CN201653317U - Reconfigurable articulated arm type coordinate measuring machine - Google Patents

Reconfigurable articulated arm type coordinate measuring machine Download PDF

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Publication number
CN201653317U
CN201653317U CN2010201684462U CN201020168446U CN201653317U CN 201653317 U CN201653317 U CN 201653317U CN 2010201684462 U CN2010201684462 U CN 2010201684462U CN 201020168446 U CN201020168446 U CN 201020168446U CN 201653317 U CN201653317 U CN 201653317U
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China
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joint
locking
recess
pedestal
retaining ring
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CN2010201684462U
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Chinese (zh)
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王文
卢科青
张选高
高贯斌
陈子辰
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Zhejiang University ZJU
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Zhejiang University ZJU
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Abstract

The utility model discloses a reconfigurable articulated arm type coordinate measuring machine. A base is connected with one end of a base measuring arm through a magnetic connector, revolving joints and swing joints are connected through a locking notch and a locking projected opening and fastened via a locking ring, the same is true of connection between the revolving joints and the base measuring arm or between the revolving joints, between the swing joints and non-base measuring arms, and between the revolving joints and the non-base measuring arms. Before use, types and numbers of the revolving joints, the swing joints and the measuring arms can be determined according to spatial freedom degree and measuring range required by a measuring task, and then corresponding components are selected and connected into a complete coordinate measuring machine through connectors. During measurement, freedom degree and size of measuring space of the measuring machine can be varied instantly by detaching or additional mounting of the components. The coordinate measuring machine can be reconfigured on site according to specific measurement requirements, and has high adaptability to measuring tasks.

Description

A kind of Restructurable joint arm type coordinate measurer
Technical field
The utility model relates to articulated arm coordinate measuring machine, especially relates to a kind of Restructurable joint arm type coordinate measurer.
Background technology
Articulated arm (flexible arm) coordinate measuring machine is a kind of novel multiple degrees of freedom non-Cartesian coordinate system measuring system.It copies people's waist joint, shoulder joint, elbow joint and carpal structure, a series of rod members are coupled together by rotatable joint, replace the linear measure longimetry benchmark with the measurement of angle benchmark, have that physical construction is simple, volume is little, in light weight, measurement range is big, flexible, advantage such as cost is lower and the measuring machine scene of moving on to can be measured.Articulated arm coordinate measuring machine is widely used in fields such as product quality detection, reverse engineering data acquisition, large-size workpiece assembling and positioning with its unique advantage.
Articulated arm coordinate measuring machine on the domestic and international market is mainly produced by FARO and HEXAGON two companies at present, all occurs with complete machine integrated form type (user is not removable).Because complete machine integrated form type carries out final assembly, debugging and precision calibration by manufacturer before dispatching from the factory, therefore can guarantee good duplicate measurements precision and stability.But also there is following deficiency simultaneously:
(1) adaptability of measuring task is relatively poor.Complete machine integrated form articulated arm coordinate measuring machine has fixing number of degrees of freedom, and measurement space, corresponding certain scope of application.When the user need finish the measuring task of multiple different scale, or measuring task may need the measuring machine of many moneys different model to participate in step by step measuring, or use the measuring machine of more number of degrees of freedom,, big brachium during in the face of complicated measurement environment.The problem of bringing is:
1. use the measuring machine of many moneys different model will improve the measurement cost greatly, and the use of many moneys type can make measuring process, the more apparent complexity of Measurement and Data Processing;
2. multiple degrees of freedom number, big brachium measuring machine can improve the scope surveyed of measuring machine, but when the size relative measurement machine of tested part hour, then not only waste measurement range, the more important thing is and lost measuring accuracy.Because the measuring error of articulated arm coordinate measuring machine is to amplify step by step with the increase of number of degrees of freedom, and measurement brachium.Under the prerequisite that satisfies required degree of freedom of measuring task and measurement space, should shorten gage beam length in order to guarantee measuring accuracy as far as possible, reduce the number of degrees of freedom, of measuring machine.
(2) can not realize the customization of individual demand measuring machine.For saving the manufacturer of arm-type coordinate measuring machine, the measuring machine model of its production, type are limited, and the user can only select to meet relatively the measuring machine of self measuring demand in the series that producer provided.To the client of special measurement demand is arranged, possibly can't provide suitable product, or need long time, higher price to customize.
(3) reusability of parts, sharing are relatively poor, and the product up-gradation cost is big.For the integrated type of complete machine, when its top parts break down, remaining part may be still can operate as normal, but, can't the parts of operate as normal be reused because its integrated morphology is limit.In addition, because the integrated type of complete machine limits, do not send out between client and the client that to carry out parts shared.In addition, in the time of need upgrading to measuring machine as if the client, needing can not realize the renewal of upgrading parts, and need the complete machine transformation, upgrade cost is big.
