SUMMERY OF THE UTILITY MODEL
Therefore, a water cup with a heating cup cover is needed to be provided, and the problem that the existing heating water cup needs to consume more heat energy by heating water in the inner container and is difficult to heat again after the water in the cup cover is cooled is solved.
In order to achieve the aim, the inventor provides a water cup with a heating cup cover, which comprises a cup body, an inner cover and a cup cover;
the cup body comprises a shell and an inner container, the inner container is arranged in the shell, and the shell is provided with a heat insulation layer;
the inner cover is detachably arranged at the opening of the shell;
the cup cover is detachably arranged on the shell of the cup body and is provided with a cup body for containing water and a heating unit; the heating unit comprises a lithium battery, a charging management module, a heating wire and a control switch, wherein the charging management module is connected to the lithium battery, and the heating wire is connected to the lithium battery through the control switch.
Further optimizing, a temperature display module is arranged on the cup cover and comprises a temperature sensor, a single chip microcomputer and a digital display tube; the temperature sensor is arranged on the inner wall of the cup body of the cup cover and connected to the single chip microcomputer, the digital display tube is arranged on the outer wall of the cup cover and connected to the single chip microcomputer.
And further optimizing, the single chip microcomputer is connected to the control end of the control switch.
Further optimizing, a water quantity display unit is arranged on the cup cover and comprises a single chip microcomputer, a pressure sensor and a digital display tube;
the pressure sensor is arranged at the bottom of the inner wall of the cup body of the cup cover and is connected with the single chip microcomputer;
the digital display tube is arranged on the outer wall of the cup cover and connected to the single chip microcomputer.
Further optimization, the outside of the heating wire is wrapped with insulating mica.
Further preferably, the shell comprises an inner shell and an outer shell, the inner container is arranged in the inner shell, and the inner shell is detachably arranged in the outer shell;
the inner cover is detachably arranged at the opening of the inner shell;
the cup cover is detachably arranged on the shell.
Further preferably, the heat-insulating layer is arranged on the shell.
Be different from prior art, above-mentioned technical scheme is equipped with the heat preservation on the casing through setting up the inner bag in the casing, keeps warm to the hot water in the inner bag through the heat preservation on the casing, and wherein, through the setting of inner cup and bowl cover, when the user drinks through pouring the water in the inner bag into the bowl cover, can seal the inner bag through the inner cup, guarantees the hydrothermal heat preservation effect in the inner bag. And after the water in the cup cover is cooled, the water in the cup cover can be heated through the electric heating wire arranged in the cup cover, so that warm water can be drunk after the water in the cup cover is cooled. And after the hot water in the inner bag cools off, when the user needs to drink warm water, also can pour the water in the inner bag into the bowl cover, carry out the heating to the bowl cover normal water through the heating wire in the bowl cover, need not to heat the water in the whole inner bag, reduce power consumption.
Detailed Description
To explain technical contents, structural features, and objects and effects of the technical solutions in detail, the following detailed description is given with reference to the accompanying drawings in conjunction with the embodiments.
Referring to fig. 1-3, the present embodiment provides a cup with a heating lid, which includes a cup body, an inner lid 130 and a lid 120;
the cup body comprises a shell and an inner container 113, the inner container 113 is arranged in the shell, and the shell is provided with a heat insulation layer;
the inner cover 130 is detachably mounted to the opening of the housing;
the cup cover 120 is detachably mounted on the shell of the cup body, and the cup cover 120 is provided with a cup body for containing water and a heating unit; the heating unit includes a lithium battery, a charging management module, a heating wire 141 and a control switch, the charging management module is connected to the lithium battery, and the heating wire 141 is connected to the lithium battery through the control switch.
Through setting the inner bag 113 in the casing, be equipped with the heat preservation on the casing, keep warm to the hot water in the inner bag 113 through the heat preservation on the casing, wherein, through the setting of inner cup 130 and bowl cover 120, when the user drinks through pouring the water in the inner bag 113 into the bowl cover 120, can seal inner bag 113 through inner cup 130, guarantee the hydrothermal heat preservation effect in the inner bag 113. And after the water in the cup cover 120 is cooled, the water in the cup cover 120 can be heated through the heating wire 141 arranged in the cup cover 120, and a user can enable the heating wire 141 to be communicated with the lithium battery through the control switch, so that the heating wire 141 works to heat the water in the cup cover 120, and warm water can be drunk after the water in the cup cover 120 is cooled. After the hot water in the inner container 113 is cooled, when a user needs to drink warm water, the water in the inner container 113 can be poured into the cup cover 120, the water in the cup cover 120 is heated through the heating wire 141 in the cup cover 120, the water in the whole inner container 113 does not need to be heated, and the power consumption is reduced. And after the electric quantity in the lithium battery is used up, the external power supply can be connected to charge the lithium battery through the charging management module. Wherein, be equipped with the external screw thread on the inner cup 130, be equipped with in the opening of casing with the internal thread of the external screw thread looks adaptation on the inner cup 130, through external screw thread and internal thread, inner cup 130 demountable installation is on the casing. The charging management module adopts a lithium battery management chip TP4056, the lithium battery management chip is connected to the lithium battery through a lithium battery interface, and the lithium battery is connected to the heating wire 141 through a control switch SW 1.
