Multi-dimensional adjustable co-extrusion device

The design of the multi-dimensional adjustable co-extrusion device solves the shortcomings of the co-extrusion unit in terms of position and angle adjustment, and achieves stable docking with extruders of different models and positions, thereby improving production efficiency and product quality.

CN223590068UActive Publication Date: 2025-11-25CHANGZHOU JWELL EXTRUSION MASCH MFG CO LTD
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Patent Information

Application Number
CN202423290627.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-11-25
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Existing co-extrusion equipment has deficiencies in position and angle adjustment, which prevents the extruded material from smoothly entering the die, affecting product quality and production efficiency.

Method used

A multi-dimensional adjustable co-extrusion device was designed, including tilt adjustment components, rotation components, lifting components, longitudinal movement components, and transverse movement components. The combined use of these components enables multi-dimensional adjustment of the co-extruder, ensuring stable docking with extruders of different models and positions.

Benefits of technology

It enables flexible adjustment of the co-extruder in multiple dimensions, ensuring stable docking with extruders of different models and positions, and improving production efficiency and product quality.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a multi-dimensional adjustable co-extrusion device which comprises a co-extrusion machine suitable for being in butt joint with an extruder, and a multi-dimensional adjusting device connected with the co-extrusion machine so as to be suitable for driving the co-extrusion machine to perform multi-dimensional adjustment, the multi-dimensional adjusting device comprises a transverse moving part, a longitudinal moving part, a lifting part, a rotating part and an inclination angle adjusting part which are sequentially connected from bottom to top, and the inclination angle adjusting part is connected with the co-extruder and comprises a connecting assembly and an angle adjusting assembly; the connecting assembly comprises a fixed platform, two fixedly-mounted shaft seats, a rotary supporting shaft and a supporting plate, the two fixedly-mounted shaft seats are both connected with the fixed platform, the rotary supporting shaft is fixedly connected between the two fixedly-mounted shaft seats, and multi-dimensional adjustment is achieved by arranging a rotating mechanism and translation mechanisms in multiple directions; and stable butt joint with various extruders is facilitated.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of plastic extrusion, specifically, and relates to a multi-dimensional adjustable co-extrusion device. BACKGROUND

[0002] At present, conventional co-extrusion machines at home and abroad are usually fixedly installed and placed on the side of an extruder, and this installation method has the problem of poor universality because different co-extrusion dies need different positions and angles of the co-extrusion machine for matching, and if the position or angle of the co-extrusion machine is not suitable, the extruded material may not be able to smoothly enter the die, thereby affecting the quality and production efficiency of products.

[0003] After searching, it is found that the Chinese utility model patent with the authorization announcement number CN210679658U discloses a co-extrusion machine adjusting device, which realizes omnidirectional adjustment of the installation position and fixed angle of the co-extrusion machine through a first linear guide rail set, a moving seat, a lifting seat, a turnover frame, a screw lifter, a second linear guide rail set, and a translation assembly, and has the advantages of simple structure, convenient installation and maintenance, and effective improvement of production efficiency; however, although the position and angle of the co-extrusion machine are adjusted to a certain extent, this simple translation and lifting lack comprehensive rotation adjustment functions, which means that when different shapes and sizes of co-extrusion dies need to be matched, the existing device may not meet the requirements of all angles and positions, thereby causing the extruded material to be unable to smoothly enter the die, affecting the quality and production efficiency of products, and the translation can also be adjusted on a single shaft. SUMMARY

[0004] The technical problem to be solved by the utility model is to overcome the defects in the prior art, and the rotation mechanism and the multiple-direction translation mechanism are provided to realize multi-dimensional adjustment, thereby facilitating stable docking with various extruders.

[0005] To solve the above technical problems, the technical scheme of the utility model is a multi-dimensional adjustable co-extrusion device, which comprises:

[0006] A co-extrusion machine, which is adapted to be docked with an extruder;

[0007] A multi-dimensional adjustment device, which is connected with the co-extrusion machine to drive the co-extrusion machine to be adjusted in multiple dimensions;

[0008] The multi-dimensional adjustment device comprises, from bottom to top, a horizontal translation component, a vertical translation component, a lifting component, a rotation component, and an inclination angle adjustment component, and the inclination angle adjustment component is connected with the co-extrusion machine;

[0009] The inclination adjusting component comprises a connecting assembly and an angle adjusting assembly, the connecting assembly comprises a fixed platform, two fixed shaft seats, a rotating support shaft and a support plate, the two fixed shaft seats are connected with the fixed platform, the rotating support shaft is fixedly connected between the two fixed shaft seats, the support plate is movably sleeved on the outer circumferential surface of the rotating support shaft, and the support plate is connected with the co-extrusion machine;

[0010] The angle adjusting assembly is connected with the fixed platform and the co-extrusion machine respectively, and the angle adjusting assembly is suitable for driving the support plate to swing on the rotating support shaft, so as to adjust the angle of the co-extrusion machine.

