Aluminum foil tensile strength testing device

By integrating a cleaning mechanism into the tensile strength testing device, the fixture is automatically cleaned using a motor-driven cleaning wheel and a water spray system. This solves the problem of grease and dust accumulation in the fixture, achieves automated cleaning, and improves testing efficiency and data accuracy.

CN224216430UActive Publication Date: 2026-05-08ZHENGZHOU RONG ALUMINIUM ALUMINUM CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHENGZHOU RONG ALUMINIUM ALUMINUM CO LTD
Filing Date
2025-04-21
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

During use, existing tensile strength testing devices are prone to accumulating grease and dust inside the fixture, causing the aluminum foil to slip, affecting the test data, and requiring frequent manual cleaning, which is time-consuming and labor-intensive.

Method used

An aluminum foil tensile strength testing device was designed, which integrates a cleaning mechanism. The cleaning wheel driven by a motor and a water spray system automatically clean the inside of the fixture. Combined with an electric telescopic rod and a transmission belt, it achieves all-round cleaning and reduces manual intervention.

Benefits of technology

It achieves automated fixture cleaning, reduces the frequency of manual cleaning, improves inspection efficiency and data accuracy, and meets users' needs for saving time and effort.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224216430U_ABST
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Abstract

The utility model provides an aluminum foil tensile strength testing device which comprises a bottom plate, a detection mechanism arranged at the top of the bottom plate, a pushing mechanism arranged at the top of the bottom plate, a moving mechanism arranged at the top of the pushing mechanism, a cleaning mechanism arranged on the moving mechanism, and a sliding groove formed in the rear side of the middle of the bottom plate and provided with an upward opening. A sliding groove is formed in the bottom plate, a sliding block is arranged in the sliding groove, a lead screw penetrating through the sliding block is further arranged in the sliding groove, a first rotating motor connected with the lead screw is arranged on the rear side of the bottom plate, and the first rotating motor is connected with the lead screw through a coupler. According to the tensile strength testing device for the aluminum foil, the basic requirement for testing the aluminum foil can be met, the interior of the clamping mechanism can be cleaned through the cleaning mechanism, workers are prevented from frequently cleaning the interior of clamping equipment, time and labor are saved, and the using requirement of people is met.
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Description

Technical Field

[0001] This utility model belongs to the technical field of tensile strength testing equipment, and specifically relates to an aluminum foil tensile strength testing device. Background Technology

[0002] Existing tensile strength testing devices require operators to place the material to be tested inside the clamping mechanism. The clamping mechanism is then moved via a moving mechanism to perform a tensile test. However, after prolonged use, the clamping mechanism accumulates grease and dust. If not cleaned promptly, the aluminum foil will slip under the influence of this grease and dust, affecting the device's test data. Operators must then use cleaning tools to clean the inside of the clamp to prevent slippage during testing. The aforementioned methods, requiring frequent cleaning, are time-consuming and labor-intensive, failing to meet user needs. Therefore, a new aluminum foil tensile strength testing device is proposed. Utility Model Content

[0003] In view of this, this utility model addresses the shortcomings of the existing technology by providing an aluminum foil tensile strength testing device. It not only meets the basic requirements for testing aluminum foil, but also cleans the inside of the clamping mechanism through a cleaning mechanism, avoiding frequent cleaning of the clamping equipment by staff, saving time and effort, and meeting people's usage needs.

