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    • 3. 发明申请
    • Method of protecting against corrosion at high temperature
    • 防高温腐蚀的方法
    • US20050173495A1
    • 2005-08-11
    • US10603530
    • 2003-06-25
    • Sophie WastiauxMichel Poteau
    • Sophie WastiauxMichel Poteau
    • B01J19/00B01J19/02F16L13/02F16L58/08B23K31/02
    • F16L13/02B01J19/0053B01J19/02B01J2219/0236B01J2219/0281F16L13/0272F16L58/08
    • The invention relates to a method of protecting equipment intended to operate at high temperature in the presence of a fluid containing at least one hydrocarbon and/or carbon monoxide against corrosion by metal dusting, method in which pieces of the equipment are made from an alloy containing nickel, iron, chromium and/or aluminum, and in which said pieces of the equipment are protected from said corrosion by a protective coating. This method is characterized in that said equipment pieces protected in this way are connected to each other by means of joining pieces, said joining pieces being protected beforehand by a protective coating over at least part of their surface intended to be brought into contact with said fluid at high temperature, and in that each of the connections intended to be subjected to said corrosion is produced by external welding of the ends of the joining piece with said pieces of equipment.
    • 本发明涉及一种在含有至少一种烃和/或一氧化碳的流体存在下保护高温操作的设备的方法,以防止金属粉尘的腐蚀,其中设备件由含有 镍,铁,铬和/或铝,并且其中所述设备的部件被保护涂层保护免受所述腐蚀。 该方法的特征在于,以这种方式保护的所述设备件通过连接件相互连接,所述接合件预先通过保护涂层保护在其表面的至少一部分上,以使其与所述流体接触 并且由于连接件的端部与所述设备件的外部焊接来产生旨在经受所述腐蚀的每个连接。
    • 5. 发明授权
    • Method of protecting against corrosion at high temperature
    • 防高温腐蚀的方法
    • US07543733B2
    • 2009-06-09
    • US10603530
    • 2003-06-25
    • Sophie WastiauxMichel Poteau
    • Sophie WastiauxMichel Poteau
    • B21D39/04B23K1/00
    • F16L13/02B01J19/0053B01J19/02B01J2219/0236B01J2219/0281F16L13/0272F16L58/08
    • The invention relates to a method of protecting equipment intended to operate at high temperature in the presence of a fluid containing at least one hydrocarbon and/or carbon monoxide against corrosion by metal dusting, method in which pieces of the equipment are made from an alloy containing nickel, iron, chromium and/or aluminum, and in which said pieces of the equipment are protected from said corrosion by a protective coating. This method is characterized in that said equipment pieces protected in this way are connected to each other by means of joining pieces, said joining pieces being protected beforehand by a protective coating over at least part of their surface intended to be brought into contact with said fluid at high temperature, and in that each of the connections intended to be subjected to said corrosion is produced by external welding of the ends of the joining piece with said pieces of equipment.
    • 本发明涉及一种在含有至少一种烃和/或一氧化碳的流体存在下保护高温操作的设备的方法,以防止金属粉尘的腐蚀,其中设备件由含有 镍,铁,铬和/或铝,并且其中所述设备的部件被保护涂层保护免受所述腐蚀。 该方法的特征在于,以这种方式保护的所述设备件通过连接件相互连接,所述接合件预先通过保护涂层保护在其表面的至少一部分上,以使其与所述流体接触 并且由于连接件的端部与所述设备件的外部焊接来产生旨在经受所述腐蚀的每个连接。
    • 6. 发明授权
    • Regenerative heat exchanger and method for heating a gas therewith
    • 再生热交换器及其气体加热方法
    • US06631754B1
    • 2003-10-14
    • US09525115
    • 2000-03-14
    • Marc BremontKarin Tynelius-DiezNicolas PerrinPhilippe QueilleJoël PierreMichel Poteau
    • Marc BremontKarin Tynelius-DiezNicolas PerrinPhilippe QueilleJoël PierreMichel Poteau
    • F28D1700
    • F28D17/005
    • Provided is a novel regenerative heat exchanger and a method for heating a gas in the heat exchanger. The regenerative heat exchanger features a chamber separated into a plurality of annular concentric spaces, including: a first, inner annular space defining a hot collection chamber; a second, outer annular space concentric to and around the first space defining a cold collection chamber; and a third annular space defining a heat exchange zone concentric to and between the first and second spaces. The heat exchange zone contains a particulate heat transfer material. The third space is supported on the inside by a concentrically disposed hot grid, and the external diameter of the third annular space is less than about double the internal diameter of the third annular space. The invention has particular applicability to the feeding of hot blast to a blast furnace in the iron making industry.
    • 提供了一种新型再生式热交换器和用于加热热交换器中的气体的方法。 再生式热交换器具有分离成多个环形同心空间的室,包括:限定热收集室的第一内部环形空间; 与限定冷收集室的第一空间同心并围绕第二空间的第二外环形空间; 以及限定与第一和第二空间同心并且在第一和第二空间之间的热交换区的第三环形空间。 热交换区包含颗粒状的传热材料。 第三空间由同心设置的热格栅支撑在内部,并且第三环形空间的外径小于第三环形空间的内径的大约两倍。 本发明特别适用于在炼铁工业中向高炉供给热风