Cobalt leaching solution system, hard alloy cobalt leaching method and blade with diamond coating
A cemented carbide and cemented carbide substrate technology, applied in metal material coating process, coating, gaseous chemical plating and other directions, can solve the problems of poor adhesion, loose structure and great influence of decobalt effect, etc. Achieve the effect of improving cutting performance and service life, ensuring hardness and flexural strength, and setting reasonable decobalt steps
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Embodiment 1
[0022] This embodiment provides a cobalt removal solution system, including an acidic solution A and an alkaline solution B, wherein the acidic solution A includes the following components: 2.0% H by volume 2 SO 4 Solution, 18% by volume H 2 o 2 Solution, 80% by volume H 2 O; wherein, H in the acidic solution A 2 SO 4 The mass fraction is 70%, H 2 o 2 The quality score is 80%. Alkaline solution B includes the following components: the mass percent is 10% K 3 [Fe(CN) 6 ], 10% NaOH, 80% H 2 O.
[0023] This embodiment also provides a method for removing cobalt from cemented carbide, which specifically includes the following steps:
[0024] Configure the cobalt removal solution system: respectively use 2.0% H by volume percentage 2 SO 4 solution, 18% H 2 o 2 solution, 80% H 2 O is configured into an acidic solution A; the mass percentage is 10% K 3 [Fe(CN) 6 ], 10% NaOH, 80% H 2 O is configured into alkaline solution B;
[0025] The first pickling: first, sand...
Embodiment 2
[0032] This embodiment provides a cobalt removal solution system, the specific components are roughly the same as those in Example 1, the difference is that the components of the acidic solution A include 0.5% by volume of H 2 SO 4 solution, 15% H 2 o 2 solution, 1.0% HNO 3 solution; wherein, the H 2 SO 4 The mass fraction is 98%; the H 2 o 2 The mass fraction of is 40%; The HNO 3 The mass fraction of the solution is 70%.
[0033] The alkaline solution B comprises the following components: the mass percent is 3% K 3 [Fe(CN) 6 ], 5% NaOH, 92% H 2 O.
[0034] This embodiment also provides a method for removing cobalt from cemented carbide, and the specific steps are roughly the same as in Embodiment 1, except that:
[0035] The cobalt removal solution system provided in this embodiment is used to carry out the first pickling, alkali cleaning and second pickling of the hard alloy substrate respectively, wherein the cobalt content on the surface of the hard alloy subst...
Embodiment 3
[0039] This embodiment provides a cobalt removal solution system, the specific components are roughly the same as those in Example 1, the difference is that the components of the acidic solution A include HNO with a volume percentage of 1.5% respectively 3 solution, 15% H 2 o 2 solution, 83.5% H 2 O, where the HNO 3 The mass fraction of the solution is 98%, H 2 o 2 The mass fraction of is 50%; Described alkaline solution B comprises following composition: mass percentage is respectively the K of 8% 3 [Fe(CN) 6 ], 9% KOH, 83% H 2 O.
[0040] This embodiment also provides a method for removing cobalt from cemented carbide, and the specific steps are the same as those in Embodiment 1.
[0041] This embodiment also provides a diamond-coated blade, including a blade base and a diamond coating attached to the surface of the blade base, the blade base is a cemented carbide base processed by the above-mentioned cemented carbide decobaltization method, and passed A diamond coa...
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