A continuous fiber reinforced metal matrix composite material manufacturing apparatus

By incorporating a swing assembly and a liquid supply assembly within the solution furnace, the problem of uneven metal immersion plating was solved, enabling the efficient preparation of metal matrix composites and improving production efficiency and product quality.

CN117467917BActive Publication Date: 2025-12-12ANHUI JUHONG ELECTRONIC CO LTD
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Patent Information

Application Number
CN202311520395.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-15
Publication Date
2025-12-12
Estimated Expiration
2043-11-15

AI Technical Summary

Technical Problem

In the existing technology, the equipment for preparing continuous fiber reinforced metal matrix composites has the problems of complex process, low production efficiency, high cost, and uneven immersion of molten metal in the heating furnace, which leads to a decline in the quality of composite materials.

Method used

The system employs a swing assembly and a liquid supply assembly within the solution furnace, along with a drive assembly, to ensure uniform distribution of the molten metal on the composite material surface through stirring and conveying. This is achieved through the coordinated work of components such as the mounting frame, stirring rod, slide rail, liquid supply housing, and nozzle, resulting in uniform immersion plating of the molten metal.

Benefits of technology

It improves the uniformity of molten metal on the surface of composite materials, enhances the production efficiency and product quality of the preparation equipment, and reduces process complexity and cost.

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Abstract

The application discloses a kind of continuous fiber reinforced metal matrix composite preparation equipment, including solution furnace body, metal liquid is arranged in solution furnace body inside, support locking component is arranged between plate cover and solution furnace body, the bottom of the inner cavity of solution furnace body is provided with the swing component that agitates metal liquid, the inner cavity of solution furnace body is provided with liquid supply component, solution furnace body is provided with the drive component for driving liquid supply component and swing component work, the bottom of mounting frame is fixedly connected with liquid stirring rod, the bottom of shunt shell is threadedly sleeved with spray head.The application utilizes the cooperation use mode of solution furnace body, swing component, liquid supply component and drive component, under the action of drive component, swing component and liquid supply component can work synchronously, so that swing component stirs metal solution inside solution furnace body, and liquid supply component transports metal solution inside solution furnace body to the top of composite material, to improve the uniformity of its metal liquid immersion plating.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of composite material preparation, in particular to a continuous fiber reinforced metal matrix composite material preparation equipment. BACKGROUND

[0002] Metal matrix composites are classified by the type of reinforcement, such as fiber reinforcement, whisker reinforcement and particle reinforcement, etc. According to the different metal or alloy matrix, metal matrix composites can be divided into aluminum-based, magnesium-based, copper-based, titanium-based, high-temperature alloy-based, intermetallic compound-based and refractory metal-based composites, etc. Due to the high processing temperature, complex process, difficult interface reaction control and relatively high cost of this kind of composite material, the application maturity is far from that of resin matrix composites, and the application range is small.

[0003] For example, patent publication No. CN102534441A discloses a continuous fiber reinforced metal matrix composite material preparation equipment, which mainly aims to solve the technical problems of the current fiber reinforced metal matrix composite material preparation equipment, such as complexity, low production efficiency, high process cost and difficulty in large-scale production, etc. It mainly includes a heating furnace, a feeding mechanism, a water cooling gun, a plate rolling mechanism and a plate winding mechanism. The heating furnace is used for metal liquid heat preservation, two rollers are installed in the furnace and on the top surface of the furnace for guiding the continuous fiber, the plate rolling mechanism is used for rolling the composite material plate after cooling and immersing in the metal liquid, and the plate winding mechanism is used for collecting the composite material plate after rolling.

[0004] When the strip-shaped composite material continuously moves to immerse in the metal liquid inside the heating furnace, the metal liquid inside the strip-shaped composite material mortar heating furnace is divided into two layers, and the metal material inside the composite material immersed in the metal liquid will also precipitate, thereby reducing the quality of the composite material immersed in the metal liquid. The metal liquid inside the heating furnace is stirred to make the immersion of the metal liquid on the upper and lower surfaces of the composite material uniform. SUMMARY

[0005] The present application aims to provide a continuous fiber reinforced metal matrix composite material preparation equipment to solve the problems raised in the background art.

