CN106568707A - Rollerskate non-skid testing machine - Google Patents
Rollerskate non-skid testing machine Download PDFInfo
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- CN106568707A CN106568707A CN201610893651.7A CN201610893651A CN106568707A CN 106568707 A CN106568707 A CN 106568707A CN 201610893651 A CN201610893651 A CN 201610893651A CN 106568707 A CN106568707 A CN 106568707A
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- counterweight
- block
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- base plate
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N19/00—Investigating materials by mechanical methods
- G01N19/02—Measuring coefficient of friction between materials
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- Automation & Control Theory (AREA)
- Physics & Mathematics (AREA)
- Health & Medical Sciences (AREA)
- Life Sciences & Earth Sciences (AREA)
- Chemical & Material Sciences (AREA)
- Analytical Chemistry (AREA)
- Biochemistry (AREA)
- General Health & Medical Sciences (AREA)
- General Physics & Mathematics (AREA)
- Immunology (AREA)
- Pathology (AREA)
- Footwear And Its Accessory, Manufacturing Method And Apparatuses (AREA)
Abstract
The invention relates to a rollerskate non-skid testing machine, which comprises a shoe tree weight structure, a test board displacement structure and a motor rotation structure. A shoe tree weight lifting structure is lifted when a cylinder acts during sample loading and released during testing. The applied weight freely falls on the shoe and moves back and forth on a slide rail. According to the test board displacement structure, a test board is supported on a main cabinet surface through a linear bearing structure; the bottom of the test board is provided with a load transducer; and when a rotational structure pulls the shoe to move towards the right side, the load transducer will acquire data and calculate slip-resistance coefficient. The motor rotation structure is driven by a motor and transmitted to a screw through a chain so as to realize side-to-side movement of the shoe part. The test efficiency is high, and test results are scientific and reasonable.
Description
Technical field
The present invention relates to a kind of test equipment, more particularly to a kind of test sheave footwear quality, carry out on-slip to roller skate
Test, the coefficient of friction of test pulley footwear.
Background technology
Existing roller-skates include framework, at least two rollers on framework and brakes;Framework includes
Support receives the roller with part, support is worn, and wearing part and being arranged on support is used for the foot and shoes of receiving user;Wheel
There is an important content to be roller skate on-slip test in sliding footwear detection.People stands after putting on shoes and smooths panel tiltable friction
On panel, constantly change the angle of inclination of friction panel, until human body is stablized.There is test knot in the on-slip test of roller-skates at present
Fruit not enough science, the shortcoming of the inadequate automatization of test process.
The content of the invention
Based on this, it is necessary to for prior art problem, there is provided a kind of roller-skates anti-skid tester, stopping for roller-skates is simulated
Slip energy, non-skid property are by the pulling force of the panel that rubs, heavy burden and angle of inclination assessment, scientific and reasonable with test structure, survey
The advantage of examination process more automatization.
To solve prior art problem, the invention discloses a kind of roller-skates on-slip test machine, includes:Shoe tree counterweight is tied
Structure, test board displacement structure and motor transmission structure, are provided with counterweight mandrel above shoe tree weight structure, counterweight mandrel is arranged below
Counterweight base, counterweight base are arranged below cylinder block, and cylinder block is arranged below shoe tree;Cylinder block is arranged on the second slide block, the
Two slide blocks are arranged on the second slide rail, and the second slide rail is arranged on sliding panel, and sliding panel is arranged on above base plate;
Test board displacement structure is provided with rolling bearing units cushion block, and base plate is the host panel of test board displacement structure, ushers to seat
Bearing cushion block is arranged on rolling bearing units, and base plate is provided with sensor stand, and sensor stand is provided with load sensors, is born a heavy burden
Covers disposed on sensor has loading joint;
Motor transmission structure includes motor, and the second drive is arranged on motor, and motor bracket is arranged through motor base
On base plate, base plate is arranged below drive screw support, transmission nut support, and drive screw, transmission guide rod and transmission nut are worn
Cross drive screw support, transmission nut support to be arranged on base plate, the first drive is arranged on drive screw, the second drive
First drive is connected by chain drive.
