Treatment process of aluminum-titanium alloy product
By combining the lower end support assembly and the upper end clamping mechanism of the plate body, the double-side synchronous grinding of the aluminum-titanium alloy plate is realized, solving the problems of low efficiency and cumbersome operation in the prior art, and improving the working efficiency and automation level.
Patent Information
- Application Number
- CN202510496327.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-21
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2045-04-21
AI Technical Summary
The existing aluminum-titanium alloy plate grinding devices can only be polished on one side, and require frequent disassembly and clamping, which is troublesome to operate and inefficient in working efficiency, and the fixture limitations make it impossible to effectively polish the contact parts.
The plate lower end support assembly and the upper end clamping mechanism of the plate body are adopted, combined with the mobile double-sided grinding mechanism, the double-sided synchronous grinding of the aluminum-titanium alloy plate is achieved through hydraulic rods and motor driving, and the connecting drive component is used to drive the support assembly and clamping mechanism to move, realizing double-sided grinding without manual operation.
It improves grinding efficiency, reduces the work intensity of staff, realizes double-sided automatic grinding of aluminum-titanium alloy plates, and simplifies the operation process.
Smart Images

Figure CN120269409A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of aluminum-titanium alloy plate grinding, and specifically to a processing technology for aluminum-titanium alloy products. Background Art
[0002] Due to its excellent physical and mechanical properties, aluminum-titanium alloy plates are widely used in various fields. In industrial machinery manufacturing, the grinding process of aluminum-titanium alloy plates is a crucial step. When the existing grinding devices grind aluminum-titanium alloy plates, only one side of the aluminum-titanium alloy plate can be ground in one clamping. When the other surface needs to be ground, it is necessary to disassemble and re-clamp, which is rather troublesome. This not only slows down the grinding work efficiency but also increases the work intensity of the staff. Moreover, after the existing grinding devices fix the aluminum-titanium alloy plates with fixtures, due to the limitation of the fixtures, the parts of the aluminum-titanium alloy plates in contact with the fixtures cannot be effectively ground, and manual grinding by the staff is required later, which is rather troublesome. Summary of the Invention
[0003] The purpose of the present invention is to provide a processing technology for aluminum-titanium alloy products to solve the problems raised in the above background art.
[0004] To achieve the above purpose, the present invention provides the following technical solutions: A processing technology for aluminum-titanium alloy products includes the following steps: Step 1: Melting of aluminum-titanium alloy plates: Mix aluminum and titanium together and carry out melting. Step 2: Casting of aluminum-titanium alloy plates: Adopt the casting process to make the blanks of aluminum-titanium alloy plates. Step 3: Grinding of blanks: Use a grinding machine table to grind the blanks of aluminum-titanium alloy plates. Step 4: Heat treatment of aluminum-titanium alloy plates: Carry out heat treatment on aluminum-titanium alloy plates to improve the mechanical properties of the alloy. Step 5: Oxidation treatment of aluminum-titanium alloy plates: Carry out oxidation treatment on aluminum-titanium alloy plates to form an oxide film on their surfaces. Step 6: Quality inspection: Carry out support inspection on aluminum-titanium alloy plates.
[0005] Preferably, a plate body lower end support assembly is installed on the grinding machine table, and the plate body lower end support assembly supports the aluminum-titanium alloy plate from its lower end for grinding its upper end. A grinding bearing frame is provided on the grinding machine table, and a plate body upper end clamping mechanism is installed on the grinding bearing frame. The plate body upper end clamping mechanism clamps the aluminum-titanium alloy plate from its upper end to achieve grinding of the lower end of the aluminum-titanium alloy plate. A mobile double-sided grinding mechanism is also installed on the grinding machine table, and the aluminum-titanium alloy plate is ground by the mobile double-sided grinding mechanism. A connecting and driving assembly is connected to the lower end support assembly and the upper end clamping mechanism of the plate body. When the mobile double-sided grinding mechanism moves, the lower end support assembly and the upper end clamping mechanism of the plate body are driven to move through the connecting and driving assembly.
