A polypropylene film finished product detection device
The polypropylene film finished product inspection device, which combines multiple inspection methods, solves the problem of low inspection accuracy in the existing technology, realizes high-precision, multi-scenario tension and stretching inspection, prevents breakage, and improves inspection efficiency.
Patent Information
- Application Number
- CN202510186872.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2045-02-20
AI Technical Summary
The existing polypropylene film tension stretching detection device only relies on the lifting structure to lift from the middle of the lower end of the film, resulting in low detection accuracy and detection data errors.
A variety of testing methods are adopted, including tensile testing mechanisms and pressure testing mechanisms, combining stretching and extrusion methods, using a motor to drive the threaded rod and transmission belt for automatic pulling, combining an erasable marker and a scale plate to record the stretching distance, using an extreme stability mechanism to prevent breakage, using electric heating wire to simulate different environments, and auxiliary mechanisms for fixation.
It improves the accuracy and efficiency of polypropylene film tension stretching detection, prevents breakage, can simulate detection scenarios in different environments, realizes the combination of multiple detection methods, and improves the comprehensiveness and accuracy of detection.
Smart Images

Figure CN119715147B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of detection devices, in particular to a detection device for a finished polypropylene film product. Background Art
[0002] After the finished polypropylene film is produced, the quality of the batch of polypropylene film needs to be tested to prevent substandard polypropylene film from entering the market. Tension stretching testing is particularly important.
[0003] Patent announcement number CN215866115U discloses a tension stretching detection device for polypropylene film production, including a workbench, a clamping structure and a lifting structure. The clamping structure is fixedly connected to both sides of the upper end of the workbench. During testing, the film is first clamped and fixed using the clamping structure, and then the two ends of the clamped film can be stretched synchronously through the synchronous transmission structure to increase the tensioning effect of the film. Subsequently, the film can be lifted upward from the middle of the lower end of the film through the lifting structure. At this time, the film tension coefficient can be obtained in conjunction with the scale line on the detection plate, thereby completing the tension stretching test of the film.
[0004] When the detection device of the above patent performs tension stretching detection on polypropylene film, it only relies on the lifting structure to lift the film upward from the middle of the lower end of the film for detection. Since the force used by the lifting structure to push the middle of the film upward is different from the force used to push other parts of the film upward, if only the middle of the film is pushed upward, the detection accuracy is low and there are errors in the detection data.
[0005] In order to solve the above shortcomings, we have designed a polypropylene film finished product detection device that can use multiple detection methods to perform tension and stretching detection on polypropylene film to improve the detection accuracy. Summary of the Invention
[0006] In order to overcome the shortcomings of the prior art in which only one detection method is used to perform tension and stretching detection on polypropylene films, resulting in low detection accuracy, the present invention provides a polypropylene film finished product detection device that can use multiple detection methods to perform tension and stretching detection on polypropylene films to improve detection accuracy.
[0007] A finished polypropylene film detection device includes a frame, a tensile detection mechanism and a pressure detection mechanism. A polypropylene film is wound on the upper left part of the frame, a tensile detection mechanism is provided on the upper right front side of the frame, and a pressure detection mechanism is provided on the upper rear side of the frame; the pressure detection mechanism includes a limit barrel, a placement rack, a limit rod, a second telescopic rod, a second movable rack, a limit frame, a pin lock, a limit assembly and an observation assembly. The upper rear side of the frame is connected to the limit frame, and the second movable rack is slidably connected in the limit frame. The front side of the upper part of the second movable rack is connected to the second telescopic rod, the front of the second telescopic rod is connected to the limit barrel, the front of the limit barrel is connected to the limit rod, the placement rack is slidably connected to the limit rod, the placement rack and the limit barrel are slidably connected, pin locks are installed on the front and rear sides of the lower part of the second movable rack, the limit barrel is provided with a limit assembly, and the second movable rack is provided with an observation assembly.
[0008] In one embodiment, the stretching detection mechanism includes a motor, a first threaded rod, a transmission belt, a first movable frame, a pressure block and a threaded column. The motor is connected to the upper right front side of the frame, the first threaded rod is connected to the left side of the motor output shaft, the left part of the first threaded rod is rotatably connected to the frame, and the upper rear part of the frame is also rotatably connected to the first threaded rod. A transmission belt is wound between the right parts of the two first threaded rods through a transmission wheel, the first movable frame is threadedly connected between the first threaded rods, the lower part of the first movable frame is slidingly connected to the frame, the front and rear parts of the upper side of the first movable frame are both rotatably connected to the threaded column, the front and rear parts of the upper left side of the frame are also rotatably connected to the threaded column, and a pressure block is threadedly connected between the two vertically aligned threaded columns.
