CN210690366U - Ceramic tile antiskid detection device - Google Patents

Ceramic tile antiskid detection device Download PDF

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Publication number
CN210690366U
CN210690366U CN201921313613.5U CN201921313613U CN210690366U CN 210690366 U CN210690366 U CN 210690366U CN 201921313613 U CN201921313613 U CN 201921313613U CN 210690366 U CN210690366 U CN 210690366U
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China
Prior art keywords
detection device
tile
ceramic tile
test
shaped frame
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CN201921313613.5U
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Chinese (zh)
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吴超
吴丽丹
李飞
王建怀
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Jingdezhen Oushennuo Ceramic Co ltd
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Jingdezhen Oushennuo Ceramic Co ltd
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Abstract

The utility model discloses a tile skid-proof detection device, belonging to the detection device field, comprising a detection device body, a protection rod component, an adjusting rod, a buffer component and a positioning support; the guard bar assembly includes a left guard and a right guard; the left side protection piece comprises a left U-shaped frame, a left cross rod and a first reinforcing rod; the adjusting rod is located the middle part lower extreme of left horizontal pole, and through articulated seat and left horizontal pole fixed connection, just be located and be equipped with U-shaped nut seat on the test table under the adjusting rod, but the bottom of adjusting the pole is connected with U-shaped nut seat through adjusting screw movably dismantlement. The folding design of the adjusting rod reduces the risk that the ceramic tile collides with the positioning support, and simultaneously can enhance the connecting strength of the left protection part, thereby playing a good protection role; the buffering component can play a good role in protecting the end face of the to-be-tested ceramic tile, so that the generation of defects such as collapse, powder falling and falling of the to-be-tested ceramic tile is effectively avoided, and the device has the advantages of simple structure, low cost and convenience in operation.

