EP1515075A2

Composite tube for ethylene pyrolysis furnace and methods of manufacture and joining same

Abstract

A process for making a composite tube uniquely suited for use in ethylene pyrolysis furnaces wherein the tube comprises an outer shell (32) made from a wrought or cast Fe-Ni-Cr heat resistant alloy and an inner core made from INCOLOY alloy MA956 powder. The outer shell (32) and powder core (34) are heated and simultaneously extruded to form a composite tube. The process is carried out at a temperature of preferably less than 1200°C and for a time so as to prevent recrystalization of the very fine grain structure in the alloy MA956. This un-recrystalized fine grain structure permits pilgering and/or cold drawing of the extruded composite tube to final size. The composite tube provided by the present invention is uniquely suited for use in the petrochemical and chemical process industries, so as to increase the efficiency and productivity of their respective processes. The thin core layer (34) of alloy MA956 provides high resistance to carburization and coke formation heretofore caused by the hydrocarbon feedstock flowing through the composite tube, while the outer shell (32) of Fe-Ni-Cr heat resistant alloy provides overall strength and rigidity to the tube. The use of the outer shell in the composite tube also solves the joining problem heretofore encountered in joining alloy MA956. A root pass or passes using an alloy MA956 filler metal followed by overlay welding passes using a filler metal compatible with the heat resistant alloy, such as INCONEL alloy 617 or FM 25/35, joins the outer shells of adjoining composite tubes and, thus, solves the welding problem.

EP1515075A2, drawing sheet 1
Sheet 1 of 6

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Term ended

Projected expiry passed 15 September 2024, 2 years ago.

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13 claims: 6 independent, 7 dependent

  1. 1
    A composite tube suitable for ethylene pyrolysis furnaces and like service comprising an outer shell of a Fe-Ni-Cr heat resistant alloy, e.g. a high temperature heat-resistant alloy selected from the group consisting of alloys 800HT, 803, 890, HK40, HPM and modified HPM, and an inner core of alloy MA956.
  2. 4
    A process of making a composite tube suitable for use in ethylene pyrolysis furnaces and like service comprising the steps of:(a) providing an outer shell of a Fe-Ni-Cr heat resistant alloy;(b) providing a mechanically alloyed powder of alloy MA956;(c) placing the alloy MA956 powder of step (b) around an inner diameter of said outer shell provided in step (a) to form an inner core, wherein the inner core has a bore formed therein;(d) simultaneously extruding the outer shell and inner core to form an extruded composite tube shell;and (e) cold working the composite tube shell to form the composite tube.
  3. 8
    A method of field fabricating ethylene pyrolysis furnace tubes comprising the steps of:(a) providing composite tubes comprising an outer shell of a Fe-Ni-Cr alloy and an inner core of alloy MA956;(b) heating the composite tubes to a temperature of at least 80°C;(c) bending the heated composite tubes to a desired configuration to provide formed composite tubes;and (d) joining the formed composite tubes by welding while said formed composite tubes are at a temperature the same as or in excess of the temperature of step (b), said welding step employed in one or more welding passes using a first weld filler metal compatible with the alloy of said inner core, e.g. filler metal MA956 alloy wire, and successive welding passes using a filler metal compatible with the alloy of said outer shell, e.g. filler metal 617 alloy wire.
  4. 11
    An extruded and cold worked composite tube having an outer shell of a wrought or cast alloy, e.g. a wrought Fe-Ni-Cr alloy such as one selected from the group consisting of alloys 800HT, 803 and 890, and an inner core of an oxide dispersion strengthened powder metal alloy, e.g. alloy MA956.
  5. 12
    An ethylene pyrolysis furnace tube comprising an extruded and drawn composite tube having an outer shell of a Fe-Ni-Cr alloy, e.g. an alloy selected from the group consisting of alloys 800HT, 803, and 890, and an inner core of alloy MA956, the inner core optionally having a bore with a finned sidewall.
  6. 13
    An ethylene pyrolysis furnace tube comprising an extruded and pilgered composite tube having an outer shell of a Fe-Ni-Cr alloy, e.g. an alloy selected from the group consisting of alloys 800HT, 803, and 890, and an inner core of alloy MA956.