Summary of the invention
Deficiency at existing complete machine integrated form articulated arm coordinate measuring machine existence, the purpose of this utility model provides a kind of Restructurable joint arm type coordinate measurer, according to concrete measurement demand, and the modular parts of Dynamic Selection, measurement requirement is promptly satisfied in reconstruct, and the measuring machine of precision the best.
The technical scheme that its technical matters that solves the utility model adopts is:
A kind of Restructurable joint arm type coordinate measurer comprises pedestal, three revolute joints, three swinging joint, pedestal gage beam, two non-pedestal gage beams, gauge head unit and control computer; Pedestal is connected by the magnetic force interface with an end of pedestal gage beam, the other end of pedestal gage beam is connected by first retaining ring with first revolute joint, the other end of first revolute joint is connected by second retaining ring with an end of first swinging joint, the other end of first swinging joint is connected by the 3rd retaining ring with an end of the first non-pedestal gage beam, the other end of the first non-pedestal gage beam is connected by the 4th retaining ring with an end of second revolute joint, the other end of second revolute joint is connected by the 5th retaining ring with second swinging joint, one end, the other end of second swinging joint is connected by the 6th retaining ring with an end of the second non-pedestal gage beam, the other end of the second non-pedestal gage beam is connected by the 7th retaining ring with an end of the 3rd revolute joint, the other end of the 3rd revolute joint is connected by the 8th retaining ring with an end of the 3rd swinging joint, and the other end of the 3rd swinging joint is connected by the 9th retaining ring with an end of gauge head unit.
Described magnetic switch, its diametrical magnetization cylindrical permanent magnet is installed in the through hole at cylindrical iron yoke center, the iron yoke is divided into symmetrical two halves by antifreeze plate, and permanent magnet can rotate in through hole by magnetic switch button, magnetic switch axle, and the iron yoke is with copper bush outward and surrounds; Magnetic switch is contained in the magnetic force recess of pedestal upper surface, and the pedestal gage beam magnetic force tang of dress iron block matches in the magnetic force recess.
Described retaining ring comprises slotted collar, handle, nut, pin, locking cushion block and stretching screw; Be equipped with locking cushion block stretching screw pass the slotted collar openend after, one end of stretching screw cooperates with nut, and the other end of stretching screw and handle form by pin and be rotatably assorted, and the end of handle is cylindrical, and with locking cushion block be adjacent to, the center line of pin departs to the outside of handle; Between revolute joint and the swinging joint or being connected with the locking tang by the locking recess between revolute joint and pedestal gage beam or the revolute joint or between swinging joint and the non-pedestal gage beam or between revolute joint and the non-pedestal gage beam, lock with retaining ring; Wherein pedestal gage beam one end is the locking recess, and an end is the locking recess on the revolute joint, and the other end is the locking tang, and two ends all are the locking tang on the swinging joint, and the connecting interface on the gauge head unit is the locking recess.
Described magnetic force recess is a columniform inner recess, the semicircle evagination location bulb that on the disc of notched bottoms, has three equal circumference to distribute, the cylindrical evagination contact of copper that also has two equal circumference to distribute respectively has a cylindrical evagination reference column on the next door of contact in addition; Described magnetic force tang is a columniform evagination axle, " U " shape round bottom groove that has three equal circumference to distribute on the end disc of evagination axle, three location bulbs on position and the magnetic force recess are corresponding, the circular contact of the copper that also has two equal circumference to distribute in addition, the position is corresponding with two contacts on the magnetic force recess, the flat bottomed recess that " U " shape is respectively arranged is arranged on the next door of contact, the position is corresponding with two reference columns on the magnetic force recess, is embedded with the iron block of a circle in the centre of magnetic force tang evagination axle top disc.
Described locking recess is a columniform inner recess, the semicircle evagination location bulb that has three equal circumference to distribute on the disc of notched bottoms, the cylindrical evagination contact of copper that also has two equal circumference to distribute in addition; A cylindrical evagination reference column is respectively arranged on the next door of contact, in bulb formed circumference inside, location, embedded three button magnet that equal circumference distributes, the outer small size copper bush that is with of button magnet surrounds; The locking slot that " U " shape is arranged on the perimeter wall of locking recess; Described locking tang is a columniform evagination axle, " U " shape round bottom groove that has three equal circumference to distribute on the end disc of evagination axle, the position is corresponding with three the location bulbs of locking on the recess, the circular contact of the copper that also has two equal circumference to distribute, the position is corresponding with two contacts of locking on the recess, the flat bottomed recess that " U " shape is respectively arranged is arranged on the next door of contact, the position is corresponding with two reference columns of locking on the recess, three the formed circumference of round bottom groove inside, the button iron blocks that embedded three equal circumference distribute, the outer small size copper bush that is with of button iron block surrounds.
