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Title: Method for welding between metallic body and precision tube body



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Claims: What is claimed is:

1. A method for welding a metallic body to a precision tube body having an inner face with an allowable strain .DELTA.r.sub.a (.mu.), comprising directing a beam of concentrated energy through the metallic body and across an interface between the metallic body and the tubular body and rotating the beam and bodies relative to each other so as to form a bead peripherally about the precision body, penetrating with the bead so that the beam width W at the interface and the distance h between the bead and the inside surface of the precision tube are defined by

o < W .ltoreq. (0.015 .times. .DELTA.r.sub.a + 0.1)(h + 1) - 0.2

2. The method as in claim 1, wherein the step of directing a concentrated energy beam constitutes directing an electron beam.

3. The method as in claim 1, wherein the concentrated beam is a laser beam.

4. The method as in claim 1, wherein the concentrated beam is a plasma.

5. A method for welding a metallic body to a precision tubular body along an interface with the tubular body having an inner face with an allowable strain .DELTA.r.sub.a (.mu.), comprising directing a concentrated beam of energy sufficient to melt both the metallic body and the tubular body along the interface so as to form a bead, moving the bodies and the beam relative to each other so as to continue the bead peripherally along the interface, and applying the beam so that the width b of the starting point of penetration lies at the interface and the depth l(mm) of penetration at the interface are related to the thickness of the tubular body in accordance with the relationship

o < l .ltoreq. (9,935 .times. .DELTA.r.sub.a + 0.8) t

6. The method as in claim 5, wherein the step of directing a concentrated energy beam constitutes directing an electron beam.

7. The method as in claim 5, wherein the concentrated beam is a laser beam.

8. The method as in claim 5, wherein the concentrated beam is a plasma.

9. The method as in claim 5, wherein the width of the starting point of penetration lies at the end of the tubular body.

10. The method as in claim 9, wherein the step of directing a concentrated energy beam constitutes directing an electron beam.

11. The method as in claim 9, wherein the concentrated beam is a laser beam.

12. The method as in claim 9, wherein the concentrated beam is a plasma.

13. A product, comprising a hollow precision member having a precision machined inner face with an allowable strain .DELTA.r.sub.a (.mu.), a coupling member connected to the outside of the hollow member along an interface, a welding bead welding the coupling member to the hollow member and extending peripherally along the interface between the two members, said bead having a bead width W in millimeters along the interface and a minimum distance h between the bead and the inside surface of the hollow tube, wherein

o < W .ltoreq. (0.015 .times. .DELTA.r.sub.a = 0.1) (h - 1) - 0.2

14. A product, comprising a hollow precision-machined body having an inner face with an allowable strain of .DELTA.r.sub.a (.mu.), a member mounted about the body along an interface, a welding bead joining the member and the body along the interface and extending along the interface as well as peripherally about the body, said bead penetrating the interface to a depth l(mm), said tube body having a thickness t in millimeters, wherein:

o < l .ltoreq. (9,935 .times. .DELTA.r.sub.a + 0.8) t
Other info:


Inventors: Nakayama, Masatoki (Kisarazu, JA)
Shikoh, Saburo (Kisarazu, JA)
Nohgata, Hiroshi (Kimitsu, JA)
Kimiya, Yasuo (Kimitsu, JA)
Yada, Hiroshi (Munakata, JA)
Nisida, Sin-ichi (Kitakyushu, JA)
Ogai, Mikio (Ichihara, JA)

Application Number: 510028
Filing Date: 1974-09-27
Publication_date: 1976-04-06
Assignee: Nippon Steel Corporation (Tokyo, JA); The Furukawa Electric Co., Ltd. (Tokyo, JA)
Primary Class(es): 219/121.14 219/121.36, 219/121.46, 219/121.58, 219/121.63, 219/121.64, 219/121.82, 219/121.85, 445/23
Other Classes:
US Patent Ref:
3694616Sep, 1972Brealey219/121.
3725635Apr, 1973Fink et al.219/121.
3780412Dec, 1973Milland219/121.
3824368Jul, 1974Locke219/121.
3860784Jan, 1975Brown et al.219/121.

Other Refs:
Primary Examiner: Truhe, J. V.
Assistant Examiner: Peterson, G. R.
Attorney: Toren, McGeady and Stanger