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    • 4. 发明授权
    • 음파의 주파수 가변기능을 구비한 음파탈진기
    • 의주파수가변기능을구비한음파탈진기
    • KR100398418B1
    • 2003-09-19
    • KR1019990032750
    • 1999-08-10
    • 주식회사 포스코재단법인 포항산업과학연구원
    • 이준석이재율
    • B06B1/00
    • PURPOSE: A sound wave escapement device is provided to generate the optimum frequency appropriate for an application object and to improve an escapement effect by changing a wave sound frequency through simple manipulation. CONSTITUTION: A sound wave escaping device is made up of a driver(11) for generating a sound wave by vibrating an inner shaking plate and a horn(12) for amplifying the sound wave and transferring the sound wave to an output side. More than one hole is formed on an entrance side of the horn and connected to valves(14a-14c). To send dust or gas to the horn upon opening the valves, the valve is connected to the output side of the horn with a connecting pipe(15). A principle of regulating a sound in a wind instrument is applied to the sound wave escapement device. The frequency of the sound wave is varied by opening and closing the valves. Accordingly, even if the valves are opened, harmful gas enters a corresponding equipment through the connecting pipe.
    • 目的:提供声波擒纵装置,以产生适用于应用对象的最佳频率,并通过简单的操作改变波形声音频率来提高擒纵效​​果。 一种声波逃逸装置,由驱动器(11)组成,用于通过振动内振动板和用于放大声波并将声波传送到输出侧的喇叭(12)来产生声波。 在喇叭的入口侧形成多于一个孔并连接到阀(14a-14c)。 打开阀门时要将灰尘或气体送入喇叭,阀门通过连接管(15)连接喇叭的输出侧。 在管乐器中调节声音的原理应用于声波擒纵装置。 声波的频率通过打开和关闭阀来改变。 因此,即使打开阀门,有害气体也通过连接管进入相应的设备。
    • 5. 发明公开
    • 폐염산 회수장치 및 이를 이용한 회수방법
    • 废水回收系统及其回收方法
    • KR1020020050452A
    • 2002-06-27
    • KR1020000079601
    • 2000-12-21
    • 주식회사 포스코재단법인 포항산업과학연구원
    • 이준석방정희
    • C23G1/36
    • B01D53/46B01D53/14C23G1/36
    • PURPOSE: Provided is a recovery system for waste hydrochloric acid which controls the temperature of circulating NaOH solution under 60deg.C to prevent water from being evaporated and keep discharge concentration of HCl to be low so that it is widely useful in recovering the waste hydrochloric acid. CONSTITUTION: The recovery system for waste hydrochloric acid comprises the parts of: a calciner(210) which pyrolyzes liquid iron chloride and iron oxide into Cl2 gas; an absorption tower(230) which recovers the discharged Cl2 gas as HCl solution; a washing tower(250) which includes a circulation pipe(251) to supply neutralization liquid and a filling layer(253) to neutralize the unrecovered HCl gas and eliminate; and a cooling facility which includes a heat exchanger(255) to lower the temperature of neutralization liquid, a cooler(256) to cool covalent discharged from the heat exchanger at normal temperature, a coolant pump(257) to supply coolant for the heat exchanger again and a coolant storage bath(258) to supplement coolant to the cooler.
    • 目的:提供一种废盐酸回收系统,控制60℃循环NaOH溶液的温度,防止水分蒸发,使HCl的排出浓度降低,广泛用于回收废盐酸 。 构成:废盐酸回收系统包括以下部分:将液态氯化铁和氧化铁热解成Cl 2气体的煅烧炉(210) 吸收塔(230),其以HCl溶液回收排出的Cl 2气体; 洗涤塔(250),其包括供给中和液的循环管道(251)和填充层(253),以中和未回收的HCl气体并消除; 以及冷却设备,其包括用于降低中和液体的温度的热交换器(255),在常温下从热交换器排出的冷却共冷的冷却器(256),供给用于热交换器的冷却剂的冷却剂泵 再次和冷却剂储存浴(258),以向冷却器补充冷却剂。
    • 6. 发明公开
    • 대형 회전체의 산세방법
    • 用酸清洗大转子的方法
    • KR1020000042041A
    • 2000-07-15
    • KR1019980058109
    • 1998-12-24
    • 재단법인 포항산업과학연구원주식회사 포스코
    • 이준석이재윤김경태
    • C23G1/00
    • C23G1/08C23G3/00
    • PURPOSE: A method is provided to remove attached impurities by cleansing a big rotor such as a big blower with acid without damage. CONSTITUTION: In filling a raw liquid storing tank(5) with about 15% of sulfamic acid liquid, a controller(9) opens a valve(8) to fill water in a supply storing tank(3) through a supply water line(6). Then a raw liquid transferring pump(4) moves to transfer regular amount of sulfamic acid to the supply storing tank. At that time, proper density of the storing tank is about pH 3 to 4 and the diluted sulfamic acid is sprayed from a cleansing nozzle(1) through a high pressure pump(2). The cleansing nozzle is installed in the gas inlet hole of a blower fan.
