Heating device, and battery manufacturing apparatus and method
The present application relates to a heating device, and a battery manufacturing apparatus and method, and relates to the technical field of battery manufacturing. The heating device is configured to heat a material strip upstream of a first station, and may include: a support; a first heater movably mounted to the support; and a first driver mounted to the support and configured to drive the first heater to move in a feeding direction of the material strip, such that the first heater is movable between a first position close to the first station and a second position away from the first station.
1 . A heating device, the heating device comprising:
a support;
a first heater movably mounted to the support for heating a material strip upstream of a first station, wherein
the first heater comprises a first heating structure and a second heating structure connected to each other, and
the first heater comprises two first heating assemblies arranged oppositely in a thickness direction of the material strip, and a first gap for the material strip to pass through is formed between the two first heating assemblies;
a first driver mounted to the support to drive the first heater to move in a feeding direction of the material strip, such that the first heater is movable between a first position close to the first station and a second position away from the first station, the first heating structure and the second heating structure being sequentially arranged in the feeding direction, the second heating structure being closer to the first station than the first heating structure, and a surface of the second heating structure away from the material strip being closer to the material strip than a surface of the first heating structure away from the material strip; and
a second driver for driving the two first heating assemblies to move close to or away from each other in the thickness direction of the material strip to change a size of the first gap, wherein
one of the two first heating assemblies is connected to an output end of the first driver, the other one of the two first heating assemblies is connected to an output end of the second driver, and the two first heating assemblies are slidably connected to each other in the thickness direction of the material strip, and
the other one of the two first heating assemblies is slidably connected to the output end of the second driver in the feeding direction.
2 . The heating device according to claim 1 , wherein the first heating structure has higher heating power than the second heating structure.
3 . The heating device according to claim 1 , wherein one of the two first heating assemblies is provided with two first limiting blocks, the other one of the two first heating assemblies is provided with a second limiting block, and a slot for inserting the second limiting block in the thickness direction of the material strip is formed between the two first limiting blocks.
4 . The heating device according to claim 1 , wherein the heating device further comprises:
a second heater mounted to the support and located upstream of the first heater.
5 . The heating device according to claim 4 , wherein the second heater comprises two second heating assemblies arranged oppositely in the thickness direction of the material strip, and a second gap for the material strip to pass through is formed between the two second heating assemblies; the heating device further comprises:
a third driver mounted to the support and configured to drive the two second heating assemblies to move close to or away from each other in the thickness direction of the material strip to change a size of the second gap.
6 . The heating device according to claim 1 , wherein the heating device further comprises:
a detector to detect offset information of an edge of the material strip; and
a position adjustment structure to adjust a position of the detector in a width direction of the material strip.
7 . A battery manufacturing apparatus, comprising:
a conveyer for conveying a separator;
the heating device according to claim 1 , wherein the heating device is configured to heat the separator; and
a hot press located at the first station to bond a plate to the separator by hot pressing.
8 . A heating device, the heating device comprising:
a support;
a first heater movably mounted to the support for heating a material strip upstream of a first station, wherein
the first heater comprises a first heating structure and a second heating structure connected to each other, and
the first heater comprises two first heating assemblies arranged oppositely in a thickness direction of the material strip, and a first gap for the material strip to pass through is formed between the two first heating assemblies;
a first driver mounted to the support to drive the first heater to move in a feeding direction of the material strip, such that the first heater is movable between a first position close to the first station and a second position away from the first station, the first heating structure and the second heating structure being sequentially arranged in the feeding direction, the second heating structure being closer to the first station than the first heating structure, and a surface of the second heating structure away from the material strip being closer to the material strip than a surface of the first heating structure away from the material strip;
a detector to detect offset information of an edge of the material strip; and
a position adjustment structure to adjust a position of the detector in a width direction of the material strip, wherein
the two first heating assemblies are provided with a first opening therethrough in the thickness direction of the material strip and a second opening therethrough in the thickness direction of the material strip, respectively, the first opening corresponds to the second opening in position, the heating device further comprises a light source arranged at the first opening, and the detector comprises a camera to acquire an image of the edge of the material strip through the second opening; optionally the detector further comprises a reflector arranged at the second opening for reflecting the image of the edge of the material strip to the camera.
