Synthetic resin tile tensile strength detection device
The design of the lifting and clamping components solves the problem of inconvenient fixation of synthetic resin tiles during testing, achieving a stable connection and improving the accuracy and stability of testing.
Patent Information
- Application Number
- CN202520387410.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-07
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-03-07
AI Technical Summary
When using existing synthetic resin tile tensile strength testing devices, the shape of the synthetic resin tile is arc-shaped, which makes it inconvenient to fix it in a linear movement state, affecting the accuracy of the test.
The system employs lifting and clamping components, including hydraulic cylinders, mounting plates, and molds. By adapting the mold to the shape of the synthetic resin tile, it achieves a stable fixation, ensuring that it does not slip during the testing process.
This improves the stability of synthetic resin tiles, ensuring no slippage occurs during testing and enhancing the accuracy and stability of the tests.
Smart Images

Figure CN223883337U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to synthetic resin tile technical field, concretely relates to a synthetic resin tile tensile strength detection device. BACKGROUND
[0002] Synthetic resin tile is a new type of building material developed by using high -new chemical chemical industry technology, has light weight, big strength, waterproof and moistureproof, anticorrosive flame -retardant, sound insulation and heat insulation and so on Many excellent characteristics, universally applicable to the development zone flat slope, farm market, shopping mall, residential area, new rural construction resident high grade villa, rain awning, sunshade, pseudo -classical architecture etc.
[0003] The Chinese patent document with the authorized announcement number discloses a synthetic resin tile tensile strength detection device, including support mechanism, detection mechanism and display, the support mechanism includes base, support rod and top plate, the support rod fixedly connected in the upper surface of base, the top plate fixedly connected in the upper end of support rod, the detection mechanism includes electric push rod, moving plate, fixed plate, first arc plate, second arc plate, third arc plate, fourth arc plate, first top tight bolt and second top tight bolt, the electric push rod fixed mounting in the lower surface of top plate, the electric push rod fixed mounting has sensor, the moving plate fixedly connected in the lower end of electric push rod, the first arc plate and second arc plate are fixedly connected in the lower surface of moving plate, the first arc plate with second arc plate gap cooperation, the fixed plate fixedly connected in the upper surface of base, the third arc plate and fourth arc plate are fixedly connected in the upper surface of fixed plate, the third arc plate with fourth arc plate gap cooperation, the first top tight bolt is screw mounted on second arc plate, the second top tight bolt is screw mounted on fourth arc plate, the display fixed mounting on base, the display with sensor signal connection.
[0004] But, the above scheme is when using, it is with synthetic resin tile is placed between third arc plate and fourth arc plate, and by controlling electric push rod elongation, push moving plate and move down, make the upper part of synthetic resin tile is between first arc plate and second arc plate, because the shape of synthetic resin tile is arc, in straight line movement state, synthetic resin tile moves to first arc plate and second arc plate between relatively inconvenient, and lead to synthetic resin tile fixed relatively inconvenient. Utility model content
[0005] The utility model aims at the problems in the background art, and proposes a synthetic resin tile tensile strength detection device.
[0006] The technical scheme of the utility model: a synthetic resin tile tensile strength detection device, including workbench, lifting assembly, clamping assembly and sensor,
[0007] The lifting assembly is installed at the top end of the workbench and extends to the inside of the bottom end of the workbench;
[0008] The sensor is installed at the top end of the workbench and directly below the middle part of the lifting assembly;
[0009] The number of clamping assemblies is two, and the two clamping assemblies are respectively installed at the top end of the sensor and the inside of the lifting assembly, and the middle parts of the two clamping assemblies are respectively provided with molds for being connected with the synthetic resin tiles in the use state.
[0010] Preferably, the clamping assembly comprises a hydraulic cylinder, a mounting plate and a mounting block;
[0011] The mounting plate is installed on the sensor or the lifting assembly;
[0012] The number of hydraulic cylinders is two, and the two hydraulic cylinders are symmetrically installed at the top end of the mounting plate according to the center of the mounting plate;
[0013] The mounting block is installed at the end of the hydraulic cylinder and connected with the mold, and the bottom end is slidably connected with the mounting plate, and the mounting block is arranged one-to-one with the hydraulic cylinder.
[0014] Preferably, the mold comprises a male mold and a female mold;
[0015] The male mold and the female mold are respectively installed at the end of one mounting block and oppositely arranged, and the end parts of the male mold and the female mold are arranged in size matching.
