are stricken by said striker upon being driven by wind from said fan.
26. The apparatus as set forth in claim 1, further comprising a plurality of resonating members for producing audible sounds, said members attached to a mounting ring attached to said chain hook and freely hanging therefrom; a striker for freely hanging therefrom to randomly swing and collide with said resonating members when said striker is agitated by wind from said fan, thereby causing said resonating members to produce the audible sounds.
27. The apparatus as set forth in claim 26, wherein the resonating members each comprise a tubular cylindrical chime members.
28. A method of operating wind chime in the absence of a natural wind source, comprising:
providing a support apparatus for supporting a windchime; said windchime having a plurality of resonating chimes;
providing a wind generating fan with said support apparatus;
providing an airflow disrupter to randomize the airflow provided from said fan toward said windchime;
running said fan to generate wind toward said windchime while said airflow disrupter is present in an airstream between said fan and said windchime.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A garment, comprising:
(a) at least one garment surface;
(b) a pocket flap mounted with respect to said at least one garment surface along or adjacent to a portion of at least one pocket flap edge, said mounting being along or adjacent to an edge other than a bottom edge of said pocket flap; and
(c) a releasable engagement mechanism positioned adjacent the bottom edge of said pocket flap, said releasable engagement mechanism being configured and dimensioned to releasably secure a knife relative to said at least one garment surface and said pocket flap.
2. A garment according to claim 1, wherein the at least one garment surface is associated with a garment selected from the group consisting of a shirt, sweatshirt, vest, jacket, windbreaker, overalls, pants, shorts and skirt.
3. A garment according to claim 1, further comprising a second pocket flap and a second releasable engagement mechanism positioned on said at least one garment surface.
4. A garment according to claim 1, further comprising a knife positioned between said pocket flap and said at least one garment surface.
5. A garment according to claim 4, wherein said knife includes a handle that defines at least one aperture or opening that cooperates with the releasable engagement mechanism.
6. A garment according to claim 1, wherein the pocket flap is secured with respect to the at least one garment surface along at least a portion of a top edge thereof.
7. A garment according to claim 1, wherein the pocket flap is mounted with respect to the at least one garment surface by stitching.
8. A garment according to claim 1, wherein the at least one garment surface includes water repellant functionality.
9. A garment according to claim 1, wherein the releasable engagement mechanism includes hook-and-loop fasteners.
10. In combination:
(a) a garment that includes: (i) at least one garment surface; (ii) a pocket flap mounted with respect to said at least one garment surface along or adjacent to a portion of at least one pocket flap edge, said mounting being along or adjacent to an edge other than a bottom edge of said pocket flap; and (iii) a releasable engagement mechanism positioned adjacent the bottom edge of said pocket flap, said releasable engagement mechanism being configured and dimensioned to releasably secure a knife relative to said at least one garment surface and said pocket flap; and
(b) a knife releasably engaged by said releasable engagement mechanism
11. A combination according to claim 10, wherein the at least one garment surface is associated with a garment selected from the group consisting of a shirt, sweatshirt, vest, jacket, windbreaker, overalls, pants, shorts and skirt.
12. A combination according to claim 10, further comprising a second pocket flap and a second releasable engagement mechanism positioned on said at least one garment surface.
13. A combination according to claim 10, wherein said knife includes a handle that defines at least one aperture or opening that cooperates with the releasable engagement mechanism.
14. A combination according to claim 10, wherein the pocket flap is secured with respect to the at least one garment surface along at least a portion of a top edge thereof.
15. A combination according to claim 10, wherein the pocket flap is mounted with respect to the at least one garment surface by stitching.
16. A combination according to claim 10, wherein the knife is a line-cutting knife adapted for fishing applications.

1461164184-6618a402-cdb7-416d-b461-f6f4ad4f14f1

What is claimed is:

1. A heat radiation shield coating composition containing a black pigment which exhibits a reflectance of not below 8.0% relative to a solar radiation in the 780-2,100 nm wavelength region.
2. The coating composition of claim 1, wherein said black pigment exhibits a reflectance of not higher than 15% relative to a radiation at any wavelength in the 400-700 nm visible region.
3. The coating composition of claim 1, wherein said black pigment is a calcined pigment which contains Fe2O3 and also Cr2O3 andor Mn2O3 in the total amount of 20-100% by weight.
4. The coating composition of claim 1, wherein said black pigment is contained in the amount of not less than 0.1% by weight.
5. The coating composition of claim 1, wherein said black pigment is contained in the amount of not less than 0.5%, based on the total weight of all pigments.
6. The coating composition of claim 1, wherein a polyester, acrylic, fluoro or chloro resin is contained as a binder component.
7. The coating composition of claim 6, further containing a melamine resin andor blocked isocyanate.
8. A heat radiation shield plate coated with the coating composition of claim 1.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A drive device comprising:
a drive shaft;
electromechanical transducing means attached to one end of the drive shaft, and adapted to be expanded and contracted in the axial direction of the drive shaft by a drive voltage applied thereto to thereby allow the drive shaft to undergo displacement in the axial direction of the drive shaft;
a driven body supported in the state where it is movably friction-engaged in the axial direction of the drive shaft; and
control means for controlling the drive voltage so that speeds of expansion and contraction of the electromechanical transducing means are caused to be different from each other to move the driven body in the axial direction of the drive shaft,
wherein control is carried out such that the drive voltage is caused to be different from that at steady movement time of the driven body for a predetermined time period from the time when the driven body is in stop state.
2 The drive device as set forth in claim 1,
wherein the electromechanical transducing means is driven by drive voltage of which absolute value is greater than drive voltage at the time of steady state for a predetermined time period from the time when the driven body is in stop state.
3 The drive device as set froth in claim 1,
wherein the electromechanical transducing means is driven by drive voltage of which period is longer than repetitive period of drive voltage at the time of steady state for a predetermined time period from the time when the driven body is in stop state.
4 A reproducing apparatus comprising:
rotation drive means for rotationally driving a disc-shaped recording medium;
reproducing means for reproducing information signals recorded on the disc-shaped recording medium rotated by the rotation drive means;
movement supporting means for movably supporting the reproducing means in the radial direction of the disc-shaped recording medium;
a drive shaft disposed along the radial direction of the disc-shaped recording medium;
electromechanical transducing means attached to one end of the drive shaft, and adapted to be expanded and contracted in the axial direction of the drive shaft by a drive signal applied thereto to thereby allow the drive shaft to undergo displacement in the axial direction of the drive shaft;
friction engagement means which is movably friction-engaged in the axial direction of the drive shaft and attached to the reproducing means; and
control means for controlling the drive signal so that speeds of expansion and contraction of the electromechanical transducing means are caused to be different from each other to move the reproducing means in the axil direction of the drive shaft,
wherein control is conducted in such a manner that the drive signal is caused to be different from that at steady movement time of the reproducing means for a predetermined time period from the time when the reproducing means is in stop state.
5 The reproducing apparatus as set forth in claim 4,
wherein the electromechanical transducing means is driven by drive voltage of which absolute value is larger than drive voltage of a drive signal at the time of steady state for a predetermined time period from the time when the reproducing means is in stop state.
6 The reproducing apparatus as set forth in claim 4,
wherein the electromechanical transducing means is driven by a drive signal of which period is longer than repetitive period of a drive signal at the time of steady state for a predetermined time period from the time when the reproducing means is in stop state.
7 The reproducing apparatus as set forth in claim 4,
wherein control is conducted in such a manner that the drive signal is caused to be different from that at steady movement time of the reproducing means on the basis of movement quantity of a tracking error signal that the reproducing means has detected.
8 The reproducing apparatus as set forth in claim 4,
wherein the reproducing apparatus further comprises environment measuring means for measuring environment in the vicinity of the drive shaft, and
wherein the control means conducts a control on the basis of environment information obtained from the environment measuring means in such a manner that the drive signal is caused to be different from that at steady movement time of the reproducing means for a predetermined time period from the time when the reproducing means is in stop state.
9 The reproducing apparatus as set forth in claim 4,
wherein the reproducing apparatus further comprises time clock means, and
wherein the control means conducts a control on the basis of power OFF time period of the apparatus measured by the time clock means so that the drive signal is caused to be different from that at steady movement time of the reproducing means for a predetermined time period from the time when the reproducing means is in stop state.
10 A drive method for a driven body in which a drive shaft, electromechanical transducing means attached to one end of the drive shaft and adapted to be expanded and contracted in the axial direction of the drive shaft by a drive signal applied thereto to thereby allow the drive shaft to undergo displacement in the axial direction of the drive shaft, and a driven body supported in the state where it is movably friction-engaged in the axial direction of the drive shaft are provided to control the drive signal so that speeds of expansion and contraction of the electromechanical transducing means are caused to be different from each other to move the driven body in the axial direction of the drive shaft,
the drive method comprising:
applying a start time drive signal different from that at the steady drive time to the electromechanical transducing means when the driven body is in stop state; and
applying the start time drive signal to the electromechanical transducing means for a predetermined time period thereafter to apply a steady drive signal to the electromechanical transducing means.
11 A reproducing method in which rotation drive means for rotationally driving a disc-shaped recording medium, reproducing means for reproducing information signals recorded on the disc-shaped recording medium rotated by the rotation drive means, movement supporting means for movably supporting the reproducing means in the radial direction of the disc-shaped recording medium, a drive shaft disposed along the radial direction of the disc-shaped recording medium, electromechanical transducing means attached to one end of the drive shaft and adapted to be expanded and contracted in the axial direction of the drive shaft by a drive signal applied thereto to thereby allow the drive shaft to undergo displacement in the axial direction of the drive shaft, and friction engagement means movably friction-engaged in the axial direction of the drive shaft and attached to the reproducing means are provided to control the drive signal so that speeds of expansion and contraction of the electromechanical transducing means are caused to be different from each other to move the reproducing means in the axial direction of the drive shaft to reproduce information recorded on the disc-shaped recording medium,
the reproducing method comprising:
applying a start time drive signal different from that at a steady transfer time to the electromechanical transducing means at the time of start of transfer of the reproducing means; and
stopping application to the electromechanical transducing means of the steady drive signal in the case where the reproducing means is transferred to the portion in the vicinity of a predetermined transfer destination.