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    • 2. 发明授权
    • 철광석 펠렛 제조 모사장치
    • 铁矿石制造模拟装置
    • KR101424913B1
    • 2014-08-01
    • KR1020130010833
    • 2013-01-31
    • 현대제철 주식회사
    • 김병철오종민윤성섭
    • F27B21/00F27B21/08C22B1/16
    • F27B21/04C22B1/18F27B17/02F27D19/00F27D2019/0096
    • The present invention relates to a separating type iron ore pellet manufacture simulator. According to the present invention, the separating type iron ore pellet manufacture simulator capable of simulating the manufacture of an iron ore pellet inserted into a furnace comprises a pellet pot for accommodating an assembled green pellet inside; an insulation pipe installed in the upper part of the pellet pot; a burner installed in the upper part of the insulation pipe; and a blower installed in the lower part of the pellet pot to transfer heat of the burner to the green pellet accommodated inside the pellet pot. According to the present invention, the separating type iron ore pellet manufacture simulator has the advantage of simulating the manufacture of the pellet at minimal cost, since a step for sintering a real pellet can be simply simulated by comprising the pellet pot for sintering the green pellet primary assembled, and the insulation pipe for indirectly applying heat generated from the burner to the green pellet accommodated in the pellet pot.
    • 本发明涉及一种分离式铁矿石颗粒制造模拟器。 根据本发明,能够模拟插入到炉中的铁矿石丸的制造的分离型铁矿石丸粒制造模拟器包括用于容纳组装的生丸的内部的丸粒罐; 绝缘管安装在颗粒罐的上部; 安装在绝缘管上部的燃烧器; 以及鼓风机,该鼓风机安装在小球罐的下部,以将燃烧器的热量转移到容纳在球团罐内的生球团。 根据本发明,分离型铁矿石颗粒制造模拟器具有以最小的成本模拟颗粒的制造的优点,因为可以简单地模拟用于烧结真实颗粒的步骤,包括用于烧结生颗粒的颗粒罐 初级组装,以及用于间接地将从燃烧器产生的热量施加到容纳在颗粒罐中的生颗粒的绝缘管。
    • 3. 发明授权
    • 롤 단위 재편성 결정 장치 및 방법
    • 装置和确定滚筒单元重新组合的方法
    • KR101382764B1
    • 2014-04-08
    • KR1020120152595
    • 2012-12-24
    • 주식회사 포스코
    • 박정순신안철
    • F27B9/40F27D3/00F27D19/00
    • F27B9/40F27B9/2407F27D2019/0059F27D2019/0096
    • Provided are an apparatus and a method of determining reorganization of slabs in a unit of roll. The apparatus for determining the reorganization of slabs in the roll unit includes: an estimated residence time calculating unit for calculating an estimated residence time of a slab that is presently charged in a heating furnace by adding up a rolling pitch of each slab, which is presently charged in the heating furnace, among slabs provided in the unit of one roll; a minimum residence time calculating unit for calculating a minimum residence time of the slab to be presently charged in the heating furnace from performance data; and a reorganization determining unit for determining a reorganization state of the slabs in the unit of the roil based on the estimated residence time and the minimum residence time which have been calculated, thereby reducing the consumption of fuel in the heating furnace while increasing the whole production. [Reference numerals] (110) Storage unit; (120) Estimated residence time calculating unit; (130) Minimum residence time calculating unit; (140) Reorganization determining unit; (AA) Rolling pitch; (BB,DD) Furnace entrance; (CC) Loading side; (EE) Charging zone; (FF) Preheating zone; (GG) Heating zone; (HH) Equilibrium heating zone; (II) Extracting side
    • 提供了一种以卷为单位确定板坯重组的装置和方法。 用于确定辊单元中的板坯重组的装置包括:估计停留时间计算单元,用于计算当前装载在加热炉中的板坯的估计停留时间,该预计停留时间通过将每个板坯的滚动间距相加 装在加热炉中,以一卷为单位设置的板坯中; 最小停留时间计算单元,用于根据性能数据计算当前要加热到加热炉中的板坯的最小停留时间; 以及重新组织确定单元,用于基于所计算的估计的停留时间和最小停留时间来确定以单元为单位的板坯的重组状态,由此减少加热炉中的燃料消耗,同时增加整个生产 。 (附图标记)(110)存储单元; (120)预计停留时间计算单位; (130)最小停留时间计算单位; (140)重组确定单元; (AA)滚动间距; (BB,DD)炉门入口; (CC)装载方; (EE)充电区; (FF)预热区; (GG)加热区; (HH)平衡加热区; (二)提取方
    • 4. 发明公开
    • 고로 샤프트부의 반응성 모사장치
    • 轴内反应模拟器
    • KR1020130110596A
    • 2013-10-10
    • KR1020120032681
    • 2012-03-29
    • 현대제철 주식회사
    • 김혁민순기
    • F27B17/02C21B5/00
    • C21B7/24F27B17/02F27D2019/0096
    • PURPOSE: A reactivity simulating device of a furnace shaft unit is provided to collect a sample and analyze the sample after making sintered ore and coke react under conditions similar to actual working conditions of a furnace, thereby evaluating the extent of reaction. CONSTITUTION: A reactivity simulating device of a furnace shaft unit includes a casing member (100), a reaction pipe (200), a hot air supplying device, a temperature setting unit (300), and a temperature measuring unit (400). A plurality of heating units is vertically arranged inside the casing member. The reaction pipe is vertically penetrated through the casing member, and iron-manufacturing materials and fuel are alternately piled inside the reaction pipe. The hot air supplying device connected to the top of the reaction pipe injects hot air and discharges the injected hot air via the bottom. The temperature setting unit sets the temperature of heating unit. The temperature measuring unit is vertically arranged inside the casing member or outside the reaction pipe.
