CN208686908U - Guide-bar mechanism - Google Patents

Guide-bar mechanism Download PDF

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Publication number
CN208686908U
CN208686908U CN201821236214.9U CN201821236214U CN208686908U CN 208686908 U CN208686908 U CN 208686908U CN 201821236214 U CN201821236214 U CN 201821236214U CN 208686908 U CN208686908 U CN 208686908U
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CN
China
Prior art keywords
guide
guide rod
bar mechanism
crank
transmission shaft
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn - After Issue
Application number
CN201821236214.9U
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Chinese (zh)
Inventor
赖建林
张天翼
张秀峰
马徐武
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Gree Electric Appliances Inc of Zhuhai
Zhuhai Gree Intelligent Equipment Co Ltd
Original Assignee
Gree Electric Appliances Inc of Zhuhai
Zhuhai Gree Intelligent Equipment Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Gree Electric Appliances Inc of Zhuhai, Zhuhai Gree Intelligent Equipment Co Ltd filed Critical Gree Electric Appliances Inc of Zhuhai
Priority to CN201821236214.9U priority Critical patent/CN208686908U/en
Application granted granted Critical
Publication of CN208686908U publication Critical patent/CN208686908U/en
Withdrawn - After Issue legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model provides a kind of guide-bar mechanism, including bottom plate;Transmission shaft, transmission shaft are horizontally disposed on bottom plate;Crank, crank are connected with transmission shaft;Guide rod component, the first end of guide rod component is movably connected with bottom plate, the second end of guide rod component is connected with crank, crank is between guide rod component and transmission shaft, the height opposing cranks of partial guide rod component in the vertical direction are adjustably arranged, and crank can be driven to rotate for transmission shaft so that guide rod component is swung.Since the position opposing cranks of the guide rod component of the part are changed, motion state of the guide rod component under different angular speed can effectively be detected using the guide-bar mechanism, effectively improve the practicability and reliability of the guide-bar mechanism.