[0016] Preferably, the side surface of the male mold and the female mold is provided with a connecting block, and the side surface of the mounting block is provided with a mounting groove with a horizontal moving path, and in the matching installation state of the male mold and the female mold and the mounting block, the connecting block is matched and accommodated in the mounting groove.
[0017] Preferably, the top end of the mounting block is provided with a bolt, and the bottom end of the bolt penetrates through the mounting block and extends to the inside of the mounting groove and is connected with the connecting block.
[0018] Preferably, the top end of the mounting plate is provided with a sliding groove along the length direction of the mounting plate, and the two ends of the sliding groove are through, and the bottom end of the mounting block is provided with a sliding block, and in the matching installation state of the mounting block and the sliding block, the sliding block is matched and accommodated in the sliding groove.
[0019] Preferably, one end of the mold is provided with a plurality of connecting grooves, and the inside of the connecting groove is embeddedly installed with an anti-skid strip.
[0020] Preferably, the lifting assembly comprises a mounting shell, a lead screw, a connecting rod, a transmission member and a motor;
[0021] The mounting shell is installed at the top end of the workbench;
[0022] The number of the lead screws is two, the two lead screws are respectively rotatably installed inside two sides of the mounting shell, and the bottom ends extend to the inside of the workbench;
[0023] The connecting rod is slidably installed in the middle of the mounting shell and is sleeved with the outside of the lead screws at two ends;
[0024] The transmission member is installed at the end of the two lead screws and is located inside the workbench;
[0025] The motor is installed inside the workbench and is connected with the lead screw through the shaft coupling.
[0026] Compared with the prior art, the above technical scheme of the utility model has the following beneficial technical effects:
[0027] The utility model discloses a kind of clamping components for driving mould and synthetic resin tile connection and fixing respectively, make the installation of synthetic resin tile more convenient, and through mould and synthetic resin tile shape adaptation, make mould and synthetic resin tile two sides adhere to connect, improve the stability of synthetic resin tile, ensure that no slip condition is generated in detection process, improve the accuracy of detection. BRIEF DESCRIPTION OF DRAWINGS
[0028] Figure 1 It is the perspective view of an embodiment of the utility model.
[0029] Figure 2 It is the structure section view schematic diagram of the lifting assembly in an embodiment of the utility model.
[0030] Figure 3 It is the structure explosion schematic diagram of the clamping component in an embodiment of the utility model.
[0031] Reference signs: 1, workbench;2, lifting assembly;21, mounting shell;22, lead screw;23, connecting rod;24, transmission member;25, motor;3, clamping component;31, hydraulic cylinder;32, sliding groove;33, mounting plate;34, sliding block;35, mounting block;36, mounting groove;37, bolt;4, sensor;5, mould;51, punch;52, connecting groove;53, antiskid strip;54, recess;55, connecting block. DETAILED DESCRIPTION
[0032] Embodiment one
[0033] As Figures 1-3 Indicated, the utility model discloses a kind of synthetic resin tile tensile strength detection device, including workbench 1, lifting assembly 2, clamping component 3 and sensor 4;
[0034] Lifting assembly 2 is installed at the top end of workbench 1 and extends to the inside of the bottom end of workbench 1;
[0035] The sensor 4 is installed at the top end of the workbench 1 and directly below the middle of the lifting assembly 2, and is connected with external display equipment wires for displaying the tensile force data when detecting, which is only schematic in the prior art figure;
[0036] The number of the clamping assemblies 3 is two, and the two clamping assemblies 3 are respectively installed at the top end of the sensor 4 and the inner side of the lifting assembly 2, and the middle of the two clamping assemblies 3 is provided with a mold 5 for being connected with the synthetic resin tile in a fit manner in the use state.
