Production equipment for cutting and packaging aluminum bars
The aluminum rod cutting and packaging production equipment, which integrates multi-point clamping, cutting and packaging mechanisms, solves the problem of time-consuming and labor-intensive separate cutting and packaging of aluminum rods in the existing technology, realizes automated cutting and packaging, and improves production efficiency and stacking stability.
Patent Information
- Application Number
- CN202423291836.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-12-31
AI Technical Summary
In the current aluminum rod production process, cutting and packaging need to be carried out separately, which is time-consuming and labor-intensive. Furthermore, manual stacking is required after cutting, which is inefficient.
An aluminum rod cutting and packaging production equipment was designed, which integrates a multi-point clamping mechanism, a cutting component, a linkage packaging mechanism, and an opposing displacement mechanism to realize the automatic alignment, cutting, and packaging of aluminum rods. The multi-point clamping mechanism provides stable clamping, the cutting component performs cutting, and the linkage packaging mechanism automatically aligns and packages, reducing manual operation.
The automated cutting and packaging of aluminum bars has been achieved, improving production efficiency, reducing manual operation, and ensuring the stability of stacking and packaging.
Smart Images

Figure CN223559958U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to aluminum bar production technical field, and specifically relates to aluminum bar cutting and packing production equipment. BACKGROUND
[0002] Aluminum bar is the bar -shaped article made of pure aluminum, and is often used in industry, building and manufacturing fields. It has the characteristics of light weight, corrosion resistance and good heat conduction performance, and is widely used in making parts, structural support and circuit wire, and needs cutting and packing processing devices in the process of aluminum bar production and processing.
[0003] The existing aluminum bar processing production operation is cutting and packing of the bar material, which belongs to two production processes and steps, that is, cutting needs to use a cutting device, and packing needs to use a packing device, which belong to front and rear processes. Personnel need to stack the finished aluminum bar on the packing device for packing operation after each cutting, which is time -consuming and labor -intensive. Therefore, the aluminum bar cutting and packing production equipment is designed. UTILITY MODEL CONTENTS
[0004] (1) technical problem to be solved
[0005] In view of the defects of the prior art, the purpose of the utility model is to provide aluminum bar cutting and packing production equipment, which aims to solve the problem that the cutting and packing of the bar material in the prior art belong to two production processes and steps, that is, cutting needs to use a cutting device, and packing needs to use a packing device, which belong to front and rear processes. Personnel need to stack the finished aluminum bar on the packing device for packing operation after each cutting, which is time -consuming and labor -intensive.
[0006] (2) technical scheme
[0007] In order to solve the above technical problem, the utility model provides such aluminum bar cutting and packing production equipment, which comprises a mounting frame, the top end of the mounting frame is fixedly provided with a guide plate, and the tail end of the guide plate is connected with a packing table, a multi -point clamping mechanism is installed in the inside of the mounting frame, and a preset groove is arranged on the top of the mounting frame, a cutting assembly is installed on the top end of the mounting frame, and first electric push rods are installed on the two sides of the rear of the top end of the mounting frame, a counter displacement mechanism is arranged below the packing table on one side of the mounting frame, a linkage packing mechanism is installed in the inside of the mounting frame and on the two sides and above the counter displacement mechanism, the linkage packing mechanism comprises a double -sided alignment assembly, and the double -sided alignment assembly is installed in the inside of the mounting frame and on the two sides, the counter displacement mechanism comprises two third screw sleeves, and the upper side of the two third screw sleeves is fixedly provided with an upper mounting frame, and a packing assembly is installed on the inner side of the upper mounting frame.
[0008] Further, the double-side alignment assembly comprises a first motor, and the first motor is installed on one side of the mounting frame, the output end of the first motor is connected with a transmission rod, the end of the transmission rod is fixedly provided with a first bevel gear, one side of the first bevel gear is engaged with a second bevel gear, the middle of the second bevel gear is fixedly provided with a positive and negative screw rod, the middle of the positive and negative screw rod is screw-connected with a fourth screw rod sleeve, the inner side of the two fourth screw rod sleeves is fixedly provided with a connecting plate, and the two sides of the mounting frame are fixedly provided with third guide rods for guiding the connecting plate.