To form the critical piece independent design such as pedestal, revolute joint, swinging joint, gage beam, retaining ring, gauge head unit of articulated arm coordinate measuring machine, and the connecting interface that design has interchangeability on each parts.When not carrying out surveying work, these parts can be broken and be deposited.When carrying out measuring task, determine the model and the quantity of required revolute joint, swinging joint, gage beam earlier according to the size of required spatial degrees of freedom of measuring task and testee.Select corresponding parts then, and pedestal, gauge head unit and selected revolute joint, swinging joint, gage beam are connected into complete articulated arm coordinate measuring machine by connecting interface.In measuring process, can change the measurement space and the number of degrees of freedom, of measuring machine immediately by the dismounting and the insertion of each parts.This kind measuring machine can in time be reconstructed according to concrete measurement demand, has very strong measuring task adaptability.
The beneficial effect that the utlity model has is:
1) can in time be reconstructed according to concrete measurement demand, have very strong measuring task adaptability.
2) can meet the coordinate measuring machine of demand for customization.
3) when the parts of measuring machine break down, realize the fault separation by changing corresponding module.
4) unit interface has interchangeability, can realize that parts reuse, and realizes between the client that parts share, and can also realize the low-cost upgrading of measuring machine by changing local parts.
Description of drawings
Fig. 1 is the Restructurable joint arm type coordinate measurer synoptic diagram;
Fig. 2 is that magnetic force connecting interface A-A is to partial sectional view;
Fig. 3 is that magnetic force connecting interface B-B is to partial sectional view;
Fig. 4 is that locking connecting interface C is to partial view;
Fig. 5 is that locking connecting interface D-D is to partial sectional view;
Fig. 6 is a magnetic force recess schematic perspective view;
Fig. 7 is a magnetic force recess end face front elevation;
Fig. 8 is a magnetic force tang schematic perspective view;
Fig. 9 is a magnetic force tang end face front elevation;
Figure 10 is that magnetic switch unclamps synoptic diagram;
Figure 11 is that magnetic switch cuts out synoptic diagram;
Figure 12 is a locking recess schematic perspective view;
Figure 13 is a locking recess end face front elevation;
Figure 14 is a locking tang schematic perspective view;
Figure 15 is a locking tang end face front elevation;
Figure 16 is the retaining ring structural representation;
Figure 17 is that principle schematic is unclamped in retaining ring locking;
Figure 18 is Restructurable joint arm type coordinate measurer software system structure figure;
Figure 19 is the pairing software systems of measuring machine shown in Figure 15.
Among the figure: 1, pedestal, 2, the pedestal gage beam, 3, retaining ring, 4, revolute joint, 5, swinging joint,
6, non-pedestal gage beam, 7, gauge head unit, 8, control computer, 9, copper bush, 10, antifreeze plate, 11, iron block, 12, permanent magnet, 13, the iron yoke, 14, the magnetic switch axle, 15, the magnetic switch button, 16, the small size copper bush, 17, button magnet, 18, the magnetic force recess, 19, the button iron block, 20, the location bulb, 21, reference column, 22, contact, 23, stretching screw, 24, the magnetic force tang, 25, the round bottom groove, 26, flat bottomed recess, 27, contact, 28, the locking recess, 29, locking slot, 30, the locking recess, 31, slotted collar, 32, handle, 33, nut, 34, packing ring, 35, pin, 36, the locking cushion block.
Embodiment
As shown in Figure 1, the utility model comprises pedestal 1, three revolute joints 4, three swinging joint 5, pedestal gage beam 2, two non-pedestal gage beams 6, gauge head unit 7 and control computer 8; Pedestal 1 is connected by the magnetic force interface with an end of pedestal gage beam 2, the other end of pedestal gage beam 2 is connected by first retaining ring 3 with first revolute joint, the other end of first revolute joint 4 is connected by second retaining ring 3 with an end of first swinging joint 5, the other end of first swinging joint 5 is connected by the 3rd retaining ring 3 with an end of the first non-pedestal gage beam 6, the other end of the first non-pedestal gage beam 6 is connected by the 4th retaining ring 3 with an end of second revolute joint 4, the other end of second revolute joint 4 is connected by the 5th retaining ring 3 with second swinging joint, 5 one ends, the other end of second swinging joint 4 is connected by the 6th retaining ring 3 with an end of the second non-pedestal gage beam 6, the other end of the second non-pedestal gage beam 6 is connected by the 7th retaining ring 3 with an end of the 3rd revolute joint 4, the other end of the 3rd revolute joint 4 is connected by the 8th retaining ring 3 with an end of the 3rd swinging joint 5, and the other end of the 3rd swinging joint 5 is connected by the 9th retaining ring 3 with an end of gauge head unit 7.The length of pedestal gage beam 2 and non-pedestal gage beam 6 is all passed through demarcation in advance.When not carrying out measuring task, the above-mentioned parts independent distribution that disperses.
As Fig. 2, shown in Figure 3, described magnetic switch, its diametrical magnetization cylindrical permanent magnet 12 is installed in the through hole at cylindrical iron yoke 13 centers, iron yoke 13 is divided into the two halves of symmetry by antifreeze plate 10, permanent magnet 12 can rotate in through hole by magnetic switch button 15, magnetic switch axle 14, and the iron yoke 13 outer copper bush 9 that are with surround; Magnetic switch is contained in the magnetic force recess 18 of pedestal upper surface, and the pedestal gage beam magnetic force tang 24 of dress iron block 11 matches in the magnetic force recess 18.