[0006] Preferably, the lower end support assembly of the plate body is a plate body support sleeve. A sleeve body support rod is fixedly arranged at the lower end of the plate body support sleeve, and a return spring is sleeved on the sleeve body support rod; A downward movement channel is arranged on the grinding machine table, and the sleeve body support rod is inserted into the downward movement channel; On both sides of one end of the plate body support sleeve, limit matching plates are symmetrically and fixedly arranged. A fixed channel is opened at the lower end of the limit matching plate, and a matching downward movement plate is also fixedly arranged on the plate body support sleeve between the limit matching plates.
[0007] Preferably, a first hydraulic rod is fixedly installed at one end of the grinding and bearing frame, and a limit bearing rod is fixedly arranged on the grinding and bearing frame beside the first hydraulic rod; The mobile double-sided grinding mechanism includes a bearing moving plate and a moving bearing frame. The bearing moving plate is installed on the first hydraulic rod; Bearing channels are symmetrically arranged on both sides of the bearing moving plate, and a downward pushing plate is fixedly arranged at the lower end of the bearing moving plate.
[0008] Preferably, an installation carrier plate is also fixedly arranged on the bearing moving plate. The installation carrier plate is sleeved on the limit bearing rod; A pushing top frame is fixedly arranged on the installation carrier plate. A pushing top wheel is installed on the pushing top frame, and racks are symmetrically and fixedly arranged on the installation carrier plates on both sides of the pushing top frame.
[0009] Preferably, a second hydraulic rod is fixedly installed on the bearing moving plate. A moving bearing frame is fixedly installed on the second hydraulic rod. Motors are symmetrically installed at one end of the moving bearing frame, and grinding wheels are installed on the motors; At the other end of the moving bearing frame, matching bearing plates are symmetrically and fixedly arranged. The matching bearing plates are matched with the bearing channels.
[0010] Preferably, the upper end clamping mechanism of the plate body includes a movable plate part and a clamping sleeve. The movable plate part is installed on the grinding and bearing frame; Connecting plate parts are symmetrically hinged on the movable plate part. An installation carrier rod is fixedly arranged at the lower end of the movable plate part. The installation carrier rod passes through the grinding and bearing frame, and a bearing plate strip is fixedly arranged at its lower end; Bearing rods are symmetrically and fixedly arranged on the bearing plate strip. Clamping sleeves are symmetrically installed on both sides of the bearing plate strip. A moving bearing plate is fixedly arranged at the upper end of the clamping sleeve. The moving bearing plate is sleeved on the bearing rod; A serializing frame is fixedly arranged on the clamping sleeve. A serializing rod is inserted into the serializing frame. A serializing block is fixedly arranged at the upper end of the serializing rod. A serializing channel is formed in the serializing block.
[0011] Preferably, the connection driving assembly includes a cooperating driving plate, a gear and a limiting plate frame. The cooperating driving plate is installed on the grinding carrier frame. A bearing plate is fixedly arranged on the grinding carrier frame. A support channel is formed in the bearing plate. Pull-down connecting rods are symmetrically and fixedly arranged on the cooperating driving plate. The pull-down connecting rods are inserted into the support channel. A first connecting spring is sleeved on the pull-down connecting rods. A pull-down block is fixedly arranged on the pull-down connecting rods. The pull-down block is hinged to the connecting plate. Insertion channels are symmetrically arranged on the cooperating driving plate. A driving supporting rod is inserted into the insertion channels. A supporting strip plate is fixedly arranged on the driving supporting rod. A serializing driving rod is fixedly arranged at the upper end of the supporting strip plate. The serializing driving rod is inserted into the serializing channel.