[0011] Further, the angle adjusting assembly comprises a first screw lift, a first hinged plate and a second hinged plate;

[0012] The second hinged plate is fixedly connected on one side of the fixed platform, the outer shell part of the first screw lift is movably hinged with the second hinged plate, the first hinged plate is fixedly connected on the bottom of the co-extrusion machine, and the telescopic end of the first screw lift is movably hinged with the first hinged plate;

[0013] The input end of the first screw lift is connected with a driving hand wheel, the driving hand wheel is suitable for driving the telescopic end of the first screw lift to be telescopic, so as to drive the co-extrusion machine and the support plate to swing on the rotating support shaft through the first hinged plate, so as to adjust the angle of the co-extrusion machine.

[0014] Further, the rotating component comprises an upper rotating seat, a lower supporting seat and a rotating driving mechanism, the upper rotating seat is connected with the lower supporting seat through a bearing, and the top of the upper rotating seat is fixedly connected with the fixed platform;

[0015] The rotating driving mechanism is connected with the upper rotating seat to drive the upper rotating seat to rotate on the lower supporting seat, so as to drive the co-extrusion machine to rotate and adjust.

[0016] Further, the rotating driving mechanism comprises a turbine speed reducer and a rotating hand wheel;

[0017] The turbine speed reducer is located below the lower supporting seat, the output end of the turbine speed reducer is connected with the upper rotating seat, the rotating hand wheel is connected with the input end of the turbine speed reducer, the rotating hand wheel is suitable for driving the output end of the turbine speed reducer to rotate, so as to drive the upper rotating seat and the co-extrusion machine to rotate.

[0018] Further, the lifting component comprises at least two symmetrically arranged guide columns, a lifting chassis and at least one lifting driving mechanism;

[0019] The lifting base is slidably connected inside the guide column, the lifting driving mechanism is installed at the bottom of the lifting base, the bottom surface of the lower support seat is fixedly connected with the top surface of the lifting base, an installation groove is formed in the lifting base, the turbine speed reducer is installed in the installation groove, and the lifting driving mechanism is connected with the lifting base to drive the lifting base to longitudinally slide in the guide column.

[0020] Further, the lifting driving mechanism is a second screw rod lifter, the second screw rod lifter is installed at the bottom of the lifting base, a driving speed reducer is installed at the bottom of the lifting base, a connecting rod is connected to the output shaft of the driving speed reducer, and the connecting rod is connected with the input ends of all the second screw rod lifters.

[0021] The bottom of the guide column is connected with a longitudinal moving sliding block, the longitudinal moving sliding block is connected with the longitudinal moving component, the shell part of the second screw rod lifter is connected with the bottom of the lifting base, the telescopic end of the second screw rod lifter is connected with the longitudinal moving sliding block, the driving speed reducer drives the connecting rod to rotate, and then drives the telescopic end of the second screw rod lifter to longitudinally extend or retract, so that the lifting base and the co-extrusion machine are driven to longitudinally move.

[0022] Further, the longitudinal moving component comprises a longitudinal moving driving mechanism, a rack, a longitudinal moving connecting plate and longitudinal moving sliding rails corresponding to the longitudinal moving sliding blocks.

[0023] The longitudinal moving sliding blocks are fixedly connected with the rack, the longitudinal moving sliding blocks are slidably connected with the corresponding longitudinal moving sliding rails, the longitudinal moving connecting plate is connected with the guide column, and the longitudinal moving driving mechanism is connected with the longitudinal moving connecting plate to drive the longitudinal moving connecting plate to move, and then drive the longitudinal moving sliding blocks to move on the corresponding longitudinal moving sliding rails.

