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    • 61. 发明授权
    • Apparatus for guiding and changing immersion lances
    • 引导和改变浸水枪的装置
    • US4533125A
    • 1985-08-06
    • US563630
    • 1983-12-20
    • Pierre MaillietRadomir AndonovHubert StompJean Monai
    • Pierre MaillietRadomir AndonovHubert StompJean Monai
    • C21C5/46C21C7/00C22B9/05C21C5/30
    • C22B9/05C21C5/4613C21C5/462C21C7/0037
    • A lance guiding and changing apparatus is presented for immersion lances which enables the lances to be changed or replaced at a rapid rate, the lances being held particularly firmly and rigidly during the plural injection processes. The immersion lance guiding and changing apparatus comprises, in part, lance storage means, lance transfer means, and lance changing means. The lance changing means includes a vertical mount which is capable of rotating about its vertical axis via a suitable drive means. At least two lance carriages are suspended on the mount, and the carriages are vertically transportable along the mount. The lance storage means, preferably comprised of a turret-type container capable of holding a plurality of lances, supplies or receives new and used lances respectively. The lance transfer means transfers the new or used lances between the storage means and the rotatable mount.
    • 本发明提供了一种用于浸入式喷枪的喷枪引导和更换装置,其能够以快速的速度更换或更换喷枪,在多个喷射过程中喷枪保持特别牢固和刚性。 浸渍喷枪引导和更换装置部分地包括喷枪存放装置,喷枪传送装置和喷枪改装装置。 喷枪改变装置包括垂直安装件,其能够通过合适的驱动装置围绕其垂直轴线旋转。 至少两个喷枪滑架悬挂在支架上,并且滑架可沿着底座垂直运输。 优选地包括能够保持多个喷枪的转台式容器的喷枪存储装置分别提供或接收新的和使用的喷枪。 喷枪传送装置在存储装置和可旋转安装件之间传送新的或使用的喷枪。
    • 62. 发明授权
    • Method of and apparatus for controllably charging a furnace
    • 用于可控地对炉进行充电的方法和装置
    • US4525120A
    • 1985-06-25
    • US288974
    • 1981-07-31
    • Edouard LegillePierre Mailliet
    • Edouard LegillePierre Mailliet
    • C21B7/18C21B7/20F27B1/20
    • C21B7/20
    • The position of the discharge end of a tubular member, supported from its first end so as to be rotatable about a first axis and pivotal about a second axis which intersects and is transverse to the first axis, is controlled from a remote location. The controllable tubular member may be the distribution spout of a shaft furnace charging installation which is mounted between the branches of a suspension fork which is rotatable about its own longitudinal axis. A motion transmission mechanism extends through the suspension fork and, in cooperation with the movements of the fork itself, transmits the movements imparted to a control device, which is caused to undergo precisely the same movements as it is desired to have the spout perform, to the spout.
    • 从远处位置控制管状部件的排出端的位置,该管状部件的第一端被支撑以能够围绕第一轴线旋转并围绕与第一轴线相交且横向于第一轴线的第二轴线枢转。 可控管状构件可以是竖炉加料装置的分配喷口,其安装在可围绕其自身的纵向轴线旋转的悬挂叉的分支之间。 运动传递机构延伸穿过悬挂叉,并​​且与叉子本身的运动协调地传递给控制装置的运动,该控制装置被引导以精确地相同的运动以符合要求具有喷嘴执行的运动, 喷口。
    • 64. 发明授权
    • Device for handling the various components of an installation for the
injection of pre-heated air into a shaft furnace
    • 用于处理用于将预热空气注入竖炉的设备的各种部件的装置
    • US4266907A
    • 1981-05-12
    • US927583
    • 1978-07-24
    • Pierre Mailliet
    • Pierre Mailliet
    • C21B7/16F27B1/10
    • C21B7/166Y10S414/13
    • The manipulation of components of a fluid transmission system, particularly portions of a conduit through which heated gas is delivered to a blast furnace is facilitated by the use of a self-propelled vehicle having mounted thereon a component support mechanism. The vehicle and component support mechanism cooperate to define a pair of displaced vertical pivotal axes whereby the component support mechanism can be readily maneuvered into engagement with the conduit portion to be manipulated. The apparatus is further characterized by a lifting arm assembly which enables the component support mechanism to be raised and lowered without changing the orientation of a supported conduit portion.The present invention relates to a device for handling the various components of an installation for the injection of pre-heated air into a shaft furnace. The invention likewise relates to a multi-purpose self-propelling carriage equipped with a device of this kind.It is known that blast furnaces are fed, via a set of tuyeres which extend through the wall of the furnace, with heated air, known as hot blast, which may be enriched with oxygen. This hot air is introduced through a collecting pipe positioned around the furnace and is distributed in each of the tuyeres by means of separate distributors, known as blast pipes. These blast pipes have a descending part, inclined at a slight angle and incuding compensators to allow for