Silica gel skin of simulation robot and manufacturing technology thereof
A technology for simulating robots and manufacturing processes. It is applied in the direction of manufacturing tools and manipulators. It can solve the problems of poor flexibility and tensile properties of the skin, and achieve the effect of improving flexibility, not easy to break, and highly simulated.
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Embodiment 1
[0031] A manufacturing process for a simulated robot silicone skin, comprising the steps of:
[0032] Step 1. Prepare the original clay plastic male mold:
[0033] Make a skeleton with the same proportions as the corresponding body parts of the live model, pile up a rough shape with clay outside the skeleton, soften the clay shape, and finely shape the softened clay shape according to the shape of the corresponding body parts of the live model to obtain a clay sculpture Male model;
[0034] Step 2: Turn over the plaster female mold:
[0035] Smear gypsum slurry on the surface of the clay plastic male mold obtained in step 1, and obtain a gypsum negative mold after the gypsum is dried and solidified;
[0036] Step 3. Turn over the atomic ash male mold:
[0037] Remove the gypsum female mold obtained in step 2 from the clay sculpture, and clean up the remaining impurities on the inner wall of the gypsum; prepare atomic ash with a certain mass ratio of the main body ash and th...
Embodiment 2
[0044] The manufacturing process of a simulated robot silicone skin provided in this embodiment differs from that of Embodiment 1 only in that step 2 of this embodiment, the specific method of turning over a gypsum female mold is as follows:
[0045] Apply gypsum slurry on the surface of the clay plastic male mold obtained in step 1 three times, the gypsum slurry applied in the first pass is prepared by gypsum powder and water in a mass ratio of 3:1; the surface of the gypsum slurry applied in the first pass is slightly solidified For the second application, the gypsum slurry for the second application is prepared by gypsum powder and water at a mass ratio of 5:1; The gypsum slurry is prepared from gypsum powder and water at a mass ratio of 5:1; after gypsum and water fully reflect heat, 30 minutes later the gypsum reaches a relatively high hardness to obtain a gypsum negative mold.
[0046]In this embodiment, the concentration of the gypsum slurry applied in the first pass is...
Embodiment 3
[0048] The difference between the manufacturing process of the silicone skin of a simulated robot provided in the present embodiment and that of the embodiment 2 is that the step 3 of the present embodiment, the specific method of turning over the putty male mold is as follows:
[0049] After the gypsum negative mold prepared in step 2 is completely dry, it is removed from the clay model, and the impurities remaining on the inner wall of the gypsum are polished in time; the mass ratio of the main body ash to the curing agent is 100:1.5-3 to prepare atomic ash, Within 5 to 15 minutes, scrape-coat the putty that is well-mixed and uniform in color to the inner wall of the gypsum female mold, with a thickness of 10mm, and dry naturally at room temperature. Grind the putty male mold twice, first use 120 mesh sandpaper for rough grinding, remove the excess part of the surface layer of the putty male mold, which is convenient for fine grinding; then use 360 mesh sandpaper for fine g...
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