Single-cup structure capable of reversely puncturing bottom by external force
A reverse, single-cup technology, applied in beverage preparation devices, household appliances, applications, etc., can solve problems such as low liquid output efficiency
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Embodiment 1
[0044] Embodiment 1, as Figure 4a As shown, the needle 6 includes a head 7 and a body 8, the section width of the head 7 is larger than the section width of the body 8, the preferred technical solution is that the head 7 is in the shape of a cone, and the body 8 is in the shape of a column . The head 7 of the needle 6 punctures the pressure-bearing layer 4. Since the head 7 is small at the top and large at the bottom, the head 7 will temporarily block the holes in the pressure-bearing layer 4 until after the water is injected, the water first dissolves the powder, and the pressure-bearing layer 4 is subjected to pressure. The pressure moves downward, and after the pressure is too large, the pressure-bearing layer 4 moves downwards and breaks away from the head 7 of the needle 6, and comes to the body 8. The cross-sectional width of the body 8 is smaller than the cross-section width of the head 7, so that the pressure-bearing layer 4 and the Holes between the puncture needles...
Embodiment 2
[0045] Embodiment 2, the drainage cavity 5 is provided with a filter layer 10, the filter layer 10 is provided with puncture holes 26 matched with the puncture needles 6, and the aperture of the filter layer 10 is smaller than the size of the drink powder particles. The traditional needle 6 is mostly a column or cone with a sharp top. When the needle 6 pierces the pressure-bearing layer, the lower part of the needle 6 will block the needle hole 26 after the needle 6 passes through the needle hole, thereby preventing The insoluble or undissolved powder flows out from the puncture hole 26, which ensures the effectiveness of the filter layer and solves the above problems.
Embodiment 3
[0046] Embodiment 3, as Figure 4b As shown, in combination with Embodiment 1 and Embodiment 2, the bottom of the needle 6 in Embodiment 1 is provided with an abutment 9 with a cross-sectional width larger than the needle hole 26, and the abutment 9 is a columnar body or a cone, so that the needle 6 passes through the The abutment 9 located at the bottom of the puncture needle 6 behind the puncture needle hole 26 blocks the puncture needle hole 26, realizes the blocking of the puncture needle hole 26, ensures the liquid outlet efficiency, and also solves the problem of powder falling.
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