[0012] Preferably, a lower supporting plate is fixedly arranged at the lower end of the supporting strip plate. A threaded hole is formed in the lower supporting plate. A cooperating connecting plate is hinged to the lower supporting plate. A drooping bearing strip is fixedly arranged at the lower end of the cooperating driving plate. An inclined bearing plate is fixedly arranged on the drooping bearing strip. Mounting holes are symmetrically and fixedly arranged on both sides of the drooping bearing strip. A loading rod is also fixedly arranged on the drooping bearing strip.
[0013] Preferably, a mounting column is fixedly arranged on the gear. A bearing is sleeved on the mounting column. The bearing is installed in the mounting hole. A threaded column is also fixedly arranged on the gear. The threaded column is matched with the threaded hole. The other end of the cooperating connecting plate is hinged to the limiting plate frame. The limiting plate frame is sleeved on the loading rod. A second connecting spring is also sleeved on the loading rod. Limiting supporting plates are symmetrically and fixedly arranged at the lower end of the limiting plate frame. The limiting supporting plates are inserted into the fixed channel.
[0014] Compared with the prior art, the beneficial effects of the present invention are as follows: The structure of the present invention is reasonably arranged and has strong functionality, and has the following advantages: 1. When grinding the aluminum-titanium alloy plate, insert it into the plate body support sleeve, support and position it through the plate body support sleeve, and then the first hydraulic rod, the second hydraulic rod and the motor drive the grinding wheel to grind the aluminum-titanium alloy plate on both sides, which is very convenient, not only improving the grinding work efficiency, but also reducing the work intensity of the staff.
[0015] 2. During the grinding process, as the carrier moving plate moves downward, under the action of the pushing wheel, it will push and drive the cooperating driving plate to move. As the cooperating driving plate moves, it will drive the movable plate to move downward, thereby causing the clamping sleeve to move to both sides of the aluminum-titanium alloy plate. Then, as the carrier moving plate moves further downward, it will drive the clamping sleeve to move towards each other to clamp and fix the aluminum-titanium alloy plate from the upper end.
[0016] 3. After the clamping sleeve clamps and fixes the aluminum-titanium alloy plate, as it grinds downward, the lower pushing plate will contact the cooperating downward moving plate, which will push the plate body support sleeve downward. As the plate body support sleeve moves downward, it will separate from the aluminum-titanium alloy plate, thus enabling the grinding of the lower end of the aluminum-titanium alloy plate. Without additional operations by the staff, the double-sided grinding of the aluminum-titanium alloy plate can be completed, which is very convenient. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic diagram of the first perspective of the grinding machine assembly.
[0018] Figure 2 It is a schematic diagram of the second perspective of the grinding machine assembly.
[0019] Figure 3 It is a schematic diagram of the structure of the grinding machine.
[0020] Figure 4 It is a schematic diagram of the assembly of the plate body support sleeve.
[0021] Figure 5 It is a schematic diagram of the first perspective of the assembly of the carrier moving plate and the moving support frame.
[0022] Figure 6 It is a schematic diagram of the second perspective of the assembly of the carrier moving plate and the moving support frame.
[0023] Figure 7 It is a schematic diagram of the assembly of the movable plate, the clamping sleeve and the cooperating driving plate.
[0024] Figure 8 It is a schematic diagram of the assembly of the cooperating driving plate, the gear and the limit plate frame.
[0025] Figure 9 It is a schematic diagram of the structure of the gear.