[0006] To achieve the above-mentioned purpose, the present application provides the following technical scheme: a continuous fiber reinforced metal matrix composite material preparation equipment, comprising a solution furnace body, a plate cover is arranged on the top of the solution furnace body, and a metal liquid is arranged inside the solution furnace body;

[0007] A plurality of support locking assemblies are arranged between the plate cover and the solution furnace body, a swing assembly for stirring the metal liquid is arranged at the bottom of the inner cavity of the solution furnace body, a liquid supply assembly is arranged in the inner cavity of the solution furnace body, and a driving assembly is arranged on the solution furnace body to drive the liquid supply assembly and the swing assembly to work.

[0008] Preferably, the swing assembly comprises a mounting frame, the bottom of the mounting frame is fixedly connected with a plurality of liquid stirring rods, both sides of the mounting frame are fixedly connected with a plurality of sliding blocks, the outer wall of the sliding block is slidably connected with a sliding rail, and the sliding rail is fixedly connected to the inner wall of the solution furnace body.

[0009] Preferably, the liquid supply assembly comprises a liquid supply shell and a flow distribution shell, the flow distribution shell is fixedly connected to the inside of the solution furnace body, the bottom of the flow distribution shell is threadedly sleeved with a plurality of spray heads, one side of the flow distribution shell is fixedly connected with a liquid supply pipe, the outer wall of the liquid supply pipe is fixedly embedded with the solution furnace body, the inner cavity of the liquid supply shell is slidably sleeved with a piston plate, and the top of the piston plate is fixedly connected with a piston rod.

[0010] Preferably, the inner wall and the outer wall of the liquid supply shell are fixedly connected with mounting caps, one end of the liquid supply pipe is fixedly connected with a threaded connector, the outer wall of the threaded connector is threadedly sleeved with one of the mounting caps, one side of the liquid supply shell is provided with two through holes corresponding to the mounting caps, the inner cavity of the mounting cap is provided with a baffle for limiting the flow of the through hole, the top of the baffle is fixedly connected with an elastic connecting piece, and the top of the elastic connecting piece is fixedly connected with the mounting cap.

[0011] Preferably, the drive assembly comprises a crankshaft and a servo motor, a linkage assembly is arranged between the crankshaft and the liquid supply assembly, a connecting rod assembly is arranged between the crankshaft and the swing assembly, the crankshaft is rotatably connected to the inner cavity of the solution furnace body, the servo motor is fixedly connected to the front face of the solution furnace body, and the output end of the servo motor is in transmission connection with the crankshaft.

[0012] Preferably, the linkage assembly comprises a first connecting rod, the top of the first connecting rod is fixedly connected with a first connecting sleeve ring, the first connecting sleeve ring is rotatably sleeved with the outer wall of the crankshaft, the bottom of the first connecting rod is provided with a first hinged piece, and the first connecting rod is rotatably connected with the piston rod through the first hinged piece.

[0013] Preferably, the connecting rod assembly comprises a mounting shaft, a plurality of swing rods are rotatably sleeved with the outer wall of the mounting shaft, a second connecting rod is arranged between the top of the swing rod and the crankshaft, and a third connecting rod is arranged between the bottom of the swing rod and the mounting frame.

[0014] Preferably, the top of the swing rod is provided with a second hinged piece, the swing rod is rotatably connected with the second connecting rod through the second hinged piece, one end of the second connecting rod is fixedly connected with a second connecting sleeve ring, the second connecting sleeve ring is rotatably sleeved with the outer wall of the crankshaft, the bottom of the swing rod is provided with a third hinged piece, the swing rod is rotatably connected with the third connecting rod through the third hinged piece, one end of the third connecting rod is provided with a fourth hinged piece, and the third connecting rod is rotatably connected with the mounting frame through the fourth hinged piece.

[0015] Preferably, the support locking assembly comprises a support plate and a fixing part, the support plate is fixedly connected to the side of the plate cover, the fixing part is fixedly connected to the side of the solution furnace body, the outer wall of the support plate is in sliding sleeve connection with the fixing part, one side of the fixing part is fixedly connected with a fixing sleeve, the inner cavity of the fixing sleeve is in sliding sleeve connection with a positioning rod, one side of the support plate is provided with a plurality of positioning holes, and one end of the outer wall of the positioning rod is in sliding clamping connection with the inner cavity of the positioning hole.

