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    • 33. 发明授权
    • Daisywheel convector plate for batch coil annealing furnace
    • 用于批量线圈退火炉的菊花对流板
    • US5697778A
    • 1997-12-16
    • US382297
    • 1995-02-01
    • Klaus H. Hemsath
    • Klaus H. Hemsath
    • C21D9/67C21D9/673C21D9/00
    • C21D9/673C21D9/67
    • An improved convector plate is provided for a batch coil annealing furnace. The plate includes a top annular plate, an identical bottom annular plate and an annular diverter plate in between. A plurality of slotted openings are provided in the top and bottom plates which extend radially outwardly from a first imaginary circle spaced from the inner peripheral edge of the top and bottom plates to an imaginary second circle spaced inwardly from the top and bottom plate's outer peripheral edge. The annular diverter plate is radially centered within the slotted openings. When the convector plate is placed between the edges of two coils, furnace atmosphere flows into the convector plate in the space between the top and bottom plates and is directed by the diverter plate into the slotted openings which are now covered by the coil edges thus establishing improved convective heat transfer rates with the coil edges resulting in shorter annealing process times.
    • 为批量线圈退火炉提供改进的对流板。 该板包括顶部环形板,相同的底部环形板和其间的环形转向板。 在顶板和底板上设置有多个开槽开口,其从与顶板和底板的内周边缘间隔开的第一假想圆径向向外延伸到从顶板和底板的外周边缘向内间隔开的假想第二圆 。 环形分流板在开槽开口内径向对中。 当对流板放置在两个线圈的边缘之间时,炉气体在顶板和底板之间的空间中流入对流板,并被分流板引导到现在被线圈边缘覆盖的开槽开口中,从而建立 改善的对流传热速率与线圈边缘导致较短的退火处理时间。
    • 34. 发明授权
    • Temperature probe for determining carbon sooting temperatures of oil
mixtures on steel strips
    • 用于确定钢带上油混合物的碳排放温度的温度探头
    • US5431495A
    • 1995-07-11
    • US208712
    • 1994-03-11
    • Klaus H. Hemsath
    • Klaus H. Hemsath
    • G01N25/08G01N33/28G01N25/12G01K1/14G01K7/04G01K13/02
    • G01N33/28G01N25/08G01N33/2805
    • A temperature probe is disclosed for determining the temperature at which residual oils can be vaporized from cold rolled strip without producing free carbon. The probe includes an open ended first tubular member with a burner mounted at one end of the first tubular member for closing the end thereof so that the burner fires its products of combustion through the first tubular member and out the other end thereof. A closed end second tubular member concentrically receives the first tubular member to define an annular heat space therebetween and has an exhaust port in fluid communication with said annular heat space adjacent the burner. Insulation extends on the inside of the outer tubular member for a fixed distance thereof from the exhaust port and a water jacket adjacent the exhaust port provides a temperature gradient along the length of the tube coincident with the insulation to provide a steady state, temperature indicating device in which the temperature varies, as a gradient, along the length of the outer tube.
    • 公开了一种用于确定残余油可以从冷轧带钢蒸发而不产生游离碳的温度探针。 探头包括开放式第一管状构件,其具有安装在第一管状构件的一端处的燃烧器,用于封闭其端部,使得燃烧器通过第一管状构件燃烧其燃烧产物,并且从另一端起火。 闭合的第二管状构件同心地接收第一管状构件以在其间限定环形加热空间,并且具有与邻近燃烧器的所述环形加热空间流体连通的排气口。 绝缘体在外部管状构件的内部延伸与排气口的固定距离,并且与排气端口相邻的水套提供沿着与管道重合的管的长度的温度梯度,以提供稳定的温度指示装置 其中温度沿着外管的长度作为梯度变化。
    • 36. 发明授权
    • Convective heat transfer by cascading jet impingement
    • 通过级联射流冲击对流传热
    • US5228513A
    • 1993-07-20
    • US695434
    • 1991-05-03
    • Klaus H. Hemsath
    • Klaus H. Hemsath
    • C21D1/34C21D1/767C21D9/673C21D9/677F28F13/02
    • F28F13/02C21D1/34C21D9/673F28D7/106F28F13/12C21D1/767C21D9/677Y10S165/908
    • An improved convective heat transfer arrangement is disclosed achieving overall heat transfer efficiencies in the neighborhood of 30 Btu/(hr. ft.sup.2 .degree. F.). A heat transfer conduit including a heat transfer wall is axially divided into a plurality of axially extending heat transfer chambers by a plurality of transversely extending baffles. Each baffle is especially configured to have an axially extending recess formed therein through which extends an orifice opening. Heat transfer gas pumped through the conduit cascades through the heat transfer chambers forming and reforming nascent free standing jet streams through each baffle orifice which impinge the heat transfer wall to achieve very high heat transfer coefficients while efficiently utilizing the available heat in the heat transfer gas.