[0024] Further, the longitudinal moving driving mechanism comprises a longitudinal moving hand wheel and a longitudinal moving screw rod, the top of the rack is connected with an installation plate, the longitudinal moving screw rod is rotatably installed on the installation plate, and the longitudinal moving hand wheel is fixedly connected with one end of the longitudinal moving screw rod.

[0025] The longitudinal moving connecting plate is assembled outside the longitudinal moving screw rod, the longitudinal moving hand wheel drives the longitudinal moving screw rod to rotate, and then drives the longitudinal moving connecting plate to move along the axis direction of the longitudinal moving screw rod, so that the guide column and the lifting base are driven to move as a whole.

[0026] Further, the rack comprises a plurality of supporting feet, the transverse moving component comprises a transverse moving driving mechanism, a large bottom plate, transverse moving sliding blocks corresponding to the supporting feet and transverse moving sliding rails corresponding to the transverse moving sliding blocks.

[0027] The horizontal moving slider is connected with the corresponding support leg, the horizontal moving slide rail is fixedly connected at the bottom of the big bottom plate, and the horizontal moving slider is slidingly connected on the corresponding horizontal moving slide rail.

[0028] The butt joint plate is connected between the support legs, the horizontal moving driving mechanism is connected with the butt joint plate to drive the butt joint plate to move, thereby driving the horizontal moving slider to move on the horizontal moving slide rail.

[0029] Further, the horizontal moving driving mechanism comprises a horizontal moving screw rod and a horizontal moving hand wheel, and the big bottom plate is connected with a fixing seat.

[0030] The horizontal moving screw rod is rotatably installed on the fixing seat, the butt joint plate is assembled outside the horizontal moving screw rod, and the horizontal moving hand wheel is fixedly connected at one end of the horizontal moving screw rod.

[0031] The horizontal moving hand wheel is suitable for driving the horizontal moving screw rod to rotate, thereby driving the butt joint plate to move along the axial direction of the horizontal moving screw rod.

[0032] The above technical scheme has the following beneficial effects:

[0033] Through the setting of the inclination angle adjusting component, the rotating component, the lifting component, the longitudinal moving component and the horizontal moving component, the co-extrusion machine is controlled in multiple dimensions, reasonable and flexible adjustment is made according to the required extruders, and it is ensured that the extruders with different positions and different types can be effectively connected. BRIEF DESCRIPTION OF DRAWINGS

[0034] Figure 1 It is the overall structure diagram of the utility model Figure 1 ;

[0035] Figure 2 It is the overall structure diagram of the utility model Figure 2 ;

[0036] Figure 3 It is the inclination angle adjusting component diagram of the utility model Figure 1 ;

[0037] Figure 4 It is the inclination angle adjusting component diagram of the utility model Figure 2 ;

[0038] Figure 5 It is the rotating component structure diagram of the utility model

[0039] Figure 6 It is the lifting structure diagram of the utility model

[0040] Figure 7 It is the horizontal and longitudinal moving component structure diagram of the utility modelFigure 1 ;

[0041] Figure 8 The plane horizontal and vertical moving component structure of the utility model Figure 2 .

[0042] Figure: 1, co-extrusion machine;

[0043] 2, inclination adjustment component; 21, support plate; 22, first hinged plate; 23, first screw lifter; 24, fixed platform; 25, fixed shaft seat; 26, rotating support shaft; 27, second hinged plate;

[0044] 3, vertical moving component; 31, vertical moving hand wheel; 32, vertical moving sliding block; 33, vertical moving sliding rail; 34, vertical moving screw; 35, mounting plate; 36, vertical moving connecting plate; 37, rack;

[0045] 4, rotating component; 41, upper rotating seat; 42, lower support seat; 43, turbine speed reducer; 44, rotating hand wheel;

[0046] 5, lifting component; 51, guide column; 52, second screw lifter; 53, driving speed reducer; 54, lifting chassis; 55, connecting rod;

[0047] 6, horizontal moving component; 61, butt joint plate; 62, fixed seat; 63, horizontal moving screw; 64, large bottom plate; 65, horizontal moving sliding block; 66, horizontal moving sliding rail; 67, horizontal moving hand wheel. DETAILED DESCRIPTION

[0048] In order to make the content of the utility model more easily be clearly understood, the following according to specific embodiment and combining with the drawings, the utility model is further detailed.