    • 目的:提供炉轴单元的反应性模拟装置,用于收集样品,并在烧结矿石和焦炭在与炉的实际工作条件类似的条件下反应,从而评估反应程度,对样品进行分析。 构成:炉轴单元的反应性模拟装置包括壳体构件(100),反应管(200),热空气供给装置,温度设定单元(300)和温度测量单元(400)。 多个加热单元垂直地布置在壳体构件的内部。 反应管垂直地穿过壳体构件,铁制造材料和燃料交替地堆叠在反应管内。 连接到反应管的顶部的热空气供应装置注入热空气,并通过底部排放注入的热空气。 温度设定单元设定加热单元的温度。 温度测量单元垂直地布置在壳体构件内或反应管外部。
    • 5. 发明公开
    • 고로 장입물 분포 실험 장치
    • 用于在炉中分配材料的装置
    • KR1020100107755A
    • 2010-10-06
    • KR1020090026014
    • 2009-03-26
    • 현대제철 주식회사
    • 오한상이영재
    • C21B7/20C21B5/00
    • C21B5/008C21B7/24F27D2019/0096
    • PURPOSE: A test apparatus for material distribution in a furnace is provided to test material distribution in various charging conditions without difficulties and threat of accidents. CONSTITUTION: A test apparatus for material distribution in a furnace comprises a distribution locker(10), a charging bunker(20), a blast-furnace charging unit(30), a furnace main body(40), a bottom plate(42), a bottom plate lifting unit(70) and a supporting frame(60). The charging bunker is installed under the distribution locker. The blast-furnace charging unit is installed under the charging bunker and equipped with a distribution chute(35). The furnace main body is installed under the blast-furnace charging unit. The bottom plate is installed inside the furnace main body and able to move up and down. The bottom plate lifting unit supports and lifts the bottom plate. The supporting frame supports the furnace main body.
    • 目的:提供炉内材料分配的试验装置,在各种充电条件下测试材料分布,无困难和事故威胁。 构成:用于在炉中进行材料分配的测试装置包括配电柜(10),充电仓(20),高炉充电单元(30),炉主体(40),底板(42) ,底板提升单元(70)和支撑框架(60)。 充电仓储安装在配电柜内。 高炉充电单元安装在充电仓下并配有分配槽(35)。 炉主体安装在高炉充电单元下。 底板安装在炉体内部,能上下移动。 底板提升单元支撑并提升底板。 支撑框架支撑炉主体。
    • 8. 发明公开
    • 소결 모사시험용 멀티포트
    • 用于烧结模拟的多个烧结口
    • KR1020150078067A
    • 2015-07-08
    • KR1020130167143
    • 2013-12-30
    • 현대제철 주식회사
    • 박태준김혁
    • F27B21/00F27B17/02
    • F27B21/04F27B17/02F27D19/00F27D2019/0096
    • 본발명은소결모사시험용멀티포트에관한것으로서, 본발명에따른소결모사시험용멀티포트는, 상부에는버너가연결되고, 하부에는블로워가연결되며, 내부에는길이방향으로수용부가형성되는소결팟과, 상기수용부에수용되며, 내부에는소결원료가수용되어소결모사시험이진행되는복수의소결모사관과, 상기소결팟의하부에는블로워의흡입력이상기소결원료에작용되도록다수의통공이타공된홀플레이트가포함되는것을특징으로한다. 이상상술한바와같은본 발명에의하면, 한번의소결모사시험을통해서로다르게배합된소결원료를복수의소결모사관에각각투입한채로동시에소결모사시험이진행되므로소결모사시험에소모되는비용과시간을획기적으로줄일수 있는장점이있다.