As shown in figure 16, described retaining ring 3 comprises slotted collar 31, handle 32, nut 33, pin 35, locking cushion block 36 and stretching screw 23; Be equipped with locking cushion block 36 stretching screw 23 pass slotted collar 31 openends after, one end of stretching screw 23 cooperates with nut 33 by packing ring 34, the other end of stretching screw 23 and handle 32 form by pin 35 and are rotatably assorted, the end of handle 32 is cylindrical, and with locking cushion block 36 be adjacent to, the center line of pin 35 departs to the outside of handle 32; Between revolute joint 4 and the swinging joint 5 or be connected with locking tang 30 by locking recess 28 between revolute joint 4 and pedestal gage beam 2 or the revolute joint 4 or between swinging joint 5 and the non-pedestal gage beam 6 or between revolute joint 4 and the non-pedestal gage beam 6, with retaining ring 3 lockings, as Fig. 4, Fig. 5, shown in Figure 17; Wherein pedestal gage beam one end is locking recess 28, and an end is locking recess 28 on the revolute joint 4, and the other end is locking tang 30, and two ends all are locking tang 30 on the swinging joint 5, and the connecting interface on the gauge head unit 7 is locking recess 28.
As Fig. 6, shown in Figure 7, described magnetic force recess 18 is columniform inner recess, the semicircle evagination location bulb 20 that on the disc of notched bottoms, has three equal circumference to distribute, the cylindrical evagination contact 22 of copper that also has two equal circumference to distribute respectively has a cylindrical evagination reference column 21 on the next door of contact 22 in addition; As Fig. 8, shown in Figure 9, described magnetic force tang 24 is columniform evagination axles, " U " shape round bottom groove 25 that has three equal circumference to distribute on the end disc of evagination axle, three location bulbs 20 on position and the magnetic force recess 18 are corresponding, the circular contact 27 of the copper that also has two equal circumference to distribute in addition, the position is corresponding with two contacts 22 on the magnetic force recess 18, the flat bottomed recess 26 that " U " shape is respectively arranged is arranged on the next door of contact 27, the position is corresponding with two reference columns 21 on the magnetic force recess 18, is embedded with the iron block 11 of a circle in the centre of magnetic force tang 24 evagination axle top discs.
As shown in Figure 12 and Figure 13, described locking recess 28 is columniform inner recess, the semicircle evagination location bulb 20 that has three equal circumference to distribute on the disc of notched bottoms, the cylindrical evagination contact 22 of copper that also has two equal circumference to distribute in addition; A cylindrical evagination reference column 21 is respectively arranged on the next door of contact 22, in bulb 20 formed circumference inside, location, embedded three button magnet 17 that equal circumference distributes, the outer small size copper bush 16 that is with of button magnet 17 surrounds; The locking slot 29 that " U " shape is arranged on the perimeter wall of locking recess 28; As Figure 14, the described locking tang 30 of Figure 15 is columniform evagination axles, " U " shape round bottom groove 25 that has three equal circumference to distribute on the end disc of evagination axle, the position is corresponding with three the location bulbs 20 of locking on the recess 28, the circular contact 27 of the copper that also has two equal circumference to distribute, the position is corresponding with two contacts 22 of locking on the recess 28, the flat bottomed recess 26 that " U " shape is respectively arranged is arranged on the next door of contact 27, the position is corresponding with two reference columns 21 of locking on the recess 28, in three round bottom grooves, 25 formed circumference inside, the button iron blocks 19 that embedded three equal circumference distribute, the outer small size copper bush 16 that is with of button iron block 19 surrounds.
Revolute joint 4, swinging joint 5 its inside all are equipped with round grating encoding dish and unlimited signal projector.During measuring machine work, circle grating encoding dish is used to measure the relative rotation between the joint, and angular signal feeds back to control computer 8 by wireless signal transmitter.Revolute joint 4 can be realized unlimited rotation, and swinging joint 5 can swing in [0,180 °] scope.
On pedestal 1, revolute joint 4, swinging joint 5, pedestal gage beam 2, non-pedestal gage beam 6, the gauge head unit 7 connecting interface is arranged all, be used for the reconstruct assembling.Connecting interface is divided into the magnetic force connecting interface and locks two kinds of connecting interfaces.As Fig. 6, shown in Figure 8, the magnetic force connecting interface is made up of magnetic force recess 18 and magnetic force tang 24, and wherein magnetic force recess 18 is on the end face of pedestal 1, and magnetic force tang 24 is on the end face of pedestal gage beam 2.
