CN105758749A - Optical-ring photographing type glass detection machine provided with worm wheel, rotary table and molybdenum alloy V-shaped slide groove corner clamp - Google Patents

Optical-ring photographing type glass detection machine provided with worm wheel, rotary table and molybdenum alloy V-shaped slide groove corner clamp Download PDF

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Publication number
CN105758749A
CN105758749A CN201610216195.2A CN201610216195A CN105758749A CN 105758749 A CN105758749 A CN 105758749A CN 201610216195 A CN201610216195 A CN 201610216195A CN 105758749 A CN105758749 A CN 105758749A
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plane
fixed
pincers
hole
protruding rail
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张志雄
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Wenzhou Economic And Technological Development Zone Binhai Xiongjie Electromechanical Development Studio
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Wenzhou Economic And Technological Development Zone Binhai Xiongjie Electromechanical Development Studio
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Priority to CN201610216195.2A priority Critical patent/CN105758749A/en
Publication of CN105758749A publication Critical patent/CN105758749A/en
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N3/00Investigating strength properties of solid materials by application of mechanical stress
    • G01N3/30Investigating strength properties of solid materials by application of mechanical stress by applying a single impulsive force, e.g. by falling weight
    • G01N3/317Investigating strength properties of solid materials by application of mechanical stress by applying a single impulsive force, e.g. by falling weight generated by electromagnetic means
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N3/00Investigating strength properties of solid materials by application of mechanical stress
    • G01N3/02Details
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N3/00Investigating strength properties of solid materials by application of mechanical stress
    • G01N3/02Details
    • G01N3/04Chucks
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N3/00Investigating strength properties of solid materials by application of mechanical stress
    • G01N3/02Details
    • G01N3/06Special adaptations of indicating or recording means
    • G01N3/068Special adaptations of indicating or recording means with optical indicating or recording means
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N2203/00Investigating strength properties of solid materials by application of mechanical stress
    • G01N2203/003Generation of the force
    • G01N2203/005Electromagnetic means
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N2203/00Investigating strength properties of solid materials by application of mechanical stress
    • G01N2203/0058Kind of property studied
    • G01N2203/0076Hardness, compressibility or resistance to crushing
    • G01N2203/0087Resistance to crushing
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N2203/00Investigating strength properties of solid materials by application of mechanical stress
    • G01N2203/02Details not specific for a particular testing method
    • G01N2203/0202Control of the test
    • G01N2203/0204Safety arrangements, e.g. remote control, emergency stop
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N2203/00Investigating strength properties of solid materials by application of mechanical stress
    • G01N2203/02Details not specific for a particular testing method
    • G01N2203/04Chucks, fixtures, jaws, holders or anvils
    • G01N2203/0458Chucks, fixtures, jaws, holders or anvils characterised by their material
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N2203/00Investigating strength properties of solid materials by application of mechanical stress
    • G01N2203/02Details not specific for a particular testing method
    • G01N2203/06Indicating or recording means; Sensing means
    • G01N2203/0641Indicating or recording means; Sensing means using optical, X-ray, ultraviolet, infrared or similar detectors
    • G01N2203/0647Image analysis

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  • Physics & Mathematics (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Analytical Chemistry (AREA)
  • Biochemistry (AREA)
  • General Health & Medical Sciences (AREA)
  • General Physics & Mathematics (AREA)
  • Immunology (AREA)
  • Pathology (AREA)
  • Electromagnetism (AREA)
  • Testing Of Devices, Machine Parts, Or Other Structures Thereof (AREA)

Abstract

The invention relates to a tempered glass testing detection machine and provides an optical-ring photographing type glass detection machine provided with a worm wheel, a rotary table and a molybdenum alloy V-shaped slide groove corner clamp. As improvements, a rotary table rotary shaft on one side is further fixedly provided with a transmission worm wheel; the transmission worm wheel is matched with a worm rod shaft; the two ends of the worm rod shaft are respectively rotatably fixed in a worm rod support; the worm rod support is fixed on the outer side face of a corresponding supporting side plate; a worm rod crank handle is further arranged at one end of the worm rod shaft; two transverse horizontal rods are slidingly matched with photographing transverse slide blocks; a photographing square rod is fixed between the two photographing transverse slide blocks; a screw rod hoisting camera set is arranged on the photographing square rod; a square fluorescent tube is arranged on a movable optical ring; a V-shaped slide groove corner clamp assembly is fixed on the upper plane of the testing rotary table; a crushed glass guide device is fixed between the rotary table support and a lock pin support, and the upper plane of the supporting side plate; a rotary impacting device is fixed on an impacting transverse rod in a slipping manner; and the V-shaped slide groove corner clamp assembly is adopted to fix quadrilateral glass with different angles.