[0009] In one embodiment, the limiting assembly includes a first telescopic rod and a block. The first telescopic rod is connected to the right side of the upper part of the limiting barrel, and the block is connected to the left side of the first telescopic rod. The upper side of the block is against the front lower side of the placement rack.
[0010] In one embodiment, the observation assembly includes a first multi-stage telescopic member, a second multi-stage telescopic member and a first scale plate. The first scale plate is connected to the rear side of the lower right part of the second movable frame, the second multi-stage telescopic member is connected to both the left and right sides of the lower part of the second movable frame, and the first multi-stage telescopic member is connected between the upper sides of the second multi-stage telescopic member.
[0011] In one embodiment, a display mechanism is also included, which includes a fixed rod, an erasable marker, a second scale plate and a blackboard. The second scale plate is connected to the upper left front side of the frame, and the rear side of the second scale plate is connected to the blackboard. The left front side of the right pressure block is connected to the fixed rod, and the left side of the fixed rod is connected to the erasable marker, and the lower side of the erasable marker is in contact with the upper side of the blackboard.
[0012] In one embodiment, it also includes an extreme stability mechanism, which includes a connecting block, a third multi-stage telescopic member, a fourth multi-stage telescopic member, a moving block, a first limit frame, a limit member, a top plate, a compression member, a second limit frame and a support rod. The front side of the upper part of the placement frame is connected to the connecting block, the front side of the connecting block is connected to the third multi-stage telescopic member, the front lower side of the third multi-stage telescopic member is connected to the fourth multi-stage telescopic member, the lower side of the fourth multi-stage telescopic member is connected to the moving block, the lower side of the right rear of the moving block is an inclined surface, and the front and rear parts of the upper left side of the frame are both connected The second limit frame is connected to the second limit frame, the front upper left front side of the front second limit frame is connected to the first limit frame, the first limit frame and the moving block are clamped, the front lower side of the second moving frame is connected to the support rod, the front of the support rod is connected to the compression member, the compression member is located directly below the limit barrel, the compression member has its own linear spring, the upper side of the compression member is connected to the top plate, the upper part of the second limit frame is slidably connected to the limit member, the lower side of the limit member is against the upper side of the top plate, the front upper side of the limit member is tilted toward the lower left, and the front upper side of the limit member and the lower right rear side of the moving block are squeezed together.
[0013] In one embodiment, an environmental simulation mechanism is also included, which includes a fifth multi-stage telescopic member, a support frame, a controller and a heating wire. The upper rear side of the limiting barrel is connected to the support frame, the upper part of the support frame is connected to the fifth multi-stage telescopic member, the lower part of the fifth multi-stage telescopic member is connected to the heating wire, the lower side of the heating wire is connected to the upper rear side of the placement frame, the upper rear side of the limiting barrel is connected to the controller, the controller is electrically connected to the heating wire through an electric wire, and the electric wire slides through the limiting barrel.
[0014] In one embodiment, an auxiliary mechanism is also included, which includes a support member, a pressure plate, a compression spring and a second threaded rod. The second threaded rod is rotatably connected to the upper right side of the frame, and the support member is threadedly connected to the second threaded rod. The lower part of the support member is slidably connected to the frame, and the upper part of the support member is slidably connected to the pressure plate. Compression springs are connected between the front and rear parts of the upper side of the pressure plate and the support member, and the compression springs are all wound around the support member.
[0015] The beneficial effects are as follows: 1. The present invention utilizes a stretching detection mechanism to pull the polypropylene film laterally and detect the tension coefficient of the polypropylene film when it is pulled laterally. At the same time, the placement rack is used to squeeze different positions of the polypropylene film, thereby achieving the purpose of using multiple detection methods to perform tension stretching detection on the polypropylene film, thereby improving the detection accuracy.
[0016] 2. The present invention enables people to intuitively know the stretching distance of the polypropylene film through the cooperation between the erasable marker, the second scale plate and the blackboard, thereby improving the detection efficiency.
[0017] 3. The present invention can prevent the polypropylene film from breaking during the detection process by moving the top plate upward, thereby facilitating tension stretching detection of the polypropylene film.
[0018] 4. The present invention utilizes electric heating wires to heat the placement rack and the counterweight, simulating different detection scenarios and thereby enhancing detection accuracy.
[0019] 5. The present invention can clamp the right part of the polypropylene film through the cooperation between the support member and the pressure plate, helping people to fix the pulled polypropylene film, thereby facilitating people to perform detection work. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention.
[0021] Figure 2 It is a partial three-dimensional structural schematic diagram of the present invention.
[0022] Figure 3 This is a schematic diagram of the first three-dimensional structure of the stretching detection mechanism of the present invention.