[0037] In the embodiment, the lifting assembly 2 is installed at the top end of the sensor 4 and the middle of the lifting assembly 2, and the inner side of the two clamping assemblies 3 is installed with the mold 5 matched with the shape of the synthetic resin tile, the synthetic resin tile is placed on the clamping assembly 3 at the top end of the sensor 4 when detecting, the clamping assembly 3 drives the mold 5 to move and be connected with the synthetic resin tile in a fit manner, the clamping assembly 3 drives the mold 5 to clamp and fix the bottom end of the synthetic resin tile, the position of the synthetic resin tile is limited, the other clamping assembly 3 is driven by the lifting assembly 2 to move to the top of the synthetic resin tile, the other clamping assembly 3 drives the mold 5 to be connected with the top side of the synthetic resin tile in a fit manner, the two ends of the synthetic resin tile are respectively fixedly connected with the clamping assemblies 3, the installation and fixation of the synthetic resin tile are convenient, one clamping assembly 3 is driven by the lifting assembly 2 to move upwards, the synthetic resin tile is subjected to the tensile force between the two clamping assemblies 3, the tensile force is conducted to the sensor 4, the sensor 4 detects the tensile force, and the tensile force data is displayed through the connection between the sensor 4 and external display equipment.
[0038] Embodiment two
[0039] As shown in Figure 3 The synthetic resin tile tensile strength detection device, compared with the embodiment one, the difference is that the clamping assembly 3 comprises a hydraulic cylinder 31, an installation plate 33 and an installation block 35.
[0040] The installation plate 33 is installed on the sensor 4 or the lifting assembly 2.
[0041] The number of the hydraulic cylinders 31 is two, and the two hydraulic cylinders 31 are symmetrically installed at the top end of the installation plate 33 according to the center of the installation plate 33.
[0042] The installation block 35 is installed at the end of the hydraulic cylinder 31 and connected with the mold 5, and the bottom end is slidably connected with the installation plate 33, and the installation block 35 is arranged in one-to-one correspondence with the hydraulic cylinder 31.
[0043] In the embodiment, the installation block 35 is driven by the hydraulic cylinder 31 to move to the middle part of the installation plate 33, the installation block 35 drives the mold 5 to extrude the synthetic resin tile, the synthetic resin tile is fixed between the two installation blocks 35 through pressure, the fixing of the synthetic resin tile is convenient, and the detection accuracy is improved.
[0044] Example three
[0045] As Figure 3 shown, the utility model provides a kind of synthetic resin tile tensile strength detection device, and compared with embodiment one, the difference lies in, mold 5 includes punch 51 and recessed die 54;
[0046] Punch 51 and recessed die 54 are respectively installed at the end of an installation block 35, and are oppositely arranged, and the end size of punch 51 and recessed die 54 is matched and arranged with the size of synthetic resin tile, for being connected with synthetic resin tile in use.
[0047] In an alternative embodiment, the side surface of punch 51 and recessed die 54 is provided with connecting block 55, and the side surface of installation block 35 is provided with installation slot 36 with horizontal moving path, in the matched installation state of punch 51 and recessed die 54 and installation block 35, connecting block 55 is matched and accommodated in installation slot 36, for replacing the shape of punch 51 and recessed die 54 in use, so that it adapts to synthetic resin tile of different shapes.
[0048] In an alternative embodiment, one end of mold 5 is provided with a plurality of connecting grooves 52, and anti-skid strips 53 are embedded and installed on the inner side of connecting grooves 52.
[0049] In the embodiment, punch 51 and recessed die 54 are respectively installed at the end of an installation block 35, and the end size of punch 51 and recessed die 54 is matched and arranged with the size of synthetic resin tile, so that the end of punch 51 and recessed die 54 is connected with synthetic resin tile, the contact area of punch 51 and recessed die 54 with synthetic resin tile is increased, the stability of synthetic resin tile is improved, and at the same time, anti-skid strips 53 are embedded and installed on the inner side of connecting grooves 52, the connection stability between synthetic resin tile and punch 51 and recessed die 54 is improved, the fixing of synthetic resin tile is more firm during detection, so that the tensile strength detection result is more accurate.
[0050] Example four
[0051] As Figure 3 shown, the utility model provides a kind of synthetic resin tile tensile strength detection device, and compared with embodiment two, the difference lies in, the top of installation block 35 is provided with bolt 37, the bottom end of bolt 37 penetrates installation block 35 and extends to the inner side of installation slot 36 and is connected with connecting block 55.
[0052] In an optional embodiment, a sliding groove 32 is arranged in the middle of the top end of the mounting plate 33 along the length direction of the mounting plate 33, both ends of the sliding groove 32 are through, and the bottom end of the mounting block 35 is provided with a sliding block 34, in the cooperating and mounting state of the mounting block 35 and the sliding block 34, the sliding block 34 is cooperatively accommodated in the sliding groove 32.
