Synchronous sintering method of titanium alloy or pure titanium product in powder injection molding
A technology of powder injection molding and sintering method, which is applied in the field of simultaneous sintering of titanium alloy or pure titanium products in powder injection molding, can solve the problems of large sintering deformation and high sphericity of titanium alloy powder, and achieves improvement of sintering deformation and sintering. The effect of yield and production cost reduction
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Embodiment 1
[0023] The present invention comprises the steps:
[0024] S1, preparing TC4 injection base;
[0025] S2. Preparation of sintering jig injection blank:
[0026] A: Mixed powder: Mix zirconia powder and low-temperature glass powder evenly by ball milling, wherein the mass ratio of zirconia powder is 80wt%;
[0027] B: Feed material preparation: Mix uniformly mixed powder and plastic-based binder in an internal mixer, and granulate with a granulator to obtain feed particles;
[0028] C: The feed particles are injected into the injection molding machine to obtain the injection blank of the sintered fixture;
[0029] S3. Ornament: put the TC4 injection blank on the injection blank of the sintering fixture;
[0030] S4. Catalyze the TC4 injection blanks placed together with the sintered fixture injection blanks together to obtain the TC4 catalytic blanks and sintered fixture catalytic blanks placed together; wherein the catalytic temperature is 110° C., and the acid passage time...
Embodiment 2
[0035] The present invention comprises the steps:
[0036] S1, preparing pure titanium injection blank;
[0037] S2. Preparation of sintering jig injection blank:
[0038] A: Mixed powder: Mix boron nitride powder and low-temperature glass powder evenly by ball milling, wherein the mass ratio of boron nitride powder is 85wt%;
[0039] B: Feed material preparation: Mix uniformly mixed powder and plastic-based binder in an internal mixer, and granulate with a granulator to obtain feed particles;
[0040] C: The feed particles are injected into the injection molding machine to obtain the injection blank of the sintered fixture;
[0041] S3. Ornament: put the pure titanium injection blank on the injection blank of the sintering fixture;
[0042] S4. Catalyze the pure titanium injection base and the sintering jig injection base together to obtain the pure titanium catalytic base and the sintering jig catalytic base; wherein the catalytic temperature is 110° C., and the acid pass...
Embodiment 3
[0047] The present invention comprises the steps:
[0048] S1, prepare TC11 injection base;
[0049] S2. Preparation of sintering jig injection blank:
[0050] A: Mixed powder: mix the yttrium oxide powder and hollow glass microspheres uniformly by ball milling, wherein the mass ratio of the yttrium oxide powder is 75wt%;
[0051] B: Feed material preparation: Mix uniformly mixed powder and plastic-based binder in an internal mixer, and granulate with a granulator to obtain feed particles;
[0052] C: The feed particles are injected into the injection molding machine to obtain the injection blank of the sintered fixture;
[0053] S3. Ornament: put the TC11 injection blank on the injection blank of the sintering fixture;
[0054] S4. Catalyze the TC11 injection blanks placed together with the sintered fixture injection blanks together to obtain the TC11 catalytic blanks and sintered fixture catalytic blanks placed together; wherein the catalytic temperature is 115° C., and t...
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