[0049] As Figures 1-4 Indicated, a kind of multi-dimensional adjustable co-extrusion device, comprising:

[0050] Co-extrusion machine 1, co-extrusion machine 1 is suitable for butt joint with extruder;

[0051] Multi-dimensional adjustment device, multi-dimensional adjustment device is connected with co-extrusion machine 1 to be suitable for driving co-extrusion machine 1 to carry out multi-dimensional adjustment;

[0052] Multi-dimensional adjustment device includes horizontal moving component 6, vertical moving component 3, lifting component 5, rotating component 4 and inclination adjustment component 2 by lower to upper sequentially connected, and inclination adjustment component 2 is connected with co-extrusion machine 1;

[0053] The inclination adjusting component 2 comprises a connecting assembly and an angle adjusting assembly, the connecting assembly comprises a fixed platform 24, two fixed shaft seats 25, a rotating support shaft 26 and a support plate 21, the two fixed shaft seats 25 are connected with the fixed platform 24, the rotating support shaft 26 is fixedly connected between the two fixed shaft seats 25, and the support plate 21 is movably sleeved on the outer circumferential surface of the rotating support shaft 26, and the support plate 21 is connected with the co-extrusion machine 1;

[0054] The angle adjusting assembly is connected with the fixed platform 24 and the co-extrusion machine 1 respectively, and is suitable for driving the support plate 21 to swing on the rotating support shaft 26, so as to adjust the angle of the co-extrusion machine 1.

[0055] As shown in Figures 3-4 , the angle adjusting assembly comprises a first screw lifter 23, a first hinged plate 22 and a second hinged plate 27;

[0056] The second hinged plate 27 is fixedly connected on one side of the fixed platform 24, the outer shell part of the first screw lifter 23 is movably hinged with the second hinged plate 27, the first hinged plate 22 is fixedly connected on the bottom of the co-extrusion machine 1, and the telescopic end of the first screw lifter 23 is movably hinged with the first hinged plate 22;

[0057] The input end of the first screw lifter 23 is connected with a driving hand wheel, the driving hand wheel is suitable for driving the telescopic end of the first screw lifter 23 to be telescopic, so as to drive the co-extrusion machine 1 and the support plate 21 to swing on the rotating support shaft 26 through the first hinged plate 22, so as to adjust the angle of the co-extrusion machine 1.

[0058] As shown in Figure 5 , the rotating component 4 comprises an upper rotating seat 41, a lower supporting seat 42 and a rotating driving mechanism, the upper rotating seat 41 is connected with the lower supporting seat 42 through a bearing, and the top of the upper rotating seat 41 is fixedly connected with the fixed platform 24;

[0059] The rotating driving mechanism is connected with the upper rotating seat 41 to drive the upper rotating seat 41 to rotate on the lower supporting seat 42, so as to drive the co-extrusion machine 1 to rotate and adjust.

[0060] As shown in Figures 5-6 , the rotating driving mechanism comprises a turbine reducer 43 and a rotating hand wheel 44;

[0061] The turbine reducer 43 is located below the lower supporting seat 42, the output end of the turbine reducer 43 is connected with the upper rotating seat 41, and the input end of the turbine reducer 43 is connected with the rotating hand wheel 44, the rotating hand wheel 44 is suitable for driving the output end of the turbine reducer 43 to rotate, so as to drive the upper rotating seat 41 and the co-extrusion machine 1 to rotate.

[0062] As shown in Figure 6As shown, the lifting component 5 comprises at least two symmetrically arranged guide columns 51, a lifting chassis 54 and at least one lifting driving mechanism;

[0063] The lifting chassis 54 is slidingly connected inside the guide columns 51, the lifting driving mechanism is installed at the bottom of the lifting chassis 54, the bottom surface of the lower support base 42 is fixedly connected with the top surface of the lifting chassis 54, the lifting chassis 54 is provided with a mounting groove on the top, the turbine speed reducer 43 is installed in the mounting groove, and the lifting driving mechanism is connected with the lifting chassis 54 to drive the lifting chassis 54 to slide longitudinally in the guide columns 51.