In certain embodiments, the counterweight base has sliding panel, and sliding panel is provided with cylinder block, counterweight base
Counterweight guide rod is provided between cylinder block, the second slide rail between cylinder block and sliding panel, is provided with, sliding panel has shoe tree, counterweight
Counterweight is provided between mandrel and counterweight base.
In certain embodiments, the base plate is provided with sliding block and the first slide rail, and the first slide rail is provided with slide block, sliding
Block is provided with take-up housing, and take-up housing is provided with pole;Sliding panel is arranged on pole, and the second slide rail is arranged on sliding panel, the
Two slide rails are provided with the second slide block, and cylinder block is arranged on the second slide block, and lift cylinder is arranged on cylinder block.
In certain embodiments, the shoe tree is arranged on shoe tree fixed block, and shoe tree fixed block is arranged on regulation panel seat,
Adjust panel seat to be arranged on counterweight guide rod seat, fixing bolt is arranged on regulation panel seat through shoe tree fixed block, and fixing bolt is
Rotating shaft, counterweight lower end of the guide rod are arranged on counterweight guide rod seat through cylinder block, and counterweight guide rod upper end is fixed on counterweight base, counterweight
Guide rod seat connects lift cylinder piston, counterweight guide rod can on cylinder block lifting carriage, counterweight mandrel is arranged on weight through counterweight
On code base.
In certain embodiments, the slide block on the connecting bottom board of the pole lower end, pole upper end connection sliding panel;On base plate
Four poles are provided with, four poles connect four corners of sliding panel, base plate, four poles, sliding panel composition shoe tree weights respectively
The frame structure of code.
In certain embodiments, drive screw support is installed with below the base plate, drive screw support is provided with transmission
Screw rod, transmission guide rod, drive screw are provided with transmission nut support, and drive screw connects transmission nut by transmission nut
Frame, transmission nut support are arranged on transmission guide rod, and test specimen pull bar one end connection transmission nut support, the test specimen pull bar other end connect
Control joint is connect, control joint is provided with some pegs.
In certain embodiments, the control joint front end is provided with suspension member joint, suspension member joint be provided with the first peg,
Two pegs, the first peg, the second peg end are provided with hook, be provided with to link up with which match in front of the first peg, the second peg
Standing screw.
In certain embodiments, the suspension member joint is provided with retaining ring, and retaining ring is fixed on adjustable connecing suspension member joint
On head, suspension member joint penetrates the interior pin of control joint and fixes.
In certain embodiments, the suspension member joint front end is provided with groove, and suspension member joint front end groove is equipped with mandrel,
First peg, the second peg end are surrounded with the first peg, the second peg in the groove of suspension member joint on mandrel, and first
Peg, the second peg end pass through mandrel connection hanging piece joint.
In certain embodiments, the base plate is arranged below straight line slide bar, and straight line slide bar is through after rolling bearing units by straight line
Slider block is fixed on base plate, and rolling bearing units cushion block is provided with fixed plate, and sensor block is arranged in fixed plate, and fixed plate two ends are each
A location-plate is provided with, into inner concave shape, fixed plate is provided with test board to location-plate, and test board is arranged on the positioning at fixed plate two ends
In plate cavity.
Specially:Test board is placed in fixed plate, is fixed by the location-plate at two ends, and test board is placed on two location-plates
Frame intracavity, the frame chamber of two location-plates fix test board.
Roller skate calculating coefficient of friction is realized automation mechanized operation by roller skate anti-skid tester of the present invention, and roller-skates stop footwear and survey
Test-run a machine includes shoe tree weight structure, lower section and is provided with test board displacement structure and has motor transmission structure device, with survey
Examination advantage scientific and reasonable for structure.