[0053] In the embodiment, the bolt 37 is arranged at the top end of the mounting block 35, the bolt 37 extends to the inside of the mounting groove 36 through the mounting block 35, the connecting block 55 is fixed to the inside of the mounting groove 36, the sliding and falling of the connecting block 55 in the mounting groove 36 is avoided, the cooperation of the sliding block 34 and the sliding groove 32 limits the position of the mounting block 35, and the damage of the hydraulic cylinder 31 caused by the upward movement of the mounting block 35 under the action of the tension during the tension detection is avoided.
[0054] Embodiment five
[0055] As shown in Figure 2 The utility model discloses a synthetic resin tile tensile strength detection device, compared with embodiment one, the difference of the embodiment lies in that the lifting assembly 2 includes installation shell, 21 screw rod 22, connecting rod 23, transmission part 24 and motor 25.
[0056] The installation shell 21 is installed at the top end of the workbench 1.
[0057] The number of screw rods 22 is two, and the two screw rods 22 are rotatably installed inside the two sides of the installation shell 21, and the bottom ends extend to the inside of the workbench 1.
[0058] The connecting rod 23 is slidably installed at the middle of the installation shell 21 and has both ends sleeved outside the screw rods 22.
[0059] The transmission part 24 is installed at the end of the two screw rods 22 and is located inside the workbench 1.
[0060] The motor 25 is installed inside the workbench 1 and is connected with the screw rod 22 through a shaft coupling.
[0061] In the embodiment, the motor 25 drives one screw rod 22 to rotate, and the transmission of the transmission part 24 synchronously drives the two screw rods 22 to rotate inside the installation shell 21, the screw rod 22 drives the connecting rod 23 to move horizontally up and down in the middle of the installation shell 21, the connecting rod 23 drives the position of the clamping assembly 3 to be adjusted, and the synthetic resin tile is subjected to the tension detection work.
[0062] The utility model discloses a synthetic resin tile is placed on the mounting plate 33 of sensor 4 top, makes hydraulic cylinder 31 start and drives mounting block 35 to move to the middle part of mounting plate 33, and makes two mounting block 35 respectively drive male die 51 and female die 54 synchronous movement simultaneously, makes male die 51 and female die 54 and the bottom both sides of synthetic resin tile fit connection extrusion, makes the bottom of synthetic resin tile through pressure fixed between male die 51 and female die 54, and makes the position of synthetic resin tile is limited, simultaneously starts motor 25 drive a lead screw 22 rotation, and through the transmission of transmission part 24, makes two lead screws 22 synchronous rotation in the inside of mounting shell 21, makes lead screw 22 drive connecting rod 23 in the middle part of mounting shell 21 horizontal up and down movement, makes connecting rod 23 drive the position of another mounting plate 33 adjustment, makes another mounting plate 33 move to the top of synthetic resin tile, and through hydraulic cylinder 31 start and drive mounting block 35 to move to the middle part of mounting plate 33, and make two mounting block 35 respectively drive male die 51 and female die 54 synchronous movement simultaneously, make male die 51 and female die 54 and the top both sides of synthetic resin tile fit connection extrusion, make the top of synthetic resin tile through pressure fixed between male die 51 and female die 54, and through the reverse of motor 25, make connecting rod 23 move upwards, make the top of synthetic resin tile receive tension, and tension conduction is in sensor 4 simultaneously, make sensor 4 detect tension, and through sensor 4 and outside display device connection carry out tension data display.
[0063] The utility model discloses a synthetic resin tile is placed on the mounting plate 33 of sensor 4 top, makes hydraulic cylinder 31 start and drives mounting block 35 to move to the middle part of mounting plate 33, and makes two mounting block 35 respectively drive male die 51 and female die 54 synchronous movement simultaneously, makes male die 51 and female die 54 and the bottom both sides of synthetic resin tile fit connection extrusion, makes the bottom of synthetic resin tile through pressure fixed between male die 51 and female die 54, and makes the position of synthetic resin tile is limited, simultaneously starts motor 25 drive a lead screw 22 rotation, and through the transmission of transmission part 24, makes two lead screws 22 synchronous rotation in the inside of mounting shell 21, makes lead screw 22 drive connecting rod 23 in the middle part of mounting shell 21 horizontal up and down movement, makes connecting rod 23 drive the position of another mounting plate 33 adjustment, makes another mounting plate 33 move to the top of synthetic resin tile, and through hydraulic cylinder 31 start and drive mounting block 35 to move to the middle part of mounting plate 33, and make two mounting block 35 respectively drive male die 51 and female die 54 synchronous movement simultaneously, make male die 51 and female die 54 and the top both sides of synthetic resin tile fit connection extrusion, make the top of synthetic resin tile through pressure fixed between male die 51 and female die 54, and through the reverse of motor 25, make connecting rod 23 move upwards, make the top of synthetic resin tile receive tension, and tension conduction is in sensor 4 simultaneously, make sensor 4 detect tension, and through sensor 4 and outside display device connection carry out tension data display.