[0016] Preferably, the top of the fixing sleeve is provided with an arc block, the bottom of the arc block is fixedly connected with a limiting rod, the top of the positioning rod is provided with a plurality of limiting grooves, the bottom of the outer wall of the limiting rod is in sliding sleeve connection with the limiting grooves through the fixing sleeve, the side of the arc block is fixedly connected with an elastic band, the elastic band is sleeved on the outer wall of the fixing sleeve, one end of the positioning rod is fixedly connected with a handle, the top of the plate cover is fixedly connected with an eye ring, the top of the plate cover is provided with wire inlet holes on both sides, the top of the plate cover is fixedly connected with arc covers matched with the wire inlet holes, and guide rollers are rotatably installed on the inside of the arc covers and the two sides of the inner cavity of the solution furnace body.

[0017] The technical effects and advantages of the present application are as follows:

[0018] The present application utilizes the cooperation of the solution furnace body, the swing assembly, the liquid supply assembly and the driving assembly, and under the action of the driving assembly, the swing assembly and the liquid supply assembly can work synchronously, so that the swing assembly stirs the metal solution in the solution furnace body, and the liquid supply assembly delivers the metal solution in the solution furnace body to the top of the composite material, thereby improving the uniformity of the metal solution.

[0019] The present application utilizes the setting mode of the swing assembly, which comprises a mounting frame, a plurality of liquid stirring rods, a sliding rail and a sliding block, so that the mounting frame drives the liquid stirring rods to rotate in the solution furnace body, and the metal solution in the solution furnace body can be stirred to ensure the uniformity of the metal solution in the solution furnace body, and the mounting frame is convenient to disassemble, and the sliding block can be separated from the sliding rail, so that the swing assembly can be disassembled.

[0020] The present application utilizes the setting mode of the liquid supply assembly, which comprises a liquid supply shell, a piston plate, a piston rod, a liquid supply pipe, a flow distribution shell, a spray head and a baffle, so that under the flow limitation of the baffle, the piston plate moves up and down in the liquid supply shell, the liquid supply shell can deliver the metal solution to the flow distribution shell through the liquid supply pipe, the metal solution is sprayed out of the plurality of spray heads, and then the metal solution at the bottom of the composite material is delivered to the top of the composite material, so that the metal solution in the solution furnace body flows, and the uniformity of the metal solution at the top and bottom of the composite material is improved. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It is a schematic diagram of the overall structure of the present application.

[0022] Figure 2 It is a schematic diagram of the front internal structure of the present application.

[0023] Figure 3 It is a schematic diagram of the crankshaft side structure of the present application.

[0024] Figure 4 It is a schematic diagram of the explosion structure at the mounting frame of the present application.

[0025] Figure 5 It is a schematic diagram of the front structure of the swing rod of the present application.

[0026] Figure 6 It is a schematic diagram of the front internal structure of the liquid supply shell of the present application.

[0027] Figure 7 It is a schematic diagram of the enlarged structure at A of the present application. Figure 6

[0028] Figure 8 It is a schematic diagram of the explosion structure at the fixing member of the present application.

[0029] In the figure: 1, solution furnace body; 2, plate cover; 3, swing assembly; 31, mounting frame; 32, liquid stirring rod; 33, sliding rail; 34, sliding block; 4, liquid supply assembly; 41, liquid supply shell; 42, piston plate; 43, piston rod; 44, liquid supply pipe; 45, shunt shell; 46, spray head; 47, mounting cap; 48, through hole; 49, threaded connector; 410, baffle; 411, elastic connecting piece; 5, driving assembly; 51, crankshaft; 52, servo motor; 53, connecting rod assembly; 531, swing rod; 532, mounting shaft; 533, second connecting rod; 534, third connecting rod; 535, second hinge; 536, second connecting sleeve ring; 537, third hinge; 538, fourth hinge; 54, first connecting sleeve ring; 55, first connecting rod; 56, first hinge; 6, support locking assembly; 61, support plate; 62, fixing member; 63, fixing sleeve; 64, positioning rod; 65, positioning hole; 66, lifting ring; 67, circular arc block; 68, limiting rod; 69, limiting groove; 610, handle; 611, elastic band; 7, circular arc cover; 8, guide roller; a, solution top surface. DETAILED DESCRIPTION