The coefficient of friction of main test roller skate of the invention, can fix single and double roller skate, and rapid pair-wheel slides footwear
Carry out test 3 times;Loaded weight 10.2kg and 40kg can be distinguished on footwear, weight is replaceable;Maximum 100kg pulling force.Peg is adopted
Steel wire.
Roller skate is placed on roller skate anti-skid tester the plane steel plate (test that surface roughness Ra is 1.5um~2.0um
Plate 39) on so that roller skate wheel shaft and steel plate (test board 39) grinding direction is vertical, double 40kg, the weight of single 10.2kg
It is put in above roller skate, is continuously applied in wheel shaft pulling force in the same direction, reads maximum F, test 3 times, take its meansigma methods, then calculate
Coefficient of friction.
The present invention includes shoe tree weight structure, test board displacement structure, revolution structure;Shoe tree counterweight lifting knot
Structure, cylinder action during dress sample rise, and discharge during test, and the weight of applying freely falls on shoes, can move in front and back on slide rail
It is dynamic;Test board displacement structure, test board are supported on mainframe face by linear bearing structure, and test board bottom is equipped with heavy burden
Sensor, when rotational structure hauls shoes and moves right, load sensors can gathered data data calculating on-slip coefficient;Motor turns
Dynamic structure is driven by motor, by, in chain drive to screw rod, realizing moving left and right for shoe parts.Testing efficiency of the present invention
Height, the scientific and reasonable advantage of testing result.
Description of the drawings
Fig. 1 is the structural representation of embodiment always combination;
Structural representations of the Fig. 2 for embodiment shoe tree counterweight part;
Structural representations of the Fig. 3 for embodiment revolution part;
Structural representations of the Fig. 4 for embodiment beta version displaced portion;
Schematic perspective views of the Fig. 5 for embodiment beta version displaced portion;
Assembling schematic diagrams of the Fig. 6 for embodiment.
Specific embodiment
In order to further appreciate that feature, technological means and the specific purposes for being reached, the function of the present invention, with reference to
Accompanying drawing is described in further detail to the present invention with specific embodiment.
A kind of roller skate anti-skid tester of the present invention, includes:Shoe tree weight structure 1, test board displacement structure 2 and horse
Up to drive mechanism 3.Counterweight mandrel 4, the center of circle of the counterweight mandrel 4 through counterweight 5, counterweight mandrel 4 are provided with above shoe tree weight structure 1
Lower section is provided with counterweight base 6, and counterweight 5 is provided between counterweight mandrel 4 and counterweight base 6, and counterweight base 6 is arranged below counterweight guide rod
18, counterweight guide rod 18 is fixed on counterweight guide rod seat 7, and counterweight guide rod seat 7 connects the piston rod of lift cylinder 25.Counterweight base 6
Supported by counterweight guide rod 18 between cylinder block 8, lift cylinder 25 is arranged on cylinder block 8, between cylinder block 8 and sliding panel 14
Supported by the second slide rail 17, the second slide rail 17 is provided with the second slide block 26, between cylinder block 8 and sliding panel 14, pass through the second slide rail
17th, the second slide block 26 connects.
Shoe tree 12 is arranged on shoe tree fixed block 23, and shoe tree fixed block 23 is arranged on regulation panel seat 24, adjusts panel seat 24
It is arranged on counterweight guide rod seat 7, fixing bolt 13 is arranged on regulation panel seat 24, under counterweight guide rod 18 through shoe tree fixed block 23
End is arranged on counterweight guide rod seat 7 through cylinder block 8, and 18 upper end of counterweight guide rod is fixed on counterweight base 6, and counterweight guide rod seat 7 connects
Connect 25 piston of lift cylinder.
