Pressing mold device for hot pressure prepared fuel cell membrane electrode
A technology for fuel cell membranes and pressing molds, which is applied to fuel cell parts, battery electrodes, circuits, etc., can solve the problems of not being able to guarantee the reliability of the membrane-electrode combination and the accurate positioning of each component of the membrane electrode, and achieve Good membrane electrode interface structure, small cooling range and high efficiency
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Embodiment 1
[0028] The present invention is used for hot pressing and prepares the pressing mold device of fuel cell membrane electrode, such as image 3As shown, it includes: upper platen 31, upper platen and upper die module disengagement spring 32, upper die base 33, upper die head 34, upper and lower die module disengagement spring 35, positioning frame 36, lower die head 37, lower die Seat 38, lower pressing plate and lower die module break away from spring 39, lower pressing plate 40, positioning guide post 41, upper and lower die heads and upper and lower die seat sealing gaskets 42,44. Among the figures 31, 33, 38, 40 are all provided with positioning through-holes that are slidingly fitted with the positioning guide post 41. Grooves are provided at the centers of both sides of the upper and lower die heads 34 and 37, and arrayed small holes 34a and 37a are respectively provided with the two grooves, and the diameter of the holes is between 0.3-0.8mm. The groove between the two a...
Embodiment 2
[0032] A second embodiment of the present invention refers to Figure 7 , This set of pressing die device for hot pressing to prepare fuel cell membrane electrodes and the die device in Example 1 only changed the groove shape and number of divisions of the upper and lower die heads. Used to prepare 4 pieces of active area of 20cm on the same ion exchange membrane 2 the membrane electrode. The positioning groove of the die head is evenly divided into 4 areas with an area of 20cm 2 region, the dimensions of each region are consistent with the diffusion layer.
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