thermal expansions, a substantially horizontal part, known as the nozzle which is applied against the tyere, and an elbow which connects the descending part to the nozzle via flanges.In most furnaces all the tuyeres are situated on the same level and evenly distributed over the entire periphery of the furnace. Certain types of furnace, however, particularly those intended for the treatment of iron ore known as "minette", have two sets of tuyeres at different levels. In most cases there are only half as many tuyeres in the upper row as in the lower. In this case the blast pipes serving the tuyeres of the upper level have descending parts which are shorter than those of the lower blast pipes. On the other hand, the horizontal portion of the upper blast pipes, also known as the auxiliary blast pipes, is generally longer than that of the lower blast pipes, in order to render these blast pipes accessible. The fact is that the gap between the lower blast pipes impede access to the auxiliary blast pipes if these latter are entirely positioned between the wall of the furnace and the lower blast pipes. This is why the horizontal portion of the auxiliary blast pipes is lengthened by means of a crosspiece and the lower part of these auxiliary blast pipes is slightly offset in the radial direction in relation to the descending parts of the main blast pipes.To render the tuyeres accessible, particularly in order to dismantle them, the lower part of the blast pipes first has to be removed, this lower part consisting of the elbow, the nozzle and possibly the crosspiece. This lower part is generally removed all in one piece by loosening the flanges between the elbow and the inclined descending part of the blast pipe.These operations of dismantling, transporting, positioning and reassembling the blast pipe units have previously been carried out with the use of a self-propelling carriage, generally consisting of a fork elevator. A carriage of this kind requires a small turning circle and ample maneuverability, so that the platform provided for this purpose can be made to the smallest possible width. In this context, it should be possible, in particular, to position this carriage on the platform in such a way that it is aligned with the horizontal part of each blast pipe.A carriage for use in the assembly and disassembly of blast pipe units must also enable the lower part of each blast nozzle to be dismantled and re-assembled regardless of the position and angle of inclination the part occupies as a result of thermally induced expansions and deformations.A carriage of the type being discussed must also be so designed that it can be maneuvered rapidly and controlled with ease and above all in such a way as to satisfy all the safety requirements dictated by the operating environment. Even if the carriages hitherto used fulfil most of these conditions to a sufficient extent for medium-size blast furnaces, they are proving less and less satisfactory as the dimensions of the blast pipes increase as a result of the requirements arising out of the progress achieved in modern blast furnace construction. One of the main difficulties being encountered at the present time is due to the fact that, in the transport of the assembly consisting of elbow and nozzle, the centre of gravity of the complete unit formed by the carriage and its load is displaced by the load overhanging the fork of the carriage. In order to ensure that the centre of gravity will not move to a point beyond the wheels of the carriage, so that the latter will not tilt, the carriage has to be made sufficiently heavy or provided with counterweights. These measures obviously have to be taken at the cost of the performance of the carriage, particularly at the cost of the desired maneuverability and space-saving construction. These drawbacks become still more serious in the case of a furnace with two rows of tuyeres, the upper blast pipes forming a much longer load to be dismantled and supported on the carriage so that the known types of carriage may even fail to perform their function altogether.These known carriages are, moreover, of no utility for dismantling and reassembling other components of an installation for the injection of pre-heated air into a shaft furnace such as the tuyeres or the descending sections of the feed lines connecting the circular pipe to the blast pipe elbow sections. The previously available carriages were at most suitable only for the transport of these components. However for dismantling and reassembling said components one has to resort to workmen