Description

Guide-bar mechanism
Technical field
The utility model relates to guide-bar mechanism equipment technical fields, in particular to a kind of guide-bar mechanism.
Background technique
In the prior art, the mechanical structure of guide-bar mechanism is although relatively simple, but the related ginseng such as its length dimension, revolving speed Number cannot change, and during realization can not the related datas such as real-time perfoming angular speed, angular acceleration adopt Collection, storage and analysis processing, it is more single to read data-selected scheme, causes guide-bar mechanism the problem of the practicability is poor in the prior art.
Utility model content
The main purpose of the utility model is to provide a kind of guide-bar mechanisms, practical to solve guide-bar mechanism in the prior art Property difference problem.
To achieve the goals above, one aspect according to the present utility model provides a kind of guide-bar mechanism, comprising: bottom Plate;Transmission shaft, transmission shaft are horizontally disposed on bottom plate;Crank, crank are connected with transmission shaft;Guide rod component, guide rod The first end of component is movably connected with bottom plate, and the second end of guide rod component is connected with crank, and crank is located at guide rod group Between part and transmission shaft, the height opposing cranks of the guide rod component of part in the vertical direction are adjustably arranged, and transmission shaft can band Dynamic crank rotates so that guide rod component is swung.
Further, guide rod component includes: guide rod, and guide rod is arranged along the vertical direction, and first end and the bottom plate of guide rod can live It is connected dynamicly;Connecting shaft, connecting shaft is horizontally disposed, and the first end of connecting shaft and the second end of guide rod movably connect It connects, the second end of connecting shaft is connected with crank;Lock piece, lock piece are connected with the second end of connecting shaft, and lock piece has The lock position and lock piece of crank and the second end locking of connecting shaft are had the solution lock-bit of crank and connecting shaft unlock It sets, when lock piece is located at unlocked position, connecting shaft can be slided along the length direction opposing cranks of guide rod.
Further, the limit hole passed through for the second end of connecting shaft, the longitudinal direction edge of limit hole are offered on crank Vertical direction extends.
Further, guide rod component further include: bearing sleeve, bearing sleeve are connected with guide rod, and bearing sleeve can be along leading The length direction of bar is slidably arranged, and the first end of connecting shaft is connected with bearing sleeve.
Further, guide rod component further include: distance sleeve, distance sleeve are located in bearing sleeve, and distance sleeve is arranged In in the first end of connecting shaft.
Further, guide rod component further include: bearing block, bearing block are slidably disposed on bottom plate;Balance staff, balance staff edge Horizontally arranged, balance staff is connected with bearing block, and the second end of guide rod is connected with bearing block and/or balance staff, and transmission shaft can Drive leader drives balance staff to swing.
Further, guide-bar mechanism further include: the first encoder, the first encoder are connected with bottom plate, the first encoder Output shaft be connected by shaft coupling with balance staff, the first encoder be used for acquire balance staff angular speed signal.
Further, guide-bar mechanism further include: the first end of second encoder, transmission shaft is connected with crank, transmission shaft Second end be connected by shaft coupling with the output shaft of second encoder, second encoder is used to acquire the angular speed of transmission shaft Signal.
Further, bottom plate includes first support, second support and third bracket, first support, second support third branch Frame is set gradually along the length direction of bottom plate, and guide rod component is located at the side of first support, the first end of transmission shaft with first Frame is connected, and the second end of transmission shaft is connected with second support, and second encoder is connected with third bracket.
Further, guide-bar mechanism further include: driving portion, transmission shaft are connected, and driving portion is for driving transmission shaft to rotate.
Further, guide-bar mechanism includes: driven pulley, and driven pulley is connected with transmission shaft, and driven pulley passes through skin Band is connected with the driving pulley of driving portion.
Further, guide-bar mechanism further include: measuring device, measuring device are connected with bottom plate or crank, measuring device The distance slided for reading connecting shaft in vertical direction opposing cranks.
Further, measuring device includes grating scale and/or displacement sensor.
Further, guide-bar mechanism further include: controller;Display device, display device are electrically connected with the controller, display dress Set the motion information for showing transmission shaft and guide rod component.
Using the technical solution of the utility model, the height of the guide rod component of part is arranged to relatively bent in vertical direction The adjustable set-up mode of handle changes guide rod group since the position opposing cranks of the guide rod component of the part are changed The geometric center of part is at a distance from the geometric center of crank, so that the distance between position changes between crank and guide rod component Become, then makes in the case where the active force of crank is constant, it can be by adjusting the guide rod component of part in opposing cranks Height can change the physical parameters such as the angular speed of guide rod component.It can effectively detect that guide rod component exists using the guide-bar mechanism Motion state under different angular speed effectively improves the practicability and reliability of the guide-bar mechanism.
