Abstract:
A bridge structure for glasses and nose pad thereof is disclosed. The bridge structure for glasses includes a connecting portion and two nose pads. The connecting portion has a joint hole and a clipping portion. Each of the two nose pads has an anti-sliding structure, a ventilating notch, and a plurality of rib-shaped members. The joint hole and the clipping portion are used to fix the bridge structure on the glasses. The anti-sliding structure prevents the glasses from sliding off the wearer's nose due to sweat. The ventilating notch helps dissipate heat and evaporate sweat. The rib-shaped members gently contact the user's nose and increase comfort during wear.
Abstract:
A goggles structure reduces its overall weight and rigidity to improve the comfort of wearing, which provides better ventilation and prevents its wearing without a lens. The goggles comprise a goggles frame including a frame and a connecting section, a lens, a pair of head strap connecting means, and a head strap. At least one hanging hook is protruded from the top of the frame. A plurality of hanging holes corresponding to the hanging hooks is disposed at the top and bottom of the lens for fixing the lens onto the frame. The head strap latches the head strap connecting means onto both sides of the lens for preventing the lens from falling out accidentally. When the goggles are not used, the latching force disappears and allows its removal for cleaning. A ventilation structure disposed inside the lens is provided to prevent splattering.
Abstract:
A frame structure of eyeglasses and a manufacturing method thereof that uses a flexible material in a plastic frame is disclosed. A central bridge portion of the frame structure of eyeglasses integrally couples with a flexible material by bi-feeds injection molding. The flexible material can also couple the flexible material integrally on the rims to contact the at least on lens and form a flexible portion. Therefore, the rigidity of the frame structure is lessened and the flexibility between the two ends of the frame structure is increased, thereby enhancing the wearer's comfort. In another embodiment of the invention, the at least one lens are further designed with cushioning to provide shock proofing for avoiding any damage occurring to the glasses if they suffer an impact.
Abstract:
A bridge structure for glasses and nose pad thereof is disclosed. The bridge structure for glasses includes a connecting portion and two nose pads. The connecting portion has a joint hole and a clipping portion. Each of the two nose pads has an anti-sliding structure, a ventilating notch, and a plurality of rib-shaped members. The joint hole and the clipping portion are used to fix the bridge structure on the glasses. The anti-sliding structure prevents the glasses from sliding off the wearer's nose due to sweat. The ventilating notch helps dissipate heat and evaporate sweat. The rib-shaped members gently contact the user's nose and increase comfort during wear.
Abstract:
A goggles structure reduces its overall weight and rigidity to improve the comfort of wearing, which provides better ventilation and prevents its wearing without a lens. The goggles comprise a goggles frame including a frame and a connecting section, a lens, a pair of head strap connecting means, and a head strap. At least one hanging hook is protruded from the top of the frame. A plurality of hanging holes corresponding to the hanging hooks is disposed at the top and bottom of the lens for fixing the lens onto the frame. The head strap latches the head strap connecting means onto both sides of the lens for preventing the lens from falling out accidentally. When the goggles are not used, the latching force disappears and allows its removal for cleaning. A ventilation structure disposed inside the lens is provided to prevent splattering.
Abstract:
A pair of fog-free protective glasses has a frame and a lens. The frame has an embedded portion and a pair of temples pivotally connecting to two ends of the embedded portion. The embedded portion has upper and lower embedded plates to define an embedded groove therebetween, and two sides of the embedded portion are respectively formed with at least one guiding structure. Each guiding structure has at least one drainage hole. The lens is embedded in the embedded groove of the frame, and is respectively formed with a guiding portion. A leading airflow is thus produced from the guiding portion through the drainage hole for reducing fog formation on the lens.