[0009] Further, the packing assembly comprises an inner mounting frame, and the inner mounting frame is fixedly provided on the inner side of the upper mounting frame, the inner mounting frame is internally installed with a fourth transmission screw rod, one end of the fourth transmission screw rod is connected and installed with a third hydraulic motor, the side of the fourth transmission screw rod is screw-connected with a fifth screw rod sleeve, one side of the fifth screw rod sleeve is fixedly provided with a sliding block, the inner end of the inner mounting frame is fixedly provided with a sliding frame for guiding the sliding block, the other side of the fifth screw rod sleeve is fixedly provided with a connecting frame, the inner part of the connecting frame is internally installed with a fourth hydraulic motor, the output end of the fourth hydraulic motor is connected with a connecting rod, the end of the connecting rod is peripherally installed with an adhesive tape cylinder, one end side of the connecting rod is fixedly provided with a mounting block, the inner side of the mounting block is installed with a second electric push rod, and the top of the second electric push rod is installed with a cutting knife.
[0010] Further, the multi-point clamping mechanism comprises a fixed block, and the fixed block is fixedly provided in the inner part of the mounting frame, the bottom of the fixed block is installed on one side with a first hydraulic motor, the output end of the first hydraulic motor is connected with a first transmission screw rod, the side of the first transmission screw rod is screw-connected with a first screw rod sleeve, the inner side of the first screw rod sleeve is fixedly provided with a connecting guide frame, the inner part of the mounting frame is fixedly provided on one side with a first guide rod for guiding the connecting guide frame, the inner part of the connecting guide frame is installed with a first double-head hydraulic motor, the two ends of the first double-head hydraulic motor are connected with second transmission screw rods, the side of the two second transmission screw rods is screw-connected with second screw rod sleeves, the lower part of the two second screw rod sleeves is fixedly provided with guide blocks, and the upper part of the two second screw rod sleeves is fixedly provided with a clamping frame.
[0011] Further, the guide block and the connecting guide frame are movably and guideedly connected.
[0012] Further, the opposite displacement mechanism comprises a base frame, and the base frame is arranged below the packing table, the middle of the inner part of one side of the base frame is installed with a second double-head hydraulic motor, the two output ends of the second double-head hydraulic motor are connected with third transmission screw rods, the side of each of the two third transmission screw rods is screw-connected with a third screw rod sleeve, the inner side of the two third screw rod sleeves is fixedly provided with a connecting frame, and the inner part of the other side of the base frame is fixedly provided with a second guide rod.
[0013] Further, the second guide rod and the connecting frame are movably and guideedly connected.
[0014] (3) Beneficial effects
[0015] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0016] This invention addresses the issue that aluminum rods, after processing, may have uneven exposed lengths on both sides as they enter the packing table along the guide plate. To prevent this, the operator can activate the first motor to rotate the transmission rod and the first bevel gear. At this time, the second bevel gear, meshing with the first bevel gear, will rotate the forward and reverse lead screws. Consequently, the fourth lead screw sleeves, screwed onto both sides of the forward and reverse lead screws, will move relative to each other, along with the fixed connecting plates and guided by the third guide rod. This effectively aligns the two sides of the aluminum rods. After alignment, the two connecting plates are returned to their original positions. Then, the opposing displacement mechanism's drive structure can move the two opposing upper frames... When the aluminum bars are moved to both ends of the stack, the operator starts the third hydraulic motor to rotate the fourth transmission screw. At this time, the fifth screw sleeve, which interacts with the screw, will lift the connecting frame, slider, and guide frame until the end of the fourth hydraulic motor inside the connecting frame is aligned with the center point of the stacked aluminum bars. Then, the fourth hydraulic motor is started to rotate the connecting rod and the tape tube. The starting end of the tape tube needs to be attached to the side of one of the aluminum bars by the operator. This simultaneously achieves the wrapping and packaging operation on both sides of the stacked aluminum bars. When the wrapping reaches the appropriate thickness, the second electric push rod pushes the cutter to cut the tape on the tape tube.