[0023] Figure 4 This is a schematic diagram of the second partial three-dimensional structure of the tensile testing mechanism of the present invention.
[0024] Figure 5 It is a schematic diagram of the first three-dimensional structure of the pressure detection mechanism of the present invention.
[0025] Figure 6 It is a schematic diagram of the second three-dimensional structure of the pressure detection mechanism of the present invention.
[0026] Figure 7 This is a schematic diagram of a first cross-sectional three-dimensional structure of the pressure detection mechanism of the present invention.
[0027] Figure 8 It is a schematic diagram of a second cross-sectional three-dimensional structure of the pressure detection mechanism of the present invention.
[0028] Figure 9 It is a partial three-dimensional structural diagram of the pressure detection mechanism of the present invention.
[0029] Figure 10 This is a schematic diagram of the first three-dimensional structure of the display mechanism of the present invention.
[0030] Figure 11 This is a schematic diagram of a second three-dimensional structure of the display mechanism of the present invention.
[0031] Figure 12 This is a schematic diagram of a third three-dimensional structure of the display mechanism of the present invention.
[0032] Figure 13 This is a schematic diagram of the first three-dimensional structure of the ultimate stability mechanism of the present invention.
[0033] Figure 14This is a schematic diagram of the second three-dimensional structure of the ultimate stability mechanism of the present invention.
[0034] Figure 15 This is a schematic diagram of the third three-dimensional structure of the ultimate stability mechanism of the present invention.
[0035] Figure 16 It is a schematic diagram of the three-dimensional structure of the extreme stability mechanism of the present invention.
[0036] Figure 17 This is a schematic diagram of the first three-dimensional structure of the environment simulation mechanism of the present invention.
[0037] Figure 18 This is a schematic diagram of the second three-dimensional structure of the environment simulation mechanism of the present invention.
[0038] Figure 19 This is a schematic diagram of the first three-dimensional structure of the auxiliary mechanism of the present invention.
[0039] Figure 20 This is a schematic diagram of the second three-dimensional structure of the auxiliary mechanism of the present invention.
[0040] Markings in the accompanying drawings: 1_frame, 2_polypropylene film, 3_stretching detection mechanism, 31_motor, 32_first threaded rod, 33_transmission belt, 34_first mobile frame, 35_pressing block, 36_threaded column, 4_pressure detection mechanism, 41_limiting barrel, 42_placing frame, 43_limiting rod, 44_first telescopic rod, 45_block, 46_second telescopic rod, 47_second mobile frame, 48_first multi-stage telescopic member, 49_limiting frame, 410_first scale plate, 411_second multi-stage telescopic member, 412_pin lock, 5_display mechanism, 51_fixed Fixed rod, 52_erasable marker, 53_second scale plate, 54_blackboard, 6_limit stability mechanism, 61_connecting block, 62_third multi-stage telescopic member, 63_fourth multi-stage telescopic member, 64_moving block, 65_first limit frame, 66_limit member, 67_top plate, 68_compression member, 69_second limit frame, 610_support rod, 7_environmental simulation mechanism, 71_fifth multi-stage telescopic member, 72_support frame, 73_controller, 74_heating wire, 8_auxiliary mechanism, 81_support member, 82_pressure plate, 83_compression spring, 84_second threaded rod. DETAILED DESCRIPTION
[0041] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.
[0042] Example 1: A polypropylene film finished product detection device, such as Figure 1 and Figure 2As shown, it includes a frame 1, a tensile detection mechanism 3 and a pressure detection mechanism 4. A polypropylene film 2 is wound on the upper left part of the frame 1, and a tensile detection mechanism 3 is provided on the upper right front side of the frame 1. The tensile detection mechanism 3 can automatically perform tension tensile detection on the polypropylene film 2. A pressure detection mechanism 4 is provided on the upper rear side of the frame 1.
[0043] like Figure 1 、 Figure 3 and Figure 4 As shown, the stretching detection mechanism 3 includes a motor 31, a first threaded rod 32, a transmission belt 33, a first movable frame 34, a pressure block 35 and a threaded column 36. The motor 31 is installed on the upper right front side of the frame 1, and the first threaded rod 32 is connected to the left side of the output shaft of the motor 31. The left part of the first threaded rod 32 is rotatably connected to the frame 1, and the upper rear part of the frame 1 is also rotatably connected to the first threaded rod 32. The transmission belt 33 is wound between the two right parts of the first threaded rods 32 through the transmission wheel, and the first movable frame 34 is threadedly connected between the first threaded rods 32. The lower part of the first movable frame 34 is slidingly connected to the frame 1. The front and rear parts of the upper side of the first movable frame 34 are both rotatably connected to the threaded column 36, and the front and rear parts of the upper left side of the frame 1 are also rotatably connected to the threaded column 36. There are two pressure blocks 35, and the two pressure blocks 35 are respectively threadedly connected between the two vertically aligned threaded columns 36.