The architectural feature of magnetic force recess 18 as shown in Figure 7, magnetic force recess 18 is columniform inner recess, the semicircle evagination location bulb 20 that has three equal circumference to distribute on the disc of notched bottoms.The contact 22 that also has two equal circumference distributions in addition, these two contacts, 22 inside are connected with spring assembly, and when being under pressure on the contact 22, contact 22 can inside indentation.Acting as of two contacts 22: one is used for energising, and another is used to transmit signal when measuring machine is worked.Because two contacts 22 have different functions, three location bulbs 20 have the symmetry wheel again on circumference remodels, so in order to prevent dislocation when connecting, a cylindrical evagination reference column 21 is arranged respectively on the next door of contact 22, is used for auxiliary positioning.Have in the centre of magnetic force recess 18 bottom discs between 13, two iron yokes 13 of iron yoke of two end face semicirculars in shape antifreeze plate 10 is arranged.
Relative antifreeze plate 10 is symmetrical distribution between two contacts 22, between two reference columns 21.The outer copper bush that is with of iron yoke 13 surrounds, and purpose is for every magnetic, is come by magnetic attraction to prevent other irrelevant irony device.
The architectural feature of magnetic force tang 24 such as Fig. 8, shown in Figure 9, magnetic force tang 24 is columniform evagination axles, it is corresponding that on " U " shape round bottom groove 25 that has three equal circumference to distribute on the end disc of evagination axle, its position and magnetic force recess 18 three locate bulbs 20.In addition, the circular contacts 27 of the copper that also has two equal circumference to distribute on the disc, the position is corresponding with two contacts 22 on the magnetic force recess 18.The flat bottomed recess 26 that " U " shape is respectively arranged on the next door of contact 27, its position is corresponding with two reference columns 21 on the magnetic force recess 18.The centre of disc is embedded with the iron block 11 of a circle, and these iron block 11 positions are corresponding with iron yoke 13 on the magnetic force recess 18.
A magnetic switch is arranged on the pedestal 1, and it is used to control iron block 11 and with iron yoke 13 whether magnetic attraction takes place.The inner structural features of magnetic switch such as Fig. 2, shown in Figure 3: diametrical magnetization cylindrical permanent magnet 12 is arranged in the through hole at cylindrical iron yoke 13 centers, iron yoke 13 is divided into symmetrical two halves by antifreeze plate 10, and permanent magnet 12 can rotate in through hole by magnetic switch button 15.
The principle of work of magnetic switch is seen Figure 10, Figure 11.After magnetic force recess 18 and magnetic force tang 24 were connected, iron yoke 13 was fitted mutually with iron block 11.As Figure 10, when magnetic switch cut out, the S level of permanent magnet 12, N level were distribution up and down, and at this moment magnetic flux is mainly by both sides iron yoke 13 closures, have only less or do not have magnetic flux to pass through iron block 11, so at this moment the magnetic attraction between iron yoke 13 and the iron block 11 is very little or magnetic attraction do not take place.As shown in figure 11, when magnetic switch is opened, distribute about the S level of permanent magnet 12, N level are, at this moment magnetic flux is mainly by iron block 11 closures, so at this moment iron yoke 13 reaches maximum with magnetic attraction between the iron block 11.
The locking connecting interface is divided into locking recess 28 and locks 30 two kinds of tangs.As shown in Figure 5, locking recess 28 is distributed on the two ends and gauge head unit 7 of an end of revolute joint 4, an end of pedestal gage beam 2, non-pedestal gage beam 6.
The architectural feature of locking recess 28 as shown in Figure 12 and Figure 13, similar in the distribution of location bulb 20, contact 22, reference column 21 in the locking recess 28, architectural feature and the magnetic force recess 18.Difference is: in bulb 20 formed circumference inside, location, and embedded three button magnet 17 that equal circumference distributes, the outer small size copper bush 16 that is with of button magnet 17 surrounds, and is used for every magnetic.On the perimeter wall of locking recess 28 locking slot 29 of " U " shape is arranged, this locking slot 29 is main to be used with retaining ring 3, is used for connection.
As shown in Figure 7, locking tang 30 is distributed in an end of revolute joint 4, the two ends of swinging joint 5.Similar among specific structural features such as Figure 14, shown in Figure 15 of locking tang 30, the distribution of the round bottom groove 25 of locking in the tang 30, contact 27, flat bottomed recess 26, architectural feature and magnetic force tang 24.Difference is: in round bottom groove 25 formed circumference inside, the position of 19, three button iron blocks 19 of button iron block that embedded three equal circumference distribute with lock recess 28 in the position of button magnet 17 corresponding.The outer small size copper bush 16 that is with of button iron block 19 surrounds, and is used for every magnetic.
Rely on retaining ring 3 fixing after locking recess 28 and locking tang 30 are connected, the architectural feature of retaining ring 3 as shown in figure 16.Retaining ring 3 is made up of slotted collar 31, handle 32, nut 33, packing ring 34, pin 35, locking cushion block 36 and stretching screw 23.One end of stretching screw 23 is a nut 33, and the other end is locking cushion block 36.In retaining ring 3, stretching screw 23 crosses the outer tang of slotted collar 31.The screw rod end of stretching screw 23 is connected with packing ring 34, nut 33, and the tensioning ring end is connected with handle 32 by pin 35.The end of handle 32 is cylindrical, and is adjacent to locking cushion block 36.Handle 32 can rotate around pin 35, and the center line of pin 35 does not overlap with the center of handle 32 end cylinders, but departs from certain distance to handle 32 outsides.