[0017] In this invention, the operator first places the aluminum rod to be cut in the middle of multiple pairs of clamping frames. Then, the position of the aluminum rod to be cut is adjusted so that the point is below the cutting blade of the cutting component. The operator starts the first double-headed hydraulic motor to rotate the second transmission screws at both ends. At this time, the second screw sleeve, which interacts with the two screws, can stably clamp the aluminum rod with the upper fixed clamping frame and the lower fixed guide block and connecting guide frame. The cutting component can then be started to cut the aluminum rod. After cutting, the first hydraulic motor can be started to rotate the first transmission screw. At this time, the first screw sleeve, which interacts with the screw, can lower the connecting guide frame with the first guide rod, thereby lowering the multiple pairs of clamping frames and retracting them into the mounting frame. In this state, the first electric push rod is started to push the processed aluminum rod to the guide plate area and move it to the packing table along the guide. This process is repeated. Since the packing area of the packing table is inverted trapezoidal, multiple processed aluminum rods will eventually be stacked in an inverted trapezoidal shape in the packing area, improving the overall stability of stacking and subsequent packing.
[0018] When the operator starts the second double-headed hydraulic motor, the third transmission screw connected to its two ends rotates. The third screw sleeve, which interacts with the two screws, moves in alignment with its fixed mounting frame and the upper mounting frame, guided by the second guide rod, thus providing convenience for subsequent packaging operations. Attached Figure Description
[0019] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0020] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0021] Figure 2 This is a side view of the internal structure of the mounting bracket;
[0022] Figure 3 This is a top view of the internal structure of the opposing displacement mechanism;
[0023] Figure 4 This is a schematic diagram showing the detailed structure of the packaged components;
[0024] Figure 5 This is a side view of the mounting block structure.
[0025] The labels in the attached diagram are as follows: 1. Mounting frame; 2. Guide plate; 3. Packing table; 4. Multi-point clamping mechanism; 41. Fixing block; 42. First hydraulic motor; 43. First transmission screw; 44. First screw sleeve; 45. Connecting guide frame; 46. First guide rod; 47. First double-headed hydraulic motor; 48. Second transmission screw; 49. Second screw sleeve; 410. Guide block; 411. Clamping frame; 5. Preset groove; 6. Cutting assembly; 7. First electric push rod; 8. Opposing displacement mechanism; 81. Base frame; 82. Second double-headed hydraulic motor; 83. Third transmission screw; 84. Third screw sleeve; 85. Connecting frame; 86. Second guide rod; 9. Linkage clamp. Packaging mechanism; 91. Double-sided alignment assembly; 911. First motor; 912. Transmission rod; 913. First bevel gear; 914. Second bevel gear; 915. Positive and negative lead screws; 916. Fourth lead screw sleeve; 917. Connecting plate; 918. Third guide rod; 92. Upper frame; 93. Packaging assembly; 931. Inner frame; 932. Fourth transmission lead screw; 933. Third hydraulic motor; 934. Fifth lead screw sleeve; 935. Slider; 936. Carriage; 937. Connecting frame; 938. Fourth hydraulic motor; 939. Connecting rod; 9310. Tape tube; 9311. Mounting block; 9312. Second electric push rod; 9313. Cutting knife. Detailed Implementation
[0026] Clearly, the described embodiments are only a 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 of ordinary skill in the art without creative labor fall within the scope of protection of the present application.