Detailed description of the invention
The accompanying drawings constituting a part of this application is used to provide a further understanding of the present invention, this is practical Novel illustrative embodiments and their description are not constituteed improper limits to the present invention for explaining the utility model. In the accompanying drawings:
Fig. 1 shows the structural schematic diagram of the first embodiment of guide-bar mechanism according to the present utility model;
Fig. 2 shows enlarged structure schematic diagrams at the A in Fig. 1;
Fig. 3 shows the structural schematic diagram of the second embodiment of guide-bar mechanism according to the present utility model;
Fig. 4 shows the structural schematic diagram of the 3rd embodiment of guide-bar mechanism according to the present utility model.
Wherein, the above drawings include the following reference numerals:
1, bottom plate;2, the first encoder;3, pedestal;4, shaft coupling;5, bearing block;6, bearing bracket;7, balance staff;
8, end ring;9, guide rod;10, end ring;11, bearing sleeve;12, distance sleeve;13, connecting shaft;14, bent Handle;15, bearing bracket;16, bearing block;17, driven pulley;18, distance sleeve;19, bearing (ball) cover;20, transmission shaft;21, Pedestal;22, safety catch;23, counterweight;24, driving pulley;25, belt;26, motor;27, second encoder;28, first Frame;29, second support;30, third bracket.
Specific embodiment
It should be noted that in the absence of conflict, the features in the embodiments and the embodiments of the present application can phase Mutually combination.The utility model will be described in detail below with reference to the accompanying drawings and embodiments.
It should be noted that term used herein above is merely to describe specific embodiment, and be not intended to restricted root According to the illustrative embodiments of the application.As used herein, unless the context clearly indicates otherwise, otherwise singular Also it is intended to include plural form, additionally, it should be understood that, when in the present specification using term "comprising" and/or " packet Include " when, indicate existing characteristics, step, operation, device, component and/or their combination.
It should be noted that term " first ", " second " etc. in the description and claims of this application and attached drawing It is to be used to distinguish similar objects, without being used to describe a particular order or precedence order.It should be understood that the art used in this way Language is interchangeable under appropriate circumstances, so that presently filed embodiment described herein for example can be in addition to illustrating herein Or the sequence other than those of description is implemented.In addition, term " includes " and " having " and their any deformation, it is intended that Cover it is non-exclusive include, for example, containing the process, method, system, product or equipment of a series of steps or units need not limit In step or unit those of is clearly listed, but may include be not clearly listed or for these process, methods, produce The other step or units of product or equipment inherently.
For ease of description, spatially relative term can be used herein, as " ... on ", " ... top ", " ... upper surface ", " above " etc., for describing such as a device shown in the figure or feature and other devices or spy The spatial relation of sign.It should be understood that spatially relative term is intended to comprising the orientation in addition to device described in figure Except different direction in use or operation.For example, being described as if the device in attached drawing is squeezed " in other devices It will be positioned as " under other devices or construction after part or construction top " or the device of " on other devices or construction " Side " or " under other devices or construction ".Thus, exemplary term " ... top " may include " ... top " and " in ... lower section " two kinds of orientation.The device can also be positioned with other different modes and (is rotated by 90 ° or in other orientation), and And respective explanations are made to the opposite description in space used herein above.
Now, the illustrative embodiments according to the application are more fully described with reference to the accompanying drawings.However, these are exemplary Embodiment can be implemented by many different forms, and should not be construed to be limited solely to embodiment party set forth herein Formula.It should be understood that it is thoroughly and complete to these embodiments are provided so that disclosure herein, and these are shown The design of example property embodiment is fully conveyed to those of ordinary skill in the art, in the accompanying drawings, for the sake of clarity, it is possible to expand The big thickness of layer and region, and make that identical device is presented with like reference characters, thus omission retouches them It states.
In conjunction with shown in Fig. 1 to Fig. 4, embodiment according to the present utility model provides a kind of guide-bar mechanism.
Specifically, as shown in Figure 1, the guide-bar mechanism includes bottom plate 1, transmission shaft 20, crank 14 and guide rod component.Transmission shaft 20 is horizontally disposed on bottom plate 1.Crank 14 is connected with transmission shaft 20.The first end of guide rod component can live with bottom plate 1 It is connected dynamicly, the second end of guide rod component is connected with crank 14, and crank 14 is between guide rod component and transmission shaft 20, portion Point guide rod component height opposing cranks 14 in the vertical direction be adjustably arranged, transmission shaft 20 can drive the rotation of crank 14 with Swing guide rod component.