[0044] like Figure 1 、 Figure 5 、 Figure 6 、 Figure 7 and Figure 8 As shown, the pressure detection mechanism 4 includes a limit barrel 41, a placement rack 42, a limit rod 43, a first telescopic rod 44, a block 45, a second telescopic rod 46, a second movable rack 47, a limit frame 49, a pin lock 412 and an observation assembly. The limit frame 49 is connected to the upper rear side of the rack 1, and the second movable rack 47 is slidably connected in the limit frame 49. The second telescopic rod 46 is connected to the upper front side of the second movable rack 47. The front of the second telescopic rod 46 is connected to the limit barrel 41, the limit rod 43 is connected to the front of the limit barrel 41, the placement rack 42 is slidably connected to the limit rod 43, the placement rack 42 and the limit barrel 41 are slidably connected, the first telescopic rod 44 is connected to the upper right side of the limit barrel 41, the block 45 is connected to the left side of the first telescopic rod 44, the upper side of the block 45 is against the front and lower side of the placement rack 42, the pin lock 412 is installed on both the front and rear sides of the lower part of the second movable rack 47, and the second movable rack 47 is provided with an observation assembly.
[0045] like Figure 6 、 Figure 7 、 Figure 8 and Figure 9As shown, the observation assembly includes a first multi-stage telescopic member 48, a second multi-stage telescopic member 411 and a first scale plate 410. The first scale plate 410 is connected to the rear side of the lower right part of the second movable frame 47. There are two second multi-stage telescopic members 411. The two second multi-stage telescopic members 411 are respectively installed on the left and right sides of the lower part of the second movable frame 47. The first multi-stage telescopic member 48 is connected between the upper sides of the second multi-stage telescopic member 411.
[0046] When people need to perform tension stretching test on the finished polypropylene film 2, they can use the finished polypropylene film 2 testing device to operate it. First, rotate the threaded column 36, and then drive the pressure block 35 to move upward, and then pull the polypropylene film 2 wound on the upper left part of the frame 1 to the right. At this time, the pulled polypropylene film 2 will pass under the pressure block 35. When the polypropylene film 2 is pulled to the right of the pressure block 35 on the right, stop pulling the polypropylene film 2, and then manually rotate the two threaded columns 36 on the left in the opposite direction to drive the pressure block 35 on the left to move downward, so that the pressure block 35 on the left presses the left part of the pulled polypropylene film 2, and then pull the pulled polypropylene film 2 to a taut state, and then manually rotate the two threaded columns 36 on the right The column 36 rotates in the opposite direction, driving the pressure block 35 on the right to move downward, so that the pressure block 35 on the right presses the right part of the pulled polypropylene film 2, and then the motor 31 is turned on again, so that the output shaft of the motor 31 drives the first threaded rod 32 on the front side to rotate, and then drives the first threaded rod 32 on the rear side to rotate through the transmission belt 33. At this time, the two first threaded rods 32 will drive the first moving frame 34 to drive the pressure block 35 on the right to move to the right, so that the film can be automatically pulled. When the first moving frame 34 moves to the destination to the right, the output shaft of the motor 31 is controlled to stop rotating. Then, people can derive the tension coefficient of the polypropylene film 2 according to the degree of deformation of the film. If the tension coefficient is the standard value, it means that the polypropylene film 2 is qualified. If the tension coefficient is the standard value, it means that the polypropylene film 2 is qualified. If there is a large difference between the number and the standard value, it means that the polypropylene film 2 is unqualified, and then the motor 31 output shaft is controlled to drive the first threaded rod 32 and the transmission belt 33 to rotate in the opposite direction, so that the first threaded rod 32 drives the first movable frame 34 and the pressure block 35 on the right to move to the left, and then drives the pressure block 35 to move upward, so that the pressure block 35 no longer presses the tested polypropylene film 2, and then the tested polypropylene film 2 is cut off, and then the remaining polypropylene film 2 on the upper left of the frame 1 is manually pulled out to the right again, and the pressure block 35 is moved downward to fix the polypropylene film 2 pulled out again, and then the standard weight block is manually added to the limit barrel 41. At this time, the weight block will be located on the upper rear side of the placement frame 42. When the weight block After placement is completed, the block 45 is manually moved to the right, and then the first telescopic rod 44 contracts. When the block 45 moves to the right away from the front lower side of the placement frame 42, the counterweight will press the placement frame 42 downward, and then the placement frame 42 pushes the polypropylene film 2 below downward. At this time, the middle part of the polypropylene film 2 will deform and sink. When the polypropylene film 2 is deformed to the limit and no longer sinks rapidly, in order to avoid the polypropylene film 2 from breaking, people can manually move the placement frame 42 upward, and then remove the counterweight on the placement frame 42, and then manually move the block 45 to the left, so that the block 45 is against the front lower side of the placement frame 42 again, and then the first telescopic rod 44 is stretched, and then manually move the first multi-stage telescopic member 48 downward.Then the second multi-stage telescopic member 411 performs