The locking of retaining ring 3, unclamp principle as shown in figure 17.When handle 32 when pin 35 pulls to slotted collar 31, the cylindrical radius that locking cushion block 36 parts are pressed in handle 32 ends increases gradually, the pressure that locking cushion block 36 is subjected to becomes big, slotted collar 31 is locked.When handle 32 when pin 35 leaves slotted collar 31, the cylindrical radius that locking cushion block 36 parts are pressed in locking cushion block 36 ends reduces gradually, the pressure that locking cushion block 36 is subjected to reduces gradually, slotted collar 31 is released.
The parts that connect by the magnetic force connecting interface are pedestal 1 and pedestal gage beam.The magnetic force tang 24 of pedestal gage beam 2 is inserted in the magnetic force recess 18 on the pedestals 1, and location bulb 20, reference column 21 in the magnetic force recess 18 is inserted into respectively in round bottom groove 25 on the magnetic force tang 24, the flat bottomed recess 26.At this moment contact 22 and contact 27, iron yoke 13 will be adjacent to respectively with iron block 11.Perform fighting behind the magnetic switch on the pedestal 1, pedestal gage beam 2 and pedestal 1 just together by magnetic attraction, magnetic force connects to be finished.
The parts that connect by the locking connecting interface are pedestal gage beam 2 and swinging joint 5, pedestal gage beam 2 and revolute joint 4, revolute joint 4 and swinging joint 5, non-pedestal gage beam 6 and revolute joint 4, non-pedestal gage beam 6 and swinging joint 5, swinging joint 5 and gauge head unit 7.With the be connected to example of revolute joint 4 with swinging joint 5, its connected mode is as follows, at first the handle on the retaining ring 3 32 is pulled away from slotted collar 31, then with on the outer outer rim that be buckled in locking recess 28 on the revolute joint 4 of retaining ring 3, and the opening part of retaining ring 3 upper shed snap rings 31 is alignd with locking slot 29 on locking recess 28.Then, the locking tang 30 on the swinging joint 5 is inserted in the locking recess 28 of revolute joint 4, and location bulb 20, the reference column 21 of locking in the recess 28 is inserted into respectively in round bottom groove 25 on the locking tang 30, the flat bottomed recess 26.At this moment magnetic attraction will take place with button iron block 19 in button magnet 17, and locking recess 28 produces pretension with locking tang 30, and contact 22 also will be adjacent to contact 27.At last handle 32 is pulled to slotted collar 31 lockings, locking connects to be finished.
The working method of Restructurable joint arm type coordinate measurer is as described below.
When not carrying out surveying work, the critical piece Discrete Distribution of measuring machine.When carrying out measuring task,, determine the model and the quantity of required revolute joint 4, swinging joint 5, non-pedestal gage beam 6, select corresponding components then earlier according to the required spatial degrees of freedom of measuring task and the size of testee.Then, pedestal 1, gauge head unit 7 are connected into complete articulated arm coordinate measuring machine with selected revolute joint 4, swinging joint 5, pedestal gage beam 2 and non-pedestal gage beam 6 by connector, magnetic switch, retaining ring 3.
In measuring process, when the measurement degree of freedom is not enough, can open retaining ring 3, insert revolute joint 4 or swinging joint 5 immediately by connecting interface.When the measurement degree of freedom is too much, can open retaining ring 3, by connecting interface, remove unnecessary revolute joint 4 or swinging joint 5 immediately.When the measurement space of measuring machine is big inadequately, can open magnetic switch or retaining ring 3, by instant pedestal gage beam 2 and the non-pedestal gage beam 6 that inserts or change appropriate length of connecting interface.When the measurement space of measuring machine is excessive, can open magnetic switch or retaining ring 3, survey gage beam 2 and non-pedestal gage beam 6 by the instant pedestal of removing or change appropriate length of connecting interface.
Articulated arm coordinate measuring machine with a six degree of freedom of reconstruct is an example below, and restructuring procedure is described.