Sliding panel 14 has shoe tree 12, and cylinder block 8 is provided with lift cylinder 25, and 25 piston of lift cylinder connection counterweight is led
Pole socket 7, counterweight guide rod seat 7 are provided with regulation panel seat 24, adjust panel seat 24 and are provided with shoe tree fixed block 23, under shoe tree fixed block 23
Face is provided with shoe tree 12, and shoe tree 12 is fixed by shoe tree fixed block 23, adjusts 24 adjustable last of panel seat, 12 corner.Base plate 16 is frame
Table top, sliding block 20 and the first slide rail 19 are arranged on base plate 16, and the first slide rail 19 is provided with slide block 21, and slide block 21 is provided with
Take-up housing 22, take-up housing 22 are provided with pole 10.Shoe tree counterweight has lifting structure, during dress sample in 25 action of lift cylinder
Rise, shoe tree 12 is also synchronous to be risen, and is easy to dress to change sample;Discharge during test, apply weight and freely fall on shoes, can be on slide rail
All around move.
Adjust panel seat 24 and be provided with fixing bolt 13, fixing bolt 13 is arranged on adjustable plate it through shoe tree fixed block 23
On seat 24, now fixing bolt 13 can be rotating shaft, adjust 23 angle of shoe tree fixed block.Cunning on 10 lower end connecting bottom board 16 of pole
Block 21,10 upper end of pole connection sliding panel 14;Base plate 16 is provided with four poles 10, and four poles 10 connect sliding panel 14 respectively
Four corners, by 16, four poles 10 of base plate, sliding panel 14 constitute shoe tree counterweight frame structure.
Host panel of the base plate 16 for test board displacement structure 2, test board displacement structure 2 include rolling bearing units cushion block 35,
Rolling bearing units cushion block 35 is arranged on rolling bearing units 34, and straight line slide bar 37 is fixed on through rolling bearing units 34 with straight line slider block 36
On base plate 16, fixed plate 40 is arranged on rolling bearing units cushion block 35, and sensor block 32 is arranged in fixed plate 40,40 two ends of fixed plate
A location-plate 38 is respectively provided with, 38 one-tenth inner concave shapes of location-plate, test board 39 are placed in fixed plate 40, by the location-plate 38 at two ends
Fixed, test board 39 is placed on the frame intracavity of two location-plates 38, and test board 39 is fixed in the frame chamber of two location-plates 38.
Sensor stand 30 is arranged on base plate 16, and loading joint 33 is arranged in load sensors 31, and described heavy burden passes
Sensor 31 is arranged on sensor stand 30.Test board 39 is supported on main frame table top (base plate 16) by linear bearing structure,
39 bottom of test board is equipped with load sensors 31, and drive mechanism is hauled when moving right, and load sensors 31 can gathered data calculating
Go out on-slip coefficient.
Base plate 16 is stent cover platform, and test specimen pull bar 106 is arranged on transmission nut support 105, and control joint 107 is arranged on
On test specimen pull bar 106, retaining ring 109 is arranged on suspension member joint 111, and suspension member joint 111 penetrates 107 interior pin of control joint
108 fix, and mandrel 110 is arranged on suspension member joint 111, and mandrel 110 is fixed on extension the first peg 112, the second peg 112A
On part joint 111, the first peg 112, the second peg 112A can adopt steel wire, be easy to flexible getting sample.
Connect the first peg 112, the second peg 112A, the first peg 112, the second peg 112A ends on suspension member joint 111
Portion is provided with hook, is provided with the standing screw 112B for matching is linked up with which in front of the first peg 112, the second peg 112A.First
Peg 112, the second peg 112A adopt soft steel wire;First peg 112, the second peg 112A front ends are provided with hook, and first hangs
Bar 112, the hook position of the second peg 112A front ends are connected with the axis rod of roller skate bottom four wheels, by standing screw
112B is fixed.