a contraction movement. When the first multi-stage telescopic member 48 moves downward to be flush with the bottom of the polypropylene film 2, the first multi-stage telescopic member 48 stops moving. At this time, people can obtain the distance that the polypropylene film 2 sinks according to the position indicated by the first multi-stage telescopic member 48 on the first scale plate 410. Then people calculate the tension coefficient of the polypropylene film 2 based on the obtained data. After people have recorded the distance that the polypropylene film 2 sinks, they manually move the first multi-stage telescopic member 48 upward, and then the second multi-stage telescopic member 411 performs an extension movement. When people need to squeeze different positions on the polypropylene film 2 during the detection process, they directly adjust the front, back, left and right positions of the limit barrel 41. That is, when people need to adjust the front and rear position of the limit barrel 41, they can directly extend and retract the second telescopic rod 46, so that the front and rear position of the limit barrel 41 can be adjusted. When people need to adjust the left and right position of the limit barrel 41, they can directly manually move the limit barrel 41, the second telescopic rod 46 and the second movable frame 47 left and right. In this way, the left and right position of the limit barrel 41 can be adjusted. When the second movable frame 47 moves to the destination, the pin lock 412 can fix the second movable frame 47, improving the stability of the second movable frame 47 on the limit frame 49. In summary, multiple detection methods can be used to perform tension stretching detection on the finished polypropylene film 2, thereby improving the detection accuracy.
[0047] Example 2: Based on Example 1, Figure 1 、 Figure 10 、 Figure 11 and Figure 12 As shown, a display mechanism 5 is also included, which includes a fixed rod 51, an erasable marker 52, a second scale plate 53 and a blackboard 54. The second scale plate 53 is connected to the upper left front side of the frame 1, and the blackboard 54 is connected to the rear side of the second scale plate 53. The fixed rod 51 is connected to the left front side of the pressure block 35 on the right side, and the erasable marker 52 is connected to the left side of the fixed rod 51. The lower side of the erasable marker 52 is in contact with the upper side of the blackboard 54.
[0048] When people perform tension stretching detection on the polypropylene film 2 by pulling the polypropylene film 2 horizontally, they can use the display mechanism 5 to operate. When the first movable frame 34 moves to the right, the first movable frame 34 will also drive the fixed rod 51 and the erasable marker 52 to move to the right. At this time, the erasable marker 52 will draw a straight line on the blackboard 54. Then, when the first movable frame 34 moves to the destination and stops moving, the fixed rod 51 and the erasable marker 52 will also stop moving. Then, people can obtain the stretching distance of the polypropylene film 2 according to the distance of the straight line drawn by the erasable marker 52, so that they can intuitively obtain the straight line. Knowing the stretching distance of the polypropylene film 2, when the polypropylene film 2 suddenly breaks during the pulling process, immediately control the first movable frame 34, the fixed rod 51 and the erasable marker 52 to stop moving. At this time, people can intuitively know how far the polypropylene film 2 will break after being stretched based on the drawn straight line, which is convenient for people to improve the polypropylene film 2 later. Subsequently, when the first movable frame 34 moves to the left, the first movable frame 34 will also drive the fixed rod 51 and the erasable marker 52 to move to the left, and then erase the straight line drawn on the blackboard 54. In summary, the above can help people know the stretching distance of the polypropylene film 2.
[0049] like Figure 1 、 Figure 13 、 Figure 14 、 Figure 15 and Figure 16 As shown, it also includes an extreme stability mechanism 6, which includes a connecting block 61, a third multi-stage telescopic member 62, a fourth multi-stage telescopic member 63, a moving block 64, a first limit frame 65, a limit member 66, a top plate 67, a compression member 68, a second limit frame 69 and a support rod 610. The connecting block 61 is connected to the front side of the upper part of the placement frame 42, the front side of the connecting block 61 is connected to the third multi-stage telescopic member 62, the fourth multi-stage telescopic member 63 is connected to the front lower side of the third multi-stage telescopic member 62, the moving block 64 is connected to the lower side of the fourth multi-stage telescopic member 63, the lower side of the right rear of the moving block 64 is an inclined surface, and the front and rear parts of the upper left side of the frame 1 are both connected to the second The limiting frame 69, the first limiting frame 65 is connected to the front side of the upper left part of the second limiting frame 69 on the front side, the first limiting frame 65 and the moving block 64 are clamped, the front side of the lower part of the second moving frame 47 is connected to the support rod 610, the compression member 68 is connected to the front of the support rod 610, the compression member 68 is located directly below the limiting barrel 41, the compression member 68 has its own linear spring, the upper side of the compression member 68 is connected to the top plate 67, the limiting member 66 is slidably connected between the upper parts of the second limiting frame 69, the lower side of the limiting member 66 is against the upper side of the top plate 67, the front upper side of the limiting member 66 is tilted toward the lower left, and the front upper side of the limiting member 66 and the lower right rear side of the moving block 64 are squeezed together.