Description

Ceramic tile antiskid detection device
Technical Field
The utility model relates to a detection device field especially relates to a ceramic tile antiskid detection device.
Background
The ceramic tiles are various in color, clean and sanitary, and are widely applied in home decoration and decoration work, in addition, before delivery detection of the ceramic tiles, the anti-skid performance detection of the ceramic tiles is an important detection item, and the existing SC-CZH inclined platform tester can carry out anti-skid test on the ceramic tiles in a targeted manner, but when the ceramic tiles are fed and discharged, the ceramic tiles can only enter from the front side of the inclined platform tester due to the fact that the vertical sides of the inclined platform tester are provided with the fixedly arranged guard rails, and therefore the risk of collision with a positioning support on a test platform can be caused; in addition, the ceramic tile may contact or touch the side of the test workbench during feeding and discharging, which causes the defects of ceramic tile collapse, powder falling and falling off. Therefore, effective solutions to solve the above problems need to be proposed.
SUMMERY OF THE UTILITY MODEL
The utility model provides a ceramic tile antiskid detection device for solving the existing technical defects, the setting of the adjusting rod is positioned at the rear of the positioning support, thus avoiding the entrance of the prior art from the front side port of the testing workbench, causing the risk of colliding with the positioning support, and the adjusting rod is rotated back to be fixed with the U-shaped nut seat in the testing process, thereby strengthening the connecting strength of the protection part at the left side and playing a good protection role for the testing personnel; in order to avoid the ceramic tile that awaits measuring to receive the impact force in the twinkling of an eye at the contact test workstation side, the buffering subassembly can play fine guard action to the terminal surface of the ceramic tile that awaits measuring to effectively avoid the ceramic tile that awaits measuring to collapse the production of defects such as lacking, fall the powder and drop, have simple structure, with low costs, and convenient operation's advantage.
In order to solve the technical problem, the utility model provides a following technical scheme:
the specific technical scheme is as follows:
a tile skid-proof detection device comprises a detection device body for performing a skid-proof test on tiles;
the detection device comprises a detection device body, a protection rod assembly, a regulation rod assembly, a buffer assembly and two positioning supports, wherein the protection rod assembly is vertically and upwards arranged on two side edges of the detection device body;
the guard bar assembly includes a left guard and a right guard;
the left protection piece comprises an inverted left U-shaped frame, a left cross rod transversely arranged inside the left U-shaped frame and two first reinforcing rods welded between the left U-shaped frame and the left cross rod;
the adjusting rod is located the middle part lower extreme of left side horizontal pole, and through articulated seat with left side horizontal pole fixed connection, adjust the pole under and be located be equipped with U-shaped nut seat on the test bench, the bottom of adjusting the pole through adjusting screw movably with dismantle with U-shaped nut seat is connected.
As a further improvement of the technical scheme, the buffer assembly comprises a U-shaped connecting seat and a buffer pad embedded in a cavity of the U-shaped connecting seat; the U-shaped connecting seat is a polytetrafluoroethylene seat, the buffering cushion is fixed on the U-shaped connecting seat through bolts, the U-shaped connecting seat is fixed on the test workbench through screws, and the right side face of the buffering cushion protrudes out of the outer side of an opening of the U-shaped connecting seat.
As a further improvement of the above technical solution, the length of the buffer assembly is the same as the length of the test bench.
As a further improvement of the above technical solution, the right side protection member includes an inverted right U-shaped frame, a right cross bar transversely disposed inside the right U-shaped frame, and two second reinforcing rods welded between the right U-shaped frame and the right cross bar; the right cross rod is welded at the middle position of the right U-shaped frame.
As a further improvement of the technical scheme, a rectangular groove is formed in the front side face of the test workbench, and a liquid collecting tank placed on a bottom plate of the detection device body is arranged below the rectangular groove.
As a further improvement of the technical scheme, the height of the positioning support is 1/3-2/3 of the thickness of the ceramic tile.
The utility model has the advantages that: the adjusting rod is arranged behind the positioning support, so that the risk of colliding with the positioning support due to the fact that the adjusting rod enters from a front side opening of the test workbench in the prior art is avoided, and the adjusting rod is rotated back to be fixed with the U-shaped nut seat in the test process, so that the connecting strength of the left protection part is enhanced, and a good protection effect can be achieved for testers; in order to avoid the tile that awaits measuring receiving the impact force in the twinkling of an eye on the contact test workstation side, the buffering subassembly can play fine guard action to the terminal surface of the tile that awaits measuring to effectively avoid the tile that awaits measuring to collapse the production of defects such as lacking, falling powder and droing, have simple structure, with low costs, and convenient operation's advantage.
Drawings