[0064] As shown in the figure, Figure 6 the lifting driving mechanism is a second screw rod lifter 52, the second screw rod lifter 52 is installed at the bottom of the lifting chassis 54, the bottom of the lifting chassis 54 is provided with a driving speed reducer 53, the output shaft of the driving speed reducer 53 is connected with a connecting rod 55, and the connecting rod 55 is connected with the input ends of all the second screw rod lifters 52;

[0065] The bottom of the guide column 51 is connected with a longitudinal sliding block 32, the longitudinal sliding block 32 is connected with the longitudinal moving component 3, the outer shell part of the second screw rod lifter 52 is connected with the bottom of the lifting chassis 54, the telescopic end of the second screw rod lifter 52 is connected with the longitudinal sliding block 32, the driving speed reducer 53 drives the connecting rod 55 to rotate, and then drives the telescopic end of the second screw rod lifter 52 to longitudinally extend and retract, so as to drive the lifting chassis 54 and the co-extrusion machine 1 to move longitudinally.

[0066] As shown in the figure, Figure 7 the longitudinal moving component 3 comprises a longitudinal moving driving mechanism, a rack 37, a longitudinal moving connecting plate 36 and longitudinal moving sliding rails 33 corresponding to the longitudinal sliding block 32;

[0067] The longitudinal sliding block 32 is fixedly connected with the rack 37 and slidingly connected with the corresponding longitudinal moving sliding rails 33, the longitudinal moving connecting plate 36 is connected with the guide column 51, the longitudinal moving driving mechanism is connected with the longitudinal moving connecting plate 36 to drive the longitudinal moving connecting plate 36 to move, and then drive the longitudinal sliding block 32 to move on the corresponding longitudinal moving sliding rails 33.

[0068] As shown in the figure, Figure 7 the longitudinal moving driving mechanism comprises a longitudinal moving hand wheel 31 and a longitudinal moving screw rod 34, the top of the rack 37 is connected with a mounting plate 35, the longitudinal moving screw rod 34 is rotatably installed on the mounting plate 35, and the longitudinal moving hand wheel 31 is fixedly connected with one end of the longitudinal moving screw rod 34;

[0069] The longitudinal moving connecting plate 36 is assembled outside the longitudinal moving screw rod 34, the longitudinal moving hand wheel 31 drives the longitudinal moving screw rod 34 to rotate, and then drives the longitudinal moving connecting plate 36 to move along the axis direction of the longitudinal moving screw rod 34, so as to drive the guide column 51 and the lifting chassis 54 to move as a whole.

[0070] AsFigure 8 As shown in the drawings, the rack 37 comprises several supporting feet, the transverse moving part 6 comprises a transverse moving driving mechanism, a large base plate 64, transverse moving sliders 65 corresponding to the supporting feet, and transverse moving sliding rails 66 corresponding to the transverse moving sliders 65;

[0071] The transverse moving sliders 65 are connected with the corresponding supporting feet, the transverse moving sliding rails 66 are fixedly connected at the bottom of the large base plate 64, and the transverse moving sliders 65 are slidingly connected on the corresponding transverse moving sliding rails 66;

[0072] The several supporting feet are jointly connected with a docking plate 61, the transverse moving driving mechanism is connected with the docking plate 61 to drive the docking plate 61 to move, thereby driving the transverse moving sliders 65 to move on the transverse moving sliding rails 66.

[0073] As shown in the drawings, Figure 8 The transverse moving driving mechanism comprises a transverse moving lead screw 63 and a transverse moving hand wheel 67, and the large base plate 64 is connected with a fixing seat 62;

[0074] The transverse moving lead screw 63 is rotatably installed on the fixing seat 62, the docking plate 61 is assembled outside the transverse moving lead screw 63, and the transverse moving hand wheel 67 is fixedly connected at one end of the transverse moving lead screw 63;

[0075] The transverse moving hand wheel 67 is suitable for driving the transverse moving lead screw 63 to rotate, thereby driving the docking plate 61 to move along the axis direction of the transverse moving lead screw 63.