Second drive 117 is arranged on motor 114, and motor bracket 100 is arranged on base plate 16 through motor base 101,
Drive screw 115, transmission guide rod 103 and transmission nut 102 are arranged on base plate 16 through drive screw support 104, are driven spiral shell
Bar 115 is provided with transmission nut 102, and transmission nut 102 is arranged in transmission nut support 105, and transmission guide rod 103 is provided with biography
Dynamic nut bracket 105, transmission nut support 105 can on transmission guide rod 103 smooth sliding.Transmission guide rod 103 is by drive screw
Support 104 is fixed on base plate 16.
First drive 113 is arranged on drive screw 115, and chain 116 connects the second drive 117, the first drive
113 transmissions.Motor transmission structure 3 is driven by motor 114, drives drive screw 115 by chain 116, through transmission nut
106 displacement of the transmission of frame 105 test specimen pull bar, realizes moving left and right for shoe parts on shoe tree 12.
Counterweight explanation:Support weight 10kg, single footwear load 10.2kg=support weight+0.2kg counterweights, double footwear load 40kg
=support weight+5kg counterweights х 6.Parameter:Can fixed inline skate and double, roller-skates carry out test 3 times;Need to add on shoes
Loading capacity 10.2kg and 40kg, weight are replaceable;Maximum 100kg pulling force.Explanation:Roller skate is placed on by roller skate anti-skid tester
Surface roughness Ra is on the plane steel plate of 1.5um~2.0um so that roller skate wheel shaft is vertical in steel plate grinding direction, double
The weight of 40kg, single 10.2kg is put in above roller skate, is continuously applied the pulling force in the same direction with wheel shaft, reads maximum F, experiment
3 times, its meansigma methods is taken, then calculates coefficient of friction.
Embodiment described above only expresses the one of which embodiment of the present invention, and its description is more concrete and detailed,
But therefore can not be interpreted as the restriction to the scope of the claims of the present invention.It should be pointed out that for the ordinary skill of this area
For personnel, without departing from the inventive concept of the premise, some deformations and improvement can also be made, these belong to the present invention
Protection domain.Therefore, the protection domain of patent of the present invention should be defined by claims.
Claims (10)
1. a kind of roller skate anti-skid tester, includes:Shoe tree weight structure (1), test board displacement structure (2) and motor driven
Structure (3), it is characterised in that counterweight mandrel (4) is provided with above the shoe tree weight structure (1), the counterweight mandrel (4) is below
Counterweight base (6) is provided with, the counterweight base (6) is arranged below cylinder block (8), and the cylinder block (8) is arranged below shoe tree
(12);The cylinder block (8) is arranged on the second slide block (26), and second slide block (26) is arranged on the second slide rail (17),
Second slide rail (17) is arranged on sliding panel (14), and the sliding panel (14) is arranged on above base plate (16);
The test board displacement structure (2) is provided with rolling bearing units cushion block (35), and the base plate (16) is test board displacement structure
(2) host panel, the rolling bearing units cushion block (35) are arranged on rolling bearing units (34), and the base plate (16) is provided with sensing
Device support (30), the sensor stand (30) are provided with load sensors (31), and the load sensors (31) are provided with lotus
Reclosing head (33);
The motor transmission structure (3) includes motor (114), and the second drive (117) is arranged on motor (114), motor
Support (100) is arranged on base plate (16) through motor base (101), and the base plate (16) is arranged below drive screw support
(104), transmission nut support (105), drive screw (115), transmission guide rod (103) and transmission nut (102) are through transmission spiral shell
Bar support (104), transmission nut support (105) are arranged on base plate (16), and the first drive (113) is arranged on drive screw
(115), on, second drive (117) is connected the first drive (113) by chain (116).
2. a kind of roller-skates anti-skid tester according to claim 1, it is characterised in that:The counterweight base (6) is divided into
There is sliding panel (14), the sliding panel (14) is provided with cylinder block (8), sets between the counterweight base (6) and cylinder block (8)
There is counterweight guide rod (18), the second slide rail (17) is provided between the cylinder block (8) and sliding panel (14), under the sliding panel (14)
Shoe tree (12) is provided with, between the counterweight mandrel (4) and counterweight base (6), counterweight (5) is provided with.