[0004] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows: an aluminum foil tensile strength testing device, including a base plate, a testing mechanism on the top of the base plate, a pushing mechanism on the top of the base plate, a moving mechanism on the top of the pushing mechanism, and a cleaning mechanism on the moving mechanism. The pushing mechanism includes a slide groove with its opening facing upwards on the rear side of the middle of the base plate, a slider inside the slide groove, and a lead screw passing through the slider inside the slide groove. A first rotary motor connected to the lead screw is located on the rear side of the base plate, and the first rotary motor and the lead screw are connected by a coupling. The moving mechanism includes a horizontal plate on the top of the slider, and multiple [unclear - possibly referring to a specific feature or feature] are located on the top of the horizontal plate. The electric telescopic poles are connected by a fixed plate at their top. A slide rail is located in the middle of the fixed plate. A rotating shaft is located at the front right side of the fixed plate, and a synchronous pulley is located in front of the rotating shaft. A rotating shaft is located on the left side of the fixed plate, and a synchronous pulley is located in front of the rotating shaft. A transmission belt is connected between the synchronous pulleys. A second rotary motor connected to the rotating shaft is located at the rear of the fixed plate. The second rotary motor is connected to the lead screw via a coupling. A slide body is located inside the slide rail. A moving block connected to the transmission belt is located in front of the slide body, and a receiving plate connected to the slide body is located at the rear of the slide body.

[0005] As a further improvement of this utility model, the cleaning mechanism includes a cleaning cylinder rotatably mounted on the receiving plate and passing through the slide and the moving block. A cleaning wheel is provided on the front side of the cleaning cylinder, and a water spray pipe is provided inside the cleaning cylinder. A water spray head is provided on the front side of the water spray pipe, and water spray holes are provided on the upper and lower sides of the water spray head. A U-shaped plate connected to the water spray pipe is provided on the rear side of the receiving plate. A rotating seat connected to the cleaning cylinder is provided on the water spray pipe. A driving mechanism is provided on the rear side of the receiving plate and on the cleaning cylinder. The detection mechanism includes two support plates provided on the top of the base plate, a guide rail provided between the two support plates, a support plate passing through the guide rail on the top of the base plate, a clamp first provided on the inner end of the support plate, a support column provided on the top of the base plate, a detection box provided on the top of the support column, a clamp second provided on the left side of the detection box, and a display screen provided in the middle of the top of the base plate.

[0006] As a further improvement of this utility model, the driving mechanism includes a gear one disposed on the rear side of the cleaning cylinder, a U-shaped frame disposed on the rear side of the receiving plate, a rotating shaft rotatably disposed on the inner end of the U-shaped frame, a gear two disposed on the rotating shaft that meshes with the gear one, a third rotary motor disposed on the rear side of the U-shaped frame and connected to the rotating shaft, the third rotary motor and the rotating shaft being connected by a coupling, a switch disposed on the top right side of the base plate, the switch being electrically connected to the first rotary motor and the second rotary motor, support legs disposed at the four corners of the bottom of the base plate, and anti-slip pads disposed at the bottom of the four support legs respectively.

[0007] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0008] Firstly, this design includes a first rotary motor. The rotation of the first rotary motor drives a lead screw, which in turn moves a slider within a groove, causing the cleaning wheel to move forward. This brings the cleaning wheel closer to chuck one and chuck two. At this point, the operator activates an electric telescopic rod, which moves the cleaning wheel up and down, facilitating cleaning of the upper and lower parts of chuck one and chuck two. Then, the operator activates a second rotary motor, which drives a rotating shaft one, which in turn drives a timing pulley one. The drive belt moves, causing the synchronous pulley two to move. Simultaneously, the drive belt moves the moving block, causing the sliding body connected to the moving block to move inside the slide rail. This, in turn, moves the cleaning wheel left and right, facilitating cleaning of the inside of chucks one and two. At the same time, the operator starts the third rotary motor. The rotation of the third rotary motor drives the rotating shaft, which in turn drives gear two, which in turn drives the cleaning cylinder. This, in turn, causes the cleaning cylinder to drive the cleaning wheel, effectively cleaning the inside of chucks one and two.

[0009] Secondly, this design includes a water spray pipe with a spray head at the front. The two spray heads contain cleaning fluid, and the combination of the cleaning fluid and the cleaning wheel can effectively clean the oil stains and dust inside the first and second chucks.

[0010] Thirdly, this design includes two chucks, which can effectively hold the experimental material. The design also includes a guide rail, which allows chuck one to move and thus apply tension to the material.

