1460910430-a4cb0fcc-aad9-4d83-8d90-c6fd40a60f8a

1. A mold for a zonal optical element having a circular portion having a circular shape taking an optical axis as a center viewed from a plane surface; at least one zonal surface formed around the circular portion in a ring form; and boundary wall surfaces connecting said circular portion with the zonal surface or connecting the zonal surfaces with each other;
said mold comprising:
a circular portion at the mold side corresponding to the circular portion possessed by the zonal optical element;
at least one zonal surface at the mold side corresponding to the zonal surface possessed by the zonal optical element; and
at least one corner portion between said boundary portion at the mold side and said zonal surface at the mold side wherein said corner portion is in a sharpened state formed by bringing a raked surface of a tip into contact with a portion a portion corresponding to said boundary wall surface.
2. The mold according to claim 1, which is produced by a process comprising the steps of:
forming a circular portion where while rotating a work around a rotation axis corresponding to the optical axis as a center, a tip is relatively moved relative to said work to form the circular portion at the mold side corresponding to said circular portion on the processing surface of said work perpendicular to said rotation axis;
forming a zonal surface where said tip is relatively moved relative to said work to form a zonal surface at the mold side corresponding to said zonal surface; and
forming a corner portion between said boundary portion at the mold side and said zonal surface at the mold side wherein a raked surface of said tip is in contact with a portion corresponding to said boundary wall surface.

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 bonded drive shaft, comprising:
an elongated tube including an internal bore;
at least one end fitting, the end fitting including a portion for connecting to a drive component and an elongated tubular portion positioned in the internal bore of a first end of the elongated tube, the elongated tubular portion including a first locating portion distant from the connecting portion, a second locating portion proximal to the connecting portion and an adhesive gap portion positioned between the first locating portion and the second locating portion, the first locating portion and the second locating portion having outer diameters such that they engage the internal bore of the elongated tube and center the end fitting with respect to the elongated tube, the adhesive gap portion having an external diameter such that a generally annular adhesive receiving gap is formed between the first locating portion, the second locating portion, the adhesive gap portion and the internal bore of the elongated tube; and
adhesive positioned in the adhesive receiving gap to bond the end fitting to the elongated tube;
wherein:
the end fitting further comprises an injection port extending from an exterior of the end fitting co the adhesive receiving gap for injecting adhesive into the adhesive receiving gap;
the end fitting includes an air bleed port positioned on the first locating portion axially distally from the injection port, the air bleed port connecting between the adhesive receiving gap and a portion of the internal bore of the elongated tube axially inward from the end fitting;
the air bleed port is also positioned approximately 180\xb0 around a circumference of the end fitting from the injection port.
2. The bonded drive shaft of claim 1, wherein the first locating portion and the second locating portion of the end fitting have an interference fit with the internal bore of the elongated tube.
3. The bonded drive shaft of claim 2, wherein the elongated tube is constructed of a metal matrix composite aluminum.
4. The bonded drive shaft of claim 3, wherein the adhesive is an epoxy adhesive.
5. The bonded drive shaft of claim 4, and further comprising a second end fitting like the first end fitting, the second end fitting positioned in the internal bore at a second end of the elongated tube and bonded to the elongated tube with adhesive.
6. The bonded drive shaft of claim 2, and further comprising a second end fitting like the first end fitting, the second end fitting positioned in the internal bore at a second end of the elongated tube and bonded to the elongated tube with adhesive.
7. The bonded drive shaft of claim 2 wherein the end fitting is chromated prior to assembling to the tube.
8. The bonded drive shaft of claim 1, wherein the elongated tube is constructed of a metal matrix composite aluminum.
9. The bonded drive shaft of claim 1, wherein the end fitting is constructed of a non-weldable aluminum alloy.
10. The bonded drive shaft of claim 1, wherein the end fitting has a chromate coating at least on the adhesive gap portion.
11. The bonded drive shaft of claim 1, wherein the elongated tube has a chromate coating at least on the portion of the internal bore bonded to the end fitting.
12. A bonded drive shaft, comprising:
an elongated tube including an internal bore;
at least one end fitting, the end fitting including a portion for connecting to a drive component and an elongated tubular portion positioned in the internal bore of a first end of the elongated rube;
at least one of the elongated tubular portion of the end fitting and the elongated tube including a first locating portion distant from the connecting portion, a second locating portion proximal to the connecting portion and an adhesive gap portion positioned between the first locating portion and the second locating portion, the first locating portion and the second locating portion having diameters such that they engage the other of the elongated tubular portion of the end fitting and the elongated tube to position the end fitting with respect to the tube;
the adhesive gap portion having an external diameter such that a generally annular adhesive receiving gap is formed between the first locating portion, the second locating portion, the end fitting and the elongated tube; and
adhesive positioned in the adhesive receiving gap to bond the end fitting to the elongated tube;
wherein:
at least one of the end fitting and the tube further comprises an injection port extending from an exterior to the adhesive receiving gap for injecting adhesive into the adhesive receiving gap;
the end fitting includes an air bleed port connected to the adhesive receiving gap and positioned onadjacent the first locating portion axially distally from the injection port, the air bleed port connecting between the adhesive receiving gap and a portion of the internal bore of the elongated tube axially inward from the end fitting;
the air bleed port is also positioned approximately 180\xb0 around a circumference of the drive shaft from the injection port.
13. The bonded drive shaft of claim 12, wherein the first locating portion, second locating portion and adhesive gap portion are located on the elongated tube.
14. The bonded drive shaft of claim 12, wherein at least one of the first locating portion, second locating portion and adhesive gap portion are located on the elongated tube and at least another of the first locating portion, second locating portion and adhesive gap portion are located on the end fitting.
15. The bonded drive shaft of claim 12, wherein the first locating portion and the second locating portion provide an interference fit wit the end fitting.
16. The bonded drive shaft of claim 15, wherein the elongated tube is constructed of a metal matrix composite aluminum.
17. The bonded drive shaft of claim 12, and further comprising a second end fitting like the first end fitting, the second end fitting positioned in the internal bore at a second end of the elongated tube and bonded to the elongated tube with adhesive.
18. The bonded drive shaft of claim 12, wherein the end fitting is eliminated prior to assembling to the tube.
19. The bonded drive shaft of claim 12, wherein the end fitting is constructed of a non-weldable aluminum alloy.
20. The bonded drive shaft of claim 12, wherein the end fitting has a chromate coating at least on the adhesive gap portion.
21. The bonded drive shaft of claim 12, wherein the elongated tube has a chromate coating at least on the portion of the internal bore bonded to the end fitting.