[0027] The specific embodiment is an aluminum bar cutting and packaging production equipment, and a structural schematic diagram thereof is as shown in Figures 1 to 4As shown, it comprises a mounting frame 1, the top end of the mounting frame 1 is fixedly provided with a guide plate 2, and the end of the guide plate 2 is connected with a packing table 3, the inside of the mounting frame 1 is provided with a multi-point clamping mechanism 4, and the upper side of the mounting frame 1 is provided with a preset groove 5, the top end of the mounting frame 1 is provided with a cutting assembly 6, and the two sides of the rear of the top end of the mounting frame 1 are provided with a first electric push rod 7, the lower side of the packing table 3 on one side of the mounting frame 1 is provided with an opposite displacement mechanism 8, the inside of the mounting frame 1 and the two sides thereof and the upper side of the opposite displacement mechanism 8 are provided with a linkage packing mechanism 9, the multi-point clamping mechanism 4 comprises a fixed block 41, and the fixed block 41 is fixedly arranged in the inside of the mounting frame 1, the bottom side of the fixed block 41 is provided with a first hydraulic motor 42, and the output end of the first hydraulic motor 42 is connected with a first transmission screw rod 43, the side of the first transmission screw rod 43 is peripherally provided with a first screw rod sliding sleeve 44, and the inside of the first screw rod sliding sleeve 44 is fixedly provided with a continuous mounting guide frame 45, the inside of the mounting frame 1 is fixedly provided with a first guide rod 46 for guiding the continuous mounting guide frame 45, the inside of the continuous mounting guide frame 45 is provided with a first double-head hydraulic motor 47, and the two ends of the first double-head hydraulic motor 47 are connected with a second transmission screw rod 48, the side of the two second transmission screw rods 48 is peripherally provided with a second screw rod sliding sleeve 49, and the lower side of the two second screw rod sliding sleeves 49 is fixedly provided with a guide block 410, and the upper side of the two second screw rod sliding sleeves 49 is fixedly provided with a clamping frame 411, and the guide block 410 and the continuous mounting guide frame 45 are movably connected, the staff places the aluminum bar to be cut in the middle of the multiple pairs of clamping frames 411 in advance, then adjusts the cutting position of the aluminum bar to be cut so that the point position can be below the cutting blade of the cutting assembly 6, the staff starts the first double-head hydraulic motor 47 to make the two ends of the second transmission screw rod 48 rotate, at this moment, the second screw rod sliding sleeve 49 acting on the two screw rods can stably clamp the aluminum bar with the activity of the continuous mounting guide frame 45 cooperating with the guide block 410 fixedly arranged above and the clamping frame 411 fixedly arranged below, thereby starting the cutting assembly 6 to cut, when the cutting is completed, the first hydraulic motor 42 is started to make the first transmission screw rod 43 rotate, at this moment, the first screw rod sliding sleeve 44 acting on the screw rod can cooperate with the first guide rod 46 to guide the descent, so as to make the multiple pairs of clamping frames 411 descend and retract into the inside of the mounting frame 1, in this state, the first electric push rod 7 is started to push the processed aluminum bar to the guide plate 2 area and move along the guide to the packing table 3, and so on, since the packing area of the packing table 3 is inverted trapezoidal, therefore, the multiple processed aluminum bars will finally be stacked in inverted trapezoidal in the packing area, improving the overall stability of stacking and subsequent packing.
[0028] The opposite displacement mechanism 8 comprises a base frame 81, which is arranged below the packing table 3, a second double-head hydraulic motor 82 is mounted at the middle of the inner side of the base frame 81, two output ends of the second double-head hydraulic motor 82 are connected with third transmission lead screws 83, third lead screw sleeves 84 are screwed on the respective sides of the two third transmission lead screws 83, the inner sides of the two third lead screw sleeves 84 are fixedly provided with a connecting frame 85, the other side of the inner side of the base frame 81 is fixedly provided with a second guide rod 86, the second guide rod 86 and the connecting frame 85 are movably and guidingly connected, and personnel start the second double-head hydraulic motor 82 to make the two ends of the third transmission lead screws 83 connected with the second double-head hydraulic motor 82 rotate, so that the third lead screw sleeves 84 acting on the two lead screws will take the respective fixedly provided connecting frames 85 and the upper mounting frame 92 cooperating with the second guide rod 86 to guide the displacement, thereby providing convenience for the subsequent packing operation.