[0050] When the polypropylene film 2 is being tested, the placement rack 42 and the counterweight block squeeze the polypropylene film 2 downward to the target value. In order to prevent the placement rack 42 and the counterweight block from continuing to press the polypropylene film 2 downward and causing the polypropylene film 2 to break, the limit stabilization mechanism 6 can be used. Initially, the linear spring in the compression member 68 is in a compressed state. When the placement rack 42 moves downward, the placement rack 42 also drives the connecting block 61, the third multi-stage telescopic member 62, the fourth multi-stage telescopic member 63 and the moving block 64 to move downward. When the polypropylene film 2 is squeezed downward to the target value, the moving block 64 also contacts the front upper side of the limit member 66. At this time, the moving block 64 will squeeze the limiting member 66 to the right. When the limiting member 66 moves to the right away from the top plate 67, the compression member 68 will extend under the action of the linear spring in the compression member 68, and then drive the top plate 67 to move upward, so that the top plate 67 pushes the placement frame 42 and the counterweight block upward, so as to prevent the polypropylene film 2 from being squeezed and broken. After the top plate 67 pushes the placement frame 42 and the counterweight block upward, people manually move the placement frame 42 upward and fix it, and take out the counterweight block on the placement frame 42. At this time, the placement frame 42 will also drive the connecting block 61, the third multi-stage telescopic member 62, and the fourth multi-stage telescopic member 63. 63 and the moving block 64 move upward, and the moving block 64 no longer squeezes the limit piece 66. After the moving block 64 moves upward and resets, people need to continue to push the placement frame 42 upward. When taking out the counterweight block, the placement frame 42 will continue to drive the connecting block 61 and the third multi-stage telescopic member 62 to move upward, and then the fourth multi-stage telescopic member 63 will extend. When the counterweight block is taken out, the placement frame 42 moves downward. First, hold the moving block 64 by hand, and then when the placement frame 42 drives the connecting block 61 and the third multi-stage telescopic member 62 to move downward, the fourth multi-stage telescopic member 63 will retract. Then, manually move the top plate 67 downward. Then the compression member 68 performs a contraction movement, at which time the linear spring in the compression member 68 is also compressed, and then the limit member 66 is manually moved to the left and reset, so that the limit member 66 is again against the top plate 67, and then people can record the distance that the polypropylene film 2 sinks downward. When people need to adjust the front and rear positions of the limit barrel 41, the limit barrel 41 will also drive the placement rack 42 and the connecting block 61 to move back and forth, and then the third multi-stage telescopic member 62 performs a telescopic movement, which will not affect the front and rear movement of the limit barrel 41. In summary, during the detection process, the polypropylene film 2 can be prevented from being squeezed and broken.
[0051] like Figure 1 、 Figure 17 and Figure 18As shown, it also includes an environmental simulation mechanism 7, which includes a fifth multi-stage telescopic member 71, a support frame 72, a controller 73 and a heating wire 74. The support frame 72 is connected to the upper rear side of the limiting barrel 41, the upper part of the support frame 72 is connected to the fifth multi-stage telescopic member 71, the heating wire 74 is connected to the lower part of the fifth multi-stage telescopic member 71, the lower side of the heating wire 74 is connected to the upper rear side of the placement frame 42, the controller 73 is connected to the upper rear side of the limiting barrel 41, the controller 73 is electrically connected to the heating wire 74 through an electric wire, and the electric wire slides through the limiting barrel 41.
[0052] When people need to detect the tension coefficient of the polypropylene film 2 when used in a high temperature environment, they can use the environmental simulation mechanism 7 to operate. First, turn on the controller 73, and then energize the heating wire 74 through the controller 73, so that the heating wire 74 heats the placement rack 42 and the counterweight block. This can simulate the use of the polypropylene film 2 under high temperature conditions. When the placement rack 42 moves up and down, the placement rack 42 will also drive the lower side of the heating wire 74 to move up and down, and then the fifth multi-stage telescopic member 71 performs a telescopic movement, so that the heating wire 74 can continue to heat the placement rack 42 and the counterweight block. When the detection is completed, the controller 73 can be turned off. In summary, different scenarios can be simulated to detect the polypropylene film 2.