(1) in the parts of measuring machine, chooses 1 one of pedestals, 4 three of revolute joints, 5 three of swinging joint, 2 one of pedestal gage beams, 6 two of non-pedestal gage beams, 7 one of gauge head units, 3 nine of retaining rings, 8 one of control computer;
(2) pedestal 1 is cooperated by the magnetic force connecting interface with pedestal gage beam 2, open magnetic switch, finish being connected of pedestal 1 and pedestal gage beam 2;
(3) choose a revolute joint 4, the locking tang 30 on the revolute joint 4 is cooperated with locking recess 28 on the pedestal gage beam 2, with a retaining ring 3 interface is locked then;
(4) choose a swinging joint 5, the locking tang 30 on the swinging joint 5 is cooperated with locking recess 28 on the revolute joint 4, with a retaining ring 3 interface is locked then;
(5) choose a non-pedestal gage beam 6, the locking recess 28 on the non-pedestal gage beam 6 is cooperated with locking tang 30 on the swinging joint 5, with a retaining ring 3 interface is locked then;
(6) choose a revolute joint 4 once more, the locking tang 30 on the revolute joint 4 is cooperated with locking recess 28 on the non-pedestal gage beam 6, with a retaining ring 3 interface is locked then;
(7) choose a swinging joint 5 once more, the locking tang 30 on the swinging joint 5 is cooperated with locking recess 28 on the revolute joint 4, with a retaining ring 3 interface is locked then;
(8) choose a non-pedestal gage beam 6 once more, the locking recess 28 on the non-pedestal gage beam 6 is cooperated with locking tang 30 on the swinging joint 5, with a retaining ring 3 interface is locked then;
(9) choose a revolute joint 4 for the third time, the locking tang 30 on the revolute joint 4 is cooperated with locking recess 28 on the non-pedestal gage beam 6, with a retaining ring 3 interface is locked then;
(10) choose a swinging joint 5 for the third time, the locking tang 30 on the swinging joint 5 is cooperated with locking recess 28 on the revolute joint 2, with a retaining ring 3 interface is locked then;
(11) choose gauge head unit 7, the locking recess 28 on the gauge head unit 7 is cooperated with locking tang 30 on the swinging joint 2, with a retaining ring 3 interface is locked then;
(12) articulated arm coordinate measuring machine that forms of reconstruct and control are calculated 8 and are just constituted complete measuring system after linking to each other.
The software system structure figure of Restructurable joint arm type coordinate measurer as shown in figure 18.Comprise measuring system platform, base module, revolute joint module, swinging joint module, gage beam module and gauge head unit module.Each module is a component object, and the software interface of unified standard is arranged on each module, and these interfaces are realized by The Component Object Model (COM) technology.After articulated arm coordinate measuring machine assembling finished, measuring machine was by the signaling interface in each hardware module, and the characteristic parameter of hardware module is passed to measuring system.Measuring system at first searches out corresponding software module according to the model of received hardware module, by software interface each software module is assembled into a complete measuring system then on measuring table.
In measuring process, be removed, insert or change as hardware module, software systems meeting refreshing hardware information, again search for the pairing software module of existing hardware module, on measuring table, each software module is formed a complete measuring system then, promptly can realize the dynamic reorganization of measuring system by software interface.
Figure 19 is that the joint-arm type measuring with the six degree of freedom that makes up among Fig. 1 is an example, the measuring system that dynamic restructuring forms.Joint-arm type measuring among Fig. 1 comprises 11 hardware modules, after software systems obtain ardware model number information, can automatically search out corresponding software module.These modules are carried out the software module assembling by the software interface of unified standard by the hardware order of connection on measuring table, form a complete measuring system.
Above-mentioned embodiment is used for the utility model of explaining; rather than the utility model limited; in the protection domain of spirit of the present utility model and claim, any modification and change to the utility model is made all fall into protection domain of the present utility model.

Claims (5)

1. Restructurable joint arm type coordinate measurer, comprise pedestal, three revolute joints, three swinging joint, the pedestal gage beam, two non-pedestal gage beams, gauge head unit and control computer, it is characterized in that: pedestal is connected by the magnetic force interface with an end of pedestal gage beam, the other end of pedestal gage beam is connected by first retaining ring with first revolute joint, the other end of first revolute joint is connected by second retaining ring with an end of first swinging joint, the other end of first swinging joint is connected by the 3rd retaining ring with an end of the first non-pedestal gage beam, the other end of the first non-pedestal gage beam is connected by the 4th retaining ring with an end of second revolute joint, the other end of second revolute joint is connected by the 5th retaining ring with second swinging joint, one end, the other end of second swinging joint is connected by the 6th retaining ring with an end of the second non-pedestal gage beam, the other end of the second non-pedestal gage beam is connected by the 7th retaining ring with an end of the 3rd revolute joint, the other end of the 3rd revolute joint is connected by the 8th retaining ring with an end of the 3rd swinging joint, and the other end of the 3rd swinging joint is connected by the 9th retaining ring with an end of gauge head unit.
2. a kind of Restructurable joint arm type coordinate measurer according to claim 1, it is characterized in that: described magnetic switch, its diametrical magnetization cylindrical permanent magnet (12) is installed in the through hole at cylindrical iron yoke (13) center, iron yoke (13) is divided into the two halves of symmetry by antifreeze plate (10), permanent magnet (12) can rotate in through hole by magnetic switch button (15), magnetic switch axle (14), and the outer copper bush (9) that is with of iron yoke (13) surrounds; Magnetic switch is contained in the magnetic force recess (18) of pedestal upper surface, and the pedestal gage beam magnetic force tang (24) of dress iron block (11) matches in the magnetic force recess (18).