Description

Worm gear turntable ring of light shooting molybdenum alloy V-type chute corner is by pincers glass detection machine
Technical field
The present invention relates to a kind of safety glass test verification machine, particularly relate to and utilize ring of light auxiliary camera to substitute manually-operated worm gear turntable ring of light shooting molybdenum alloy V-type chute corner by pincers glass detection machine.
Background technology
Since GordonGaileG once published an article " AutomatedGlassFragmentationAnalysis " in 1996, the detection algorithm of glass fragment has been inquired into, the document relates to two key technologies: 1 image capture technology: below the sensitive paper of a glass fragment imaging, apply light source respectively from two different angles, respectively collect the original digital image of a width fragment slot line shadow.So, owing to employing the light source of different angles, the two width images affirmative differences to some extent collected.Wherein owing to illumination reason produces the position of inconspicuous slot line in piece image, likely obvious in other piece image.Therefore, in due course two width images being combined, the discontinuous phenomenon of slot line can improve.2 image segmentation algorithms: cutting procedure includes the following steps: pretreatment is removed in two width original images by the reflective bright especially or dark especially noise caused of the dust in glass or slot line edge;Carrying out independent slot line detection, two width images are merged into the image of the complete slot line of a width, extract slot line, finally carry out fragment identification.J.Haywood, J.W.V.Miller et al. develop a glass fragment automatic recognition system, publish an article in 1998 " AutomatedCountingSystemFortheECEFragmagmentationTest ".Its recognition methods can be described as: the debris field of to be counted piece of number is marked artificially on sensitive paper, and scanner scanning obtains digital picture.Subsequent treatment is based on scanogram and carries out, and image processing step includes: compensate uneven illumination, reduces noise, it is determined that slot line.Before statistics block number, employ a kind of special recovery algorithms and fill the slot line of " loss ".This system can recognise that and count the quantity of the fragment in tab area in theory, and due to the transparency of glass, up to the present, either directly through imaging, obtained image digitization precision is unsatisfactory, also tends to rely on artificial counting as a supplement.
In the glass applications of the special dimensions such as automobile, one is designed perfect cubing is determine the stay-in-grade important factor of a glass product.Multiformity due to present Automobile Design, glass on corresponding car is also increasingly sophisticated, glass profile is frequently not square or rectangle, present parallelogram or trapezoidal glass can be found everywhere, in the past for the detection of this kind of irregular quadrilateral glass, it does not have unified stationary machines, glass periphery can only be retrained by adhesive tape or other modes, or at safety glass overlying lid layer thin film, to prevent glass fragment from splashing.Simultaneously adhesive tape also has and is burst, by safety glass, the probability that strength collapses out, and causes that operator are injured, and therefore, the improvement to safety glass fragmentation test machine is very necessary.
