Discharge nozzles for hairdryers
Abstract
Hairdryer discharge nozzles are disclosed herein. In several embodiments, hairdryer discharge nozzles can include a nozzle main body having a nozzle flow pathway extending from a nozzle inlet port to a nozzle discharge port. The nozzle inlet port can be releasably attached to an air-supplying port of a hairdryer. The hairdryer discharge nozzle can include a plurality of pin bodies protruding from the nozzle discharge port and directed in an air discharge direction such that tips of the pin bodies are configured to contact a user's scalp. The hairdryer discharge nozzle can be configured to reliably blow air from the hairdryer to dry hair, while also performing various other operations, such as teasing hair using the pin bodies, adjusting the drape of the hair, and/or massaging a user's scalp with the pin bodies.
Claims
exact text as granted — not AI-modifiedI/We claim:
1 . A hairdryer discharge nozzle for a hairdryer, wherein the hairdryer has a heater arranged along a blown air pathway extending from an air inlet port to an air-supplying port, the hairdryer discharge nozzle comprising:
a nozzle main body having a nozzle flow pathway extending from a nozzle flow inlet port to a nozzle discharge port, wherein the nozzle flow inlet port is configured to be releasably attached to the air-supplying port of the hairdryer; and a plurality of pin bodies protrudingly arranged at the nozzle discharge port, wherein the pin bodies protrude in an air discharge direction so as to protrude from the nozzle discharge port, and wherein the pin bodies include distal tips configured to contact a user's scalp, wherein the hairdryer discharge nozzle is configured to be releasably attached to the air-supplying port.
2 . The hairdryer discharge nozzle of claim 1 wherein at least one of the pin bodies includes a pin-internal air pathway extending through an interior of the pin body, and wherein the pin-internal air pathway is configured to receive air from the nozzle discharge port and discharge air through a pin body supply air hole at a distal tip portion of the pin-internal air pathway.
3 . The hairdryer discharge nozzle of claim 1 , further comprising a multi-element mineral powder in the nozzle main body and/or the pin bodies, wherein the multi-element mineral powder is formed by pulverization of a multi-element mineral.
4 . The hairdryer discharge nozzle of claim 1 , further comprising a multi-element mineral powder and a far infrared radiation emitting powder in the nozzle main body and/or the pin bodies, wherein the far infrared radiation emitting powder is formed by pulverization of a far infrared radiation emitting material.
5 . A hairdryer discharge nozzle for a hairdryer, wherein the hairdryer includes a heater arranged in a blown air pathway extending from an air inlet port to an air-supplying port, and wherein the hairdryer further comprises an ion blown air pathway branching from the blown air pathway and having a plasma ion generator, the hairdryer discharge nozzle comprising:
a nozzle main body comprising a nozzle flow path extending from a nozzle inlet port to a nozzle discharge port, wherein the nozzle inlet port is configured to be releasably attached to the air-supplying port of the hairdryer; a plurality of pin bodies protrudingly arranged at the nozzle discharge port, wherein the pin bodies are arranged in an air discharge direction so as to protrude from the nozzle discharge port, and wherein pin bodies include distal tips configured to contact a user's scalp; and an ion blown air nozzle pathway in the nozzle main body and having an ion blown air nozzle discharge port, wherein the ion blown air nozzle pathway is configured to be releasably attached to an ion blown air-supplying port at an end of the ion blown air pathway of the hairdryer, and wherein the ion blown air nozzle pathway is configured such that air discharged from the ion blown air nozzle port flows in the same direction as air discharged from the nozzle discharge port; and wherein the hairdryer discharge nozzle is configured to be releasably attached to the air-supplying port.
6 . The hairdryer discharge nozzle of claim 1 wherein at least one of the pin bodies includes a pin-internal air pathway extending through an interior of the pin body, and wherein the pin-internal air pathway is configured to receive air from the nozzle discharge port and discharge air through a pin body supply air hole at a distal tip portion of the pin-internal air pathway.
7 . The hairdryer discharge nozzle of claim 1 , further comprising a multi-element mineral powder in the nozzle main body and/or the pin bodies, wherein the multi-element mineral powder is formed by pulverization of a multi-element mineral.
8 . The hairdryer discharge nozzle of claim 1 , further comprising a multi-element mineral powder and a far infrared radiation emitting powder in the nozzle main body and/or the pin bodies, wherein the far infrared radiation emitting powder is formed by pulverization of a far infrared radiation emitting material.Join the waitlist — get patent alerts
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