3. a kind of Restructurable joint arm type coordinate measurer according to claim 1 is characterized in that: described retaining ring (3) comprises slotted collar (31), handle (32), nut (33), pin (35), locking cushion block (36) and stretching screw (23); Be equipped with locking cushion block (36) stretching screw (23) pass slotted collar (31) openend after, one end of stretching screw (23) cooperates with nut (33), the other end of stretching screw (23) and handle (32) form by pin (35) and are rotatably assorted, the end of handle (32) is cylindrical, and with locking cushion block (36) be adjacent to, the center line of pin (35) departs to the outside of handle (32); Between revolute joint (4) and the swinging joint (5) or being connected with locking tang (30) by locking recess (28) between revolute joint (4) and pedestal gage beam (2) or the revolute joint (4) or between swinging joint (5) and the non-pedestal gage beam (6) or between revolute joint (4) and the non-pedestal gage beam (6), lock with retaining ring (3); Wherein pedestal gage beam one end is locking recess (28), the last end of revolute joint (4) is locking recess (28), the other end is locking tang (30), and it all is locking tang (30) that swinging joint (5) goes up two ends, and the connecting interface on the gauge head unit (7) is locking recess (28).
4. a kind of Restructurable joint arm type coordinate measurer according to claim 2, it is characterized in that: described magnetic force recess (18) is a columniform inner recess, the semicircle evagination location bulb (20) that on the disc of notched bottoms, has three equal circumference to distribute, the cylindrical evagination contact of copper (22) that also has two equal circumference to distribute respectively has a cylindrical evagination reference column (21) on the next door of contact (22) in addition; Described magnetic force tang (24) is a columniform evagination axle, " U " shape round bottom groove (25) that has three equal circumference to distribute on the end disc of evagination axle, three location bulbs (20) on position and the magnetic force recess (18) are corresponding, the circular contact (27) of the copper that also has two equal circumference to distribute in addition, the position is corresponding with two contacts (22) on the magnetic force recess (18), having on the next door of contact (27) respectively has the flat bottomed recess of " U " shape (26), the position is corresponding with two reference columns (21) on the magnetic force recess (18), is embedded with the iron block (11) of a circle in the centre of magnetic force tang (24) evagination axle top disc.
5. a kind of Restructurable joint arm type coordinate measurer according to claim 3, it is characterized in that: described locking recess (28) is a columniform inner recess, the semicircle evagination location bulb (20) that on the disc of notched bottoms, has three equal circumference to distribute, the cylindrical evagination contact of copper (22) that also has two equal circumference to distribute in addition; On the next door of contact (22) a cylindrical evagination reference column (21) is arranged respectively, in bulb (20) formed circumference inside, location, embedded three button magnet (17) that equal circumference distributes, the outer small size copper bush (16) that is with of button magnet (17) surrounds; The locking slot (29) that " U " shape is arranged on the perimeter wall of locking recess (28); Described locking tang (30) is a columniform evagination axle, " U " shape round bottom groove (25) that has three equal circumference to distribute on the end disc of evagination axle, the position is corresponding with three location bulbs (20) in locking recess (28), the circular contact (27) of the copper that also has two equal circumference to distribute, the position is corresponding with two contacts (22) in locking recess (28), having on the next door of contact (27) respectively has the flat bottomed recess of " U " shape (26), the position is corresponding with two reference columns (21) in locking recess (28), in the formed circumference of three round bottom grooves (25) inside, the button iron blocks (19) that embedded three equal circumference distribute, the outer small size copper bush (16) that is with of button iron block (19) surrounds.
CN2010201684462U 2010-04-23 2010-04-23 Reconfigurable articulated arm type coordinate measuring machine Expired - Fee Related CN201653317U (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101806574A (en) * 2010-04-23 2010-08-18 浙江大学 Restructurable joint arm type coordinate measurer
CN103817687A (en) * 2014-03-11 2014-05-28 北京中盛华旭电子科技有限公司 Six degrees of freedom lightweight modular robot
CN105157638A (en) * 2015-06-26 2015-12-16 合肥工业大学 Variable-arm-length articulated-type coordinate measuring machine
CN106840071A (en) * 2017-03-07 2017-06-13 为度科创检测技术(苏州)有限公司 A kind of joint arm measuring machine and its reconstructing method

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101806574A (en) * 2010-04-23 2010-08-18 浙江大学 Restructurable joint arm type coordinate measurer
CN103817687A (en) * 2014-03-11 2014-05-28 北京中盛华旭电子科技有限公司 Six degrees of freedom lightweight modular robot
CN105157638A (en) * 2015-06-26 2015-12-16 合肥工业大学 Variable-arm-length articulated-type coordinate measuring machine
CN106840071A (en) * 2017-03-07 2017-06-13 为度科创检测技术(苏州)有限公司 A kind of joint arm measuring machine and its reconstructing method

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