3. a kind of roller-skates anti-skid tester according to claim 1, it is characterised in that:The base plate (16) is provided with cunning
Dynamic block (20) and the first slide rail (19), first slide rail (19) are provided with slide block (21), and the slide block (21) is provided with cunning
Block (22), the take-up housing (22) are provided with pole (10);The sliding panel (14) is arranged on pole (10), the second slide rail
(17) it is arranged on sliding panel (14), second slide rail (17) is provided with the second slide block (26), the cylinder block (8) is arranged on
On second slide block (26), lift cylinder (25) is arranged on cylinder block (8).
4. a kind of roller-skates anti-skid tester according to claim 2, it is characterised in that:The shoe tree (12) is arranged on footwear
On last carving fixed block (23), the shoe tree fixed block (23) is arranged in regulation panel seat (24), and regulation panel seat (24) is arranged on
On counterweight guide rod seat (7), fixing bolt (13) is arranged in regulation panel seat (24) through shoe tree fixed block (23), and the counterweight is led
Bar (18) lower end is arranged on counterweight guide rod seat (7) through cylinder block (8), and counterweight base is fixed in counterweight guide rod (18) upper end
(6) on, the counterweight guide rod seat (7) connects lift cylinder (25) piston, and the counterweight mandrel (4) is arranged on through counterweight (5)
On counterweight base (6).
5. a kind of roller-skates anti-skid tester according to claim 3, it is characterised in that:Pole (10) the lower end connection
Slide block (21) on base plate (16), pole (10) upper end connection sliding panel (14);The base plate (16) is provided with four
Bar (10), four poles (10) connect four corners of sliding panel (14) respectively.
6. a kind of roller-skates anti-skid tester according to claim 1, it is characterised in that:The base plate (16) is fixed below
There is drive screw support (104), the drive screw support (104) is provided with drive screw (115), transmission guide rod (103), institute
State drive screw (115) and be provided with transmission nut support (105), the drive screw (115) is connected by transmission nut (102)
Transmission nut support (105), the transmission nut support (105) are arranged on transmission guide rod (103), test specimen pull bar (106)
End connection transmission nut support (105), test specimen pull bar (106) other end connection control joint (107), the control joint
(107) some pegs are provided with.
7. a kind of roller-skates anti-skid tester according to claim 6, it is characterised in that:Before the control joint (107)
End is provided with suspension member joint (111), and the suspension member joint (111) is provided with the first peg (112), the second peg (112A), described
First peg (112), the second peg (112A) end are provided with hook, in front of first peg (112), the second peg (112A)
It is provided with and the standing screw (112B) for matching is linked up with which.
8. a kind of roller-skates anti-skid tester according to claim 7, it is characterised in that:On the suspension member joint (111)
Retaining ring (109) is provided with, the retaining ring (109) is fixed on suspension member joint (111) on control joint (107), the suspension member
It is fixed that joint (111) penetrates the interior pin (108) of control joint (107).