[0076] The working principle of the embodiment is as follows:

[0077] The co-extrusion machine 1 is placed at the side of the extruder to be docked, and the co-extrusion machine 1 is adjusted from three aspects of angle, height and parallel direction by the multi-dimensional adjusting device, so as to ensure the stable docking of the co-extrusion machine 1 and the extruder;

[0078] When the longitudinal angle of the co-extrusion machine 1 needs to be adjusted, the driving hand wheel is rotated to drive the lead screw in the first lead screw lifter 23 to move up and down, the lead screw lifter is a prior art, and its working principle will not be described in detail here. When the lead screw moves up and down, the first hinged plate 22 movably hinged at the telescopic end of the lead screw will push one end of the co-extrusion machine 1 to produce an angle deviation. The co-extrusion machine 1 driven by the force will drive the supporting plate 21 fixedly connected with the co-extrusion machine 1 to rotate on the rotating support shaft 26 with the rotating support shaft 26 as the center of rotation, so as to realize the angle adjustment effect of the whole co-extrusion machine 1. The fixed platform 24 and the rotating support shaft 26 support the co-extrusion machine 1 as a whole. Meanwhile, the outer shell part of the first lead screw lifter 23 is movably connected between the second hinged plate 27 and the fixed platform 24, which supports the first lead screw lifter 23 and ensures that the first lead screw lifter 23 has a certain space for movement.

[0079] When the angle of the co-extrusion machine 1 in the horizontal direction needs to be adjusted, the output shaft of the worm gear reducer 43 starts to rotate by rotating the rotary handle 44, and the output shaft of the worm gear reducer 43 drives the upper rotating seat 41 to rotate on the lower supporting seat 42. The upper rotating seat 41 is connected with the fixed platform 24, and the fixed platform 24 is driven to rotate by the upper rotating seat 41, so as to change the angle of the co-extrusion machine 1 in the horizontal direction. It should be noted that the upper rotating seat 41 is connected with the lower supporting seat 42 through a bearing, which supports the upper rotating seat 41 and reduces the resistance;

[0080] When the co-extrusion machine 1 needs to be adjusted in the horizontal direction, the output shaft of the worm gear reducer 53 starts to rotate by rotating the rotary handle 44, and the output shaft of the worm gear reducer 53 drives the upper rotating seat 41 to rotate on the lower supporting seat 42. The upper rotating seat 41 is connected with the fixed platform 24, and the fixed platform 24 is driven to rotate by the upper rotating seat 41, so as to change the angle of the co-extrusion machine 1 in the horizontal direction. It should be noted that the upper rotating seat 41 is connected with the lower supporting seat 42 through a bearing, which supports the upper rotating seat 41 and reduces the resistance;

[0081] When the co-extrusion machine 1 needs to be adjusted in the horizontal direction, the output shaft of the worm gear reducer 53 starts to rotate by rotating the rotary handle 44, and the output shaft of the worm gear reducer 53 drives the upper rotating seat 41 to rotate on the lower supporting seat 42. The upper rotating seat 41 is connected with the fixed platform 24, and the fixed platform 24 is driven to rotate by the upper rotating seat 41, so as to change the angle of the co-extrusion machine 1 in the horizontal direction. It should be noted that the upper rotating seat 41 is connected with the lower supporting seat 42 through a bearing, which supports the upper rotating seat 41 and reduces the resistance;

[0082] When the co-extrusion machine 1 needs to be adjusted in the horizontal direction, the traverse handle 67 is rotated to drive the traverse screw 63 to rotate, the butt joint plate 61 assembled outside the traverse screw 63 moves linearly along the axis direction of the traverse screw 63, the butt joint plate 61 butt joints all the supporting feet at the bottom of the machine frame 37, so that the machine frame 37 is a complete whole, when the butt joint plate 61 moves linearly under the drive of the traverse screw 63, the whole machine frame 37 and all the components on the machine frame 37 can be directly driven to move transversely, thereby achieving the effect of adjusting the co-extrusion machine 1 in the horizontal direction, when the machine frame 37 is driven to move, the traverse sliding block 65 at the bottom of the supporting feet of the machine frame 37 moves on the traverse sliding rail 66 fixedly arranged on the large bottom plate 64, the traverse sliding block 65 and the traverse sliding rail 66 can support and stabilize the guide effect of the transverse sliding of the machine frame 37, and the large bottom plate 64 is at the bottom of the multi-dimensional adjusting device of the whole co-extrusion machine 1, which supports the whole device, so that the whole device can be stably placed on the ground;

[0083] In the above manner, according to the difference between the actual positions of the co-extrusion machine 1 and the extruder to be butt joint, the multi-dimensional control including the vertical angle adjustment, the horizontal angle adjustment, the height adjustment, the longitudinal adjustment in the horizontal direction and the transverse adjustment in the horizontal direction is performed, so that the co-extrusion machine 1 and the extruder are stably butt jointed.