[0011] Fourth, this design includes a testing box with a clamp on the left side, which allows for effective testing of the tensile strength of the material. Attached Figure Description

[0012] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0013] Figure 1 This is a schematic diagram of the structure of this utility model;

[0014] Figure 2 This is a schematic diagram of the axial side structure of this utility model;

[0015] Figure 3 This is a partially enlarged structural diagram of point A of this utility model;

[0016] Figure 4 This is a partially enlarged structural diagram of section B of this utility model;

[0017] Figure 5 This is a partially enlarged structural diagram of point C in this utility model.

[0018] In the diagram: 101, base plate; 102, slide rail; 103, slider; 104, lead screw; 105, first rotary motor; 106, cross plate; 107, electric telescopic rod; 108, fixed plate; 109, slide rail; 110, synchronous pulley one; 111, synchronous pulley two; 112, transmission belt; 113, second rotary motor; 114, sliding body; 115, moving block; 116, receiving plate; 117, cleaning cylinder; 118. Water spray pipe; 119. Rotary seat; 120. Water spray head; 201. Cleaning wheel; 202. U-shaped plate; 203. Gear one; 204. Gear two; 205. U-shaped frame; 206. Third rotary motor; 207. Support plate; 208. Guide rail; 209. Support plate; 210. Clamp one; 211. Support column; 212. Detection box; 213. Clamp two; 214. Display screen; 215. Switch. Detailed Implementation

[0019] To better understand this utility model, the following embodiments further illustrate its content, but the scope of protection of this utility model is not limited to the embodiments described below. Numerous specific details are set forth in the following description to provide a more thorough understanding of this utility model. However, it will be apparent to those skilled in the art that this utility model can be practiced without one or more of these details.

[0020] like Figure 1 , 2 As shown, an aluminum foil tensile strength testing device includes a base plate 101. A testing mechanism is disposed on the top of the base plate 101, a pushing mechanism is disposed on the top of the base plate 101, a moving mechanism is disposed on the top of the pushing mechanism, and a cleaning mechanism is disposed on the moving mechanism. The pushing mechanism includes a slide groove 102 disposed in the middle of the base plate 101 with its opening facing upward. A slider 103 is disposed inside the slide groove 102, and a lead screw 104 passing through the slider 103 is also disposed inside the slide groove 102. A first rotary motor 105 connected to the lead screw 104 is disposed on the rear side of the base plate 101. The rotary motor 105 is connected to the lead screw 104 via a coupling. The detection mechanism includes two support plates 207 set on the top of the base plate 101, a guide rail 208 is set between the two support plates 207, a support plate 209 passing through the guide rail 208 is set on the top of the base plate 101, a chuck 210 is set on the inner end of the support plate 209, a support column 211 is also set on the top of the base plate 101, a detection box 212 is set on the top of the support column 211, a chuck 213 is set on the left side of the detection box 212, and a display screen 214 is set in the middle of the top of the base plate 101.

[0021] like Figure 1 , 2 As shown in Figures 3 and 4, the moving mechanism includes a horizontal plate 106 mounted on top of the slider 103. Multiple electric telescopic rods 107 are mounted on the top of the horizontal plate 106. A fixed plate 108 is mounted on the top of the multiple electric telescopic rods 107. A slide rail 109 is mounted in the middle of the fixed plate 108. A rotating shaft 1 is mounted on the front right side of the fixed plate 108. A synchronous pulley 110 is mounted on the front side of the rotating shaft 1. A rotating shaft 2 is mounted on the left side of the fixed plate 108. A synchronous pulley 2 111 is mounted on the front side of the rotating shaft 2. A transmission belt 112 is mounted between the synchronous pulley 110 and the synchronous pulley 2 111. A second rotary motor 113, connected to the rotating shaft 1, is mounted on the rear side of the fixed plate 108. The second rotary motor 113 is connected to the lead screw 104 via a coupling. The slide rail 109... The cleaning mechanism includes a sliding body 114, a moving block 115 connected to a transmission belt 112 on the front side of the sliding body 114, and a receiving plate 116 connected to the sliding body 114 on the rear side of the sliding body 114. The cleaning mechanism includes a cleaning cylinder 117 rotatably mounted on the receiving plate 116 and passing through the sliding body 114 and the moving block 115. A cleaning wheel 201 is mounted on the front side of the cleaning cylinder 117. A water spray pipe 118 is mounted inside the cleaning cylinder. A water spray head 120 is mounted on the front side of the water spray pipe 118. Water spray holes are provided on the upper and lower sides of the water spray head 120. A U-shaped plate 202 connected to the water spray pipe 118 is mounted on the rear side of the receiving plate 116. A rotating seat 119 connected to the cleaning cylinder 117 is mounted on the water spray pipe 118. A drive mechanism is mounted on the rear side of the receiving plate 116 and on the cleaning cylinder 117.