[0053] like Figure 1 、 Figure 19 and Figure 20 As shown, an auxiliary mechanism 8 is also included, which includes a support member 81, a pressure plate 82, a compression spring 83 and a second threaded rod 84. The second threaded rod 84 is rotatably connected to the upper right side of the frame 1, the support member 81 is threadedly connected to the second threaded rod 84, the lower part of the support member 81 is slidingly connected to the frame 1, the pressure plate 82 is slidingly connected to the upper part of the support member 81, and compression springs 83 are connected between the front and rear parts of the upper side of the pressure plate 82 and the support member 81, and the compression springs 83 are all wound around the support member 81.
[0054] When people pull out the polypropylene film 2 wound on the upper left part of the frame 1 to the right, the auxiliary mechanism 8 can be used to help people fix the pulled out polypropylene film 2. First, manually pull the pressure plate 82 upwards, and the compression spring 83 is compressed. Then people can pull the polypropylene film 2 wound on the upper left part of the frame 1 to the right, and pass the pulled out polypropylene film 2 through the lower side of the pressure plate 82. After people press the left part of the pulled out polypropylene film 2 and pull the polypropylene film 2 to be taut, release the pressure plate 82. Under the action of the compression spring 83, the pressure plate 82 will move downward to press the right part of the polypropylene film 2. Then people manually turn the threaded column 36 on the right to drive The pressure block 35 on the right side is moved downward to press the right part of the polypropylene film 2. When the pressure block 35 on the right side presses the right part of the polypropylene film 2, the pressure plate 82 is manually pulled upward, and then the second threaded rod 84 is manually rotated to drive the second threaded rod 84 to drive the support member 81 and the pressure plate 82 to move to the right, so that the pressure plate 82 moves to the right away from the polypropylene film 2. When the pressure plate 82 moves to the right away from the polypropylene film 2, people can release the pressure plate 82. When the detection is completed, people manually rotate the second threaded rod 84 in the opposite direction so that the second threaded rod 84 drives the support member 81 and the pressure plate 82 to move to the left. In summary, it can help people fix the pulled out polypropylene film 2.
[0055] The above description is merely an example of the present invention and is not intended to limit the present invention. Any equivalent substitutions made within the principles of the present invention are intended to be included within the scope of protection of the present invention. Any content not elaborated in detail herein is already known to those skilled in the art.
Claims
1. A polypropylene film finished product detection device, comprising a frame (1), characterized in that: The invention also includes a tensile testing mechanism (3) and a pressure testing mechanism (4), wherein a polypropylene film (2) is wound on the upper left portion of the frame (1), a tensile testing mechanism (3) is provided on the upper right front portion of the frame (1), and a pressure testing mechanism (4) is provided on the upper rear portion of the frame (1); the pressure testing mechanism (4) includes a limiting barrel (41), a placement frame (42), a limiting rod (43), a second telescopic rod (46), a second movable frame (47), a limiting frame (49), a pin lock (412), a limiting assembly and an observation assembly, wherein the upper rear portion of the frame (1) is connected to the limiting frame (49), the limiting rod (43) is provided on the upper rear portion of the frame (1), and the limiting rod (43) is provided on the upper rear portion of the frame (1). A second movable frame (47) is slidably connected in the frame (49), a second telescopic rod (46) is connected to the front side of the upper portion of the second movable frame (47), a front portion of the second telescopic rod (46) is connected to a limiting barrel (41), a front portion of the limiting barrel (41) is connected to a limiting rod (43), a placement frame (42) is slidably connected to the limiting rod (43), the placement frame (42) and the limiting barrel (41) are slidably connected, a pin lock (412) is installed on both the front and rear sides of the lower portion of the second movable frame (47), a limiting assembly is provided on the limiting barrel (41), and an observation assembly is provided on the second movable frame (47); The stretching detection mechanism (3) includes a motor (31), a first threaded rod (32), a transmission belt (33), a first movable frame (34), a pressure block (35) and a threaded column (36). The upper right front portion of the frame (1) is connected to the motor (31), the left side of the output shaft of the motor (31) is connected to the first threaded rod (32), the left side of the first threaded rod (32) is rotatably connected to the frame (1), and the upper rear portion of the frame (1) is also rotatably connected to the first threaded rod (32). The two first threaded rods A transmission belt (33) is wound around the right part of the first threaded rod (32), a first movable frame (34) is threadedly connected between the first threaded rod (32), the lower part of the first movable frame (34) is slidably connected to the frame (1), the front and rear parts of the upper side of the first movable frame (34) are both rotatably connected to the threaded column (36), the front and rear parts of the upper left side of the frame (1) are also rotatably connected to the threaded column (36), and a pressure block (35) is