Fluid transport dressing
A fluid transport and fluid technology, applied in the field of fluid transport dressings, can solve the problems of expensive, complicated dressings, troublesome treatment, etc., and achieve the effect of comfortable treatment process
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example 1
[0109] An example of a test for determining whether at least one fluid conduit is disposed between sealed chambers of a fluid transfer dressing is provided below.
[0110] In the following tests, the following equipment was used: a negative pressure pump for generating a negative pressure of 120 mmHg; a bowl containing 400 ml of water; and an acrylic plate with a hole.
[0111] The fluid transport dressing to be tested had a plurality of substantially cylindrical sealed chambers with a diameter of about 10 mm and a height of about 3 mm. The spacing between two adjacent chambers is about 1.3 mm. Fluid transfer dressing has evenly spaced sealed chambers, every 10cm 2 The area of the fluid transport dressing has approximately 90 air cells. The thickness of the membrane between adjacent chambers is about 0.05 mm and the thickness of the walls of the sealed chambers is about 0.02 to 0.03 mm.
[0112] The test is carried out in such a way that it passes: the fluid transfer dre...
example 2
[0114] To study the characteristics of the sealed chamber when subjected to negative pressure, a 10x10 cm fluid transport dressing sheet was placed in the sealed vacuum chamber. The fluid transfer dressing tested was the same type as the fluid transfer dressing tested in Example 1 above. The pressure was set at -400mmHg and the duration was 2 minutes. Once the pressure is reduced, the sealed chamber expands into a spherical shape without bursting. When the pressure returns to atmospheric levels, the sealed chamber relaxes to the same shape as before the test.
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