Claims
1. A synthetic resin shingle tensile strength testing apparatus characterized by, The workbench (1), the lifting assembly (2), the clamping assembly (3) and the sensor (4); The lifting assembly (2) is installed at the top end of the workbench (1) and extends to the inner side of the bottom end of the workbench (1); The sensor (4) is installed at the top end of the workbench (1) and is located directly below the middle part of the lifting assembly (2); The number of clamping assemblies (3) is two, and the two clamping assemblies (3) are respectively installed at the top end of the sensor (4) and the inner side of the lifting assembly (2), and the middle part of the two clamping assemblies (3) is provided with a mold (5) for fitting connection with the synthetic resin tile in the use state.
2. The synthetic resin tile tensile strength testing device according to claim 1, wherein The clamping assembly (3) comprises a hydraulic cylinder (31), a mounting plate (33) and a mounting block (35); The mounting plate (33) is installed on the sensor (4) or the lifting assembly (2); The number of hydraulic cylinders (31) is two, and the two hydraulic cylinders (31) are symmetrically installed at the top end of the mounting plate (33) according to the center of the mounting plate (33); The mounting block (35) is installed at the end of the hydraulic cylinder (31) and connected with the mold (5), and the bottom end is slidably connected with the mounting plate (33), and the mounting block (35) is arranged one-to-one with the hydraulic cylinder (31).
3. The device for detecting tensile strength of a synthetic resin tile according to claim 2, wherein The mold (5) comprises a male die (51) and a female die (54); The male die (51) and the female die (54) are respectively installed at the end of one mounting block (35) and are oppositely arranged, and the end size of the male die (51) and the female die (54) is matched.
4. The device for measuring tensile strength of a synthetic resin tile according to claim 3, wherein The side surface of the male die (51) and the female die (54) is provided with a connecting block (55), and the side surface of the mounting block (35) is provided with a mounting groove (36) with a horizontal moving path, and in the matched installation state of the male die (51) and the female die (54) and the mounting block (35), the connecting block (55) is matched and accommodated in the mounting groove (36).
5. The device for measuring tensile strength of a synthetic resin tile according to claim 4, wherein The top end of the mounting block (35) is provided with a bolt (37), and the bottom end of the bolt (37) penetrates through the mounting block (35) and extends to the inside of the mounting groove (36) and is connected with the connecting block (55).
6. The synthetic resin shingle tensile strength testing apparatus of claim 2, wherein The top end of the mounting plate (33) is provided with a sliding groove (32) along the length direction of the mounting plate (33), and the two ends of the sliding groove (32) are through, and the bottom end of the mounting block (35) is provided with a sliding block (34), and in the matched installation state of the mounting block (35) and the sliding block (34), the sliding block (34) is matched and accommodated in the sliding groove (32).
7. The device for measuring tensile strength of a synthetic resin tile according to claim 3, wherein One end of the mold (5) is provided with a plurality of connecting grooves (52), and the inside of the connecting groove (52) is embeddedly installed with an anti-skid strip (53).
8. The synthetic resin shingle tensile strength testing apparatus of claim 1 wherein, The lifting assembly (2) comprises a mounting shell (21), a lead screw (22), a connecting rod (23), a transmission member (24) and a motor (25); The mounting shell (21) is installed at the top end of the workbench (1); The number of lead screws (22) is two, and the two lead screws (22) are respectively rotatably installed at the two inner sides of the two sides of the mounting shell (21) and extend to the inner side of the workbench (1); The connecting rod (23) is slidably installed at the middle part of the mounting shell (21) and is sleeved on the outer side of the lead screw (22) at both ends; The transmission member (24) is installed at the end of the two lead screws (22) and is located at the inner side of the workbench (1); The motor (25) is installed on the inner side of the workbench (1) and connected with the screw rod (22) through a shaft coupling.