1. Field of the Invention
The present invention relates to a stirrer, and more particularly to a cooling stirrer that cools a hot liquid in a container when the stirrer used to stirring the hot liquid.
2. Description of Related Art
Stirrers such as plastic or wooden rods are used generally to stir hot beverages such as coffee or tea when people want to make the dissolvable additive in the beverage such as sugar or powdered milk dissolve more quickly.
A luminous drink stirrer has been developed with a decorative characteristic. The luminous drink stirrer has a transparent rod, multiple colored illuminants, a circuit and a power source. The colored illuminants radiate with different colors in the transparent rod when the luminous drink stirrer is used. The radiated illuminants of the luminous drink stirrer provide an attractive visual effect.
However, the stirrers above are only used to improve the dissolution of the additive in the beverage and cannot be used to significantly cool a hot beverage.
To overcome the shortcomings, the present invention provides a cooling stirrer to mitigate or obviate the aforementioned problems.
The main objective of the invention is to provide a cooling stirrer that cools a hot liquid in a container when used to stir the hot liquid.
A cooling stirrer in accordance with the present invention comprises a heat-conductive rod and an adiabatic handle.
The heat-conductive rod has an upper end, a lower end, an upper section and a lower section.
The adiabatic handle is hollow and is mounted on the heat-conductive rod.
Other objectives, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
A cooling stirrer in accordance with the present invention comprises a heat-conductive rod for quickly absorbing the heat of a hot beverage and an adiabatic handle for fingers to grasp the handle. The heat-conductive rod has an upper end, a lower end, an upper section, a lower section and a temperature. The adiabatic handle is hollow and is mounted on the heat-conductive rod.
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The battery socket (23) is defined in the adiabatic handle (20A) and is adjacent to the mounting hole (22). The cover (24) is mounted detachably on the adiabatic handle (20A) and covers the battery socket (23). The luminous thermometer (30B) has a circuit board (33B), a temperature sensor (32B), at least one light-emitting element (31B) and a battery (34B). The circuit board (33B) is mounted in the mounting hole (22) of the adiabatic handle (20A) and has an inside surface and an outside surface. The temperature sensor (32B) is mounted on the inside surface of the circuit board (33B), is in electrical contact with the circuit board (33B) contacts the heat-conductive rod (10) and senses the temperature of the heat-conductive rod (10). The at least one light-emitting element (31B) is mounted on the outside surface of the circuit board (33B) and is in electrical conduct therewith such that it radiates colored light according to the sensed temperature. The battery (34B) is mounted in the battery socket (23) and is in electrical contact with the circuit board (33B).
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The circuit board (33C) is mounted in the mounting hole (22) of the adiabatic handle (20A) and has an inside surface and an outside surface. The temperature sensor (32C) is mounted on the inside surface of the circuit board (33C), contacts the heat-conductive rod (10), is in electrical contact with the circuit board (33C) and senses the temperature of the heat-conductive rod (10). The audio element (31C) is mounted on the outside surface of the circuit board (33C), is in electrical contact with the circuit board (33C) and sounds according to the sensed temperature. The battery (34C) is mounted in the battery socket (23) is connected electrically to the circuit board (33C).
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The circuit board (33D) is mounted in the mounting hole (22) of the adiabatic handle (20A) and has an inside surface and an outside surface. The temperature sensor (32D) is mounted on the inside surface of the circuit board (33D), is in electrical contact with the circuit board (33D), contacts the heat-conductive rod (10) and senses the temperature of the heat-conductive rod (10). The data-displaying element (31D) is a liquid crystal display, is mounted on the outside surface of the circuit board (33D), is in electrical contact with the circuit board (33D) and displays a temperature value according to the sensed temperature. The battery (34D) mounted in the battery socket (23) is connected electrically to the circuit board (33D).
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Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and function of the invention, the disclosure is illustrative only. Changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.