摘要:
An exemplary dust removing apparatus applicable for removing dust or dirt from a surface of an optical lens is provided. The dust removing apparatus includes an ultrasonic oscillation device, at least a dust removing device, and a tray. The ultrasonic oscillation device is configured for causing an ultrasonic vibration of the optical lens so as to weaken an adhesive force between the optical lens and the dust on the surface thereof. The dust removing device is configured for removing the dust from the surface of the optical lens. The tray is disposed on the ultrasonic oscillation device and located between the ultrasonic oscillation device and the dust removing device. The tray is configured for supporting the optical lens. A dust removing method is also provided.
摘要:
A device for measuring adhesion strength between a first optical element and a second optical element includes a force gauge, a first magnet, and a second magnet. The second magnet is fixed to the force gauge. The first magnet and the second magnet are configured for magnetically attaching to opposite sides of the first optical element. An attractive force between the first magnet and the second magnet is greater than the adhesion strength between the first optical element and the second optical element.
摘要:
A method for removing a diamond-like carbon film on a substrate is provided. The diamond-like carbon film includes an amorphous carbon layer and an amorphous hydrogenated carbon layer formed on the amorphous hydrogen-free carbon layer. The method includes a step of electrolyzing the diamond-like carbon film in an acid solution. Compared with grinding, the electrolyzing process has advantages of low cost being cheaper, more convenient and results in a smoother surface.
摘要:
A method for manufacturing a thermal interface material includes the steps of providing filling particles and a base material; forming a mixture by putting the filling particles and the base material into a container, and keeping the base material melt or in liquid state, and pressing a predetermined pressure to the mixture and mixing the mixture uniformly
摘要:
A thermal interface material includes a curable matrix, a plurality of thermally conductive fibers, and a plurality of the thermally conductive fillers. The thermally conductive fibers and the thermally conductive fillers are embedded in the matrix. The thermally conductive fibers and the thermally conductive fillers are embedded in the matrix. The thermally conductive fillers and the thermally conductive fibers interconnect with each other to cooperatively form a thermally conductive framework in the matrix. A method for making the thermal interface material is also provided.
摘要:
A portable electronic device includes a main body and a solar cell module. The main body has electric components. The solar cell module is mounted in the main body. The solar cell module is configured for supplying electric energy to the electric components of the main body. The solar cell module includes a solar cell, a cell cover and a light diverging lens. The solar cell has a light-absorbing surface. The cell cover faces the light-absorbing surface. The cell cover defines a through hole therein. The light diverging lens is engaged in the through hole. The light diverging lens faces toward the light-absorbing surface and is configured for diverging light transmitted therethrough.
摘要:
A nanopowders synthesis apparatus includes a reaction chamber, the reaction chamber having a top portion, a bottom portion opposite to the top portion, a sidewall adjoining the top and the bottom portion, and an inlet and an outlet; a first sprayer formed in the sidewall configured for spraying a first reactant into the reaction chamber therefrom; and a second sprayer formed in the bottom portion configured for spraying a second reactant into the reaction chamber therefrom. The inlet formed in the top portion configured for injecting a liquid medium, and the outlet formed in the bottom portion configured for releasing the liquid medium. A nanopowders synthesis method is also provided.
摘要:
An exemplary method for producing carbon nanotubes includes the following steps. First, a reaction chamber is provided. The reaction chamber defines a reaction region therein. Second, a substrate having a catalyst layer formed thereon is provided. Third, the substrate is disposed in the reaction chamber. Fourth, a carbon-containing reactive gas is introduced into the reaction chamber so as to grow carbon nanotubes using a chemical vapor deposition method. The substrate is moved along a direction opposite to a growth direction of the carbon nanotubes whilst growing the carbon nanotubes, whereby tips of the carbon nanotubes are kept in the reaction region while the substrate is moved.
摘要:
A method for manufacturing carbon nanotubes with a desired length includes the steps of: providing an array of carbon nanotubes; placing a mask having at least an opening defined therein on the array of carbon nanotubes, with at least one portion of the array of carbon nanotubes being at least partially exposed through a corresponding opening of the mask; forming a protective film on at least one exposed portion of the array of carbon nanotubes; removing the mask from the array of the carbon nanotubes, with the carbon nanotubes being compartmentalized into at least a first portion covered by the protective film and at least one uncovered second portion; breaking/separating the first portion from the second portion of the array of the carbon nanotubes using a chemical method, thereby obtaining at least a carbon nanotube segment with a protective film covered thereon; and removing the protective film from the carbon nanotube segment.
摘要:
A mixing system and method for manufacturing a thermal interface material are disclosed. The mixing system mainly includes a mixing chamber having a bottom portion, a first inlet, a second inlet, a spray nozzle, and an outlet. The first inlet is defined in the bottom portion and is configured for inflating a gas into the mixing chamber to form a gas vortex. The second inlet is defined in the mixing chamber and is configured for supplying a plurality of powdery thermally conductive particles to the gas vortex. The spray nozzle is disposed essentially facing the first inlet and is configured for spraying a liquid curable matrix material towards the gas vortex to admix the matrix material and the particles. The outlet is disposed adjacent the gas vortex and is configured for discharging the admixed matrix and particles from the mixing chamber.