9 . The heating device according to claim 8 , wherein the first heating structure has higher heating power than the second heating structure.
10 . The heating device according to claim 8 , wherein the heating device further comprises:
a second driver for driving the two first heating assemblies to move close to or away from each other in the thickness direction of the material strip to change a size of the first gap.
11 . The heating device according to claim 10 , wherein one of the two first heating assemblies is connected to an output end of the first driver, the other one of the two first heating assemblies is connected to an output end of the second driver, and the two first heating assemblies are slidably connected to each other in the thickness direction of the material strip.
12 . The heating device according to claim 8 , wherein the heating device further comprises:
a second heater mounted to the support and located upstream of the first heater.
13 . The heating device according to claim 12 , wherein the second heater comprises two second heating assemblies arranged oppositely in the thickness direction of the material strip, and a second gap for the material strip to pass through is formed between the two second heating assemblies; the heating device further comprises:
a third driver mounted to the support and configured to drive the two second heating assemblies to move close to or away from each other in the thickness direction of the material strip to change a size of the second gap.
14 . A heating device, the heating device comprising:
a support;
a first heater movably mounted to the support for heating a material strip upstream of a first station, wherein
the first heater comprises a first heating structure and a second heating structure connected to each other, and
the first heater comprises two first heating assemblies arranged oppositely in a thickness direction of the material strip, and a first gap for the material strip to pass through is formed between the two first heating assemblies:
a first driver mounted to the support to drive the first heater to move in a feeding direction of the material strip, such that the first heater is movable between a first position close to the first station and a second position away from the first station, the first heating structure and the second heating structure being sequentially arranged in the feeding direction, the second heating structure being closer to the first station than the first heating structure, and a surface of the second heating structure away from the material strip being closer to the material strip than a surface of the first heating structure away from the material strip;
a detector to detect offset information of an edge of the material strip; and
a position adjustment structure to adjust a position of the detector in a width direction of the material strip, wherein
the position adjustment structure comprises an adjustment handle, a lead screw, and a nut, the lead screw being rotatably mounted to the support, the lead screw extending in the width direction of the material strip, the adjustment handle being connected to one end of the lead screw, the nut being sleeved on the lead screw and in threaded connection with the lead screw, and the detector being connected to the nut.
15 . The heating device according to claim 14 , wherein the first heating structure has higher heating power than the second heating structure.
16 . The heating device according to claim 14 , wherein the heating device further comprises:
a second driver for driving the two first heating assemblies to move close to or away from each other in the thickness direction of the material strip to change a size of the first gap.
17 . The heating device according to claim 16 , wherein one of the two first heating assemblies is connected to an output end of the first driver, the other one of the two first heating assemblies is connected to an output end of the second driver, and the two first heating assemblies are slidably connected to each other in the thickness direction of the material strip.
18 . The heating device according to claim 14 , wherein the heating device further comprises:
a second heater mounted to the support and located upstream of the first heater.
19 . The heating device according to claim 18 , wherein the second heater comprises two second heating assemblies arranged oppositely in the thickness direction of the material strip, and a second gap for the material strip to pass through is formed between the two second heating assemblies; the heating device further comprises:
a third driver mounted to the support and configured to drive the two second heating assemblies to move close to or away from each other in the thickness direction of the material strip to change a size of the second gap.
20 . A battery manufacturing apparatus, comprising:
a conveyer for conveying a separator;
the heating device according to claim 14 , wherein the heating device is configured to heat the separator; and
a hot press located at the first station to bond a plate to the separator by hot pressing.