Abstract:
An automatic draining apparatus of condensation comprises a condensation tank (10); a float (30) moving up/down along the level of the condensation; a hydraulic pressure chamber consisting of a volume changeable container (41) for containing the condensation, and a check valve (44) provided at an inlet of the hydraulic pressure chamber, the check valve (44) allowing the condensation to flow only into the container (41), the rising float (30) pulling up the hydraulic pressure chamber so that the volume of the container (41) is reduced and the condensation of the container (41) is pressurized; and a siphon (20) having an inlet (21) connected to the hydraulic pressure chamber, and an outlet (22) being provided at outside and a level of the outlet (22) placing at a lower level of the inlet (21), the siphon (20) draining the condensation into the outside when the siphon (20) is filled with the condensation discharged from the compressed hydraulic pressure chamber.
Abstract:
The present invention provides a safety gap filler (10) which is provided on an edge of a railway platform which is adjacent to tracks so as to minimize a gap between the platform and a train. The safety gap filler (10) of the present invention includes a fastening base body (11), which is attached to the edge of the platform (F) in a direction parallel to the tracks, and support bars (12), which protrude predetermined lengths from the surface of the fastening base body towards the tracks at positions spaced apart from each other at regular intervals. Each support bar (12) is inclined at a predetermined angle with respect to the fastening base body (11) in a direction in which the train travels, so that the support bars are elastically brought into sliding contact with the sidewall of the train.
Abstract:
A palletless rack-type parking system with a stacker crane comprises a plurality of racks each having a plurality of parking spaces in a lattice form and arranged on a support surface to be spaced apart from each another at a regular interval; a plurality of storage fork bars each including a first projection tab projected from a predetermined portion of a lower surface thereof to have a predetermined height and horizontally mounted on an upper surface of a first support beam in a regular interval through the first projection tap to cross the support beam in a right angle, at least one end of which is projected longer from the support beam of the rack in a beam form; a transporting fork including a plurality of transporting fork bars each having a second projection tap projected from a predetermined portion of a lower surface thereof to have a predetermined height and a second support beam arranged to cross the storage fork bar in a right angle and for supporting the second projecting tap facing its lower surface; and a stacker crane installed in each vertical space between two neighboring racks and operable in more than two-axial directions of leftward, rightward, upward and downward with the transporting fork being mounted thereon, thereby enabling the transporting fork to be moved upward or downward within a minimum allowance that the vehicle is not interfered with transporting fork bars or storage fork bars of the transporting fork.
Abstract:
The invention is to provide a palletless loading structure for a storage system, which comprises a plurality of storage forks (10) mounted in storage spaces of racks and including a first support beam (11) horizontally installed in the storage space and a plurality of storage fork bars (12) horizontally mounted in a regular interval to an upper surface of the first support (11) beam to cross the first support beam (10) at a right angle; and a transporting fork (20) operable in muli-axial directions by means of the transporting means and including a plurality of transporting fork bars (22) horizontally arranged in a regular interval to be alternately positioned between the storage fork bars (22) and a second support beam (21) supporting the lower middle surface of the transporting fork bar (22), wherein any one height of the storage fork bar (12) and the transporting fork bar (22) is set to be relatively higher than the other one, and the fork bar of a relative lower height inlcudes a projecting tap (23) mounted on the lower portion thereof, the projecting tap (23) being mounted on the supporting beam (11, 21), or the storage and transporting fork bars (12, 22) are provided with a projecting tap (23) at the same time, in which one fork bars laterally approach, lift above and drop below the other forks with being alternatively superposed between them.
Abstract:
The present invention provides a safety gap filler (10) which is provided on an edge of a railway platform which is adjacent to tracks so as to minimize a gap between the platform and a train. The safety gap filler (10) of the present invention includes a fastening base body (11), which is attached to the edge of the platform (F) in a direction parallel to the tracks, and support bars (12), which protrude predetermined lengths from the surface of the fastening base body towards the tracks at positions spaced apart from each other at regular intervals. Each support bar (12) is inclined at a predetermined angle with respect to the fastening base body (11) in a direction in which the train travels, so that the support bars are elastically brought into sliding contact with the sidewall of the train.