[0029] Furthermore, the linkage packaging mechanism 9 comprises a double alignment assembly 91 which is installed inside and on both sides of the mounting rack 1, the double alignment assembly 91 comprises a first motor 911 which is installed on one side of the mounting rack 1, the output end of the first motor 911 is connected with a transmission rod 912, the end of the transmission rod 912 is fixedly provided with a first bevel gear 913, one side of the first bevel gear 913 is engaged with a second bevel gear 914, the middle of the second bevel gear 914 is fixedly provided with a reversible lead screw 915, the middle of the reversible lead screw 915 is screw-connected with fourth lead screw sleeves 916 on both sides, the inner sides of the fourth lead screw sleeves 916 are fixedly provided with a connecting plate 917, the two sides of the mounting rack 1 are fixedly provided with third guide rods 918 which are used for guiding the movement of the connecting plate 917, the opposite displacement mechanism 8 comprises two third lead screw sleeves 84, the upper sides of the third lead screw sleeves 84 are fixedly provided with an upper mounting rack 92, the inner side of the upper mounting rack 92 is mounted with a packaging assembly 93, the packaging assembly 93 comprises an inner mounting rack 931 which is fixedly provided on the inner side of the upper mounting rack 92, the inner side of the inner mounting rack 931 is mounted with a fourth transmission lead screw 932, one end of the fourth transmission lead screw 932 is connected and mounted with a third hydraulic motor 933, the side of the fourth transmission lead screw 932 is screw-connected with a fifth lead screw sleeve 934, one side of the fifth lead screw sleeve 934 is fixedly provided with a sliding block 935, the inner end of the inner mounting rack 931 is fixedly provided with a sliding rack 936 which is used for guiding the movement of the sliding block 935, the other side of the fifth lead screw sleeve 934 is fixedly provided with a connecting rack 937, the inner side of the connecting rack 937 is mounted with a fourth hydraulic motor 938, the output end of the fourth hydraulic motor 938 is connected with a connecting rod 939, the end of the connecting rod 939 is mounted with an adhesive tape cylinder 9310, one end side of the connecting rod 939 is fixedly provided with a mounting block 9311, the inner side of the mounting block 9311 is mounted with a second electric push rod 9312, the top of the second electric push rod 9312 is mounted with a cutter 9313, since the aluminum bars which enter the packaging table 3 along the guide plate 2 after the machining may have different lengths on both sides, in order to avoid this situation, personnel can start the first motor 911 to drive the transmission rod 912 and the first bevel gear 913 to rotate, at this time, the second bevel gear 914 which is engaged with the first bevel gear 913 drives the reversible lead screw 915 to rotate, thus the fourth lead screw sleeves 916 which are screw-connected on both sides of the reversible lead screw 915 drive the connecting plate 917 to move relatively in cooperation with the third guide rods 918, in this way, the two sides of the above-mentioned aluminum bars are effectively aligned, after the alignment is completed, the two connecting plates 917 are controlled to return to the original position, at this moment, the driving structure of the opposite displacement mechanism 8 can drive the two opposite upper mounting racks 92 to move relatively to the two end sides of the aluminum bars in the stacking, in this state, personnel start the third hydraulic motor 933 to drive the fourth transmission lead screw 932 to rotate, at this time, the fifth lead screw sleeve 934 which is in action with the fourth transmission lead screw 932 drives the connecting rack 937 to move upward in cooperation with the sliding block 935 and the sliding rack 936, until the end of the fourth hydraulic motor 938 in the connecting rack 937 is aligned with the center point of the aluminum bars in the stacking,At this time, the fourth hydraulic motor 938 is started to rotate the connecting rod 939 and the rubber belt cylinder 9310, wherein the starting end of the rubber belt cylinder 9310 needs to be adhered to one side of the aluminum bar, thereby synchronously achieving the sleeve winding and packaging operation on both sides of the aluminum bar in the stack. When the sleeve winding reaches the appropriate thickness, the second electric push rod 9312 pushes the cutter 9313 to cut off the rubber belt of the rubber belt cylinder 9310.
