Abstract:
The present invention provides a liquid crystal glass panel packaging structure, which includes a package box and a plurality of cushioning bodies arranged inside the package box. The package box includes a lower case and an upper case mating the lower case. The cushioning bodies are airbag cushioning bodies arranged inside the lower case at locations corresponding to corners of a liquid crystal glass panel. The liquid crystal glass panel packaging structure uses airbag cushioning bodies to serve as cushioning devices for a liquid crystal glass panel, whereby with the airbag cushioning bodies being arranged at locations corresponding to corners of the liquid crystal glass panel, better protection is provided to the liquid crystal glass panel to prevent the product from being damaged by external forces. Further, the cushioning bodies of the present invention have a simple structure, is easy to manufacture, and can effectively lower down the manufacturing cost.
Abstract:
The present disclosure belongs to the field of packing, and more particularly relates to a packing device of a flat LCD product. The packing device includes an outer case and a buffer element. The buffer element comprises a corrugated board and foaming buffer elements pasted to the corrugated board. The foaming buffer elements are configured with slots and the slots are used for fixing the flat LCD product. The buffer element of the packing device of the flat LCD product of the present disclosure includes a corrugated board and foaming buffer elements pasted to the corrugated board. The corrugated board with the same strength and the same area has lower cost and is mainly used for resisting external impact force, and the foaming buffer elements are mainly used for fixing the LCD product and providing buffer protection. Thus, usage amount of the foaming materials is greatly reduced. Because properties of the two aforementioned materials are fully used, packing cost is reduced. Additionally, because the corrugated board has thin thickness and small volume, a size of the outer case can also be decreased and the packing cost is further reduced.
Abstract:
The present disclosure relates to the field of packing, and more particularly relates to a packing device of liquid crystal (LC) glass. The packing device of the LC glass includes a tray; a containing cavity for containing the LC glass is arranged in the tray. The packing device of the LC glass further includes an upper cover. The upper cover is fixed to the tray by a clamp. The packing device of the LC glass of the present disclosure comprises the upper cover and the tray, the containing cavity for containing the LC glass is arranged in the tray, the upper cover is fixed to the tray by a clamp. Thus, the LC glass in the containing cavity is fixed, and the packing device can be vertically put and can also be horizontally arranged. Thus, the problem of stress deformation caused by up and down stacking is well solved.
Abstract:
The present invention provides a packaging device which comprises a static-proof film, a Velcro hooks patch and a Velcro loops patch. The static film is used for shielding the static. And at least a Velcro hooks patch and Velcro loops patch symmetrically arranged on borders of the static-proof film such that the hooks and loops are engaged with each when the static-proof film is wrapped over the electronic device. By this provision, the packaging device integrates both the protective film and packaging bag. Not only it can be readily used, it can be repeatedly used as well.
Abstract:
A packaging box for liquid crystal display (LCD) panel components includes a body. A sidewall of the body is configured with a neck. The packaging box further includes clamping pieces. Each of the clamping pieces comprises a first arm, a second arm, and a connecting structure that connects the first area to the second arm. The first arm is inserted into the neck. The second arm is inserted into a gap formed by separation of the LCD panel and the circuit board by a flexible circuit board. The LCD panel is in a completely fixed position in a horizontal direction.
Abstract:
The present invention provides a module packaging device, which includes a cushioning device and a plurality of retention boards mounted to the cushioning device. The cushioning device includes a plurality of interconnected cushioning air columns of which every two adjacent ones of the cushioning air columns form a receiving channel. The retention boards are respectively mounted in the receiving channels. Modules are each positioned on each of the cushioning air columns between two of the retention boards. The module packaging device uses a cushioning device that is composed of cushioning air columns and the cushioning device, which is of a U-shaped, is positioned in a package box to provide an effect of cushioning and protection to opposite ends and bottom of the liquid crystal modules or the backlight modules received therein to protect the liquid crystal modules or the backlight modules from damages caused by external forces.
Abstract:
The present invention provides a liquid crystal display module package box, which includes a box body and a positioning and cushioning device positioned in the box body. The positioning and cushioning device includes a plurality of positioning sections and a plurality of supporting sections spaced from the positioning sections. The positioning sections and the supporting sections are both of air pocket structures. The positioning sections have a size greater than size of the supporting sections. Liquid crystal display modules are each interposed and retained between two adjacent ones of the positioning sections and born by the supporting sections. The liquid crystal display module package box uses the positioning and cushioning device positioned inside the box body to provide an effect of retaining and protecting the liquid crystal display modules for protecting the liquid crystal display modules from damage caused by external forces occurring in the process of shipping.
Abstract:
The present disclosure relates to the field of packing, and more particularly to a packing device for a liquid crystal display (LCD) module. The packing device includes an outer case and an inner buffer element; the inner buffer element at least includes an upper buffer element and a lower buffer element which are oppositely disposed; the upper buffer element and the lower buffer element are configured with a fixing cavity for fixing the LCD module; the upper buffer element is configured with a connecting structure connected with an adjacent upper buffer element; the lower buffer element is configured with a connecting structure connected with an adjacent lower buffer element. In the present disclosure, the upper buffer element is configured with a connecting structure which is connected with an adjacent upper buffer element; the lower buffer element is configured with a connecting structure which is connected with an adjacent lower buffer element; thus, the upper buffer element and the lower buffer element can be configured with a few fixing cavities, and even one fixing cavity; then, packing number is flexibly adjusted in a joining expanded mode; thus, the mode can be suitable for packing a few samples and packing a large batch of products.
Abstract:
The present invention provides a method and material for manufacturing backplane component. The method includes (1) providing a raw material, which comprises one or more of paper, bamboo, and wood; (2) pulverizing the raw material to form slurry; (3) adding functional agents in the slurry, wherein the functional agents comprise one or more of water repellent agent for waterproofing, flame retardant agent for flame retardation, solidification agent for speeding up solidification, plastics for improving stiffness, glass fibers for improving strength, metal powder for enhancing heat dissipation, and reflection assisting agent for improving reflection capability; (4) applying a mold in a forming machine to carry out suction forming of the slurry; and (5) drying and shape-fixing so as to make a backplane component.
Abstract:
The present invention provides a zipper type liquid crystal module packaging bag and a method for packaging a liquid crystal module with the packaging bag. The packaging bag includes a bag body and a zipper mounted to the bag body. The bag body forms an opening for receiving entry of a liquid crystal module into the bag body. The zipper is mounted to the opening. Through zipping up and down the zipper, the opening is opened or closed. The bag body has inside surfaces and outside surfaces that are respectively opposite to each other. The inside surfaces are made of a soft antistatic material. The arrangement of zipper allows packaging and deposition/removal of the liquid crystal module to be done conveniently. The inside surfaces of soft antistatic material provide excellent resistance against static electricity and good protection of the surface of the liquid crystal module.