Summary of the invention
For above prior art Problems existing, the present invention is additionally arranged mobile ring of light combined threaded rod lifting shooting unit on integral-rack, in conjunction with worm-and-wheel gear Turnover testing turntable, it is equipped with the fastening of plug lock pin, particularly it is provided with the V-type chute corner of surrounding isoplanar work by pincers assembly and revolution impacter, achieve the safety glass to difformity dimensions, it is possible to share a kind of inspection machine and do fragmentation test, specific as follows:
Worm gear turntable ring of light shooting molybdenum alloy V-type chute corner is by pincers glass detection machine, the support side plate of integral-rack both sides is fixed two described circular abutments respectively, four circular abutment upper ends are all fixed with column termination, and four column terminations are respectively fixed with two transverse horizontal bars and two vertical equity bars;In support side plate described in both sides, plane is all fixed with turntable bearing and lock pin bearing respectively;There is turntable rotating shaft test table both sides, and the turntable rotating shaft of both sides is rotatable respectively to be fixed in turntable bearing, and described rear shear plate upper bit has plane in back plate, and in back plate, plane holds lower plane after test table;Described test table both sides vertical has plug lockhole, for being slidably matched between described lock pin bearing endoporus and light beam lock pin cylindrical;The light beam lock pin of both sides can enter in described plug lockhole, by described test table and the fixing restriction rotation of the support side plate described in both sides;Described light beam lock pin outer end has outside lock pin, has lock pin elongated hole groove on outside lock pin, and operation stock passes through described lock pin elongated hole groove;There is operation lever operation stock upper end, operation pivot pin is had between operation stock lower end and operation bearing, operation pivot pin two ends are fixed on operation bearing, coordinate for rotatable between the endoporus of operation stock lower end with operation pivot pin cylindrical, and the operation rest base of both sides is fixed on operation seat screw;As improvement:
Being further fixed on transmission worm gear in the turntable rotating shaft of side, transmission worm gear worm shaft, and worm shaft two ends are rotatable respectively to be fixed in worm bearing, and worm bearing is fixed on corresponding support side plate lateral surface, and worm shaft one end also has worm screw crank handle;Two described transverse horizontal bars are all sliding combined with shooting cross slider, fix shooting square bar between two shooting cross sliders, and shooting square bar has screw rod lifting shooting unit;Having a square fluorescent tube on the mobile ring of light, there is the ring of light plagioclase handle square fluorescent tube shelf side, and ring of light plagioclase handle end is rotation dish, and rotation dish has rotating disk endoporus and rotating disk lower surface;Ring of light bracing ring has bracing ring endoporus and bracing ring upper surface and bracing ring trip bolt, described bracing ring endoporus and one described circular abutment of heel row are slidably matched, and ring of light bracing ring is fixed on a circular abutment of heel row by described bracing ring trip bolt;Described rotating disk lower surface is held in the palm in described bracing ring upper surface, and described rotating disk endoporus also coordinates for rotary sliding with between this described circular abutment of heel row so that the described mobile ring of light rotates in set height position;Described test table is fixed V-type chute corner by pincers assembly in plane, described turntable bearing and described lock pin bearing together and fix cullet guider between plane in support side plate, cullet guider lower port drops within cullet collecting cart upper port;Impact cross bar one end and have cross bar becket, impact the cross bar other end and have impact slide block, impact slide block circular hole to coordinate with the circular abutment cylindrical rotary sliding described in front-seat another, on described impact cross bar, slip fixes revolution impacter, the material of the jump bit cone point on revolution impacter is molybdenum-base alloy, described molybdenum-base alloy is elementary composition by following percentage by weight: Mo:21 ~ 23%, W:3 ~ 5%, Cr:2.1 ~ 2.3%, Cu:2.1 ~ 2.3%, Al:1.1 ~ 1.3%, C:1.0 ~ 1.2%, Sn:.1.4 ~ 1.6%, and surplus is Fe and inevitable impurity;The weight percent content of described impurity is: Si less than 0.21%, S less than 0.013%, P less than 0.016%, the rockwell superficial hardness number of this molybdenum-base alloy is HRC66 ~ 68.