[0026] In the figure: 1. Grinding machine table; 11. Grinding carrier frame; 12. Installation limit channel; 13. Carrier plate; 14. Support channel; 15. First hydraulic rod; 16. Limit bearing rod; 17. Lowering channel; 2. Plate support sleeve; 21. Sleeve support rod; 22. Return spring; 23. Limit fitting plate; 24. Fixed channel; 25. Fitting lowering plate; 3. Carrier moving plate; 31. Carrier channel; 32. Pushing plate; 33. Installation carrier plate; 34. Limit channel; 35. Controller; 36. Pushing frame; 37. Pushing wheel; 38. Rack; 39. Second hydraulic rod; 4. Moving support frame; 41. Motor; 42. Grinding wheel; 43. Fitting support plate; 5. Movable plate member; 50. Limit contact block; 51. Connecting plate member; 52. Installation carrier rod; 53. Carrier strip; 54. Carrier rod; 6. Clamping sleeve; 61. Moving support plate; 62. Moving channel; 63. Serial connection frame; 64. Serial connection hole; 65. Serial connection rod; 66. Serial connection block; 67. Serial connection channel; 7. Fitting drive plate member; 71. Pull-down connecting rod; 72. First connecting spring; 73. Pull-down block; 74. Insertion channel; 75. Driving bearing rod; 76. Carrier strip board; 77. Serial connection driving rod; 771. Lower support plate; 772. Threaded hole; 773. Fitting connecting plate; 78. Hanging carrier strip; 781. Inclined surface carrier plate; 782. Installation carrier hole; 79. Load-bearing rod; 8. Gear; 81. Installation column; 82. Bearing; 83. Threaded column; 9. Limit plate frame; 91. Load-bearing through hole; 92. Second connecting spring; 93. Limit bearing plate. Detailed implementation manner
[0027] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0028] The present invention provides a technical solution: A processing technology for an aluminum-titanium alloy product includes the following steps: Step 1: Melting of the aluminum-titanium alloy plate: Mix aluminum and titanium together and carry out melting. Step 2: Casting of the aluminum-titanium alloy plate: Use a casting process to make a blank of the aluminum-titanium alloy plate. Step 3: Blanking grinding: Use the grinding machine table 1 to grind the blank of the aluminum-titanium alloy plate. Step 4: Heat treatment of the aluminum-titanium alloy plate: Carry out heat treatment on the aluminum-titanium alloy plate to improve the mechanical properties of the alloy. Step 5: Oxidation treatment of the aluminum-titanium alloy plate: Carry out oxidation treatment on the aluminum-titanium alloy plate to form an oxide film on its surface. Step Six: Quality Inspection: Conduct support inspection on the aluminum-titanium alloy plate.
[0029] As Figure 1 and Figure 2 shown, a plate lower-end support assembly is installed on the grinding machine table 1. The aluminum-titanium alloy plate is supported from its lower end by the plate lower-end support assembly for grinding its upper end. A grinding bearing frame 11 is provided on the grinding machine table 1, and a plate upper-end clamping mechanism is installed on the grinding bearing frame 11. The plate upper-end clamping mechanism clamps the aluminum-titanium alloy plate from its upper end to realize the grinding of the lower end of the aluminum-titanium alloy plate. A mobile double-sided grinding mechanism is also installed on the grinding machine table 1. The aluminum-titanium alloy plate is ground by the mobile double-sided grinding mechanism. The plate lower-end support assembly and the plate upper-end clamping mechanism are connected to an articulation drive assembly. When the mobile double-sided grinding mechanism moves, the plate lower-end support assembly and the plate upper-end clamping mechanism are driven to move by the articulation drive assembly.
[0030] As Figure 1 and Figure 4 shown, the plate lower-end support assembly is a plate support sleeve 2. A sleeve support rod 21 is fixedly provided at the lower end of the plate support sleeve 2. A return spring 22 is sleeved on the sleeve support rod 21, and both ends of the return spring 22 are respectively fixed on the grinding machine table 1 and the lower end surface of the plate support sleeve 2. A downward movement channel 17 is provided on the grinding machine table 1, and the sleeve support rod 21 is inserted into the downward movement channel 17. On both sides of one end of the plate support sleeve 2, limit cooperation plates 23 are symmetrically and fixedly provided. A fixed channel 24 is opened at the lower end of the limit cooperation plate 23, and a cooperation downward movement plate 25 is also fixedly provided on the plate support sleeve 2 between the limit cooperation plates 23.