[0022] like Figure 1 , 2 As shown in Figure 5, the drive mechanism includes a gear 203 located on the rear side of the cleaning cylinder 117. A U-shaped frame 205 is also located on the rear side of the receiving plate 116. A rotating shaft is rotatably mounted on the inner end of the U-shaped frame 205. A gear 204 meshing with the gear 203 is mounted on the rotating shaft. A third rotary motor 206 connected to the rotating shaft is located on the rear side of the U-shaped frame 205. The third rotary motor 206 is connected to the rotating shaft via a coupling. A switch 215 is located on the top right side of the base plate 101. The switch 215 is electrically connected to the first rotary motor 105 and the second rotary motor 113. Support legs are located at the four corners of the bottom of the base plate 101, and anti-slip pads are located on the bottom of the four support legs.

[0023] How to use this utility model:

[0024] When using the equipment, the operator connects the water supply device to the spray pipe 118, and then starts the first rotary motor 105. The rotation of the first rotary motor 105 drives the lead screw 104 to rotate, which in turn drives the slider 103 to move inside the slide groove 102, thereby driving the cleaning wheel 201 forward. This causes the cleaning wheel 201 to approach the first chuck 210 and the second chuck 213. During this forward movement, water inside the spray pipe 118 is sprayed through the spray head 1. The coating is sprayed outwards to coat the upper and lower surfaces of chuck 210 and chuck 213. At the same time, the third rotary motor 206 is started. The rotation of the third rotary motor 206 drives the rotating shaft to rotate, which in turn drives the gear 204 to rotate. The rotation of the gear 204 drives the cleaning cylinder 117 to rotate, which in turn drives the cleaning wheel 201 to rotate, thereby cleaning the upper and lower surfaces of chuck 210 and chuck 213 after they have been coated.

[0025] At this point, the operator starts the electric telescopic rod 107. The extension and retraction of the electric telescopic rod 107 causes the cleaning wheel 201 to move up and down, thus facilitating the cleaning of the upper and lower parts of the first chuck 210 and the second chuck 213. The operator then starts the second rotary motor 113. The rotation of the second rotary motor 113 drives the first rotary shaft to rotate, which in turn drives the first synchronous pulley 110 to rotate. The rotation of the first synchronous pulley 110 drives the transmission belt 112 to move, which in turn drives the second synchronous pulley 111 to move. At the same time, the movement of the transmission belt 112 drives the moving block 115 to move, thus causing the slide body 114 connected to the moving block 115 to move inside the slide rail 109. This causes the cleaning wheel 201 to move left and right, thus facilitating the sequential cleaning of the inside of the first chuck 210 and the second chuck 213.

[0026] After cleaning, the water supply mechanism stops supplying water to the inside of the spray pipe 118 and drives the cleaning wheel 201 to move backward. At this time, the staff takes the material and clamps it inside the first clamp 210 and the second clamp 213. Then, the support plate 209 is pushed to move on the guide rail 208, thereby providing tension to the material. At this time, the test box 212 causes the display screen 214 to display the experimental data.

[0027] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of this utility model and are not intended to limit it. Any other modifications or equivalent substitutions made by those skilled in the art to the technical solution of this utility model, as long as they do not depart from the spirit and scope of the technical solution of this utility model, should be covered within the scope of the claims of this utility model.

