CN207095872U - A kind of glass-frame riser device for testing stiffness - Google Patents
A kind of glass-frame riser device for testing stiffness Download PDFInfo
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- CN207095872U CN207095872U CN201721114247.1U CN201721114247U CN207095872U CN 207095872 U CN207095872 U CN 207095872U CN 201721114247 U CN201721114247 U CN 201721114247U CN 207095872 U CN207095872 U CN 207095872U
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Abstract
The utility model provides a kind of glass-frame riser device for testing stiffness, including:Pedestal;First fix bar, the first fix bar is on pedestal;Slide rail, slide rail are located at the bottom of the first fix bar and are connected with the first fix bar, and slide rail is provided with sliding block;Power load bearing component, the lower end of power load bearing component are connected with sliding block;Power loading component, power loading component it is movable with to the upper end of power load bearing component apply active force;Displacement measurement module, displacement measurement module are located at the side of power loading component;Power test module, power test module are located at one end of power loading component.According to the glass-frame riser device for testing stiffness of the utility model embodiment, the structure being combined using power load bearing component and power loading component, the rigidity of slide rail and sliding block can be tested, so that the sliding block and guide rail of glass-frame riser meet certain rigidity requirement, while the rigidity test demand of different types of single track glass-frame riser can be met.
Description
Technical field
The technical field of automotive test is the utility model is related to, more particularly to a kind of glass-frame riser device for testing stiffness.
Background technology
Vehicle glass lifting system is when carrying out system authentication experiment, it is necessary to test the rigidity of system, so that glass
The sliding block and guide rail of glass lifter meet certain rigidity requirement.Existing method of testing is all using hand-held dynamometer and graduated scale
Measure, the precision of measurement and the degree of accuracy can not be guaranteed.Also, experimental rig can not meet different type single track glass
The rigidity test demand of lifter, limits application.
Utility model content
In view of this, the utility model provides a kind of glass-frame riser device for testing stiffness.
In order to solve the above technical problems, the utility model uses following technical scheme:
According to the glass-frame riser device for testing stiffness of the utility model embodiment, including:
Pedestal;
First fix bar, first fix bar are located on the pedestal with extending substantially in the vertical direction;
Slide rail, the slide rail are located at the bottom of first fix bar and are connected with first fix bar, the slide rail
It is provided with sliding block;
Power load bearing component, the power load bearing component extend substantially in the vertical direction, the lower end of the power load bearing component and institute
Sliding block is stated to be connected;
Power loading component, the power loading component are located on the pedestal, and the power loading component is movable with to described
The upper end of power load bearing component applies active force;
Displacement measurement module, the displacement measurement module is located at the side of the power loading component for the collection power
The displacement of loading component;
Power test module, the power test module load located at one end of the power loading component for testing the power
The active force that part applies to the power load bearing component.
Further, the glass-frame riser device for testing stiffness also includes:
Second fix bar, second fix bar extend substantially in the vertical direction on the pedestal and with described the
One fix bar is spaced apart, axial direction of the power loading component along second fix bar movably with the second fix bar phase
Even.
Further, the power loading component includes:
Mounting seat, the mounting seat are movably located in second fix bar, and the mounting seat is provided with through hole;
Loaded member, the loaded member are movably located in the through hole along the axial direction of the through hole.
Further, the glass-frame riser device for testing stiffness also includes:Litter, the litter is generally in a horizontal direction
Extension, axial direction of the litter along second fix bar are movably connected with second fix bar, and the mounting seat is set
It is on the litter and movable along the axial direction of the litter.
Further, the displacement measurement module is located in the mounting seat.
Further, the through hole is formed as screwed hole, and the loaded member is formed as column and outside wall surface is provided with and institute
State screw thread corresponding to screwed hole.
Further, the power load bearing component is formed as sheet.
Further, the power load bearing component is formed as inverted T-shaped, and the power load bearing component includes horizontal end and perpendicular end, described
Horizontal end is connected with the sliding block, and the upper end at the perpendicular end and one end of the power loading component are oppositely arranged.
Further, the glass-frame riser device for testing stiffness also includes:Two fixed stations, two fixed station edges
The axially spaced-apart of first fix bar is set, and axial direction of at least one fixed station along first fix bar is movably
It is connected with first fix bar, the slide rail is connected with the fixed station.
Further, the glass-frame riser device for testing stiffness also includes:Data acquisition module, the data acquisition module
Block is connected with the displacement measurement module and the power test module respectively.