[0031] As Figure 3 、 Figure 5 and Figure 6 shown, a first hydraulic rod 15 is fixedly installed at one end of the grinding bearing frame 11, and a limit bearing rod 16 is fixedly provided on the grinding bearing frame 11 beside the first hydraulic rod 15. The mobile double-sided grinding mechanism includes a bearing moving plate 3 and a moving bearing frame 4. The bearing moving plate 3 is installed on the first hydraulic rod 15. Bearing channels 31 are symmetrically provided on both sides of the bearing moving plate 3, and a downward pushing plate 32 is fixedly provided at the lower end of the bearing moving plate 3.
[0032] As Figure 2 and Figure 6As shown in the figure, an installation carrier plate 33 is further fixedly arranged on the load-bearing moving plate 3. The installation carrier plate 33 is sleeved on the limit bearing rod 16, and a limit channel 34 is opened on the installation carrier plate 33. The limit channel 34 cooperates with the limit bearing rod 16. A pushing frame 36 is fixedly arranged on the installation carrier plate 33. A pushing wheel 37 is installed on the pushing frame 36. Rack bars 38 are symmetrically and fixedly arranged on the installation carrier plate 33 on both sides of the pushing frame 36. In addition, a controller 35 is also installed on the lower end surface of the installation carrier plate 33. The controller 35 is a control under the existing technology and controls the first hydraulic rod 15, the second hydraulic rod 39 and the motor 41.
[0033] As Figure 5 shown in the figure, a second hydraulic rod 39 is fixedly installed on the load-bearing moving plate 3. A moving support 4 is fixedly installed on the second hydraulic rod 39. Motors 41 are symmetrically installed at one end of the moving support 4. Grinding wheels 42 are installed on the motors 41. Matching support plates 43 are symmetrically and fixedly arranged at the other end of the moving support 4. The matching support plates 43 cooperate with the load-bearing channel 31.
[0034] As Figure 1 and Figure 7 shown in the figure, the clamping mechanism at the upper end of the plate body includes a movable plate member 5 and a clamping sleeve 6. The movable plate member 5 is installed on the grinding load-bearing frame 11. Connecting plate members 51 are symmetrically hinged on the movable plate member 5. An installation load-bearing rod 52 is fixedly arranged at the lower end of the movable plate member 5. The installation load-bearing rod 52 passes through the grinding load-bearing frame 11, and a load-bearing plate strip 53 is fixedly arranged at its lower end. An installation limit channel 12 is opened on the grinding load-bearing frame 11. The installation limit channel 12 cooperates with the installation load-bearing rod 52. Load-bearing rods 54 are symmetrically and fixedly arranged on the load-bearing plate strip 53. Clamping sleeves 6 are symmetrically installed on both sides of the load-bearing plate strip 53. A moving support plate 61 is fixedly arranged at the upper end of the clamping sleeve 6. The moving support plate 61 is sleeved on the load-bearing rod 54. A moving channel 62 is opened on the moving support plate 61. The moving channel 62 cooperates with the load-bearing rod 54. A connecting carrier 63 is fixedly arranged on the clamping sleeve 6. A connecting rod 65 is inserted into the connecting carrier 63. A connecting hole 64 is opened on the connecting carrier 63. The connecting hole 64 cooperates with the connecting rod 65. A connecting block 66 is fixedly arranged at the upper end of the connecting rod 65. A connecting channel 67 is opened on the connecting block 66. A limit contact block 50 is also fixedly arranged on the movable plate member 5. When the movable plate member 5 moves down to the lowest position, the limit contact block 50 contacts the grinding load-bearing frame 11.
[0035] As Figure 1 、 Figure 8 and Figure 9As shown in the figure, the connection drive assembly includes a mating drive plate 7, a gear 8, and a limit plate frame 9. The mating drive plate 7 is installed on the grinding carrier 11. A carrier plate 13 is fixedly arranged on the grinding carrier 11. A support channel 14 is formed on the carrier plate 13. Symmetrically fixed on the mating drive plate 7 are downward connecting rods 71. The downward connecting rods 71 are inserted into the support channel 14. A first connecting spring 72 is sleeved on the downward connecting rods 71. And a downward block 73 is fixedly arranged on the downward connecting rods 71. The downward block 73 is hinged to the connecting plate 51. Symmetrically arranged on the mating drive plate 7 are insertion channels 74. Inserted in the insertion channels 74 is a driving support rod 75. Fixedly arranged on the driving support rod 75 is a load-bearing strip 76. Fixedly arranged at the upper end of the load-bearing strip 76 is a continuous driving rod 77. The continuous driving rod 77 is inserted into the continuous channel 67.