[0030] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.​

[0031] The application provides a continuous fiber reinforced metal matrix composite material preparation device as shown in Figures 1-8 The application provides a continuous fiber reinforced metal matrix composite material preparation device as shown in Figure 2 The application provides a continuous fiber reinforced metal matrix composite material preparation device as shown in Figure 2 The application provides a continuous fiber reinforced metal matrix composite material preparation device as shown in

[0032] Especially, a plurality of support locking assemblies 6 are arranged between the cover 2 and the solution furnace body 1, the bottom of the inner cavity of the solution furnace body 1 is provided with an oscillating assembly 3 for agitating the metal liquid, the oscillating assembly 3 can agitate the metal liquid in the solution furnace body 1, so that the metal liquid in the solution furnace body 1 is prevented from being deposited, the uniformity of the metal liquid in the solution furnace body 1 is improved, the inner cavity of the solution furnace body 1 is provided with a liquid supply assembly 4, the liquid supply assembly 4 can convey the metal liquid at the bottom of the composite material strip in the solution furnace body 1 to the top of the composite material strip, so that the metal liquid in the solution furnace body 1 flows, and the uniformity of the metal liquid at the top and the bottom of the composite material strip is improved, the solution furnace body 1 is provided with a driving assembly 5 for driving the liquid supply assembly 4 and the oscillating assembly 3 to work, the driving assembly 5 comprises a crankshaft 51 and a servo motor 52, a linkage assembly is arranged between the crankshaft 51 and the liquid supply assembly 4, a connecting rod assembly 53 is arranged between the crankshaft 51 and the oscillating assembly 3, the crankshaft 51 is rotationally connected to the inner cavity of the solution furnace body 1, the servo motor 52 is fixedly connected to the front face of the solution furnace body 1, the output end of the servo motor 52 is in transmission connection with the crankshaft 51, the servo motor 52 drives the crankshaft 51 to rotate, the crankshaft 51 can drive the liquid supply assembly 4 and the oscillating assembly 3 to work synchronously through the linkage assembly and the connecting rod assembly 53, and the servo motor 52 is in electric connection with an external power supply through an external servo motor switch.

[0033] Specifically, the swinging assembly 3 comprises a mounting frame 31, the bottom of the mounting frame 31 is fixedly connected with a plurality of liquid stirring rods 32, both sides of the mounting frame 31 are fixedly connected with a plurality of sliding blocks 34, the outer wall of the sliding block 34 is slidingly connected with a sliding rail 33, the sliding rail 33 is fixedly connected to the inner wall of the solution furnace body 1, and the mounting frame 31 can drive the plurality of liquid stirring rods 32 to reciprocate at the bottom of the inner cavity of the solution furnace body 1 under the action of the driving assembly 5, so that the metal liquid in the inner cavity of the solution furnace body 1 is stirred, and when the mounting frame 31 reciprocates in the solution furnace body 1, the sliding blocks 34 on both sides of the mounting frame 31 slide in the sliding rails 33, when disassembled, the mounting frame 31 is separated from the connecting rod assembly 53, the sliding mounting frame 31 is separated from the sliding blocks 34 and the sliding rails 33, and the mounting frame 31 can be disassembled and maintained.

[0034] Specifically, the liquid supply assembly 4 comprises a liquid supply shell 41 and a flow distribution shell 45, the flow distribution shell 45 is fixedly connected to the inside of the solution furnace body 1, a plurality of spray heads 46 are threadedly sleeved at the bottom of the flow distribution shell 45, a liquid supply pipe 44 is fixedly connected to one side of the flow distribution shell 45, the outer wall of the liquid supply pipe 44 is fixedly embedded in the solution furnace body 1, so that the liquid supply pipe 44 does not affect the running of the composite material belt in the solution furnace body 1, a piston plate 42 is slidingly sleeved in the inner cavity of the liquid supply shell 41, a piston rod 43 is fixedly connected to the top of the piston plate 42, so that under the action of the linkage assembly, the piston rod 43 drives the piston plate 42 to move up and down in the liquid supply shell 41, the liquid supply shell 41 can deliver the metal liquid to the inside of the flow distribution shell 45 through the liquid supply pipe 44, so that the plurality of spray heads 46 are sprayed, and then the metal liquid at the bottom of the composite material belt is delivered to the top of the composite material belt, so that the flow in the solution furnace body 1 is improved, and the uniformity of the metal liquid at the top and bottom of the composite material belt is improved.

