Ultrasonic oscillation energy-saving temperature-controlled water bath
A temperature-controlled water bath and ultrasonic technology, applied in the direction of water bath/sand bath/air bath, etc., can solve the problems of large heat loss, low energy loss, and inconvenient stirring, and achieve the effect of small heat loss, low loss, and high stirring efficiency
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Embodiment 1
[0032] Figure 1 to Figure 4Among them, an ultrasonic vibration energy-saving temperature-controlled water bath, including a shell 1, a bath 2, a bracket 3, a vertical lifting mechanism 4 and a horizontal pushing mechanism 5. A heater 11 is arranged inside the housing 1, and a housing cover 12 with a pressure relief valve 121 is detachably fixed on the upper side of the housing 1; the housing cover 12 and the housing 1 can be rotatably connected through spaced arc segments. The heating bath 2 is located in the housing 1, the heater 11 is located at the bottom of the bath 2, and the heater 11 heats the liquid inside the bath 2; the heater 11 can use an electric heater 11 to heat the water body through eddy currents, which is convenient for temperature control. Bathing pot 2 is provided with thermometer, and thermometer is connected with heater 11 by control circuit, can set water bath temperature before heating, can monitor water bath temperature by thermometer, and control cir...
Embodiment 2
[0035] Embodiment 2 has partly the same structure as Embodiment 1. An ultrasonic vibration energy-saving temperature-controlled water bath comprises a shell 1, a bath 2, a support 3, a vertical lifting mechanism 4 and a horizontal pushing mechanism 5. A heater 11 is arranged inside the casing 1, and a casing cover 12 with a pressure relief valve 121 is arranged above the casing 1; the heating bath 2 is located in the casing 1, and the heater 11 heats the liquid inside the heating bath 2; The outer surface is provided with an ultrasonic generator 13 . Such as Figure 5 and Figure 7 Among them, the upper end of the heating bath 2 is provided with a pot cover 21; the support 3 is located in the bath 2 for placing the container; the support 3 can be displaced in the bath 2; the support 3 includes a support rod 31 located above it, and the support rod 31 runs through Pot cover 21 limit. The pot cover 21 is provided with a through hole that fits in clearance with the support ro...
Embodiment 3
[0038] Embodiment 3 differs from Embodiment 2 in that a different form of deformation mechanism is applied. Such as Figure 8 to Figure 9 As shown, the direction change mechanism 6 includes a guide block 80 limited to the pot cover 21, the guide block 80 can rotate around its axis, and the driving float 51 is provided with a rotating screw 81 that cooperates with the guide block 80, and the rotating screw 81 is connected to the guide Block 80 forms screw rod slider mechanism, and rotating screw mandrel 81 upwards stretches out heating bath 2 from pot cover 21, and the lower end of rotating screw mandrel 81 is polished rod, and the polished rod is provided with flat key, and pot cover 21 is provided with the matching flat key. The long keyway 84, the flat key and the long keyway 84 cooperate to prevent the rotating screw mandrel 81 from rotating around its axis. The guide block 80 is provided with toothed lines 82 , and the push rod 61 is provided with toothed bars 83 matching...
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