In the present embodiment, the height of the guide rod component of part is arranged to set vertical direction opposing cranks 14 are adjustable Mode is set, since the position opposing cranks 14 of the guide rod component of the part are changed, that is, changes the geometry of guide rod component Center, so that the distance between position changes between crank and guide rod component, then makes at a distance from the geometric center of crank It obtains in the case where the active force of crank is constant, can be changed by adjusting the guide rod component of part in the height of opposing cranks Become the physical parameters such as the angular speed of guide rod component.It can effectively detect guide rod component in different angular speed using the guide-bar mechanism Under motion state, effectively improve the practicability and reliability of the guide-bar mechanism.
Specifically, guide rod component includes guide rod 9, connecting shaft 13 and lock piece.Guide rod 9 is arranged along the vertical direction, guide rod 9 First end is movably connected with bottom plate 1.Connecting shaft 13 is horizontally disposed, first end and the guide rod 9 of connecting shaft 13 Second end is movably connected, and the second end of connecting shaft 13 is connected with crank 14.The second end phase of lock piece and connecting shaft 13 There is lock position and lock piece by crank 14 and the second end locking of connecting shaft 13 to have crank for connection, lock piece 14 unlocked positions unlocked with connecting shaft 13, when lock piece is located at unlocked position, connecting shaft 13 can be along the length direction of guide rod 9 Opposing cranks 14 slide.Setting can facilitate the height for adjusting 13 opposing cranks 14 of connecting shaft in this way.Wherein, such as f institute in Fig. 2 Show, lock piece is nut.
Wherein, the limit hole passed through for the second end of connecting shaft 13, the longitudinal direction edge of limit hole are offered on crank 14 Vertical direction extends.By the way that limit hole is arranged, the connection reliability of connecting shaft 13 Yu crank 14 can be improved.
Further, guide rod component further includes bearing sleeve 11.Bearing sleeve 11 is connected with guide rod 9, bearing sleeve 11 Can slidably it be arranged along the length direction of guide rod 9, the first end of connecting shaft 13 is connected with bearing sleeve 11.Setting can in this way Effectively improve the service life of guide rod component.
Guide rod component further includes distance sleeve 12.Distance sleeve 12 is located in bearing sleeve 11, and distance sleeve 12 is sheathed on In the first end of connecting shaft 13.Setting can further improve the service life of guide rod component in this way.
Guide rod component further includes bearing block 5 and balance staff 7.Bearing block 5 is slidably disposed on bottom plate 1.Balance staff 7 is along level Direction setting, balance staff 7 are connected with bearing block 5, and the second end of guide rod 9 is connected at least one of bearing block 5 and balance staff 7 Connect, transmission shaft 20 can drive leader 9 drive balance staff 7 to swing, wherein the mobile limit of restricted bearing block 5 is set on bottom plate 1 Component, limit assembly can guarantee that under the driving of crank 14, bearing block 5 can slide within a preset range.
Guide-bar mechanism further includes the first encoder 2.First encoder 2 is connected with bottom plate 1, the output of the first encoder 2 Axis is connected by shaft coupling with balance staff 7, and the first encoder 2 is used to acquire the signal of the angular speed of balance staff 7.
Guide-bar mechanism further includes second encoder 27.The first end of transmission shaft 20 is connected with crank 14, transmission shaft 20 Second end is connected by shaft coupling with the output shaft of second encoder 27, and second encoder 27 is used to acquire the angle of transmission shaft 20 The signal of speed.
Further, bottom plate 1 includes first support 28, second support 29 and third bracket 30.First support 28, second 29 third bracket 30 of frame is set gradually along the length direction of bottom plate 1, and guide rod component is located at the side of first support 28, transmission shaft 20 First end be connected with first support 28, the second end of transmission shaft 20 is connected with second support 29, second encoder 27 with Third bracket 30 is connected.The mounting stability that can be improved transmission shaft 20 is set in this way.
Guide-bar mechanism further includes driving portion.Transmission shaft 20 is connected, and driving portion is for driving transmission shaft 20 to rotate.
Guide-bar mechanism includes driven pulley 17.Driven pulley 17 is connected with transmission shaft 20, and driven pulley 17 passes through belt It is connected with the driving pulley of driving portion.
Guide-bar mechanism further includes measuring device.Measuring device is connected with bottom plate 1 or crank 14, and measuring device is for reading The distance that connecting shaft 13 is slided in vertical direction opposing cranks 14.Setting enables to user can be directly from the guide rod machine in this way The mobile distance of connecting shaft is read on structure, further increases the practicability of the guide-bar mechanism.Preferably, measuring device includes At least one of grating scale and displacement sensor.