[0035] Further, the inner wall and the outer wall of the liquid supply shell 41 are fixedly connected with mounting caps 47, one end of the liquid supply pipe 44 is fixedly connected with a threaded connector 49, the outer wall of the threaded connector 49 is threadedly sleeved with one of the mounting caps 47, one side of the liquid supply shell 41 is provided with two through holes 48 corresponding to the mounting caps 47, the inner cavities of the mounting caps 47 are provided with baffle plates 410 limiting the flow of the through holes 48, the top of each baffle plate 410 is fixedly connected with an elastic connecting piece 411, the top of the elastic connecting piece 411 is fixedly connected with the mounting cap 47, under the action of the elastic connecting piece 411, the baffle plate 410 can be tilted and turned by a certain angle inside the mounting cap 47, and one side of the two baffle plates 410 corresponds to the through hole 48 on the liquid supply shell 41, so that when the piston plate 42 in the inner cavity of the liquid supply shell 41 moves upward, the baffle plate 410 inside the mounting cap 47 corresponding to the liquid supply pipe 44 blocks one of the through holes 48, the baffle plate 410 in the other mounting cap 47 in the liquid supply shell 41 is separated from the through hole 48, and then the liquid supply shell 41 draws the metal liquid in the solution furnace body 1 through the other mounting cap 47, when the piston rod 43 drives the piston plate 42 to move downward in the liquid supply shell 41, the baffle plate 410 in the other mounting cap 47 in the liquid supply shell 41 is tightly sealed with the through hole 48, the baffle plate 410 inside the mounting cap 47 corresponding to the liquid supply pipe 44 is separated from one of the through holes 48, and the metal liquid in the liquid supply shell 41 can be transported to the inner cavity of the distribution shell 45 through the through hole 48 and the liquid supply pipe 44, and then a certain amount of metal liquid can be transported into the inner cavity of the distribution shell 45 after the piston plate 42 moves up and down in the liquid supply shell 41 for one stroke.

[0036] Further, the linkage assembly includes a first connecting rod 55, the top of the first connecting rod 55 is fixedly connected with a first connecting sleeve ring 54, the first connecting sleeve ring 54 is rotatably sleeved on the outer wall of the crankshaft 51, the bottom of the first connecting rod 55 is provided with a first hinged piece 56, the first connecting rod 55 is rotatably connected with the piston rod 43 through the first hinged piece 56, the crankshaft 51 drives the first connecting sleeve ring 54 to move in a circle, so that the first connecting sleeve ring 54 drives the top of the first connecting rod 55 to move in a circle, and the bottom of the first connecting rod 55 drives the piston rod 43 to move up and down through the first hinged piece 56.

[0037] Further, the connecting rod assembly 53 comprises a mounting shaft 532, an outer wall of the mounting shaft 532 rotatably sleeved with a plurality of swing rods 531, a second connecting rod 533 arranged between the top of the swing rod 531 and the crankshaft 51, a third connecting rod 534 arranged between the bottom of the swing rod 531 and the mounting frame 31, a second hinge 535 arranged at the top of the swing rod 531, the swing rod 531 being rotatably connected with the second connecting rod 533 through the second hinge 535, one end of the second connecting rod 533 being fixedly connected with a second connecting sleeve ring 536, under the action of the second connecting sleeve ring 536, the crankshaft 51 can drive the second connecting rod 533 to make a circular motion, so that the second connecting rod 533 drives the swing rod 531 to swing back and forth with the mounting shaft 532, the swing rod 531 can drive the mounting frame 31 to move back and forth through the third connecting rod 534, the second connecting sleeve ring 536 is rotatably sleeved on the outer wall of the crankshaft 51, the bottom of the swing rod 531 is provided with a third hinge 537, the swing rod 531 is rotatably connected with the third connecting rod 534 through the third hinge 537, one end of the third connecting rod 534 is provided with a fourth hinge 538, the third connecting rod 534 is rotatably connected with the mounting frame 31 through the fourth hinge 538, the third connecting rod 534 can be rotatably connected with the swing rod 531 and the mounting frame 31 through the third hinge 537 and the fourth hinge 538.

