Abstract:
The present invention relates to a stacking machine, which comprises a base, a body movably arranged on the base, and a translational mechanism for driving the body to make a translational motion on the base. The synchronous belt used in the present invention can effectively resolve the problem of slipping caused by wheel rolling, and thus enables the movement of the stacking machine to be more accurate, with the highest speed of the movement also increased significantly. Besides that, the synchronous belt mechanism is more accurate in positioning, which reduces the number of times of repeated adjustments and maintenance caused by bigger positioning errors.
Abstract:
A cylinder comprises a cylinder body, a main cavity body, a piston and a piston rod. Air inlets and air outlets are arranged in each of two opposite ends of the cylinder body. The cylinder is further configured with an anti-collision structure. The anti-collision structure comprises a buffer rod arranged on the piston. The cylinder body defines a receiving hole corresponding to the buffer rod. The receiving hole is configured with a first sealing ring that seals a gap between the buffer rod and the receiving hole. The anti-collision structure has a flexible buffering function and does not generate hard impact. Thus, the cylinder has a low vibration and high stability.
Abstract:
The present invention provides a positioning device configured to position a glass substrate. The positioning device comprises a support base, a pair of first positioning mechanisms located on two neighboring sides of the glass substrate, a pair of second positioning mechanisms located on another two neighboring sides of the glass substrate, respectively, a pair of connecting bars, a driving member, a gear group and a conveying belt sleeved on the gear group. One end of the one of the pair of connecting bar is fixed with the conveying belt, and another end is fixed with one of the pair of first positioning mechanisms. One end of another one of the pair of connecting bar is fixed with the conveying belt, and another end is fixed with another one of the pair of first positioning mechanisms.
Abstract:
The present invention provides a static elimination device which is used for a stacker with a fan filter device. Characterize in that the static elimination device is provided at the end side of each shelf facing the fan filter device in the stacker. Said end side is opposite to the end side of the shelf which a cartridge moves in and out. Two ends of the static elimination device are free to rotate and connected to shelf holders at said end side. Under the action of the fan filter device blowing the airflow, the ions, which are used to eliminate the static, are blown from the static elimination device into the cartridge of the shelf and the surface of the glass substrate on the cartridge. The present invention further provides a stacker. The stacker and the static elimination device according to the present invention can effectively eliminate the static of the cartridge and the glass substrate surface in the same, which can decrease the equipment costs.
Abstract:
The present invention provides an automatic lubricant dispensing device, which comprises the following elements. A bracket is provided. A lubricant supplying device is mounted on a first end of the bracket. A dispensing gear is disposed on a second end of the bracket. A guiding arrangement is moveably mounted on the bracket, and including a pair of guiding rollers arranged coplanarly. Wherein a space is defined between the dispensing gear and the pair of guiding rollers in which a rack to be lubricated can fit therein, and the dispensing gear is adapted to mesh with the rack to be lubricated. Wherein the lubricant supplying device evenly dispenses the lubricant over the teeth of the rack by the dispensing gear which is completely and thoroughly meshed with the rack and transferred with lubricant from the lubricant supplying device. It is convenient, no need of labors and saving a lot of time. In addition, the lubricant can be evenly distributed to all the surface of the rack. In addition, the provision of the automatic dispensing device largely reduce the difficulty and time in lubricating the rack with dust free lubricant. A great deal of manpower and time has been saved. The environmental quality of the clean room has also been upgraded.
Abstract:
A detecting apparatus for determining whether liquid crystal glasses are displaced in a cartridge is disclosed. The detecting apparatus includes: a signal sensing device for sending sensing signals to an internal of the cartridge and for receiving the reflected signals from the internal of the cartridge; a reflector installed in the internal of the cartridge for receiving the sensing signals from the signal sensing device and for reflecting the sensing signals back to the signal sensing device; and wherein a determination of whether the liquid crystal glass is displaced in the cartridge is made by determining whether the reflected signals from the reflector are received after the sensing signals are sent. Upon determining whether liquid crystal glasses are displaced in the cartridge, impurities are prevented from getting into the cartridge and thus the cleanliness is enhanced and the labor power is reduced.
Abstract:
The present invention provides a glass panel stocking system and a stocking method. The stocking system includes a loading and unloading port and a crane. The loading and unloading port functions to receive a cassette that contains glass panels to position thereon. The crane functions to move a cassette that contains glass panels. The crane includes a chassis, a carrying fork mounted on the chassis and movable for extension and retraction with respect to the chassis, and a mapping bar mounted on the chassis and located above the carrying fork. The carrying fork functions to carry the cassette that contains the glass panels and move the cassette that contains the glass panels to the mapping bar so that the mapping bar is allowed to carry out inspection and counting of the glass panels received in the cassette that contains the glass panels.
Abstract:
A fan filter unit (FFU) includes a fan, and a filter screen coupled with an air inlet of the fan. An air inlet of the filter screen is further configured with an auxiliary filter screen, and a minimum diameter of dust particles filtrated by the auxiliary filter screen is greater than a minimum diameter of the dust particles filtrated by the filter screen.
Abstract:
A panel unpacking method includes (1) providing a panel unpacking device, which includes a pickup device including a manipulator and suction cups mounted to the manipulator and a conveyance device including a main body, a mounting board mounted to the main body, pins mounted to the mounting board, and cushioning device installed on the pins; (2) moving the manipulator to approach the panel until the suction cups of the manipulator get into contact with the panel; (3) the suction cups sucking and holding the panel and the manipulator making a movement to lift up the panel; (4) the manipulator carrying the panel to approach the pins of the conveyance device until the panel gets into contact with the contact sections of the pins; and (5) the suction cups releasing the panel to allow the panel to bee stably positioned on the pins of the conveyance device.
Abstract:
A detecting apparatus for determining whether liquid crystal glasses are displaced in a cartridge is disclosed. The detecting apparatus includes: a signal sensing device for sending sensing signals to an internal of the cartridge and for receiving the reflected signals from the internal of the cartridge; a reflector installed in the internal of the cartridge for receiving the sensing signals from the signal sensing device and for reflecting the sensing signals back to the signal sensing device; and wherein a determination of whether the liquid crystal glass is displaced in the cartridge is made by determining whether the reflected signals from the reflector are received after the sensing signals are sent. Upon determining whether liquid crystal glasses are displaced in the cartridge, impurities are prevented from getting into the cartridge and thus the cleanliness is enhanced and the labor power is reduced.