[0036] As Figure 8 shown, fixedly arranged at the lower end of the load-bearing strip 76 is a lower bearing plate 771. A threaded hole 772 is formed on the lower bearing plate 771. And a mating connecting plate 773 is hinged to the lower bearing plate 771. Fixedly arranged at the lower end of the mating drive plate 7 is a hanging load-bearing strip 78. Fixedly arranged on the hanging load-bearing strip 78 is an inclined bearing plate 781. Symmetrically fixed on both sides of the hanging load-bearing strip 78 are mounting holes 782. And a load-bearing rod 79 is also fixedly arranged on the hanging load-bearing strip 78. In addition, the threading directions of the threaded holes 772 on the two lower bearing plates 771 are opposite.
[0037] As Figure 2 、 Figure 8 and Figure 9 shown, fixedly arranged on the gear 8 is a mounting post 81. A bearing 82 is sleeved on the mounting post 81. The bearing 82 is installed in the mounting hole 782. Also fixedly arranged on the gear 8 is a threaded post 83. The threaded post 83 is matched with the threaded hole 772. The other end of the mating connecting plate 773 is hinged to the limit plate frame 9. The limit plate frame 9 is sleeved on the load-bearing rod 79. A second connecting spring 92 is also sleeved on the load-bearing rod 79. Symmetrically fixed at the lower end of the limit plate frame 9 are limit bearing plates 93. The limit bearing plates 93 are inserted into the fixed channel 24. A load-bearing through hole 91 is formed on the limit plate frame 9. The load-bearing through hole 91 is matched with the load-bearing rod 79. The two ends of the second connecting spring 92 are respectively fixed on the limit plate frame 9 and the hanging load-bearing strip 78.
[0038] When grinding the aluminum-titanium alloy plate, it is inserted into the plate support sleeve 2, and the plate support sleeve 2 supports and positions it from the lower end of the aluminum-titanium alloy plate. The first hydraulic rod 15 and the second hydraulic rod 39 drive the moving support 4 to move, and the motor 41 drives the grinding wheel 42 to rotate to achieve double-sided synchronous grinding of the aluminum-titanium alloy plate. During grinding, as the load-bearing moving plate 3 moves downward, the pushing wheel 37 will contact the inclined surface bearing plate 781. Under the action of the pushing wheel 37, it will push the mating drive plate member 7 to move away from the grinding support frame 11. As the mating drive plate member 7 moves, under the action of the connecting plate member 51, it will pull the movable plate member 5 downward, so that the clamping sleeve 6 is located on both sides of the upper end of the aluminum-titanium alloy plate until the pushing wheel 37 crosses the inclined surface part of the inclined surface bearing plate 781. At this time, the limit contact block 50 contacts the upper end surface of the grinding support frame 11. As the load-bearing moving plate 3 continues to move downward, the rack 38 will mesh with the gear 8 at this time, and then can drive the gear 8 to rotate. As the gear 8 rotates, under the action of the thread, it will drive the two load-bearing strip plates 76 to move toward the grinding support frame 11, and then can drive the clamping sleeve 6 to move toward the aluminum-titanium alloy plate until the aluminum-titanium alloy plate is clamped and fixed. At this time, the rack 38 also separates from the gear 8. During the movement of the load-bearing strip plate 76, under the action of the mating connecting plate 773, it will push the limit plate frame 9 to move away from the hanging load-bearing strip 78, which will drive the limit bearing plate 93 to withdraw from the fixed channel 24. At this time, the plate support sleeve 2 is in an unlocked state. As the load-bearing moving plate 3 continues to move downward, under the action of the downward pushing plate 32, it will push the mating downward moving plate 25 downward, and then drive the plate support sleeve 2 to move downward, separating it from the aluminum-titanium alloy plate, which is very convenient for the grinding wheel 42 to grind its lower end. After the limit bearing plate 93 withdraws from the fixed channel 24, it always contacts the limit mating plate 23, so that the limit mating plate 23 can play a limiting role on it to prevent its reverse movement, thereby ensuring the stability of the clamping of the aluminum-titanium alloy plate by the clamping sleeve 6. After grinding is completed, the load-bearing moving plate 3 can be reset.