As further improvement: on described circular abutment, liftable fixes altitude location circle, altitude location circle having holding screw, altitude location circle holder described impact slide block, altitude location circle impacts the height of cross bar for regulating;Described revolution impacter includes impacter frame, impacts motor and quadrangular guide rail;Described impacter frame have the impact vertical square hole of frame and impacts the horizontal square hole of frame, impacting between the horizontal square hole of frame and described four faceted pebbles impacted on cross bar for being slidably matched;Described motor bottom bore of impacting is fixed in the upper plane of impacter frame, impacts and is fixed with rotating disk on motor output end mouth, rotating disk has revolution pivot pin;It is slidably matched for liftable between described quadrangular guide rail square hole vertical with described impact frame, described quadrangular guide rail lower end is described jump bit cone point, quadrangular guide rail upper end is horizontal concrete chute, for being slidably matched between horizontal concrete chute inwall and described revolution pivot pin.
As further improvement: described screw rod lifting shooting unit includes slide block guide rail plate, shooting motor, motor screw, lifting nut, industrial camera;Slide block guide rail plate has slide block square hole, there is threading circle slide block guide rail plate side, slide block guide rail plate opposite side has motor seat board, motor seat board has four motor screws and a screw rod perforation, described motor seat board lower plane there is lifting saddle, lifting saddle medial surface has lifting guide groove, has hole, screw rod location bottom lifting saddle;Described lifting nut gabarit is step slide block, four motor screws of the motor seat board stated is fixed with shooting motor, shooting motor output end axle is motor screw, has four through hole flanges between shooting motor and motor screw, and motor screw end is location light beam;There is horizontally disposed camera pedestal described lifting nut side, has video camera termination below camera pedestal termination, and under video camera termination, front is industrial camera, and video camera termination is backed with shooting power supply signal combination cable.
As further improvement: described V-type chute corner by pincers assembly include four physical dimensions identical first by pincers, second by pincers, the 3rd by clamping and the 4th by clamping, every is made up of retained part and sliding corner by pincers, is rotatably connected fixing by pivot pin rivet between every retained part and sliding corner by pincers;The upper surface of described retained part is for by the upper plane of pincers, and the one end by the upper plane of pincers has V-type groove, V-type groove floor to be groove-bottom plane, and the cross section of V-type groove is isosceles trapezoid, and the single-ended opening of V-type groove;Described has step through-hole, step through-hole both sides to have through hole angle face by the other end of plane on pincers, and going up by pincers between two side through hole angle faces has corner scale in plane;The lower surface of described sliding corner is the lower plane that trackslips, trackslip and lower plane has rotation through hole, rotating through hole side and have rotating disk chamfering cambered surface, rotating disk chamfering cambered surface is positioned on the back flat of the lower plane that trackslips, and rotating disk chamfering cambered surface has corner cambered surface protrude pointer;Described rotation through hole opposite side has V-type protruding rail, V-type protruding rail is positioned at and trackslips on lower plane, the cross section of V-type protruding rail is also isosceles trapezoid, V-type protruding rail has protruding rail faying face, the opposite face of protruding rail faying face is protruding rail top plane, protruding rail top plane has the protruding rail stepped hole of two, between protruding rail top plane and V-type protruding rail two sides, has transition arc;The effect of transition arc is the processing dead angle avoiding described V-type groove, it is ensured that precisely coordinate between V-type protruding rail with V-type groove;Described trackslipping is separable between lower plane and V-type protruding rail;Trackslip and lower plane has two plane screws, V-type protruding rail also has the protruding rail stepped hole of two;Protruding rail screw passes through described protruding rail stepped hole, and protruding rail screw coordinates with described plane screw screw-tightened, and described protruding rail faying face is fixed on described trackslipping on lower plane;
Described V-type protruding rail adopts self-lubricating material, and this self-lubricating material is ptfe composite, and the weight percentages of components of ptfe composite is: politef 77 ~ 79%, graphite powder 13 ~ 15%, polybenzoate 7 ~ 9%;Having one layer of hard molybdenum alloy coating in described V-type groove surfaces, described has clamping slope by the upper planar inner of pincers, and on clamping slope, also extruding is fixed with rubber tabletting, and rubber tabletting adopts synthesis butadiene rubber.