The utility model above-mentioned technical proposal has the beneficial effect that:
According to the glass-frame riser device for testing stiffness of the utility model embodiment, add by using power load bearing component with power
The device that part combines is carried, the displacement of power loading component is gathered by displacement measurement module, while is tested by power test module
The active force that power loading component applies to power load bearing component, the rigidity test for slide rail and sliding block can be realized, so that glass
The sliding block and guide rail of lifter meet certain rigidity requirement, are not only simple in structure, simple to operate, may also adapt in different shaped
The test of flint glass F lifter, there is versatility.
Brief description of the drawings
Fig. 1 is the structural representation of the glass-frame riser device for testing stiffness of the utility model embodiment;
Fig. 2 is the part-structure schematic diagram of the glass-frame riser device for testing stiffness of the utility model embodiment.
Reference:
Glass-frame riser device for testing stiffness 100;
Pedestal 10;First fix bar 11;Second fix bar 12;Fixed station 13;
Litter 20;
Slide rail 30;Sliding block 31;
Power load bearing component 40;Horizontal end 41;Perpendicular end 42;
Power loading component 50;Mounting seat 51;Loaded member 52;Through hole 53;Screw thread 54;Rolled round 55;
Displacement measurement module 60;Power test module 70;Data acquisition module 80.
Embodiment
It is new below in conjunction with this practicality to make the purpose, technical scheme and advantage of the utility model embodiment clearer
The accompanying drawing of type embodiment, the technical scheme of the utility model embodiment is clearly and completely described.Obviously, it is described
Embodiment is part of the embodiment of the present utility model, rather than whole embodiments.Based on described of the present utility model
Embodiment, the every other embodiment that those of ordinary skill in the art are obtained, belong to the scope that the utility model is protected.
The glass-frame riser device for testing stiffness 100 according to the utility model embodiment is specifically described below in conjunction with the accompanying drawings.
As depicted in figs. 1 and 2, base is included according to the glass-frame riser device for testing stiffness 100 of the utility model embodiment
The 10, first fix bar 11 of seat, slide rail 30, power load bearing component 40, power loading component 50, displacement measurement module 60 and power test module
70。
Specifically, the first fix bar 11 is located on pedestal 10 with extending substantially in the vertical direction, and slide rail 30 is located at first
The bottom of fix bar 11 and it is connected with the first fix bar 11, slide rail 30 is provided with sliding block 31, and power load bearing component 40 is approximately along vertical
Direction extends, and the lower end of power load bearing component 40 is connected with sliding block 31, and power loading component 50 is located on pedestal 10, power loading component 50
It is movable with to the upper end of power load bearing component 40 apply active force, displacement measurement module 60 located at power loading component 50 side with
For gathering the displacement of power loading component 50, power test module 70 loads located at one end of power loading component 50 for test force
The active force that part 50 applies to power load bearing component 40.
In other words, according to the glass-frame riser device for testing stiffness 100 of the utility model embodiment, mainly by pedestal 10,
70 groups of first fix bar 11, slide rail 30, power load bearing component 40, power loading component 50, displacement measurement module 60 and power test module
Into the first fix bar 11 is located on pedestal 10 with extending substantially in the vertical direction, and slide rail can be provided with the bottom of the first fix bar 11
30, and slide rail 30 is connected with the first fix bar 11, slide rail 30 is provided with the sliding block 31 that can be slidably reciprocated along slide rail 30, sliding block 31
Fixture (not shown) can be provided between slide rail 30, by fixture sliding block 31 can be made to be fixed on slide rail 30, just
Tested in the rigidity to sliding block 31 and slide rail 30.The lower end of power load bearing component 40 can be connected with sliding block 31, power load bearing component
40 extend substantially in the vertical direction, by the displacement for applying regulation active force and measuring force load bearing component 40 to power load bearing component 40
The rigidity test for sliding block 31 and slide rail 30 can be realized.Power loading component 50 may be provided on pedestal 10, power loading component 50
It is movable to apply active force, the effect of the upper end of power load bearing component 40 in power loading component 50 to the upper end of power load bearing component 40
Under be subjected to displacement, the side of power loading component 50 can be provided with displacement measurement module 60, and displacement measurement module 60 is formed as displacement
Sensor, the displacement of power loading component 50 can be gathered by displacement measurement module 60, can be provided with one end of power loading component 50
Power test module 70, power test module 70 are formed as force snesor, can pass through the test force loading component 50 of power test module 70
The amount of force applied to power load bearing component 40.
Thus, according to the glass-frame riser device for testing stiffness 100 of the utility model embodiment, by using power supporting part
The device that part 40, power loading component 50, displacement measurement module 60 and power test module 70 are combined, can be carried by measuring force
The displacement of part 40 and power loading component 50 are realized for sliding block 31 and slide rail 30 to the active force that power load bearing component 40 applies
Rigidity test.
