A rapid prototyping method for high-precision ester-cured water glass sand mold/core
A molding method and technology for solidifying water, applied in the directions of cores, mold components, casting molding equipment, etc., can solve the problems of low manufacturing accuracy, difficulty in recycling old sand, poor preparation effect, etc., and reduce processing energy consumption. , The effect of improving the reuse rate and shortening the manufacturing cycle
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Embodiment 1
[0037] see figure 2, a rapid prototyping system of a high-precision ester solidified water glass sand mold / core of the present embodiment, including a box body 1, a material mixing device 2, a liquid distribution warehouse 31, a dripping device 33, a material spreading device 52, and a lifting table 73 and controller 8. The mixing device 2 and the liquid mixing chamber 31 are respectively arranged on the upper parts of both sides in the box body 1, wherein the mixing device 2 is equipped with mold / core sand and water glass, and the mixing device 2 is used to mold / core sand and water glass. The core sand and water glass are thoroughly mixed. The bottom of the mixing device 2 is provided with a material outlet 21 , and a material receiving platform 51 is provided below the material outlet 21 , and the uniformly mixed material 62 falls from the material outlet 21 onto the material receiving platform 51 . The spreading device 52 is located below the discharge port 21 and above ...
Embodiment 2
[0046] The rapid prototyping system of a kind of high-precision ester solidified water glass sand mold / core of the present embodiment is basically the same as embodiment 1, and its molding process is now briefly described as follows:
[0047] (1) Establish the CAD geometric entity model of the sand mold / core, and carry out layered discretization, generate the running trajectory file of the dripping device for each discrete layer, and import it into the controller of the dripping device through the data interface, and record the number of discrete layers n.
[0048] (2) Mix 80 parts of 70 / 140 mesh mullite sand with 5 parts of water glass with a modulus of 2.5 in the mixing device.
[0049] (3) Spread the mixed mold / core sand coated with water glass on the lifting workbench with the laying device.
[0050] (4) The compound organic ester of glycerol diacetate and glycerol monoacetate is dripped by the dripping device according to the first layer of discrete layer running track g...
Embodiment 3
[0053] The rapid prototyping system of a kind of high-precision ester solidified water glass sand mold / core of the present embodiment is basically the same as embodiment 1, and its molding process is now briefly described as follows:
[0054] (1) Establish the CAD geometric entity model of the sand mold / core, and carry out layered discretization, generate the running trajectory file of the dripping device for each discrete layer, and import it into the controller of the dripping device through the data interface, and record the number of discrete layers n.
[0055] (2) Mix 120 points of 70 / 140 mesh olivine sand with 4 parts of water glass with a modulus of 1.8 in the mixing device.
[0056] (3) Spread the mixed mold / core sand coated with water glass on the lifting worktable with a spreading device.
[0057] (4) The compound organic ester mixed with diethylene glycol diacetate, glycerol monoacetate and ethylene glycol monoacetate is dripped by the dripping device according to ...
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