Specifically, in particular for the guide-bar mechanism experimental bench of conventional teaching, the relevant parameters such as length dimension, revolving speed It is unadjustable.Using the guide-bar mechanism, the angular speed of guide-bar mechanism experimental bench can be realized, angular acceleration realizes real time data The problem of acquisition, storage and analysis processing.In the present embodiment, due to having opened a limit hole on crack active part, then The effective length of adjustable crack active part, in addition it can adjust driving portion motor revolving speed, to meet different realities The demand of proved recipe case.
In the present embodiment, guide-bar mechanism further includes controller and display device.Display device is electrically connected with the controller, and is shown Showing device is used to show the motion information of transmission shaft 20 and guide rod component.Specifically, controller programs skill by using LABVIEW Art, can be with organized data acquisition interface, to realize at the acquisition of the related datas such as angular speed, angular acceleration, storage and analysis Reason, the movement for allowing learner more can systematically grasp guide-bar mechanism are gained knowledge.
By opening a limit hole on crank, realizes the controllability of crack active part effective length, guarantee a variety of religions Learn the feasibility of experimental program.Guide rod sliding pair part uses the mounting structure of the jacketed cylinder of bearing, reduces sliding pair part Friction and wear guarantees the smooth stable operation of guide-bar mechanism.It, can be to correlation using LABVIEW organized data acquisition system Data are acquired, analyze and handle, and realize the visualization of data, so that learner is easier simple and intuitively grasp The relevant knowledge of guide-bar mechanism.
When testing to guide-bar mechanism experimental bench, start motor 26, motor 26 drives driving pulley 24 to operate, actively Belt wheel 24 drives driven pulley 17 to operate by belt 25, and driven pulley 17 and transmission shaft are cooperatively connected by keyway, to make Transmission shaft and driven pulley keep running simultaneously, and transmission shaft is mounted on bearing block 16 by bearing, and bearing block 16 passes through bolt It being fastened on bearing bracket 15, one end (right end shown in FIG. 1) of transmission shaft is connected by shaft coupling 4 with encoder, Encoder is acquired the angular velocity signal of transmission shaft, and encoder is mounted on pedestal 21, the other end (Fig. 1 institute of transmission shaft The left end shown) it is cooperatively connected with crank, it is provided with limit hole on crank, connecting shaft 13 carries out installation company by the limit hole on crank It connects, and connecting shaft can carry out a certain range of adjusting in the limit hole of crank, it is effective to reach change crack active part The effect of length (the distance between central axis and crank center of connecting shaft), when transmission shaft operating when, just drive crank and Connecting shaft 13 operates synchronously, connecting shaft 13 by bearing, distance sleeve 12, bearing sleeve 11 and end ring 10 and guide rod 9 into Row is cooperatively connected, can be so that guide rod is swung when crank 14 and connecting shaft 13 operate, bottom and balance staff due to guide rod 7 are fixedly connected, therefore ensure that the synchronism that balance staff 7 and guide rod 9 are swung, and balance staff 7 is mounted on bearing block 5 by bearing, axis It holds seat 5 to be fixed on pedestal 3, the output end of balance staff 7 is connect by shaft coupling with encoder, angle of the encoder to output end Speed signal is acquired.Wherein, the collected angular velocity signal of encoder institute can be received by data collecting card, and be presented In the LABVIEW acquisition system interface of storage on computers, so as to further analyze signal collected And processing.Wherein, the effective length of crack active part needs voluntarily to measure by hand after adjusting change, it cannot be guaranteed that precision, The accurate adjusting that crank effective length can be realized by way of increasing grating scale or displacement sensor, guarantees the standard of experiment True property.
Wherein, as shown in Figure 1, guide rod component further includes end ring 8, distance sleeve 18, bearing (ball) cover 19, safety catch 22, counterweight 23.Setting can effectively improve the stability and reliability of the guide-bar mechanism in this way.
Than that described above, it is also necessary to which explanation is " one embodiment " spoken of in the present specification, " another implementation Example ", " embodiment " etc. refer to that specific features, structure or the feature of embodiment description is combined to be included in the application summary Property description at least one embodiment in.It is not centainly to refer to the same reality that statement of the same race, which occur, in multiple places in the description Apply example.Furthermore, it is understood that is advocated is knot when describing a specific features, structure or feature in conjunction with any embodiment Other embodiments are closed to realize that this feature, structure or feature are also fallen in the scope of the utility model.
In the above-described embodiments, it all emphasizes particularly on different fields to the description of each embodiment, there is no the portion being described in detail in some embodiment Point, reference can be made to the related descriptions of other embodiments.
The above descriptions are merely preferred embodiments of the present invention, is not intended to limit the utility model, for this For the technical staff in field, various modifications and changes may be made to the present invention.It is all in the spirit and principles of the utility model Within, any modification, equivalent replacement, improvement and so on should be included within the scope of protection of this utility model.