[0038] Further, the support locking assembly 6 comprises a support plate 61 and a fixing piece 62, the support plate 61 is fixedly connected to the side of the cover 2, the fixing piece 62 is fixedly connected to the side of the solution furnace body 1, the outer wall of the support plate 61 is slidably sleeved with the fixing piece 62, one side of the fixing piece 62 is fixedly connected with a fixing sleeve 63, the inner cavity of the fixing sleeve 63 is slidably sleeved with a positioning rod 64, a plurality of positioning holes 65 are formed in one side of the support plate 61, when the cover 2 is placed on the top of the solution furnace body 1, the positioning rod 64 is slidably connected with the positioning holes 65 on one side of the support plate 61, so that the cover 2 can be locked, when the cover 2 is lifted to a certain height by the lifting ring 66, the positioning rod 64 is slidably connected with the positioning holes 65 on one side of the support plate 61, so that the cover 2 can be locked at a certain height, so as to facilitate the operation of the inside of the solution furnace body 1, one end of the outer wall of the positioning rod 64 is slidably connected with the inner cavity of the positioning hole 65, the top of the fixing sleeve 63 is provided with an arc block 67, the bottom of the arc block 67 is fixedly connected with a limiting rod 68, the limiting rod 68 can limit the position of the positioning rod 64, so as to ensure the stability of the connection or separation state of the positioning rod 64 and the support plate 61, a plurality of limiting grooves 69 are formed in the top of the positioning rod 64, the bottom of the outer wall of the limiting rod 68 is slidably sleeved with the limiting grooves 69 through the fixing sleeve 63, the side of the arc block 67 is fixedly connected with an elastic band 611, the elastic band 611 is sleeved on the outer wall of the fixing sleeve 63, the elastic band 611 sleeved on the outer wall of the fixing sleeve 63 can bind the arc block 67, thereby ensuring the stability of the connection of the limiting rod 68 and the positioning rod 64, one end of the positioning rod 64 is fixedly connected with a handle 610, the top of the cover 2 is fixedly connected with a lifting ring 66, the lifting ring 66 can lift the cover 2.

[0039] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and not for limiting the present application, although the foregoing embodiments of the present application have been described in detail, for those skilled in the art, it still can be modified, or part of the technical features of the equivalent replacement, within the spirit and principles of the present application, any modification, equivalent replacement, improvement, etc., should be included in the protection scope of the present application.

Claims

1. A continuous fiber reinforced metal matrix composite material preparation equipment, comprising a solution furnace body (1), the top of the solution furnace body (1) is provided with a plate cover (2), and the inside of the solution furnace body (1) is provided with a metal liquid; characterized in that A plurality of support locking assemblies (6) are arranged between the plate cover (2) and the solution furnace body (1), the bottom of the inner cavity of the solution furnace body (1) is provided with a swing assembly (3) for stirring the metal liquid, the inner cavity of the solution furnace body (1) is provided with a liquid supply assembly (4), and the solution furnace body (1) is provided with a driving assembly (5) for driving the liquid supply assembly (4) and the swing assembly (3) to work; The liquid supply assembly (4) comprises a liquid supply shell (41) and a shunt shell (45), the shunt shell (45) is fixedly connected to the inside of the solution furnace body (1), a plurality of nozzles (46) are threadedly sleeved at the bottom of the shunt shell (45), one side of the shunt shell (45) is fixedly connected with a liquid supply pipe (44), the outer wall of the liquid supply pipe (44) is fixedly embedded with the solution furnace body (1), the inner cavity of the liquid supply shell (41) is slidably sleeved with a piston plate (42), and the top of the piston plate (42) is fixedly connected with a piston rod (43); The driving assembly (5) comprises a crankshaft (51) and a servo motor (52), a linkage assembly is arranged between the crankshaft (51) and the liquid supply assembly (4), and a connecting rod assembly (53) is arranged between the crankshaft (51) and the swing assembly (3); The linkage assembly comprises a first connecting rod (55), the top of the first connecting rod (55) is fixedly connected with a first connecting sleeve ring (54), the first connecting sleeve ring (54) is rotatably sleeved with the outer wall of the crankshaft (51), and the bottom of the first connecting rod (55) is provided with a first hinged piece (56); and the first connecting rod (55) is rotatably connected with the piston rod (43) through the first hinged piece (56).

