Abstract:
A thermal module including a first body, a second body, a first fan assembly, a second fan assembly, and a shaft is provided. The first body and the second body are slidably connected to each other and form an accommodating space together. The first fan assembly is disposed in the accommodating space and has a first hub and a plurality of first fan blades. The first hub is connected to the first body. The second fan assembly is disposed in the accommodating space and has a second hub and a plurality of second fan blades, and the second hub is connected to the second body. The first hub and the second hub overlap each other. The shaft is pivotally disposed in the first body and the second body and is engaged with the first fan assembly and the second fan assembly.
Abstract:
The present invention discloses a process for producing 2-(cyclohex-1′-enyl)cyclohexanone by an auto-condensation of cyclohexanone at a certain temperature in the presence of a certain solid acidic catalyst.
Abstract:
The present invention discloses a process for producing 2-(cyclohex-1′-enyl)cyclohexanone by an auto-condensation of cyclohexanone at a certain temperature in the presence of a certain solid acidic catalyst.
Abstract:
An electronic device including two bodies and at least one hinge structure is provided. The hinge structure includes a first bracket, a second bracket, a first rotation component, and a second rotation component. The hinge structure is connected to the two bodies via the first bracket and the second bracket respectively. The first rotation component is connected rotatably to the first bracket by taking a first axis as a rotation axis. The second rotation component is connected rotatably to the first rotation component by taking the first axis as a rotation axis, and is connected rotatably to the second bracket by taking a second axis as a rotation axis, wherein the first axis and the second axis are parallel to each other.
Abstract:
A composite material structure, including an outer layer, an inner layer, and a middle layer, is provided. The outer layer includes a metallic material. The inner layer includes a fiber material and a resin material. The outer layer has a first thickness, the inner layer has a second thickness, and the first thickness is different from the second thickness. The middle layer includes an adhesive material and is disposed between the outer layer and the inner layer. Two opposite surfaces of the middle layer are respectively in direct contact with the outer layer and the inner layer. A manufacturing method of the composite material structure is also provided.
Abstract:
A composite material structure, including an outer layer, an inner layer, and a middle layer, is provided. The outer layer includes a metallic material. The inner layer includes a fiber material and a resin material. The outer layer has a first thickness, the inner layer has a second thickness, and the first thickness is different from the second thickness. The middle layer includes an adhesive material and is disposed between the outer layer and the inner layer. Two opposite surfaces of the middle layer are respectively in direct contact with the outer layer and the inner layer. A manufacturing method of the composite material structure is also provided.
Abstract:
A fan module including a first body, a second body, a first fan assembly, a power module, and a second fan assembly is provided. The second body is slidably disposed at the first body to form a circulation space together. The first fan assembly is rotatably disposed at the first body and has sliding grooves. The power module is disposed in the first body and connected to the first fan assembly. The second fan assembly is rotatably disposed at the second body and has sliding portions, respectively and slidably disposed in corresponding sliding grooves. The power module is adapted to drive the first and second fan assemblies to rotate relative to the first body. A link module is adapted to drive the first and second bodies to relatively slide along an axial direction, so that the first and second fan assemblies are relatively separated or overlapped along the axial direction.
Abstract:
A positioning module includes a positioning element, an arc-shaped guiding unit, an actuating element, and a magnetic element. The positioning element is rotatably disposed at an object. The arc-shaped guiding unit is disposed between the positioning element and the object and is configured to enable the positioning element to rotate on an arc center of the arc-shaped guiding unit. The actuating element is connected to the positioning element and is configured to drive the positioning element. The magnetic element is disposed at another object and is configured to drive the actuating element. An engaging surface of the object is connected to another engaging surface of the another object, and a position of the actuating element corresponds to the magnetic element, so that a portion of the positioning element extends into another accommodation space of the another object. An electronic device having the positioning module is further provided.