Claims (14)

1. a kind of guide-bar mechanism characterized by comprising
Bottom plate (1);
Transmission shaft (20), the transmission shaft (20) are horizontally disposed on the bottom plate (1);
Crank (14), the crank (14) are connected with the transmission shaft (20);
The first end of guide rod component, the guide rod component is movably connected with the bottom plate (1), and the of the guide rod component Two ends are connected with the crank (14), and the crank (14) is between the guide rod component and the transmission shaft (20), portion The relatively described crank (14) of height of the guide rod component divided in the vertical direction is adjustably arranged, and the transmission shaft (20) can Crank (14) are driven to rotate so that the guide rod component is swung.
2. guide-bar mechanism according to claim 1, which is characterized in that the guide rod component includes:
Guide rod (9), the guide rod (9) are arranged along the vertical direction, and the first end and the bottom plate (1) of the guide rod (9) are movable Ground is connected;
Connecting shaft (13), the connecting shaft (13) is horizontally disposed, the first end of the connecting shaft (13) and the guide rod (9) second end is movably connected, and the second end of the connecting shaft (13) is connected with the crank (14);
Lock piece, the lock piece are connected with the second end of the connecting shaft (13), and the lock piece has the crank (14) have with the lock position of the second end locking of the connecting shaft (13) and the lock piece by the crank (14) with The unlocked position of connecting shaft (13) unlock, when the lock piece is located at the unlocked position, the connecting shaft (13) can Along relatively described crank (14) sliding of the length direction of the guide rod (9).
3. guide-bar mechanism according to claim 2, which is characterized in that offered on the crank (14) for the connecting shaft (13) longitudinal direction of the limit hole that second end passes through, the limit hole extends along the vertical direction.
4. guide-bar mechanism according to claim 2, which is characterized in that the guide rod component further include:
Bearing sleeve (11), the bearing sleeve (11) are connected with the guide rod (9), and the bearing sleeve (11) can be along described The length direction of guide rod (9) is slidably arranged, and the first end of the connecting shaft (13) is connected with the bearing sleeve (11).
5. guide-bar mechanism according to claim 4, which is characterized in that the guide rod component further include:
Distance sleeve (12), the distance sleeve (12) are located in the bearing sleeve (11), and the distance sleeve (12) is arranged In in the first end of the connecting shaft (13).
6. guide-bar mechanism according to claim 2, which is characterized in that the guide rod component further include:
Bearing block (5), the bearing block (5) are slidably disposed on the bottom plate (1);
Balance staff (7), the balance staff (7) is horizontally disposed, and the balance staff (7) is connected with the bearing block (5), described to lead The second end of bar (9) is connected with the bearing block (5) and/or the balance staff (7), and the transmission shaft (20) can drive described lead Bar (9) drives the balance staff (7) to swing.
7. guide-bar mechanism according to claim 6, which is characterized in that the guide-bar mechanism further include:
First encoder (2), first encoder (2) are connected with the bottom plate (1), first encoder (2) it is defeated Shaft is connected by shaft coupling with the balance staff (7), and first encoder (2) is used to acquire the angle speed of the balance staff (7) The signal of degree.
8. guide-bar mechanism according to claim 1, which is characterized in that the guide-bar mechanism further include:
The first end of second encoder (27), the transmission shaft (20) is connected with the crank (14), the transmission shaft (20) Second end be connected by shaft coupling with the output shaft of the second encoder (27), the second encoder (27) is for adopting Collect the signal of the angular speed of the transmission shaft (20).
9. guide-bar mechanism according to claim 8, which is characterized in that the bottom plate (1) includes first support (28), second Bracket (29) and third bracket (30), the first support (28), the second support (29) the third bracket (30) are along institute The length direction for stating bottom plate (1) is set gradually, and the guide rod component is located at the side of the first support (28), the transmission shaft (20) first end is connected with the first support (28), the second end of the transmission shaft (20) and the second support (29) It is connected, the second encoder (27) is connected with the third bracket (30).
10. guide-bar mechanism according to claim 1, which is characterized in that the guide-bar mechanism further include:
Driving portion, the transmission shaft (20) are connected, and the driving portion is for driving the transmission shaft (20) to rotate.
11. guide-bar mechanism according to claim 10, which is characterized in that the guide-bar mechanism includes:
Driven pulley (17), the driven pulley (17) are connected with the transmission shaft (20), and the driven pulley (17) passes through Belt is connected with the driving pulley of the driving portion.
12. guide-bar mechanism according to claim 2, which is characterized in that the guide-bar mechanism further include:
Measuring device, the measuring device are connected with the bottom plate (1) or the crank (14), and the measuring device is for reading Take the connecting shaft (13) in the distance of relatively described crank (14) sliding of vertical direction.
13. guide-bar mechanism according to claim 12, which is characterized in that the measuring device includes grating scale and/or position Displacement sensor.
14. guide-bar mechanism according to claim 1, which is characterized in that the guide-bar mechanism further include:
Controller;
Display device, the display device are electrically connected with the controller, and the display device is for showing the transmission shaft (20) and the motion information of the guide rod component.
CN201821236214.9U 2018-08-01 2018-08-01 Guide-bar mechanism Withdrawn - After Issue CN208686908U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821236214.9U CN208686908U (en) 2018-08-01 2018-08-01 Guide-bar mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821236214.9U CN208686908U (en) 2018-08-01 2018-08-01 Guide-bar mechanism

Publications (1)

Publication Number Publication Date
CN208686908U true CN208686908U (en) 2019-04-02

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821236214.9U Withdrawn - After Issue CN208686908U (en) 2018-08-01 2018-08-01 Guide-bar mechanism

Country Status (1)

Country Link
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108757867A (en) * 2018-08-01 2018-11-06 珠海格力智能装备有限公司 Guide-bar mechanism

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108757867A (en) * 2018-08-01 2018-11-06 珠海格力智能装备有限公司 Guide-bar mechanism
CN108757867B (en) * 2018-08-01 2024-05-28 珠海格力智能装备有限公司 Guide rod mechanism

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