Fig. 1 is a schematic front view of a tile anti-skid detection device according to an embodiment of the present invention;
fig. 2 is a schematic diagram of a right-side view structure of the anti-slip detection device for ceramic tiles according to the embodiment of the present invention;
fig. 3 is an enlarged schematic structural diagram of a point a of the embodiment of the present invention.
The figure is marked with: the detection device comprises a detection device body 1, a test workbench 11, a guard bar assembly 2, a left guard piece 21, a left U-shaped frame 211, a left cross bar 212, a first reinforcing bar 213, a right guard piece 22, a right U-shaped frame 221, a right cross bar 222, a second reinforcing bar 223, an adjusting bar 3, a buffer assembly 4, a U-shaped connecting seat 41, a buffer pad 42, a positioning support 5, a hinged seat 6, a U-shaped nut seat 7, an adjusting bolt 8 and a liquid collecting box 9.
Detailed Description
Reference will now be made in detail to embodiments of the present invention, examples of which are illustrated in the accompanying drawings, wherein like reference numerals refer to the same or similar elements or elements having the same or similar function throughout. The embodiments described below with reference to the drawings are exemplary and intended to be used for explaining the present invention, and should not be construed as limiting the present invention.
The present invention will be described in further detail with reference to the accompanying drawings. Please refer to the attached drawings.
As shown in fig. 1-3, the utility model discloses a tile anti-skid detection device, which comprises a detection device body 1 for testing the tile anti-skid, a guard bar component 2 vertically and upwards arranged at two side edges of the detection device body 1, an adjusting rod 3 arranged on the guard bar component 2 in a foldable way, a buffer component 4 fixedly arranged on the inner wall at two sides of a test workbench 11 of the detection device body 1, and two positioning supports 5 welded on the test workbench 11 and used for positioning the tile; the guard bar assembly 2 includes a left guard 21 and a right guard 22; the left side guard 21 includes an inverted left U-shaped frame 211, a left cross bar 212 transversely provided inside the left U-shaped frame 211, and two first reinforcing bars 213 welded between the left U-shaped frame 211 and the left cross bar 212; adjust the pole 3 and be located the middle part lower extreme of left horizontal pole 212, and through articulated seat 6 and left horizontal pole 212 fixed connection, adjust and be equipped with U-shaped nut seat 7 under the pole 3 and be located test table 11, adjust the bottom of pole 3 and be connected with U-shaped nut seat 7 through adjusting screw 8 movably dismantlement.
Above implementation, particularly, when the ceramic tile that awaits measuring needs to be placed at test table 11 and detected, at first the manual work will adjust the bottom and the separation of U-shaped nut seat 7 of pole 3 through adjusting bolt 8, adjust near the top of pole 3 around articulated seat 6 rotatory to left horizontal pole 212 on, can take the manual work to snatch temporarily, adjust the pole 3 rotatory to left horizontal pole 212 make and form a great and confession ceramic tile passageway that passes through on the left U-shaped frame 211, and adjust pole 3 and be located the rear of location support 5, consequently, prior art has been avoided entering from test table 11 front side mouth, thereby cause the risk of colliding with location support 5, in the test process, it is fixed mutually with U-shaped nut seat 7 to adjust pole 3 to turn back, thereby also played the joint strength who strengthens left side protection piece 21, can play good guard action to the testing personnel. Because the ceramic tile that awaits measuring is placed on test table 11 apart from test table 11's side distance nearer, in order to avoid the ceramic tile that awaits measuring to receive the impact force in the twinkling of an eye at contact test table 11 side, buffering subassembly 4 can play fine guard action to the terminal surface of the ceramic tile that awaits measuring to effectively avoid the ceramic tile that awaits measuring to collapse and lack, fall the production of defects such as powder and drop, have simple structure, with low costs, and convenient operation's advantage. Naturally, installation gaps are formed between the ceramic tile to be tested and the buffer assembly 4 so as to ensure the smooth installation, disassembly and assembly of the ceramic tile to be tested; after the ceramic tile that awaits measuring targets in place through the installation of positioning support 5, the ceramic tile that awaits measuring promptly is laid on detection device's table surface, and the user plane upwards, detection device body 1 is current SC-CZH slope platform tester, test table 11 is mechanical anti-deformation flat iron plate, 800 millimeters wide, 1500 millimeters are long, test table 11's fore-and-aft angle of inclination can be adjusted between 0 to 30, angle measurement system installs on detection device body 1, test table 11 and the contained angle of horizontal plane are within 1. The test person was a barefoot adult, and both feet were kept clean and wet by rinsing with clear water at least before the experiment. The ceramic tile to be tested is taken out from the production line, and the ceramic tile should be cleaned before testing to remove residues and dirt during production; in addition, in order to protect the tester, the guard bar assembly 2 is arranged at the longitudinal side of the detection device body 1, a safety belt and a safety helmet must be worn, and in the test, continuous and consistent test liquid should be ensured to flow through the to-be-tested ceramic tile, wherein the test liquid is soapy water with the concentration of 1 