[0039] Although the embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made in these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A processing technology for an aluminum-titanium alloy product, characterized in that: It includes the following steps: Step 1: Melting of the aluminum-titanium alloy plate: Mix aluminum and titanium together and conduct melting; Step 2: Casting of the aluminum-titanium alloy plate: Use the casting process to make the blank of the aluminum-titanium alloy plate; Step 3: Grinding of the blank: Use a grinding machine to grind the blank of the aluminum-titanium alloy plate; Step 4: Heat treatment of the aluminum-titanium alloy plate: Conduct heat treatment on the aluminum-titanium alloy plate to improve the mechanical properties of the alloy; Step 5: Oxidation treatment of the aluminum-titanium alloy plate: Conduct oxidation treatment on the aluminum-titanium alloy plate to form an oxide film on its surface; Step 6: Quality inspection: Conduct support inspection on the aluminum-titanium alloy plate.
2. The processing technology of an aluminum-titanium alloy product according to claim 1, characterized in that: A plate body lower-end support component is installed on the grinding machine. The aluminum-titanium alloy plate is supported from its lower end through the plate body lower-end support component, and the upper end is ground; A grinding bearing frame is arranged on the grinding machine. A plate body upper-end clamping mechanism is installed on the grinding bearing frame. The aluminum-titanium alloy plate is clamped from its upper end by the plate body upper-end clamping mechanism to realize the grinding of the lower end of the aluminum-titanium alloy plate; A mobile double-sided grinding mechanism is also installed on the grinding machine. The aluminum-titanium alloy plate is ground through the mobile double-sided grinding mechanism; The plate body lower-end support component and the plate body upper-end clamping mechanism are connected with a connection driving component. When the mobile double-sided grinding mechanism moves, the plate body lower-end support component and the plate body upper-end clamping mechanism are driven to move through the connection driving component.
3. The processing technology of an aluminum-titanium alloy product according to claim 2, characterized in that: The plate body lower-end support component is a plate body support sleeve. A sleeve body support rod is fixedly arranged at the lower end of the plate body support sleeve, and a return spring is sleeved on the sleeve body support rod; A downward movement channel is arranged on the grinding machine, and the sleeve body support rod is inserted into the downward movement channel; On both sides of one end of the plate body support sleeve, limit cooperation plates are symmetrically and fixedly arranged. A fixed channel is opened at the lower end of the limit cooperation plate, and a cooperation downward movement plate is also fixedly arranged on the plate body support sleeve between the limit cooperation plates.
4. The processing technology of an aluminum-titanium alloy product according to claim 3, characterized in that: One end of the grinding bearing frame is fixedly installed with a first hydraulic rod, and a limit bearing rod is fixedly arranged on the grinding bearing frame beside the first hydraulic rod; The mobile double-sided grinding mechanism includes a bearing moving plate and a moving support frame. The bearing moving plate is installed on the first hydraulic rod; Bearing channels are symmetrically arranged on both sides of the bearing moving plate, and a downward pushing plate is fixedly arranged at the lower end of the bearing moving plate.
5. The processing technology of an aluminum-titanium alloy product according to claim 4, characterized in that: An installation carrier plate is also fixedly arranged on the bearing moving plate. The installation carrier plate is sleeved on the limit bearing rod; A pushing top frame is fixedly arranged on the installation carrier plate. A pushing top wheel is installed on the pushing top frame, and racks are symmetrically and fixedly arranged on the installation carrier plates on both sides of the pushing top frame.
