Pyrophyllite synthetic block and its preparation method for solving the problem of synthetic diamond pressure relief and deflation gun
A technology for synthesizing diamonds and synthetic blocks, which is applied in the field of pyrophyllite synthetic blocks and its preparation, which can solve the problems of surrounding object hazards, diamond breaking, affecting diamond hardness, optical performance, etc., and achieve the effects of simplifying the process, saving time and manpower
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[0018] The embodiment of the present invention provides a method for preparing pyrophyllite synthetic blocks for synthetic diamond pressure relief and deflation guns, including:
[0019] Analytical pure iron oxide (Fe 2 o 3 ) powder, since the iron oxide powder is difficult to be directly coated on the pyrophyllite composite block, therefore, the iron oxide powder is diluted with a diluent so that the iron oxide powder can be evenly coated on the pyrophyllite composite block. The purity of analytically pure iron oxide powder is not less than 99.7%, and superior pure iron oxide can also be selected. Considering cost and effect, analytically pure iron oxide is preferred.
[0020] The selection of the diluent should follow two principles: (1) The selected liquid should be chemically inert and cannot be mixed with pyrophyllite, tungsten carbide, Fe 2 o 3 etc.; (2) the selected liquid is volatile. Further, in a preferred embodiment of the present invention, the diluent includes...
Embodiment 1
[0027] This embodiment provides a synthetic block of pyrophyllite, which is mainly made by the following steps:
[0028] Select the particle size as 150 mesh to analyze pure iron oxide (Fe 2 o 3 ) powder 5g, dilute the iron oxide powder with 136g absolute ethanol, and fully stir evenly.
[0029] Fe with a soft brush 2 o 3 The powder mixture is evenly applied to the edges of the six sides of the pyrophyllite composite block according to the predetermined width, that is, the junction of two adjacent surfaces of the pyrophyllite composite block. Fe 2 o 3Width of powder coating=(side length of pyrophyllite synthetic block-side length of tungsten carbide atop hammer face) / 2.
[0030] The treated pyrophyllite composite block was dried at 90° C. for 40 minutes to ensure that the absolute ethanol was completely volatilized to obtain a pyrophyllite composite block coated with an iron oxide coating.
Embodiment 2
[0032] This embodiment provides a synthetic block of pyrophyllite, which is mainly made by the following steps:
[0033] Select the particle size as 220 mesh to analyze pure iron oxide (Fe 2 o 3 ) powder 5g, dilute the iron oxide powder with 144g absolute ethanol, and fully stir evenly.
[0034] Fe with a soft brush 2 o 3 The powder mixture is evenly applied to the edges of the six sides of the pyrophyllite composite block according to the predetermined width, that is, the junction of two adjacent surfaces of the pyrophyllite composite block. Fe 2 o 3 Width of powder coating=(side length of pyrophyllite synthetic block-side length of tungsten carbide atop hammer face) / 2.
[0035] Dry the treated pyrophyllite composite block at 110° C. for 20 minutes to ensure that all the diluent is volatilized to obtain a pyrophyllite composite block coated with an iron oxide coating.
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