2. The apparatus according to claim 1, wherein The swing assembly (3) comprises a mounting frame (31), a plurality of liquid stirring rods (32) are fixedly connected to the bottom of the mounting frame (31), a plurality of sliding blocks (34) are fixedly connected to the two sides of the mounting frame (31), the outer wall of the sliding block (34) is slidably connected with a sliding rail (33), and the sliding rail (33) is fixedly connected to the inner wall of the solution furnace body (1).

3. The apparatus according to claim 2, wherein The inner wall and the outside of the liquid supply shell (41) are fixedly connected with mounting caps (47), one end of the liquid supply pipe (44) is fixedly connected with a threaded connector (49), the outer wall of the threaded connector (49) is threadedly sleeved with one of the mounting caps (47), one side of the liquid supply shell (41) is provided with two through holes (48) corresponding to the mounting caps (47), the inner cavity of the mounting cap (47) is provided with a baffle (410) for limiting the flow of the through hole (48), the top of the baffle (410) is fixedly connected with an elastic connecting piece (411), and the top of the elastic connecting piece (411) is fixedly connected with the mounting cap (47).

4. The apparatus according to claim 1, wherein The crankshaft (51) is rotationally connected to the inner cavity of the solution furnace body (1), and the servo motor (52) is fixedly connected to the front face of the solution furnace body (1), and the output end of the servo motor (52) is in transmission connection with the crankshaft (51).

5. The apparatus according to claim 4, wherein The connecting rod assembly (53) comprises a mounting shaft (532), a plurality of swing rods (531) are rotationally sleeved on the outer wall of the mounting shaft (532), a second connecting rod (533) is arranged between the top of the swing rod (531) and the crankshaft (51), and a third connecting rod (534) is arranged between the bottom of the swing rod (531) and the mounting frame (31).

6. The apparatus according to claim 5, wherein The top of the swing rod (531) is provided with a second hinge (535), the swing rod (531) is rotationally connected with the second connecting rod (533) through the second hinge (535), one end of the second connecting rod (533) is fixedly connected with a second connecting sleeve ring (536), the second connecting sleeve ring (536) is rotationally sleeved on the outer wall of the crankshaft (51), the bottom of the swing rod (531) is provided with a third hinge (537), the swing rod (531) is rotationally connected with the third connecting rod (534) through the third hinge (537), one end of the third connecting rod (534) is provided with a fourth hinge (538), and the third connecting rod (534) is rotationally connected with the mounting frame (31) through the fourth hinge (538).

7. The apparatus of claim 1, wherein the apparatus further comprises a plurality of rollers configured to move the continuous fiber reinforced metal matrix composite material along the path. The support locking assembly (6) comprises a support plate (61) and a fixing piece (62), the support plate (61) is fixedly connected to the side of the plate cover (2), the fixing piece (62) is fixedly connected to the side of the solution furnace body (1), the outer wall of the support plate (61) is slidably sleeved with the fixing piece (62), one side of the fixing piece (62) is fixedly connected with a fixing sleeve (63), the inner cavity of the fixing sleeve (63) is slidably sleeved with a positioning rod (64), one side of the support plate (61) is provided with a plurality of positioning holes (65), and one end of the outer wall of the positioning rod (64) is slidably connected with the inner cavity of the positioning hole (65).

8. The apparatus according to claim 7, wherein The top of the fixing sleeve (63) is provided with an arc block (67), the bottom of the arc block (67) is fixedly connected with a limiting rod (68), a plurality of limiting grooves (69) are formed in the top of the positioning rod (64), the bottom of the outer wall of the limiting rod (68) is slidably sleeved with the limiting grooves (69) through the fixing sleeve (63), the side of the arc block (67) is fixedly connected with an elastic band (611), the elastic band (611) is sleeved on the outer wall of the fixing sleeve (63), one end of the positioning rod (64) is fixedly connected with a handle (610), the top of the plate cover (2) is fixedly connected with a lifting ring (66), the top of the plate cover (2) is provided with wire inlet holes on both sides, the top of the plate cover (2) is symmetrically fixedly connected with arc covers (7) matched with the wire inlet holes, and the inner part of the arc cover (7) and the two sides of the inner cavity of the solution furnace body (1) are both rotationally installed with guide rollers (8).

Citation Information

Patent Citations

  • Equipment for preparing continuous-fiber-reinforced metal matrix composite

    CN102534441A

  • Continuous fiber reinforced metal matrix composite material preparation device

    CN110042328A