[0084] The above specific embodiments further illustrate the technical problems, technical solutions and beneficial effects solved by the utility model, and it should be understood that the above description is only for specific embodiments of the utility model and is not used to limit the utility model, any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the utility model should be included in the protection scope of the utility model.

Claims

1. A multi-dimensional adjustable co-extrusion device, characterized by: The utility model relates to a kind of multi-dimensional adjustment device for co-extrusion machine, including: Co-extrusion machine (1), the co-extrusion machine (1) is adapted to interface with extruder; Multi-dimensional adjustment device, the multi-dimensional adjustment device is connected with the co-extrusion machine (1) to adapt to drive the co-extrusion machine (1) to carry out multi-dimensional adjustment; The multi-dimensional adjustment device includes transverse moving component (6) connected in turn from bottom to top, longitudinal moving component (3), lifting component (5), rotating component (4) and inclination adjustment component (2), and the inclination adjustment component (2) is connected with the co-extrusion machine (1); The inclination adjustment component (2) includes connection assembly and angle adjustment assembly, the connection assembly includes fixed platform (24), two fixed shaft seats (25), rotating support shaft (26) and support plate (21), two the fixed shaft seats (25) are connected with the fixed platform (24), the rotating support shaft (26) is fixedly connected between two the fixed shaft seats (25), the support plate (21) is movably sleeved on the outer surface of the rotating support shaft (26), and the support plate (21) is connected with the co-extrusion machine (1); The angle adjustment assembly is connected with the fixed platform (24) and the co-extrusion machine (1) respectively, and the angle adjustment assembly is adapted to push the support plate (21) swing on the rotating support shaft (26), to adjust the angle of the co-extrusion machine (1) in turn.

2. The multi-dimensional adjustable co-extrusion apparatus of claim 1, wherein, The angle adjustment assembly includes first screw jack (23), first hinged plate (22) and second hinged plate (27); The second hinged plate (27) is fixedly connected on one side of the fixed platform (24), the shell portion of the first screw jack (23) is movably hinged with the second hinged plate (27), the first hinged plate (22) is fixedly connected on the bottom of the co-extrusion machine (1), and the telescopic end of the first screw jack (23) is movably hinged with the first hinged plate (22); The input end of the first screw jack (23) is connected with driving hand wheel, the driving hand wheel is adapted to drive the telescopic end of the first screw jack (23) to be telescopic, to push the co-extrusion machine (1) and the support plate (21) swing on the rotating support shaft (26) through the first hinged plate (22) in turn, so as to adjust the angle of the co-extrusion machine (1).

3. Multidimensionally adjustable co-extrusion device according to claim 1 or 2, characterized in that The rotating component (4) includes upper rotating seat (41), lower support seat (42) and rotating drive mechanism, the upper rotating seat (41) is connected with the lower support seat (42) through bearing, and the top of the upper rotating seat (41) is fixedly connected between the fixed platform (24); The rotating drive mechanism is connected with the upper rotating seat (41) to adapt to drive the upper rotating seat (41) to rotate on the lower support seat (42), to drive the co-extrusion machine (1) to rotate adjustment in turn.

4. The multi-dimensional adjustable co-extrusion apparatus of claim 3, wherein, The rotating drive mechanism includes turbine speed reducer (43) and rotating hand wheel (44); The turbine speed reducer (43) is located below the lower support base (42), the output end of the turbine speed reducer (43) is connected with the upper rotating seat (41), the rotating hand wheel (44) is connected with the input end of the turbine speed reducer (43), the rotating hand wheel (44) is suitable for driving the output end of the turbine speed reducer (43) to rotate, and then drives the upper rotating seat (41) and the co-extrusion machine (1) to rotate.

5. The multi-dimensional adjustable co-extrusion apparatus of claim 4, wherein, The lifting component (5) comprises at least two symmetrically arranged guide columns (51), a lifting chassis (54) and at least one lifting driving mechanism; The lifting chassis (54) is slidingly connected inside the guide column (51), the lifting driving mechanism is installed at the bottom of the lifting chassis (54), the bottom surface of the lower support base (42) is fixedly connected with the top surface of the lifting chassis (54), the lifting chassis (54) is provided with a mounting groove on the top, and the turbine speed reducer (43) is installed in the mounting groove.