    • 公开了一种改进的对流传热装置,其实现了在30Btu /(hr·ft2°F)附近的总传热效率。 包括传热壁的传热导管通过多个横向延伸的挡板被轴向地分成多个轴向延伸的传热室。 每个挡板特别构造成具有形成在其中的轴向延伸的凹部,通过该凹槽延伸孔口。 泵送通过导管的传热气体通过传热室流过,形成并重新形成新生的独立喷射流,穿过每个挡板孔,其冲击传热壁以实现非常高的传热系数,同时有效地利用传热气体中的可用热量。
    • 37. 发明授权
    • High temperature furnace
    • 高温炉
    • US5207972A
    • 1993-05-04
    • US805580
    • 1991-12-10
    • Klaus H. Hemsath
    • Klaus H. Hemsath
    • F27B3/20F27B3/26
    • F27B3/26F27B3/20
    • A high temperature, low NO.sub.x industrial furnace coal-fired burners placed in an arcuate heat track conduit which heats an arcuately configured wall member extending through an opening in the heat track conduit. The heated portion of the wall member rotates out of the heat track conduit to indirectly heat a bundle or bank of heat exchange tubes while an unheated wall portion moves into the opening vacated by the heated wall portion. The regenerative heated wall member thus permits the heat exchange tube bundle to be heated to high temperature without exposure to the burner products of combustion. The coal-fired burners are operated substoichiometrically to produce combustibles and a free-standing, jet entrainment arrangement is utilized to achieve staged combustion to avoid NO.sub.x formation.
    • 放置在弧形热轨道导管中的高温,低NOx工业炉燃煤燃烧器,其加热延伸穿过热轨道管道中的开口的弧形构造的壁构件。 壁构件的加热部分从热轨道导管外旋转,以间接加热一束或一组热交换管,同时不加热的壁部分移动到被加热的壁部分空出的开口中。 因此,再生加热壁构件允许热交换管束被加热到高温而不暴露于燃烧器的燃烧器产物。 燃煤燃烧器以亚化学计量运行以产生可燃物,并且采用独立的喷射夹带装置来实现分段燃烧以避免NOx形成。
    • 38. 发明授权
    • Hybrid combustion device and system therefor
    • 混合燃烧装置及其系统
    • US5090891A
    • 1992-02-25
    • US584805
    • 1990-09-19
    • Klaus H. Hemsath
    • Klaus H. Hemsath
    • F23C15/00
    • F23C15/00
    • A hybrid burner system is disclosed which incorporates features of continuous burners and pulse combustion devices. A combustion chamber is fitted with one-way air inlet valves, an orificed or small sized exhaust outlet valve and a pressurized, gas inlet which is externally actuated in a periodic manner to produce combustion pulses during operation. The combustion pulses generate heat, force the products of combustion from the burner chamber and cause combustion air to periodically enter the chamber in a self-aspirating manner. Combustion occurs silently during the entire time the fuel is externally pulsed because of the way a fuel/air mixture is developed in a chamber which is filled with combustion air prior to fuel introduction. A spark plug electrode-stabilizing rod arrangement insures consistent ignition while a flame front is stabilized and propagated. The burner arrangement is self-contained in a recirculating heat exchange application where a pulse opening is provided at a precise position relative to the heat combustion chamber. A pulse line taps the pressure pulses produced during the burner operation to provide a fairly constant fluid flow for use in a closed-loop system where the burner supplies the heat input to the system.
    • 公开了一种混合燃烧器系统,其包括连续燃烧器和脉冲燃烧装置的特征。 燃烧室配有单向空气入口阀,有孔或小尺寸的排气出口阀和加压气体入口,其在周期性地被外部致动以在运行期间产生燃烧脉冲。 燃烧脉冲产生热量,迫使来自燃烧器室的燃烧产物引起燃烧空气以自吸方式周期性地进入腔室。 在燃料外部脉冲的整个时间内,由于燃料/空气混合物在燃料引入之前在燃烧空气中充满燃料/空气混合物的方式,所以燃烧是静默​​的。 火花塞电极稳定杆装置确保一致的点火,同时火焰前端稳定并传播。 燃烧器布置在循环热交换应用中是独立的,其中脉冲开口设置在相对于热燃烧室的精确位置。 脉冲线分接在燃烧器操作期间产生的压力脉冲,以提供相当恒定的流体流动,以用于闭合系统,其中燃烧器向系统提供热量输入。
    • 39. 发明授权
    • Gas fired melting furnace
    • 燃气熔炉
    • US5078368A
    • 1992-01-07
    • US520244
    • 1990-05-07
    • Klaus H. Hemsath
    • Klaus H. Hemsath
    • F27B3/20F27B3/26
    • F27B3/26F27B3/20Y02P10/143Y10S266/90
    • A high temperature gas fired heat transfer system ideally suited for melting metals is disclosed. The system generates a heated, reducing furnace atmosphere which prevents formation of metal oxides when the metal is melted. A unique arrangement is provided to draw a portion of the reducing atmosphere from the furnace and combust the drawn furnace atmosphere with high speeds jets of preheated combustion air which convectively impinge and heat the surface of an object to a super heat temperature. That surface is then moved into the furnace enclosure to indirectly heat by radiation and melt the metal at high throughput rates.
    • 公开了一种理想地适用于熔化金属的高温燃气传热系统。 该系统产生加热的还原炉气氛,其防止当金属熔化时金属氧化物的形成。 提供了一种独特的布置,用于从炉中抽取一部分还原性气体,并将预热的燃烧空气的高速射流燃烧所述抽取的炉内气氛,所述燃烧空气对流地将物体表面撞击并加热至超热温度。 然后将该表面移动到炉壳中以通过辐射间接加热并以高通过率熔化金属。