[0030] Working principle: the workers pre-arranged to be cut aluminum bar placed in multiple pairs of clamping frame 411 in the middle, and then adjust its aluminum bar to be cut position so that the point can be under the cutting piece of cutting assembly 6, personnel start the first double head hydraulic motor 47 to make both ends of the second transmission screw rod 48 rotate, at this moment, the second screw sleeve 49 which is in action with the two screw rods can bring the upper fixed clamping frame 411 to cooperate with the lower fixed guide block 410 and the continuous guide frame 45 to carry out stable clamping work on the aluminum bar, thus the cutting assembly 6 can be started to cut it, when cutting is completed, the first hydraulic motor 42 can be started to make the first transmission screw rod 43 rotate, at this moment, the first screw sleeve 44 which is in action with the screw rod can bring the continuous guide frame 45 to guide downward with the first guide rod 46, so as to bring the multiple pairs of clamping frame 411 to descend and retract to the inside of the mounting frame 1, in this state, the first electric push rod 7 is started to push the finished aluminum bar to the guide plate 2 area and move along the guide to the packing table 3, and so on. Because the packing area of the packing table 3 is inverted trapezoidal, the finished aluminum bars will finally be stacked in inverted trapezoidal shape in the packing area, improving the overall stability of stacking and subsequent packing. Secondly, because the finished aluminum bar may have different lengths on both sides after entering the packing table 3 along the guide plate 2, personnel can start the first motor 911 to make the transmission rod 912 and the first bevel gear 913 rotate, at this moment, the second bevel gear 914 which is in mesh with the gear will bring the positive and negative screw rod 915 to rotate, thus the fourth screw sleeve 916 which is arranged on both sides of the positive and negative screw rod 915 will bring the fixed connecting plate 917 to guide relative displacement with the third guide rod 918, so as to effectively align the two sides of the above-mentioned multiple aluminum bars. After alignment, control the two connecting plates 917 to return to the original position, at this moment, the driving structure of the opposite displacement mechanism 8 can bring the two opposite upper frames 92 to move relatively to the both ends of the aluminum bar in the stack. In this state, personnel start the third hydraulic motor 933 to make the fourth transmission screw rod 932 rotate, at this moment, the fifth screw sleeve 934 which is in action with the screw rod will bring the continuous frame 937 to guide upward with the sliding block 935 and the sliding frame 936, until the end of the fourth hydraulic motor 938 in the continuous frame 937 is aligned with the center point of the aluminum bar in the stack, at this moment, the fourth hydraulic motor 938 is started to make the continuous rod 939 and the adhesive tape cylinder 9310 rotate, wherein the starting end of the adhesive tape cylinder 9310 needs to be adhered to one side of the aluminum bar, thus synchronously achieving the wrapping and packing work on both sides of the aluminum bar in the stack. When the wrapping reaches the appropriate thickness, the second electric push rod 9312 pushes the cutter 9313 to cut the adhesive tape of the adhesive tape cylinder 9310.
[0031] All the technical features in the embodiment can be freely combined according to actual needs.
[0032] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and is not intended to limit the present application, although the foregoing embodiments of the present application has been described in detail, for the skilled in the art, it still can be modified, or for 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 within the scope of the present application.
Claims
1. A production plant for the cutting and packaging of aluminium bars, comprising a mounting frame (1), characterised in that, The top end side of the mounting frame (1) is provided with a guide plate (2), and the tail end of the guide plate (2) is connected with a packing table (3), the inside of the mounting frame (1) is provided with a multi-point clamping mechanism (4), and the upper side of the mounting frame (1) is provided with a preset groove (5), the top end side of the mounting frame (1) is provided with a cutting assembly (6), and the two sides of the rear of the top end of the mounting frame (1) are provided with a first electric push rod (7), the lower side of the packing table (3) on one side of the mounting frame (1) is provided with an opposite displacement mechanism (8), the inside of the mounting frame (1) and the two sides and the upper side of the opposite displacement mechanism (8) are provided with a linkage packing mechanism (9), the linkage packing mechanism (9) comprises a double-side alignment assembly (91), and the double-side alignment assembly (91) is installed in the inside and the two sides of the mounting frame (1), the opposite displacement mechanism (8) comprises two third screw sleeves (84), and the upper side of the two third screw sleeves (84) is fixedly provided with an upper mounting frame (92), and the inner side of the upper mounting frame (92) is provided with a packing assembly (93).