6. The multi-dimensional adjustable co-extrusion apparatus of claim 5, wherein, The lifting driving mechanism is a second screw rod lifter (52), the second screw rod lifter (52) is installed at the bottom of the lifting chassis (54), the bottom of the lifting chassis (54) is provided with a driving speed reducer (53), the output shaft of the driving speed reducer (53) is connected with a connecting rod (55), and the connecting rod (55) is connected with the input ends of all the second screw rod lifters (52). The bottom of the guide column (51) is connected with a longitudinal moving sliding block (32), the longitudinal moving sliding block (32) is connected with the longitudinal moving component (3), the housing part of the second screw rod lifter (52) is connected with the bottom of the lifting chassis (54), the telescopic end of the second screw rod lifter (52) is connected with the longitudinal moving sliding block (32), and the driving speed reducer (53) is suitable for driving the connecting rod (55) to rotate, and then driving the telescopic end of the second screw rod lifter (52) to longitudinally stretch and retract, so that the lifting chassis (54) and the co-extrusion machine (1) are longitudinally moved.

7. The multi-dimensional adjustable co-extrusion apparatus of claim 6, wherein, The longitudinal moving component (3) comprises a longitudinal moving driving mechanism, a rack (37), a longitudinal moving connecting plate (36) and longitudinal moving sliding rails (33) corresponding to the longitudinal moving sliding block (32). The longitudinal moving sliding block (32) is fixedly connected with the rack (37) and slidingly connected with the corresponding longitudinal moving sliding rail (33), the longitudinal moving connecting plate (36) is connected with the guide column (51), and the longitudinal moving driving mechanism is connected with the longitudinal moving connecting plate (36) and suitable for driving the longitudinal moving connecting plate (36) to move, and then driving the longitudinal moving sliding block (32) to move on the corresponding longitudinal moving sliding rail (33).

8. The multi-dimensional adjustable co-extrusion apparatus of claim 7, wherein, The longitudinal movement driving mechanism comprises a longitudinal movement hand wheel (31) and a longitudinal movement screw rod (34), the top of the frame (37) is connected with a mounting plate (35), the longitudinal movement screw rod (34) is rotatably installed on the mounting plate (35), and the longitudinal movement hand wheel (31) is fixedly connected to one end of the longitudinal movement screw rod (34); The longitudinal movement connecting plate (36) is assembled outside the longitudinal movement screw rod (34), the longitudinal movement hand wheel (31) is suitable for driving the longitudinal movement screw rod (34) to rotate, thereby driving the longitudinal movement connecting plate (36) to move along the axis direction of the longitudinal movement screw rod (34), so as to drive the guide column (51) and the lifting underframe (54) to move integrally.

9. The multi-dimensional adjustable co-extrusion apparatus of claim 8, wherein, The frame (37) comprises a plurality of supporting legs, the transverse movement component (6) comprises a transverse movement driving mechanism, a large bottom plate (64), a transverse movement sliding block (65) corresponding to the supporting legs and a transverse movement sliding rail (66) corresponding to the transverse movement sliding block (65); The transverse movement sliding block (65) is connected with the corresponding supporting leg, the transverse movement sliding rail (66) is fixedly connected to the bottom of the large bottom plate (64), and the transverse movement sliding block (65) is slidably connected to the corresponding transverse movement sliding rail (66); The butt joint plate (61) is connected between the plurality of supporting legs, the transverse movement driving mechanism is connected with the butt joint plate (61) to drive the butt joint plate (61) to move, thereby driving the transverse movement sliding block (65) to move on the transverse movement sliding rail (66).

10. The multi-dimensional adjustable co-extrusion apparatus of claim 9, wherein, The transverse movement driving mechanism comprises a transverse movement screw rod (63) and a transverse movement hand wheel (67), and the large bottom plate (64) is connected with a fixing seat (62); The transverse movement screw rod (63) is rotatably installed on the fixing seat (62), the butt joint plate (61) is assembled outside the transverse movement screw rod (63), and the transverse movement hand wheel (67) is fixedly connected to one end of the transverse movement screw rod (63); The transverse movement hand wheel (67) is suitable for driving the transverse movement screw rod (63) to rotate, thereby driving the butt joint plate (61) to move along the axis direction of the transverse movement screw rod (63).

Citation Information

Patent Citations

  • Adjusting device of co-extruder

    CN210679658U