or special single-purpose appliances.SUMMARY OF THE INVENTIONThe purpose of the present invention is to provide improved apparatus for handling the components of a gas transmission and/or injection system, and a carriage equipped with this apparatus satisfying the most exacting demands as regards maneuverability, reliability and safety and proving suitable both for the replacement of all types of lower and upper blast pipe component, where necessary, and for other purposes, i.e. capable of acting as a mechanical shovel.According to the present invention there is provided a device for handling the various components of an installation for the injection of pre-heated air into a shaft furnace, said device being designed to be temporarily combined by means of a lifting arm with a control apparatus known per se, and being pivotable about a first vertical axis while the assembly consisting of the lifting arm and the handling device is pivotable about a second vertical axis distinct from the first.In one preferred version the second vertical pivot axis is defined by a removable hinge connecting the lifting arm to the control apparatus.The handling device may also be equipped with wheels and be designed to form the fore-carriage of the control apparatus which forms the hind-carriage.The combination of the movements rendered possible by the two vertical swivel axes enables the handling device to be accurately aligned with the axis of the tuyere of the blast furnace, even if the axis of the control apparatus is offset or inclined in relation to that of the tuyere. This facilitates the manipulation of the carriage, in view of the usual comparative shortage of space available for this purpose. p According to a further embodiment of the invention there is provided a set of adapters designed to be temporarily associated with the said handling device on the one hand, and with each of the various components of the device for the injection of pre-heated air, on the other.These adapters provide a means of dismantling and reassembling and also of transporting the descending part of the blast pipe, as well as the tuyere and even the assembly consisting of tuyere and nozzle in cases in which these two elements are integral with each other.The invention also covers a multi-purpose self-propelling carriage, particularly for the handling of components of an installation for the injection of pre-heated air into a shaft furnace, comprising a chassis mounted on wheels and designed to be combined with each of the elements of a set of interchangeable working tools by means of a removable hinge providing a means of adjusting the orientation of the tool in relation to the chassis, characterized by the fact that at least one of the tools consists of a device such as defined aove and that the second swivel axis of the working tool is formed by the swivel axis of the said hinge.The handling device or its adapter preferably comprises means for securing a component of the installation to the carriage. These means may consist of two parallel arms mounted on the handling device and capable of pivoting about a substantially horizontal axis and by a pin designed to interact with the holes in the said arm and an oblong hole in a bracket provided for this purpose on the component.According to a further embodiment of the invention the handling device can be associated with a pneumatic or hydraulic tool for releasing the tuyere.
    • 通过使用其上安装有部件支撑机构的自推进车辆,易于操纵流体传动系统的部件,特别是加热气体被输送到高炉的管道的部分。 车辆和部件支撑机构协作以限定一对移动的垂直枢转轴线,由此部件支撑机构可以容易地操纵成与被操纵的导管部分接合。 该装置的特征还在于提升臂组件,其能够使组件支撑机构升高和降低,而不改变支撑导管部分的取向。
    • 65. 发明授权
    • Drilling machine for blast furnace tapholes
    • 高炉钻孔机
    • US4097033A
    • 1978-06-27
    • US770191
    • 1977-02-18
    • Pierre Mailliet
    • Pierre Mailliet
    • C21B7/12
    • C21B7/12
    • A blast furnace taphole drilling apparatus is mounted so as to be movable, between the taphole drilling and retracted positions, in an inclined plane. The mounting means for the drilling apparatus permits the vertical and/or angular adjustment of the drill bit and the drill is held in the operative position solely under the influence of hydraulic pressure. Motive fluid for the drill of the taphole drilling apparatus is delivered to the drill, which is mounted for movement along a support beam, either by a rigid conduit system or via flexible conduits which are played out from and rewound on a reel.
    • 高炉出钢孔装置安装成可在倾斜平面内在出铁孔钻出和缩回位置之间移动。 用于钻孔装置的安装装置允许钻头的垂直和/或角度调节,并且钻头仅在液压的影响下保持在操作位置。 用于钻孔钻孔装置的钻头的动力流体被传送到钻头,该钻机被安装成沿支撑梁移动,或者通过刚性导管系统或通过在卷轴上放出并重绕在卷轴上的柔性导管。