g/L, the test soap is prepared in advance according to the using amount and is prepared by warm water, and generated bubbles are required to be removed by an antifoaming agent and are used within the experimental time of 24 hours; a tester stands on the ceramic tile to be tested in a straight line, eyes look down the ceramic tile to move back and forth, and the included angle between the ceramic tile and the ground is reduced from an angle of 24 degrees until the tester stands unstably; and then slowly descends again from 24 degrees. The tester stands on the ceramic tile to be tested straight and moves back and forth, the stride is the length of half sole, the soles need even contact, and the tester needs to look down. The floor decreases the inclination angle from the horizontal at a rate of about 1 deg. per second until the limit at which the tester can ensure walking. And repeatedly testing the limit value, and determining the inclination angle of the angle testing plane by 2 or more persons, wherein the two persons need to test 2 times each person. At each test, the tile was required to be adjusted down starting at 24 °. The average was calculated from 4 test values. If any one of the test values deviates from this average by more than 2 deg., the test should be repeated and the average calculated from the 8 test values. In a word, a tester in an upright state walks back and forth on a ceramic tile to be tested or a ceramic tile to be tested of other ground materials wetted by a certain method with bare feet, the ceramic tile to be tested gradually inclines from the horizontal direction at a certain speed until the tester shows unsafe signs in walking, and the angle is called as a dynamic critical angle, namely an index for expressing the anti-skid performance of the ground materials. The larger the angle value, the higher the grip performance of the floor material, and conversely the worse the grip performance.
The beneficial effect that this application brought does: the adjusting rod 3 is arranged behind the positioning support 5, so that the risk of colliding with the positioning support 5 due to the fact that the adjusting rod enters from a front side opening of the testing workbench 11 in the prior art is avoided, and in the testing process, the adjusting rod 3 is rotated back to be fixed with the U-shaped nut seat 7, so that the connecting strength of the left protection piece 21 is enhanced, and a good protection effect can be achieved on testing personnel; in order to avoid the tile that awaits measuring to receive the impact force in the twinkling of an eye at 11 sides of contact test workstation, buffering subassembly 4 can play fine guard action to the terminal surface of the tile that awaits measuring to effectively avoid the tile that awaits measuring to collapse the production of lacking, falling defects such as powder and drop, have simple structure, with low costs, and convenient operation's advantage.
Further, the buffer assembly 4 comprises a U-shaped connecting seat 41 and a buffer pad 42 embedded in the cavity of the U-shaped connecting seat 41; the U-shaped connecting seat 41 is a polytetrafluoroethylene seat, the buffer pad 42 is fixed on the U-shaped connecting seat 41 through a bolt, the U-shaped connecting seat 41 is fixed on the test workbench 11 through a screw, and the right side surface of the buffer pad 42 protrudes out of the opening of the U-shaped connecting seat 41. Thereby play the guard action to the ceramic tile side of awaiting measuring, avoided the ceramic tile to contact the impact force that receives in the twinkling of an eye of test workstation 11, play fine guard action to the ceramic tile side of awaiting measuring.
Further, the length of the buffer assembly 4 is the same as the length of the test stage 11. The whole testing area is ensured to be provided with the cushion pad 42, so that the side edge of the testing workbench 11 can be collided by the ceramic tile in the testing process or the ceramic tile in the loading and unloading process, and the ceramic tile can be well protected.
Further, the right side guard 22 includes an inverted right U-shaped frame 221, a right cross bar 222 transversely provided inside the right U-shaped frame 221, and two second reinforcing bars 223 welded between the right U-shaped frame 221 and the right cross bar 222; the right cross bar 222 is welded to the middle of the right U-shaped frame 221. By arranging the right cross bar 222 and the second reinforcing bar 223, the connecting strength of the right U-shaped frame 221 can be enhanced, and the safety of a tester standing on the test workbench 11 is ensured.
Further, a rectangular groove is formed in the front side face of the test workbench 11, and a liquid collecting tank 9 placed on the bottom plate of the detection device body 1 is arranged below the rectangular groove. So that the soapy water for the test intensively flows into the liquid collecting tank 9 through the rectangular grooves for uniform collection and discharge.
Further, the height of the positioning support 5 is 1/3-2/3 of the thickness of the ceramic tile. When guaranteeing the stable positioning effect to the ceramic tile, can also guarantee that the tester can test the non-slip property of ceramic tile by the biggest area, also can not form to block the soapy water of test simultaneously, ensure that the soapy water of test usefulness flows to the rectangle slot and discharges smoothly.
The foregoing is a more detailed description of the present invention that is presented in conjunction with specific embodiments, and it is not to be understood that the specific embodiments of the present invention are limited to these descriptions. To the utility model belongs to the technical field of ordinary technical personnel, do not deviate from the utility model discloses under the prerequisite of design, can also make a plurality of simple deductions or replacement.