Two, beneficial effects of the present invention:
(1), the present invention is additionally arranged mobile ring of light combined threaded rod lifting shooting unit on integral-rack, the second camera that square fluorescent tube produces ring light is utilized to take pictures, imaging, with not having square fluorescent tube to produce the independent of four chow ring light, comparison of taking pictures, the boundary discrimination degree of accuracy of glass fragment improves 30%;
(2), the present invention change fragment detection present situation substantially manually, integral-rack is installed screw rod lifting shooting unit, shooting is taken pictures and fragmentation pattern picture is sent to computer disposal center, alleviates labor intensity;To realize each hammer weight consistent for application revolution impacter, it is ensured that crushing test is unified and standard, also can realize remotely controlling to smash the dangerous step of trapezoidal glass plate, it is to avoid site operation personnel suffers that glass breaking moment surprisingly splashes injury;
(3), worm-and-wheel gear Turnover testing turntable structure, the design within described cullet collecting cart upper port is dropped in conjunction with specific cullet guider lower port, particularly the back incline upper surface on cullet collecting cart is lower than the particular design of three described contour end faces, can ensure that sheet glass can all fall in cullet collecting cart through cullet guider;Easily cullet collecting cart can be separated with cullet guider again.
(4), adopting V-type chute corner by pincers assembly, every is made up of retained part and sliding corner by pincers, and sliding corner is relative to the rotatable design of retained part, it is achieved that to fixing of different angle tetragon glass;Interference fit is had to produce extruding expansive force between inclined-plane, slip-off preventing raised line both sides and inclined-plane, slip-off preventing groove both sides, it is not necessary to gluing is prevented also from coming off, it is to avoid by the aging produced case accident of bonding glue;Matched in clearance is had, it is simple to install and combine between slip-off preventing raised line height and slip-off preventing depth of groove;
Particularly V-type protruding rail adopts self-lubricating material, it is achieved that oil-free lubrication, reduces frictional resistance, thoroughly avoids the lubricated oil of glass fragment and be bonded on test table, conveniently remove glass fragment.
Accompanying drawing explanation
Fig. 1 is the stereoscopic appearance figure that the present invention is generally in off working state.
Fig. 2 is the mobile ring of light 800 enlarged drawing in Fig. 1.
Fig. 3 is ring of light plagioclase handle 810 enlarged drawing in Fig. 2.
Fig. 4 is ring of light bracing ring 820 enlarged drawing in Fig. 2.
Fig. 5 is the vertical cross section of the transmission worm gear 161 in Fig. 1 and worm shaft 151 site of engagement.
Fig. 6 is the screw rod lifting shooting independent enlarged drawing of unit 900 in Fig. 1.
Fig. 7 is the independent enlarged drawing of slide block guide rail plate 609 in Fig. 6.
Fig. 8 is the top view of Fig. 7.
Fig. 9 be light beam lock pin in Fig. 1 189 with plug lockhole 198 binding site along light beam lock pin 189 axial line vertical cross section.
Figure 10 is the light beam lock pin 189 in Fig. 9 and plug lockhole 198 disengaged condition.
Figure 11 is the independent stereoscopic appearance figure of integral-rack being made up of the support side plate 200 of both sides and rear shear plate 176 and end shear plate 175 in Fig. 1.
Figure 12 is the independent stereoscopic appearance figure of test table 190 in Fig. 1.
Figure 13 is the stereoscopic appearance figure that the revolution impacter 590 in Fig. 1 is in running order.
Figure 14 is the stereoscopic appearance figure that the screw rod lifting shooting unit 900 in Fig. 1 and the mobile ring of light 800 are simultaneously in duty.
Figure 15 is that the present invention is in the stereoscopic appearance figure removing glass fragment duty.
Figure 16 is the enlarged drawing of the transmission worm gear 161 in Figure 15 and worm shaft 151 site of engagement and operation stock 133 position.
Figure 17 is the postrotational enlarged drawing of revolution impacter 590 in Figure 15.
Figure 18 is the independent axonometric chart of impacter frame 567 in Figure 17.