Claims

1. A device for testing the tensile strength of aluminum foil, comprising a base plate (101), characterized in that: The top of the base plate (101) is provided with a detection mechanism, the top of the base plate (101) is provided with a pushing mechanism, the top of the pushing mechanism is provided with a moving mechanism, the moving mechanism is provided with a cleaning mechanism, the pushing mechanism includes a slide groove (102) located on the rear side of the middle of the base plate (101) with the opening facing upward, a slider (103) is provided inside the slide groove (102), a lead screw (104) passing through the slider (103) is also provided inside the slide groove (102), and a first rotary motor (105) connected to the lead screw (104) is provided on the rear side of the base plate (101).

2. The aluminum foil tensile strength testing device as described in claim 1, characterized in that: The moving mechanism includes a horizontal plate (106) disposed on the top of the slider (103), a plurality of electric telescopic rods (107) disposed on the top of the horizontal plate (106), a fixed plate (108) disposed on the top of the plurality of electric telescopic rods (107), a slide rail (109) disposed in the middle of the fixed plate (108), a first rotating shaft disposed on the front right side of the fixed plate (108), a first synchronous pulley (110) disposed on the front side of the first rotating shaft, a second rotating shaft disposed on the left side of the fixed plate (108), and a second rotating shaft disposed on the front side of the second rotating shaft. A second synchronous pulley (111) is provided, and a transmission belt (112) is provided between the first synchronous pulley (110) and the second synchronous pulley (111). A second rotary motor (113) connected to the first rotary shaft is provided on the rear side of the fixed plate (108). A slide body (114) is provided inside the slide rail (109). A moving block (115) connected to the transmission belt (112) is provided on the front side of the slide body (114), and a receiving plate (116) connected to the slide body (114) is provided on the rear side of the slide body (114).

3. The aluminum foil tensile strength testing device as described in claim 2, characterized in that: The cleaning mechanism includes a cleaning cylinder (117) rotatably mounted on a receiving plate (116) and passing through a slide body (114) and a moving block (115). A cleaning wheel (201) is provided on the front side of the cleaning cylinder (117). A water spray pipe (118) is provided inside the cleaning cylinder. A water spray head (120) is provided on the front side of the water spray pipe (118). Water spray holes are provided on the upper and lower sides of the water spray head (120). A U-shaped plate (202) connected to the water spray pipe (118) is provided on the rear side of the receiving plate (116). A rotating seat (119) connected to the cleaning cylinder (117) is provided on the water spray pipe (118). A driving mechanism is provided on the rear side of the receiving plate (116) and on the cleaning cylinder (117).

4. The aluminum foil tensile strength testing device as described in claim 3, characterized in that: The drive mechanism includes a gear 1 (203) located on the rear side of the cleaning cylinder (117), a U-shaped frame (205) located on the rear side of the receiving plate (116), a rotating shaft rotatably located on the inner end of the U-shaped frame (205), a gear 2 (204) meshing with the gear 1 (203) located on the rotating shaft, and a third rotary motor (206) connected to the rotating shaft located on the rear side of the U-shaped frame (205).

5. The aluminum foil tensile strength testing device as described in claim 4, characterized in that: The detection mechanism includes two support plates (207) set on the top of the base plate (101), a guide rail (208) between the two support plates (207), a support plate (209) passing through the guide rail (208) on the top of the base plate (101), a clamp (210) on the inner end of the support plate (209), a support column (211) on the top of the base plate (101), a detection box (212) on the top of the support column (211), a clamp (213) on the left side of the detection box (212), and a display screen (214) in the middle of the top of the base plate (101).

6. The aluminum foil tensile strength testing device as described in claim 5, characterized in that: A switch (215) is provided on the top right side of the base plate (101).

7. The aluminum foil tensile strength testing device as described in claim 6, characterized in that: The bottom of the base plate (101) is provided with support legs at the four corners, and the bottom of the four support legs is provided with anti-slip pads.