Claims (6)

1. A tile anti-skid detection device comprises a detection device body (1) for performing an anti-skid test on tiles; the method is characterized in that:
the ceramic tile positioning device is characterized by further comprising a protection rod assembly (2) which is vertically and upwards arranged on two side edges of the detection device body (1), an adjusting rod (3) which can be folded and arranged on the protection rod assembly (2), a buffering assembly (4) which is fixedly arranged on the inner walls of two sides of a test workbench (11) of the detection device body (1), and two positioning supports (5) which are welded on the test workbench (11) and used for positioning ceramic tiles;
the fender rod assembly (2) comprises a left fender (21) and a right fender (22);
the left side protection piece (21) comprises an inverted left U-shaped frame (211), a left cross rod (212) transversely arranged inside the left U-shaped frame (211), and two first reinforcing rods (213) welded between the left U-shaped frame (211) and the left cross rod (212);
adjust pole (3) and be located the middle part lower extreme of left side horizontal pole (212), and through articulated seat (6) with left side horizontal pole (212) fixed connection, adjust pole (3) under and be located be equipped with U-shaped nut seat (7) on test table (11), the bottom of adjusting pole (3) through adjusting screw (8) movably dismantlement ground with U-shaped nut seat (7) are connected.
2. A tile slip detection device as claimed in claim 1, wherein:
the buffer component (4) comprises a U-shaped connecting seat (41) and a buffer pad (42) embedded in a cavity of the U-shaped connecting seat (41); the U-shaped connecting seat (41) is a polytetrafluoroethylene seat, the buffer pad (42) is fixed on the U-shaped connecting seat (41) through a bolt, the U-shaped connecting seat (41) is fixed on the test workbench (11) through a screw, and the right side face of the buffer pad (42) protrudes out of the outer side of an opening of the U-shaped connecting seat (41).
3. A tile slippage prevention detection apparatus as claimed in claim 1 or 2, wherein:
the length of the buffer assembly (4) is the same as that of the test workbench (11).
4. A tile slip detection device as claimed in claim 1, wherein:
the right side protection piece (22) comprises an inverted right U-shaped frame (221), a right cross bar (222) transversely arranged inside the right U-shaped frame (221), and two second reinforcing rods (223) welded between the right U-shaped frame (221) and the right cross bar (222); the right cross rod (222) is welded in the middle of the right U-shaped frame (221).
5. A tile slip detection device as claimed in claim 1, wherein:
a rectangular groove is formed in the front side face of the test workbench (11), and a liquid collecting box (9) placed on a bottom plate of the detection device body (1) is arranged below the rectangular groove.
6. A tile slip detection device as claimed in claim 5, wherein:
the height of the positioning support (5) is 1/3-2/3 of the thickness of the ceramic tile.
CN201921313613.5U 2019-08-14 2019-08-14 Ceramic tile antiskid detection device Active CN210690366U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921313613.5U CN210690366U (en) 2019-08-14 2019-08-14 Ceramic tile antiskid detection device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921313613.5U CN210690366U (en) 2019-08-14 2019-08-14 Ceramic tile antiskid detection device

Publications (1)

Publication Number Publication Date
CN210690366U true CN210690366U (en) 2020-06-05

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Application Number Title Priority Date Filing Date
CN201921313613.5U Active CN210690366U (en) 2019-08-14 2019-08-14 Ceramic tile antiskid detection device

Country Status (1)

Country Link
CN (1) CN210690366U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112903510A (en) * 2021-01-26 2021-06-04 张宝红 Recyclable tile water absorption testing device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112903510A (en) * 2021-01-26 2021-06-04 张宝红 Recyclable tile water absorption testing device
CN112903510B (en) * 2021-01-26 2023-01-31 河南省嘉北科技有限公司 Recyclable tile water absorption testing device

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