    • 烧结模拟试验用多端口技术领域本发明涉及一种烧结模拟试验用多端口,其特征在于,包括:燃烧器与其上部连接的烧结锅,鼓风机的下部连接有收容部, 纵向; 容纳在容纳单元中的多个烧结模拟管,其中容纳内部的烧结材料以起始烧结模拟试验; 以及孔板,其中多个通孔被冲压以将鼓风机的吸力作用于烧结罐下部的烧结材料。 如上所述,在本发明中,将通过一次烧结模拟试验不同地混合的烧结材料分别插入到多个烧结模拟试管中,并且同时起动烧结模拟试验,因此花费在 烧结模拟试验可以显着降低。
    • 9. 发明公开
    • 고로 조업 시험 장치
    • BLAST FURNACE测试装置
    • KR1020140016645A
    • 2014-02-10
    • KR1020120083490
    • 2012-07-30
    • 현대제철 주식회사
    • 민순기김혁오한상
    • F27B17/02C21B5/00
    • C21B7/24F27D21/0014F27D2019/0096F27D2021/0007
    • The present invention relates to a blast furnace testing device which includes an internal space unit where raw materials for a test and fuel for a test can be charged. An artificial core is installed inside a furnace body member for a test including a transparent unit capable of checking inside on either the front surface or the rear surface. The raw materials for a test and fuel for a test are charged in the inside of the furnace body member for a test, and hot air heated by a hot air supplying device, which is connected to the lower part of the furnace body member for a test, is supplied to the internal space unit. Therefore, the present invention can clearly check the each movement of solid, fluid, and gas during an actual furnace task by similarly simulating a cohesive zone of an actual furnace.
    • 高炉检测装置技术领域本发明涉及一种高炉试验装置,其包括内部空间单元,其中可以对用于试验的原料和用于试验的燃料进行充电。 人造铁心安装在用于测试的炉体构件内,包括能够检查前表面或后表面内部的透明单元的测试。 用于试验的原料和用于试验的燃料被装载在用于试验的炉体构件的内部,并且由热空气供应装置加热的热空气连接到炉体构件的下部,用于 测试,被提供给内部空间单元。 因此,通过类似地模拟实际炉的内聚区,本发明可以在实际的炉任务期间清楚地检查固体,流体和气体的每个运动。
    • 10. 发明公开
    • 미분탄 연소성 평가 장치
    • 粉煤燃烧试验装置
    • KR1020100117959A
    • 2010-11-04
    • KR1020090036706
    • 2009-04-27
    • 현대제철 주식회사
    • 김광화이영재
    • C21B9/10
    • C21B7/24C21B5/003F27D3/0033F27D21/04F27D2019/0096
    • PURPOSE: A combustion testing apparatus for pulverized coal is provided to minimize the incomplete combustion of pulverized coal in a blast furnace and thus improve the productivity of hot metal. CONSTITUTION: A combustion testing apparatus for pulverized coal comprises a heater(10) which heats the air provided from an air supply part and discharges the heated air to a discharge tube, a pulverized coal injection part(20) which is connected to the discharge tube of the heater to inject the pulverized coal into the discharge tube, a pulverized coal combustor(30) which is connected to the discharge tube of the heater and burns the heated air and the pulverized coal injected together, and an exhaust part(40) which is connected to the pulverized coal combustor and collects the combustion gas in the pulverized coal combustor in order to measure the combustibility of the pulverized coal.
    • 目的:提供一种粉煤燃烧试验装置,以尽量减少高炉煤粉的不完全燃烧,提高铁水的生产率。 构成:粉煤的燃烧试验装置包括:加热器(10),其加热从供气部分提供的空气并将加热的空气排放到排放管;粉煤喷射部分(20),其连接到放电管 所述加热器将所述粉煤喷射到所述排放管中;粉煤燃烧器(30),其连接到所述加热器的所述排放管并且燃烧被加热的空气和喷射在一起的粉煤;以及排气部(40),所述排气部 连接到粉煤燃烧器,并收集粉煤燃烧器中的燃烧气体,以测量粉煤的可燃性。