In this embodiment, in order to facilitate a user to know the temperature change of the water in the cup cover 120, so that whether the water in the cup cover 120 needs to be heated can be determined according to the temperature of the water in the cup cover 120, a temperature display module is arranged on the cup cover 120, and the temperature display module comprises a temperature sensor 143, a single chip microcomputer and a first digital display tube; the temperature sensor 143 is arranged on the inner wall of the cup body of the cup cover 120, the temperature sensor 143 is connected to the single chip microcomputer, the first digital display tube is arranged on the outer wall of the cup cover 120, and the first digital display tube is connected to the single chip microcomputer. The temperature sensor 143 is arranged on the inner wall of the cup body of the cup cover 120, the temperature of the water in the cup cover 120 is detected through the temperature sensor 143, the temperature of the water detected by the temperature sensor 143 is displayed on the first digital display tube through the single chip microcomputer, and the temperature of the water in the cup cover 120 can be known through the temperature displayed on the first digital display tube. The single chip microcomputer is AT89C52, the temperature sensor 143 is DS18D20 digital temperature sensor 143, and the first digital display tube is connected to the single chip microcomputer through the bidirectional bus transceiver 74ALS 245.
In this embodiment, in order to avoid the situation that the temperature in the cup is too high or the water in the cup cover 120 keeps a certain temperature due to the heating wire 141 heating the water in the cup cover 120 for a long time, the single chip microcomputer is connected to the control end of the control switch. The single chip microcomputer detects the temperature of the water in the cup cover 120 according to the temperature sensor 143, and when the water temperature exceeds a preset temperature, the single chip microcomputer cuts off the electric heating wire 141 through the control switch to cut off the power supply, so that the electric heating wire 141 is reduced to heat the water in the cup cover 120.
In this embodiment, in order to facilitate a user to know the water amount in the cup cover 120 and to avoid the water amount in the cup cover 120 from being too low, a water amount display unit is disposed on the cup cover 120, and the water amount display unit includes a single chip microcomputer, a pressure sensor 144 and a second digital display tube;
the pressure sensor 144 is arranged at the bottom of the inner wall of the cup body of the cup cover 120, and the pressure sensor 144 is connected to the single chip microcomputer;
the second digital display tube is arranged on the outer wall of the cup cover 120 and connected to the single chip microcomputer.
The single chip microcomputer detects the weight of water in the cup cover 120 through the pressure sensor 144, and then the water quantity in the cup cover 120 can be obtained according to the detected weight of the water, and the water quantity in the water cup can be displayed on the second digital display tube. The water amount in the cup cover 120 can also be detected by the pressure sensor 144, and when the water amount in the cup cover 120 is lower than the preset water amount, the singlechip does not keep the temperature of the water in the cup cover 120. Wherein, the pressure sensor 144 adopts a pressure sensor 144MPX 4115. The pressure sensor 144 is connected to the single chip via the a/D conversion chip ADC0832, and the second digital tube is connected to the single chip via the bidirectional bus transceiver 74ALS 245.
In this embodiment, the heating wire 141 is externally wrapped with insulating mica 142. The insulating mica 142 has excellent insulation and thermal conductivity, and the heating wire 141 can be protected by the insulating mica 142.
In the embodiment, the cup has a hand warming function, the shell comprises an inner shell 112 and an outer shell 111, the inner container 113 is arranged in the inner shell 112, and the inner shell 112 is detachably mounted in the outer shell 111;
the inner lid 130 is detachably mounted to the opening of the inner case 112;
the cap 120 is detachably mounted on the housing 111.
Through setting up the casing into shell 111 and inner shell 112, set up inner bag 113 in inner shell 112, inner shell 112 demountable installation is in shell 111, and when the hand warming function of needs, only need extract inner shell 112 from shell 111, on heat transfer to inner shell 112 in the hot water through inner bag 113, and then realize the hand warming function. Wherein the insulating layer is arranged on the shell 111. The heat insulation layer is arranged on the outer shell 111, when the hot water in the inner container 113 needs to be insulated, only the inner shell 112 needs to be installed in the outer shell 111 again, and the hot water in the inner container 113 is insulated through the heat insulation layer on the outer shell 111. Wherein, a snap structure can be arranged at the opening of the outer shell 111, and the outer shell 111 and the inner shell 112 can be detached.
It should be noted that, although the above embodiments have been described herein, the scope of the present invention is not limited thereby. Therefore, based on the innovative concept of the present invention, the changes and modifications of the embodiments described herein, or the equivalent structure or equivalent process changes made by the contents of the specification and the drawings of the present invention, directly or indirectly apply the above technical solutions to other related technical fields, all included in the protection scope of the present invention.