Abstract:
An automatic draining apparatus of condensation comprises a condensation tank; a float moving up/down along the level of the condensation; a hydraulic pressure chamber consisting of a volume changeable container for containing the condensation, and a check valve provided at an inlet of the hydraulic pressure chamber, the check valve allowing the condensation to flow only into the container, the rising float pulling up the hydraulic pressure chamber so that the volume of the container is reduced and the condensation of the container is pressurized; and a siphon having an inlet connected to the hydraulic pressure, and an outlet being provided at outside and a level of the outlet placing at a lower level of the inlet, the siphon draining the condensation into the outside when the siphon is filled with the condensation discharged from the compressed hydraulic pressure chamber.
Abstract:
The loading and unloading stand for palletless rack type parking system is comprising of plural fork bars (10) arranged with a right angle to the car, and the fork bars (10) comprising a front fork row for sustaining front wheels of the car and a rear fork row for sustaining rear wheels of the car; longitudinal beam (20) arranged in a right angle against the fork bar, and supporting below the fork bar; plural rollers (30) being arranged along a width of the fork bar, the upper portion of the roller protruding above the top. of the fork bar so as to allow wheels of the car to be rolling-contacted; a floor covering (40) above the longitudinal beam of the parking space except the fork bar row area; and a position adjustment unit (50) for transferring the car along the longitudinal direction of the fork bar so as to park the car on the accurate place.
Abstract:
The loading and unloading stand (1) a palletless rack type storage system (s) has plural fork bars (10), longitudinal beam (20) arranged in a right angle for supporting the fork bar (10), plural rollers (30) being arranged in the fork bar (10) and the upper portion of the roller (30) having an excessive protrusion above the top of the fork bar (10) so as to allow wheels of the cargo (W) to be rolling-contacted, and a drive unit to keep the rollers (30) rolling in the loading or unloading direction of the cargo (W), in which the loading/unloading stand (1 ) providing at a rim near the entrance of an predetermined floor of the rack (R) and being a same level as the loading und unloading conveyor (C) to load cargo (W) into the rack (R) from a loading station, or unload cargo (W) to an unloading station from the rack (R). The cargo (W) can be smoothly and conveniently be transferred between the conveyor (C) and the stacker crane (Sc) without using special loading/unloading means.
Abstract:
The present invention provides a structure constructed using PC members and a method of constructing the structure. In the present invention, each of PC wall members (10) of PC walls (1) has connection reinforcing bars (11) at predetermined positions. Each of PC slab members (20) of PC slabs (2) has open reinforcing bars (21), which protrude from the PC slab member (20). Supporting molds (3) are mounted to the PC wall members (10) at positions just below the connection reinforcing bars (11), so that the PC slab members (20) are placed on the supporting molds (3), such that the connection reinforcing bars (11) are overlapped with the corresponding open reinforcing bars (21) in slab areas, and connection concrete (4) is cast at a construction site such that the connection reinforcing bars (11) and the open reinforcing bars (21) are embedded in the connection concrete (4), thus integrating the PC walls (1) and the PC slabs (2) with each other.
Abstract:
Automatic draining apparatus for condensed water of an air conditioner is comprised of water collecting tank for accumulating condensed water, siphon for draining condensed water contained in the water collecting tank to outside, inlet of the siphon being provided in the water collecting tank and outlet of the siphon being provided at outside, and a level of the outlet being placed at a lower level of the inlet, water supplying pump being connected to the inlet and activated for a while according to a level of the condensed water and supplying the condensed water to the siphon, and water level sensor for operating the water supplying pump when the condensed water level is reached at a maximum level. Further, the water collecting tank is installed in or out of indoors unit of an air conditioner. It can be easily installed and most of the water can be exhausted by a siphon action with non-power, leading the significant reducing operation time of the water discharge pump.