According to one embodiment of the present utility model, glass-frame riser device for testing stiffness 100 also includes:Second fix bar
12。
Specifically, the second fix bar 12 is located on pedestal 10 and between the first fix bar 11 with extending substantially in the vertical direction
Separate, axial direction of the power loading component 50 along the second fix bar 12 is movably connected with the second fix bar 12.That is, power adds
Carrying part 50 can be along the axial direction activity of the second fix bar 12, it is possible to achieve the in the vertical direction of power loading component 50
Position adjustment.
It should be noted that can be integrally formed between the fix bar 11 of pedestal 10 and first and the second fix bar 12, also may be used
So that the first fix bar 11 and the second fix bar 12 are removably mounted on pedestal 10.
Further, power loading component 50 includes mounting seat 51 and loaded member 52.
Specifically, mounting seat 51 is movably located in the second fix bar 12, and mounting seat 51 is provided with through hole 53, loaded member
52 are movably located in through hole 53 along the axial direction of through hole 53, and position of the mounting seat 51 in the second fix bar 12 can be adjusted,
Can realize the position adjustment of the in the vertical direction of power loading component 50, mounting seat 51 can directly with the phase of the second fix bar 12
Even.Loaded member 52 can be towards the activity of power load bearing component 40 until one end of loaded member 52 offsets with power load bearing component 40, loading
Part 52 continues towards the activity of power load bearing component 40 and applies regulation active force, the upper end of power load bearing component 40 to power load bearing component 40
It is subjected to displacement in the presence of active force.
Further, glass-frame riser device for testing stiffness 100 also includes litter 20.
Specifically, litter 20 extends generally in a horizontal direction, axial direction of the litter 20 along the second fix bar 12 movably with
Second fix bar 12 is connected, and mounting seat 51 is located on litter 20 and movable along the axial direction of litter 20, that is to say, that power loading unit
Part 50 can be connected by litter 20 with the second fix bar 12, and power loading component 50 can lead to along the axially activity of litter 20
Cross 50 position on litter 20 of adjustment power loading component, it is possible to achieve adjust the position of power loading component 50 in the horizontal direction
It is whole.Litter 20 can gap coordinates between the second fix bar 12 and mounting seat 51 respectively, and can be realized by plum blossom bolt
The fixation and unblock of litter 20.
Preferably, displacement measurement module 60 is located in mounting seat 51, and the upper end of power load bearing component 40 applies in loaded member 52
Active force under be subjected to displacement, the displacement of the upper end of power load bearing component 40 can be measured by displacement measurement module 60.
Alternatively, through hole 53 is formed as screwed hole, and loaded member 52 is formed as column and outside wall surface is provided with and screwed hole pair
The screw thread 54 answered, by rotate loaded member 52 can make loaded member 52 in through hole 53 it is movable, and then make loaded member 52 close or
Away from power load bearing component 40, guiding and self-locking action using screw thread 54, it is easy to the application of active force, in the end of loaded member 52
Rolled round 55 can be provided with, the handle by rotating rolled round 55 can realize the application of active force.
According to one embodiment of the present utility model, power load bearing component 40 is formed as sheet, is easy to improve measuring accuracy.
Alternatively, power load bearing component 40 is formed as inverted T-shaped, and power load bearing component 40 includes horizontal end 41 and perpendicular end 42, horizontal end 41
It is connected with sliding block 31, the upper end and one end of power loading component 50 at perpendicular end 42 are oppositely arranged, and loaded member 52 is movable towards perpendicular end 42
And applying active force to perpendicular end 42, perpendicular end 42 is by active force and is subjected to displacement, and loaded member 52 can be formed as leading screw.
In some embodiments of the present utility model, glass-frame riser device for testing stiffness 100 also includes two
Fixed station 13.
Specifically, axially spaced-apart of two fixed stations 13 along the first fix bar 11 is set, and at least one fixed station 13 is along the
The axial direction of one fix bar 11 is movably connected with the first fix bar 11, and slide rail 30 is connected with fixed station 13, can pass through plum blossom
Bolt realizes the installation and unloading between the fix bar 11 of fixed station 13 and first, can by adjusting the distance between two fixed stations 13
To be adapted to the mounting hole of different types of single track glass-frame riser, there is versatility.
In some embodiments of the present utility model, glass-frame riser device for testing stiffness 100 also includes data
Acquisition module 80.
Specifically, data acquisition module 80 is connected with displacement measurement module 60 and power test module 70 respectively, can gather
And show the data of displacement measurement module 60 and power test module 70.
Sum it up, according to the glass-frame riser device for testing stiffness 100 of the utility model embodiment, can be to slide rail 30
Tested with the rigidity of sliding block 31, so that the sliding block and guide rail of glass-frame riser meet certain rigidity requirement, while can be with
Meet the rigidity test demand of different types of single track glass-frame riser, be not only simple in structure, it is simple to operate, also with general
Property.