9. a kind of roller-skates anti-skid tester according to claim 7, it is characterised in that:Before the suspension member joint (111)
End is provided with groove, and suspension member joint (111) front end groove is equipped with mandrel (110), first peg (112), second
Peg (112A) end in the groove of suspension member joint (111), be surrounded with the mandrel (110) the first peg (112), the
Two pegs (112A), first peg (112), the second peg (112A) end pass through mandrel (110) connection hanging piece joint
(111)。
10. a kind of roller-skates anti-skid tester according to claim 1, it is characterised in that:The base plate (16) sets below
There is straight line slide bar (37), the straight line slide bar (37) is fixed on base plate by straight line slider block (36) through after rolling bearing units (34)
(16), on, the rolling bearing units cushion block (35) is provided with fixed plate (40), and sensor block (32) is arranged in fixed plate (40), described
Fixed plate (40) is respectively arranged at the two ends with a location-plate (38), and the location-plate (38) is set on the fixed plate (40) into inner concave shape
There is test board (39), the test board (39) is arranged in location-plate (38) cavity at fixed plate (40) two ends.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201610893651.7A CN106568707A (en) | 2016-10-13 | 2016-10-13 | Rollerskate non-skid testing machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201610893651.7A CN106568707A (en) | 2016-10-13 | 2016-10-13 | Rollerskate non-skid testing machine |
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Publication Number | Publication Date |
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CN106568707A true CN106568707A (en) | 2017-04-19 |
Family
ID=58531926
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201610893651.7A Pending CN106568707A (en) | 2016-10-13 | 2016-10-13 | Rollerskate non-skid testing machine |
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CN (1) | CN106568707A (en) |
Cited By (3)
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CN108760621A (en) * | 2018-05-30 | 2018-11-06 | 浙江工贸职业技术学院 | A kind of shoe soles slip stopping performance tester |
CN109297728A (en) * | 2018-11-22 | 2019-02-01 | 开平市新丽华电子有限公司 | A kind of wheel testing apparatus |
US20210381951A1 (en) * | 2020-02-26 | 2021-12-09 | University Of Tennessee Research Foundation | Surface performance testing apparatus, systems and methods |
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EP0332848A2 (en) * | 1988-03-14 | 1989-09-20 | Herbert Dr.-Ing. Funck | Method and device for determining the friction properties of shoes on floor coverings |
CN2410635Y (en) * | 2000-03-07 | 2000-12-13 | 高铁检测仪器(东莞)有限公司 | Testing machine for investigating antiskid property of shoes |
CN2645077Y (en) * | 2003-08-25 | 2004-09-29 | 陈元水 | Footwear static non-skid property horizontal traction test apparatus |
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CN101776568A (en) * | 2010-01-18 | 2010-07-14 | 高铁检测仪器(东莞)有限公司 | Non-slip testing method of finished shoes and material |
CN201622235U (en) * | 2010-02-25 | 2010-11-03 | 安踏(中国)有限公司 | Skid-proof performance detection device |
CN102778430A (en) * | 2012-08-01 | 2012-11-14 | 东莞市恒宇仪器有限公司 | Shoe limited slip testing machine based on computer system |
EP2546631A1 (en) * | 2011-07-14 | 2013-01-16 | Vibram S.p.A. | Device and method to perform grip tests |
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EP0332848A2 (en) * | 1988-03-14 | 1989-09-20 | Herbert Dr.-Ing. Funck | Method and device for determining the friction properties of shoes on floor coverings |
CN2410635Y (en) * | 2000-03-07 | 2000-12-13 | 高铁检测仪器(东莞)有限公司 | Testing machine for investigating antiskid property of shoes |
CN2645077Y (en) * | 2003-08-25 | 2004-09-29 | 陈元水 | Footwear static non-skid property horizontal traction test apparatus |
CN2927039Y (en) * | 2006-08-01 | 2007-07-25 | 高铁检测仪器(东莞)有限公司 | Anti-skid tester for measuring friction coefficient |
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EP2546631A1 (en) * | 2011-07-14 | 2013-01-16 | Vibram S.p.A. | Device and method to perform grip tests |
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108760621A (en) * | 2018-05-30 | 2018-11-06 | 浙江工贸职业技术学院 | A kind of shoe soles slip stopping performance tester |
CN108760621B (en) * | 2018-05-30 | 2020-06-09 | 浙江工贸职业技术学院 | Sole limited slip performance tester |
CN109297728A (en) * | 2018-11-22 | 2019-02-01 | 开平市新丽华电子有限公司 | A kind of wheel testing apparatus |
US20210381951A1 (en) * | 2020-02-26 | 2021-12-09 | University Of Tennessee Research Foundation | Surface performance testing apparatus, systems and methods |
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