Abstract:
본 발명은 세제의 용해력을 향상시키는 동시에 연수화 성능을 향상시킬 수 있는 연수장치를 구비한 세탁기를 제공하는 데 그 목적이 있다. 이를 위해 본 발명은 수조와, 상기 수조에 물을 공급하기 위한 급수장치와, 상기 수조에 세제를 공급하기 위한 세제공급장치와, 물을 연수화시키기 위한 연수장치를 구비한 세탁기에 있어서, 상기 연수장치는 상기 세제공급장치로부터 공급되는 세제와 급수장치로부터 공급되는 물이 혼합된 상태로 상기 연수장치로 유입될 수 있도록 배치되어 이루어진다.
Abstract:
본 발명은 연수화 성능을 향상시킬 수 있는 구조를 구비한 연수장치 및 이를 포함하는 가전제품을 제공하는데 그 목적이 있다. 이를 위해 본 발명은 자성을 가지는 관체와, 상기 관체의 내부에 마련된 마그네트와, 상기 관체 내부를 흐르는 물의 연수화 성능을 향상시키기 위해 소용돌이를 일으키며 자화될 수 있도록 소용돌이형성부를 포함하여 이루어져 물이 흐르면서 소용돌이를 형성토록 함으로써 마그네트를 지나는 물의 자화시간을 연장하고 물의 유동을 불규칙적으로 되게 하여 연수화 성능을 향상시킬 수 있게 된다.
Abstract:
An electrode module and a deionization apparatus using the same are provided to simplify the stack structure and reduce contact impedance by integrating the current collector and the power supply part using a protective film. An electrode module(100) comprises a current collector(120), electrodes(140), and a protective film(160). The current collector is supplied with external power. The electrodes are arranged on the top and bottom of the current collector and provided with power to adsorb and separate the ion dissolved in a fluid. The protective film greater than the current collector and the electrodes is attached to the current collector and the electrodes to integrate them. The protective film has an opening(160a) for exposing the electrodes to outside.
Abstract:
A method for manufacturing flat polyimide carbon nano fiber and carbon nanotube composite electrode are provided to minimize the diameter of the carbon fiber by using triethylamine as a catalyst and to improve the specific surface area of electrode. A method for manufacturing carbon fiber electrode comprises the steps of: (S20) synthesizing a polyamic acid which is the polyimide precursor by using pyromellitic dianhydride and oxydianiline as a monomer and triethylamine as catalyst; (S30) manufacturing spinning solution by putting dimethylformamide into the polyamic acid solution and obtaining polyamic acid nanofiber paper through electrostatic spinning; (S40) converting the polyamic acid nanofiber paper into polyimide through heat-treatment; and (S50) converting the polyimide nanofiber paper into carbon nanofiber through heat-treatment in the inert gas atmosphere.
Abstract:
A water softener is provided to increase the amount of soft water without performance degradation, by using a guide member covering the outer circumference of the porous electrode. A deionization part(20) includes the porous electrode(30) laminated to plurality. A chamber(10) mounts the porous electrode. A guide member(40) is installed at the chamber, and guides the water current so that the water amount flowed in into a plurality of porous electrode spaces be increased. The guide member guides fluid flow between the outer circumference of a plurality of porous electrodes and inside of the chamber. The deionization part includes the porous electrode laminated to plurality. The guide member guides the fluid flow while rotating according to the outer circumference of a plurality of porous electrodes.
Abstract:
A water softener is provided to increase the soft water flow by using an impeller and improve the performance of a water softener by magnetizing the fluid which has cavitation, based on the interaction of both impeller and a permanent magnet. An impeller is made of the material having magnetism, and a casing accommodates the impeller to be rotative. A permanent magnet(18) arranged inside the casing, and a driving device(30) drives the impeller. Fluid is magnetized by the interaction of both impeller and a permanent magnet.