threadedly connected between the two vertically aligned threaded columns (36); The limit stabilization mechanism (6) further comprises a connecting block (61), a third multi-stage telescopic member (62), a fourth multi-stage telescopic member (63), a moving block (64), a first limiting frame (65), a limiting member (66), a top plate (67), a compression member (68), a second limiting frame (69) and a support rod (610). The upper front side of the placement frame (42) is connected to the connecting block (61), the front side of the connecting block (61) is connected to the third multi-stage telescopic member (62), the front lower side of the third multi-stage telescopic member (62) is connected to the fourth multi-stage telescopic member (63), the lower side of the fourth multi-stage telescopic member (63) is connected to the moving block (64), the lower side of the right rear portion of the moving block (64) is an inclined surface, and the front and rear portions of the upper left side of the frame (1) are both connected to the second limiting member. The first limiting frame (65) is connected to the front side of the upper left portion of the second limiting frame (69) on the front side. The first limiting frame (65) and the moving block (64) are connected. The front side of the lower portion of the second moving frame (47) is connected to the support rod (610). The front portion of the support rod (610) is connected to the compression member (68). The compression member (68) is located directly below the limiting barrel (41). The compression member (68) has a linear spring. The upper side of the compression member (68) is connected to the top plate (67). The upper portion of the second limiting frame (69) is slidably connected to the limiting member (66). The lower side of the limiting member (66) abuts against the upper side of the top plate (67). The upper front side of the limiting member (66) is tilted toward the lower left. The upper front side of the limiting member (66) and the lower right rear side of the moving block (64) are squeezed together.
2. A polypropylene film finished product detection device according to claim 1, characterized in that: The limiting assembly includes a first telescopic rod (44) and a clamping block (45). The right side of the upper portion of the limiting barrel (41) is connected to the first telescopic rod (44), and the left side of the first telescopic rod (44) is connected to the clamping block (45). The upper side of the clamping block (45) abuts against the front lower side of the placement rack (42).
3. A polypropylene film finished product detection device as claimed in claim 2, characterized in that: The observation assembly includes a first multi-stage telescopic member (48), a second multi-stage telescopic member (411) and a first scale plate (410); the first scale plate (410) is connected to the rear side of the lower right portion of the second movable frame (47); the second multi-stage telescopic member (411) is connected to both left and right sides of the lower portion of the second movable frame (47); and the first multi-stage telescopic member (48) is connected between the upper sides of the second multi-stage telescopic member (411).
4. A polypropylene film finished product detection device as claimed in claim 3, characterized in that: The display mechanism (5) is also included. The display mechanism (5) includes a fixed rod (51), an erasable marker (52), a second scale plate (53) and a blackboard (54). The upper left front side of the frame (1) is connected to the second scale plate (53), the rear side of the second scale plate (53) is connected to the blackboard (54), the left front side of the pressing block (35) on the right side is connected to the fixed rod (51), the left side of the fixed rod (51) is connected to the erasable marker (52), and the lower side of the erasable marker (52) is in contact with the upper side of the blackboard (54).
5. A polypropylene film finished product detection device as claimed in claim 4, characterized in that: The invention also includes an environmental simulation mechanism (7), which includes a fifth multi-stage telescopic member (71), a support frame (72), a controller (73) and a heating wire (74). The upper rear side of the limiting barrel (41) is connected to the support frame (72), the upper part of the support frame (72) is connected to the fifth multi-stage telescopic member (71), the lower part of the fifth multi-stage telescopic member (71) is connected to the heating wire (74), the lower side of the heating wire (74) is connected to the upper rear side of the placement frame (42), the upper rear side of the limiting barrel (41) is connected to the controller (73), the controller (73) is electrically connected to the heating wire (74) through an electric wire, and the electric wire slides through the limiting barrel (41).
6. A polypropylene film finished product detection device according to claim 5, characterized in that: The auxiliary mechanism (8) further comprises a support member (81), a pressure plate (82), a compression spring (83) and a second threaded rod (84). The upper right side of the frame (1) is rotatably connected to the second threaded rod (84). The upper second threaded rod (84) is threadedly connected to the support member (81). The lower portion of the support member (81) is slidably connected to the frame (1). The upper portion of the support member (81) is slidably connected to the pressure plate (82). Compression springs (83) are connected between the front and rear portions of the upper side of the pressure plate (82) and the support member (81). The compression springs (83) are all wound around the support member (81).
Citation Information
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