2. The production apparatus of an aluminum bar cutting and packing according to claim 1, wherein, The double-side alignment assembly (91) comprises a first motor (911), and the first motor (911) is installed on one side of the mounting frame (1), the output end of the first motor (911) is connected with a transmission rod (912), and the end of the transmission rod (912) is fixedly provided with a first bevel gear (913), one side of the first bevel gear (913) is engaged with a second bevel gear (914), the middle of the second bevel gear (914) is fixedly provided with a positive and negative screw rod (915), the middle of the positive and negative screw rod (915) is screw-connected with a fourth screw sleeve (916), and the inner side of the two fourth screw sleeves (916) is fixedly provided with a connecting plate (917), and the two sides of the mounting frame (1) are fixedly provided with a third guide rod (918) for the movement of the connecting plate (917).
3. The production apparatus of an aluminum bar cutting and packing according to claim 2, characterized by, The packing assembly (93) comprises an inner mounting frame (931), and the inner mounting frame (931) is fixedly provided on the inner side of the upper mounting frame (92), the inside of the inner mounting frame (931) is provided with a fourth transmission screw rod (932), one end of the fourth transmission screw rod (932) is connected with a third hydraulic motor (933), the periphery of one side of the fourth transmission screw rod (932) is screw-connected with a fifth screw sleeve (934), one side of the fifth screw sleeve (934) is fixedly provided with a sliding block (935), the inner end of the inner mounting frame (931) is fixedly provided with a sliding frame (936) for guiding the sliding block (935), the other side of the fifth screw sleeve (934) is fixedly provided with a connecting frame (937), the inside of the connecting frame (937) is provided with a fourth hydraulic motor (938), the output end of the fourth hydraulic motor (938) is connected with a connecting rod (939), the tail end of the connecting rod (939) is provided with an adhesive tape cylinder (9310), one end side of the connecting rod (939) is fixedly provided with a mounting block (9311), the inner side of the mounting block (9311) is provided with a second electric push rod (9312), and the top of the second electric push rod (9312) is provided with a cutter (9313).
4. The production apparatus of an aluminum bar cutting and packing according to claim 3, wherein Said multi-point clamping mechanism (4) comprises a fixed block (41), which is fixedly arranged in the installation rack (1), the bottom side of the fixed block (41) is provided with a first hydraulic motor (42), the output end of the first hydraulic motor (42) is connected with a first transmission screw rod (43), the side of the first transmission screw rod (43) is screw-connected with a first screw rod sliding sleeve (44), the inner side of the first screw rod sliding sleeve (44) is fixedly arranged with a connecting guide frame (45), the inner side of the installation rack (1) is fixedly arranged with a first guide rod (46) for guiding the connecting guide frame (45), the inner side of the connecting guide frame (45) is arranged with a first double-head hydraulic motor (47) at the middle section, the two ends of the first double-head hydraulic motor (47) are connected with a second transmission screw rod (48), the side of the two second transmission screw rods (48) is screw-connected with a second screw rod sliding sleeve (49), the lower side of the two second screw rod sliding sleeves (49) is fixedly arranged with a guide block (410), and the upper side of the two second screw rod sliding sleeves (49) is fixedly arranged with a clamping frame (411).
5. The production apparatus of an aluminum bar cutting and packing according to claim 4, wherein The guide block (410) and the connecting guide frame (45) are movably and guidingly connected.
6. The production apparatus of an aluminum bar cutting and packing according to claim 1, wherein, Said opposite displacement mechanism (8) comprises a base frame (81), which is arranged below the packaging table (3), the middle part of the inner side of the base frame (81) is arranged with a second double-head hydraulic motor (82), the two output ends of the second double-head hydraulic motor (82) are connected with a third transmission screw rod (83), the side of each of the two third transmission screw rods (83) is screw-connected with a third screw rod sliding sleeve (84), the inner side of the two third screw rod sliding sleeves (84) is fixedly arranged with a connecting frame (85), and the other side of the inner side of the base frame (81) is fixedly arranged with a second guide rod (86).
7. The production apparatus of an aluminum bar cutting and packing according to claim 6, wherein The second guide rod (86) and the connecting frame (85) are movably and guidingly connected.