Abstract:
본 발명은 작업 대차를 건물 외벽에 고정시키는 장치에 대한 것으로서 특히 진공 흡착 패드와 상기 건물 외벽을 청소하는 석션 유닛을 이용하여 작업 대차가 건물 외벽에 부착되도록 하여 상기 작업 대차가 흔들리지 않고 안정적으로 고정될 수 있도록 하는 건물 외벽용 작업대차 고정장치에 대한 것이다.
Abstract:
PURPOSE: A working cage fixing apparatus for the outer wall of a building is provided to stably fix a working cage even on the outer wall of a building with an uneven surface. CONSTITUTION: A working cage fixing apparatus for the outer wall of a building comprises a suction unit(120) which is installed on one side of a working cage(110) and draws in moisture or dust produced when cleaning the outer wall of a building and a vacuum suction pad(P) which is mounted on the other side of the working cage and attached to the outer wall(W) of the building. The suction unit comprises a suction fan installed facing the outer wall of the building, a duct(D) for collecting air or moisture drawn in by the suction fan, a collecting pipe(PI) connected to the duct, a shield(140) surrounding the suction fan, and a filter installed in the collecting pipe.
Abstract:
PURPOSE: A method for searching the attachment area of a fixing pad for fixing a building cage is provided to stably fix a building cage by rapidly searching an area where a fixing pad can be securely fixed. CONSTITUTION: A method for searching the attachment place of a fixing pad for fixing a building cage is as follows. The shape data of an external wall(W) is acquired by a shape data acquisition unit(130). A contour area is calculated by analyzing the shape data. It is determined whether a fixing pad(P) is within the contour area. If the fixing pad is within the contour area, it is determined whether the surface roughness of the contour area is within a pre-set range. If the surface roughness of the contour area is within the pre-set range, the fixing pad is arranged on the contour area using a fixing pad moving unit(120).
Abstract:
PURPOSE: An adhesive force testing device of a multi-axis mode is provided to measure the adhesive force of a vacuum adhesion pad in two or more axial direction, thereby realistically and objectively measuring the adhesive force. CONSTITUTION: An adhesive force testing device(100) of a multi-axis mode comprises a housing(130), a plurality of actuator(AC), a force sensing unit, and a controlling unit(140). A vacuum adhesion pad(P) is fixed to the housing. The actuator adds force to the housing. The force sensing unit is arranged in one side of the actuator. The controlling unit controls the force sensing unit and actuator. The plurality of actuators is arranged in a direction perpendicular to each other, thereby testing the adhesive force by adding the force to the vacuum adhesion pad mounted in the housing. [Reference numerals] (AA) First axial direction; (BB) Second axial direction
Abstract:
본 발명은 수압펌프와 수압모터가 일체형으로 구성된 압력 에너지회수기에 관한 것으로서, 더욱 상세하게는 수압 펌프를 이용하여 해수를 흡입하여 역삼투식 담수장치의 막에 고압으로 공급하고 생산수로 배출되지 않은 농축된 해수의 압력 에너지를 바다로 버리지 않고 회수하여 수압펌프와 일체로 구성된 수압모터를 구동하게 함으로써 수압펌프의 구동동력을 얻을 수 있는 수압펌프 및 수압모터 일체형 에너지 회수기에 있어서, 수압펌프는 판 밸브를 통해 흡입과 토출이 이루어지고, 수압모터는 로터리밸브를 통해 공급과 배출이 이루어지고, 수압펌프용 판밸브와 수압모터용 로터리밸브가 복합밸브로 구성되므로, 판밸브의 경우에는 기존의 피스톤 펌프의 판 밸브와 같이 정압균형이 이루어지도록 설계가 가능하여 마찰이 적고, 로터리밸브의 경우에는 원주 방향으로 실링이 용이하여 누설이 적고, 그로 인해 압력 회수기의 효율이 높아지는 특징이 있다.
Abstract:
PURPOSE: A three-dimensional freezing type yogurt ice cream producing apparatus using a built-in freezing tube is provided to improve the survival ratio of lactobacillus inside yogurt ice cream. CONSTITUTION: A three-dimensional freezing type yogurt ice cream producing apparatus comprises the following: a freezing tube(100) installed inside a freezing cylinder for flowing a refrigerant; an agitation unit(200) stirring yogurt ice cream inside the freezing cylinder; a first holder(220) rotating inside the freezing cylinder; a second holder(230) arranged by being separated from the first holder with a gap; an agitation roller stirring the yogurt ice cream by the rotation of the first and second holders; an inlet pipe unit(110) inserted into the freezing cylinder to the longitudinal direction; a connection pipe unit(130) curved from the end of the inlet pipe unit, and extended among the rotation trace of the agitation roller; an outlet pipe unit(120) curved from the end of the connection pipe unit; a molding unit rotating inside the freezing cylinder; a molding cylinder inserted into the freezing cylinder; a blade spirally formed on the outer circumference of the molding cylinder; and a refrigerant flow passage for flowing the refrigerant for freezing the yogurt ice cream.
Abstract:
PURPOSE: A freezing cylinder including a multiple cooling structure, and a yogurt ice cream producing apparatus including thereof are provided to equalizing the temperature distribution of an internal space inside the freezing cylinder. CONSTITUTION: A freezing cylinder including a multiple cooling structure comprises the following: a cylinder body(210) including an internal space with inner and outer areas; a refrigerating tube(280) installed in between the inner and outer areas for offering the movement space for a refrigerant; a stirring unit stirring yogurt ice cream inside the cylinder body; first and second holders(220, 230) installed inside the cylinder body to rotate; an inner roller(240) connecting the holders, and stirring the yogurt ice cream by the rotation of the holders; an outer roller(250) connected to the holders from the outer area for pushing the yogurt ice cream attached to the inner wall of the cylinder body; an inlet pipe unit(281) extended from the front side of the cylinder body; a connection pipe unit curved from the end of the inlet pipe unit; and an outlet pipe unit(282) curved from the end of the connection pipe unit.