6. The processing technology of an aluminum-titanium alloy product according to claim 5, characterized in that: A second hydraulic rod is fixedly installed on the bearing moving plate. A moving support frame is fixedly installed on the second hydraulic rod. Motors are symmetrically installed at one end of the moving support frame, and grinding wheels are installed on the motors; Cooperating support plates are symmetrically and fixedly arranged at the other end of the moving support frame. The cooperating support plates cooperate with the bearing channels.
7. The processing technology of an aluminum-titanium alloy product according to claim 6, characterized in that: The plate body upper-end clamping mechanism includes a movable plate part and a clamping sleeve. The movable plate part is installed on the grinding bearing frame; Connecting plate parts are symmetrically hinged on the movable plate part, and an installation carrier rod is fixedly arranged at the lower end of the movable plate part. The installation carrier rod passes through the grinding bearing frame, and a bearing plate strip is fixedly arranged at its lower end. On the bearing strip, bearing rods are symmetrically and fixedly arranged, and clamping sleeves are symmetrically installed on both sides of the bearing strip. A moving bearing plate is fixedly arranged at the upper end of the clamping sleeve, and the moving bearing plate is sleeved on the bearing rod. A serial connection frame is fixedly arranged on the clamping sleeve. A serial connection rod is inserted into the serial connection frame. A serial connection block is fixedly arranged at the upper end of the serial connection rod, and a serial connection channel is formed in the serial connection block.
8. The processing technology of an aluminum-titanium alloy product according to claim 7, characterized in that: The connection driving assembly includes a cooperating driving plate member, a gear, and a limiting plate frame. The cooperating driving plate member is installed on the grinding bearing frame. A bearing plate is fixedly arranged on the grinding bearing frame, and a support channel is formed in the bearing plate. Pull-down connecting rods are symmetrically and fixedly arranged on the cooperating driving plate member. The pull-down connecting rods are inserted into the support channel. A first connecting spring is sleeved on the pull-down connecting rods, and a pull-down block is fixedly arranged on the pull-down connecting rods. The pull-down block is hinged to the connecting plate member. Insertion channels are symmetrically arranged on the cooperating driving plate member. A driving bearing rod is inserted into the insertion channels. A bearing strip plate is fixedly arranged on the driving bearing rod. A serial connection driving rod is fixedly arranged at the upper end of the bearing strip plate, and the serial connection driving rod is inserted into the serial connection channel.
9. The processing technology of an aluminum-titanium alloy product according to claim 8, characterized in that: A lower bearing plate is fixedly arranged at the lower end of the bearing strip plate. A threaded hole is formed in the lower bearing plate, and a cooperating connecting plate is hinged to the lower bearing plate. A hanging bearing strip is fixedly arranged at the lower end of the cooperating driving plate member. An inclined bearing plate is fixedly arranged on the hanging bearing strip. Installation holes are symmetrically and fixedly arranged on both sides of the hanging bearing strip, and a load-bearing rod is also fixedly arranged on the hanging bearing strip.
10. The processing technology of an aluminum-titanium alloy product according to claim 9, characterized in that: An installation column is fixedly arranged on the gear. A bearing is sleeved on the installation column, and the bearing is installed in the installation hole. A threaded column is also fixedly arranged on the gear, and the threaded column is matched with the threaded hole. The other end of the cooperating connecting plate is hinged to the limiting plate frame. The limiting plate frame is sleeved on the load-bearing rod, and a second connecting spring is also sleeved on the load-bearing rod. Limiting bearing plates are symmetrically and fixedly arranged at the lower end of the limiting plate frame, and the limiting bearing plates are inserted into the fixed channel.
Citation Information
Patent Citations
Efficient aluminum-titanium alloy ingot grinding machine
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Blank ingot polishing device for aluminum-titanium alloy machining
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