According to the glass-frame riser device for testing stiffness 100 of the utility model embodiment when in use, regulation loading first
The position of part 52, loaded member 52 is directed at the position of experiment needed for the side of power load bearing component 40, then shake rolled round 55 so that
Loaded member 52 touches the side of power load bearing component 40, finally according to the requirement of experiment, continues to shake rolled round 55, increases loaded
Pass through the size of the test load of power test module 70, when load reaches requirement, 40 corresponding position of record power load bearing component simultaneously
Move.
Described above is preferred embodiment of the present utility model, it is noted that for the ordinary skill of the art
For personnel, on the premise of principle described in the utility model is not departed from, some improvements and modifications can also be made, these improvement
The scope of protection of the utility model is also should be regarded as with retouching.
Claims (10)
- A kind of 1. glass-frame riser device for testing stiffness, it is characterised in that including:Pedestal;First fix bar, first fix bar are located on the pedestal with extending substantially in the vertical direction;Slide rail, the slide rail are located at the bottom of first fix bar and are connected with first fix bar, set on the slide rail There is sliding block;Power load bearing component, the power load bearing component extend substantially in the vertical direction, lower end and the cunning of the power load bearing component Block is connected;Power loading component, the power loading component are located on the pedestal, and the power loading component is movable to be held to the power The upper end for carrying part applies active force;Displacement measurement module, the displacement measurement module load located at the side of the power loading component for gathering the power The displacement of part;Power test module, the power test module is located at one end of the power loading component for the test power loading component The active force applied to the power load bearing component.
- 2. glass-frame riser device for testing stiffness according to claim 1, it is characterised in that also include:Second fix bar, second fix bar are consolidated with extending substantially in the vertical direction on the pedestal and with described first Fixed pole is spaced apart, and axial direction of the power loading component along second fix bar is movably connected with second fix bar.
- 3. glass-frame riser device for testing stiffness according to claim 2, it is characterised in that the power loading component bag Include:Mounting seat, the mounting seat are movably located in second fix bar, and the mounting seat is provided with through hole;Loaded member, the loaded member are movably located in the through hole along the axial direction of the through hole.
- 4. glass-frame riser device for testing stiffness according to claim 3, it is characterised in that also include:Litter, the cunning Pole extends generally in a horizontal direction, axial direction of the litter along second fix bar movably with the second fix bar phase Even, the mounting seat is located on the litter and movable along the axial direction of the litter.
- 5. glass-frame riser device for testing stiffness according to claim 3, it is characterised in that the displacement measurement module is set In the mounting seat.
- 6. glass-frame riser device for testing stiffness according to claim 3, it is characterised in that the through hole is formed as screw thread Hole, the loaded member is formed as column and outside wall surface is provided with screw thread corresponding with the screwed hole.
- 7. glass-frame riser device for testing stiffness according to claim 1, it is characterised in that the power load bearing component is formed For sheet.
- 8. glass-frame riser device for testing stiffness according to claim 7, it is characterised in that the power load bearing component is formed For inverted T-shaped, the power load bearing component includes horizontal end and perpendicular end, and the horizontal end is connected with the sliding block, the upper end at the perpendicular end and One end of the power loading component is oppositely arranged.
- 9. glass-frame riser device for testing stiffness according to claim 1, it is characterised in that also include:Two fixed stations, Axially spaced-apart of two fixed stations along first fix bar is set, and at least one fixed station is fixed along described first The axial direction of bar is movably connected with first fix bar, and the slide rail is connected with the fixed station.
- 10. glass-frame riser device for testing stiffness according to claim 1, it is characterised in that also include:Data acquisition module Block, the data acquisition module are connected with the displacement measurement module and the power test module respectively.
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CN201721114247.1U CN207095872U (en) | 2017-09-01 | 2017-09-01 | A kind of glass-frame riser device for testing stiffness |
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CN201721114247.1U CN207095872U (en) | 2017-09-01 | 2017-09-01 | A kind of glass-frame riser device for testing stiffness |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN113375880A (en) * | 2021-06-01 | 2021-09-10 | 泰州健朗医疗器械有限公司 | Micro-catheter axial rigidity detection device and axial rigidity evaluation method |
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2017
- 2017-09-01 CN CN201721114247.1U patent/CN207095872U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113375880A (en) * | 2021-06-01 | 2021-09-10 | 泰州健朗医疗器械有限公司 | Micro-catheter axial rigidity detection device and axial rigidity evaluation method |
CN113375880B (en) * | 2021-06-01 | 2022-07-29 | 泰州健朗医疗器械有限公司 | Micro-catheter axial rigidity detection device and axial rigidity evaluation method |
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