Abstract:
The present invention provides a method for preparing a composition comprising porous ceramic, comprising the following steps: (a) synthesizing poly(N-isopropylacrylamide-co-methacrylic acid) (p(NIPAAM-MAA)) or similar thermo-response compound thereof; (b) mixing a dispersant with hydroxyapatite or calcium phosphate salt; (c) mixing the p(NIPAAM-MAA) of the step (a) or similar thermo-response compound thereof with water to obtain a hydrogel solution; (d) mixing the hydrogel solution of the step (c) and product of the step (b) to produce a mixture; (e) adding macromolecular particles to the mixture of the step (d) and stirring to produce a slurry; (f) filling the slurry of the step (e) into a template slot; and disposing the template slot filling with the slurry of the step (f) on a crucible, then proceeding high temperature sinter in a furnace to form the composition comprising porous ceramic.
Abstract:
A holder and a sucker thereof for mounting onto the surface of an object are provided. The sucker has an adhesive layer and a deformable body which is disposed on the edge of the adhesive layer. The holder further includes a rod and a locking module. An end of the rod is connected to the sucker. The locking module is disposed on the sucker and is adapted to lift the rod to form a low pressure space. Thus, the holder and the sucker can be positioned onto the surface of the object.
Abstract:
A portable electronic device includes a first body having a first surface and a second surface opposite to each other, a second body movably disposed on the first body covers the first surface, a first frame fixed on the first body, a second frame pivoted to the first frame, and a third frame fixed on the second body and slidably coupled to the second frame. The second frame is capable of sliding between a first position and a second position relative to the third frame. When the second frame is located on the second position relative to the third frame, the first frame is capable of rotating towards the first position from the second position to reach a third position relative to the second frame, such that the second body is capable of being turned over from the first surface to the second surface relative to the first body.
Abstract:
A keyboard module suitable for being applied to an electronic apparatus is provided. The electronic apparatus includes a display unit and the keyboard module. The keyboard module is electrically connected to the display unit. The keyboard module includes a supporting structure, a membrane circuit sheet, and a vibrator. The supporting structure has a carrying surface. The membrane circuit sheet is disposed on the carrying surface of the supporting structure and has a plurality of triggers. The vibrator is connected to the supporting structure.
Abstract:
A portable electronic device includes a first body, a second body, a motion assembly, a connector, and an ejector. The second body has a hollow portion, and the first body is movable disposed on the second body to cover the hollow portion. The motion assembly is disposed between the first body and the second body, so that the first body is able to move relatively to the second body. The connector is movably disposed in the hollow portion. The ejector is disposed between the connector and the second body. When the first body moves relatively to the second body to expose the hollow portion of the second body, the ejector is capable of driving the connector to move out of the hollow portion.
Abstract:
A keyboard module suitable for being applied to an electronic apparatus is provided. The electronic apparatus includes a display unit and the keyboard module. The keyboard module is electrically connected to the display unit. The keyboard module includes a supporting structure, a membrane circuit sheet, and a vibrator. The supporting structure has a carrying surface. The membrane circuit sheet is disposed on the carrying surface of the supporting structure and has a plurality of triggers. The vibrator is connected to the supporting structure.
Abstract:
The present invention relates to a hydrophilic drug and β-tricalcium phosphate (β-TCP) coating on a surface area of biopolymer matrix to form a sustained release system. The present invention also provides a method for preparing a sustained release system, comprising providing a surface are of biopolymer matrix coated with a hydrophilic drug and β-TCP.
Abstract:
A handheld electronic device including a housing, a display module, a partition, a plurality of position posts, a plurality of first cushions and an actuator is provided. The housing has a first opening. The display module is located at the first opening of the housing and separated from the housing. The partition is located in and connected to the housing. The partition has a plurality of position holes. The position posts are connected with the display module and respectively located in the position hole. The first cushions are located in the position holes, and each of the fist cushions leans against the corresponding position post and the position hole. The actuator is disposed between the display module and the housing for forcing the display module to move relatively to the housing.
Abstract:
An electronic device including a casing and a display module is provided. The casing has an opening. The display module is disposed in the casing and includes a backlight module and a display panel. The display panel is disposed on the backlight module and located between the backlight module and the opening. The display panel entirely covers the backlight module, and the periphery of the display panel is adjacent to the casing.
Abstract:
A handheld electronic device including a housing, a display module, a partition, a plurality of position posts, a plurality of first cushions and an actuator is provided. The housing has a first opening. The display module is located at the first opening of the housing and separated from the housing. The partition is located in and connected to the housing. The partition has a plurality of position holes. The position posts are connected with the display module and respectively located in the position hole. The first cushions are located in the position holes, and each of the fist cushions leans against the corresponding position post and the position hole. The actuator is disposed between the display module and the housing for forcing the display module to move relatively to the housing.