    • 目的:提供一种通过用酸清洗大型转子(如大型鼓风机)而不损坏来除去附着杂质的方法。 构成:在用大约15%的氨基磺酸液体填充原液储存罐(5)的同时,控制器(9)打开一个阀门(8),通过供水管线(6)向储液罐(3) )。 然后原料液体输送泵(4)移动以将规则量的氨基磺酸转移到供应储存罐。 此时,存储罐的适当密度约为pH3〜4,稀释的氨基磺酸通过高压泵(2)从清洗喷嘴(1)喷出。 清洁喷嘴安装在鼓风机的进气孔中。
    • 8. 发明公开
    • 전자기 집진장치
    • 基于电磁场的集尘器
    • KR1020030041538A
    • 2003-05-27
    • KR1020010072370
    • 2001-11-20
    • 주식회사 포스코재단법인 포항산업과학연구원
    • 이준석한수광조국진
    • B03C3/38
    • B03C3/45B03C3/04B03C3/60B03C3/82
    • PURPOSE: Provided is a dust collector based on electromagnetism which uses electric power to charge dust and separates gases and the dust within electric field so that it raises efficiency in collecting the dust, which is included in the gases. CONSTITUTION: The dust collector based on electromagnetism comprises the parts of: an ionization part(10) which is connected to a gas pipe(19) to bring in gas with forming an ionization tank(11) to allow the brought dust to be charged with negative electricity; a dust collection part(20) which is connected to the ionization tank to move the dust charged with negative electricity to a collection anode(23); a magnetic part(30) which allows plural magnet members(31) to adhere dusts to the collection anode for magnetizing the dust; a hopper part(40) which allows a collection pipe(41) to collect the dust fallen from the anode; and a power supply part(50) which supplies power to an ionization cathode(12), a collection cathode(22) and the collection anode.
    • 目的:提供一种基于电磁力的集尘器,其使用电力对灰尘进行充电并分离气体和电场内的灰尘,从而提高收集包含在气体中的灰尘的效率。 构成:基于电磁学的集尘器包括以下部分:电离部分(10),其连接到气体管道(19),以形成气体以形成电离罐(11),以允许灰尘被带入 负电; 尘埃收集部(20),其连接到所述电离槽以将被负电的灰尘移动到收集阳极(23); 磁性部件(30),其允许多个磁体部件(31)将灰尘附着到用于磁化灰尘的收集阳极; 漏斗部分(40),其允许收集管(41)收集从阳极掉落的灰尘; 以及向电离阴极(12),集电阴极(22)和收集阳极供电的供电部(50)。
    • 9. 发明公开
    • 음파탈진기를 이용한 탈진방법
    • 使用SONIC RAPPING系统的补偿方法
    • KR1020010057448A
    • 2001-07-04
    • KR1019990060889
    • 1999-12-23
    • 주식회사 포스코재단법인 포항산업과학연구원
    • 이준석이재율
    • B08B7/02
    • PURPOSE: A rapping method calculates optimum frequency in advance to select the suitable sonic remover to improve rapping efficiency. CONSTITUTION: A rapping method comprises nine steps. The first step is to provide a frequency oscillator(1) generating arbitrary frequencies, a loud speaker(2) converting electric signal of arbitrary frequency to a sound wave, a microphone(3) converting the sound wave into electric signal about the frequency and a frequency analyzer(4) receiving the signal about the frequency and analyzing the frequency. The second step is to place the loud speaker(2) on a place where a sonic rapping system is installed to receive electric signal of the frequency from the frequency oscillator(1) to generate the sound wave in a structure(20) and the microphone(3) to the place on the structure(20) where dust is discharged to accept the sound wave in the structure(20) generated by the loud speaker(2) and convert the sound wave into the electric signal about the frequency to output to the frequency analyzer(4). The sixth step is for the frequency analyzer(4) to analyze the frequency using the electric signal of the frequency. The eighth step is to get the frequency nearest to the frequency generated by the frequency oscillator(1) and determine the frequency generated in the frequency oscillator(1) corresponding to the frequency as the optimum frequency. The ninth step is to select a sonic rapping system having the frequency corresponding with the optimum frequency and install to remove dust.
    • 目的:敲击方法提前计算最佳频率,以选择合适的声波去除剂以提高振打效率。 构成:敲击方法包括九个步骤。 第一步是提供产生任意频率的频率振荡器(1),将任意频率的电信号转换成声波的扬声器(2),将声波转换成关于频率的电信号的麦克风(3) 频率分析仪(4)接收频率信号并分析频率。 第二步是将扬声器(2)放置在安装声音敲击系统的地方以从频率振荡器(1)接收频率的电信号,以在结构(20)中产生声波,并且麦克风 (3)到扬声器(2)产生的结构(20)中的扬声器(2)产生的声波的结构(20)上的灰尘排出的位置,并将声波转换成关于频率的电信号输出到 频率分析仪(4)。 第六步是频率分析仪(4)使用频率的电信号分析频率。 第八步是获得频率最接近频率振荡器(1)产生的频率,并确定频率振荡器(1)中产生的频率对应于最佳频率。 第九步是选择频率对应于最佳频率的声音敲击系统,并安装去除灰尘。