Figure 19 is the stereoscopic appearance figure of the cullet guider 140 in Fig. 1 and cullet collecting cart 300 bonding state.
Figure 20 is the profile along the axis of symmetry in Figure 19.
Figure 21 is the independent stereoscopic appearance figure of cullet guider 140 part in Figure 19.
Figure 22 is the profile along the axis of symmetry in Figure 21.
Figure 23 is the independent stereoscopic appearance figure of cullet collecting cart 300 part in Figure 19.
Figure 24 is the profile along the axis of symmetry in Figure 23.
Figure 25 is the top view that the V-type chute corner in Figure 13 uses in combination by pincers assembly 500.
The V-type chute corner that Figure 26 is in Figure 25 presents parallelogram state figure by pincers assembly 500.
Figure 27 is the A A profile in Figure 25.
Figure 28 is the partial enlarged drawing in Figure 27.
Figure 29 is the B B profile in Figure 26.
Figure 30 is the first sliding corner 518 profile in Figure 29.
Figure 31 is V-type protruding rail 541 enlarged drawing unloaded in Figure 30.
Figure 32 is the isometric front view of Figure 30.
Figure 33 is the rear isometric view of Figure 30.
Figure 34 is the outline drawing of the first retained part 519 in Figure 26.
Figure 35 is the C C profile in Figure 34.
Figure 36 is slip-off preventing groove 585 part in Figure 35.
Figure 37 is slip-off preventing raised line 558 part in Figure 35.
Figure 38 is that sampling standard is taken pictures shooting figure.
Figure 39 is for setting up design sketch after the mobile ring of light 800.
Detailed description of the invention
The present invention is described in detail below in conjunction with the drawings and specific embodiments:
In Fig. 1, test table 190 unloads except V-type chute corner is by pincers assembly 500.
In Figure 13, placing V-type chute corner on test table 190 by pincers assembly 500, and fix trapezoidal glass plate 600, screw rod lifting shooting unit 900 promotes and does not work, the mobile outer shifting of the ring of light 800 does not work, and revolution impacter 590 is positioned at directly over trapezoidal glass plate 600 in running order.
In Figure 14, test table 190 is placed V-type chute corner by pincers assembly 500, and fix trapezoidal glass plate 600, revolution impacter 590 migrates out test table 190 and is in off working state, screw rod lifting shooting unit 900 declines in running order, and the mobile ring of light 800 is positioned at directly over trapezoidal glass plate 600 in running order.
In Figure 15, V-type chute corner unloads except two sides therein by pincers assembly 500, and test table 190 is in rotation heeling condition, and revolution impacter 590 removes and do not work above test table 190, the mobile outer shifting of the ring of light 800 does not work, and screw rod lifting shooting unit 900 promotes and is in off working state.
In Figure 16, figure unloads except worm gear and nut 188.
In Figure 38, the sampling standard of the shooting figure that takes pictures is of a size of: the length of side is the number of tiles in the square-shaped frame of 50 millimeters is qualified more than 40.
In Figure 39, after setting up the mobile ring of light 800, after trapezoidal glass plate 600 is crashed to pieces, demarcation line between fragment becomes apparent from distinguishing.
In Fig. 1, Figure 11, Figure 12, Figure 13, Figure 14, Figure 15, Figure 16 and Figure 25, worm gear turntable ring of light shooting molybdenum alloy V-type chute corner is by pincers glass detection machine, integral-rack includes support side plate 200, rear shear plate 176, end shear plate 175 and four circular abutments 566, the support side plate 200 of both sides is fixed two described circular abutments 566 respectively, four circular abutment 566 upper ends are all fixed with column termination 604, and four column terminations 604 are respectively fixed with two transverse horizontal bars 602 and two vertical equity bars 603;In support side plate 200 described in both sides, plane is all fixed with turntable bearing 163 and lock pin bearing 180 respectively;There is turntable rotating shaft 196 test table 190 both sides, the turntable rotating shaft 196 of both sides is rotatable respectively to be fixed in turntable bearing 163, described rear shear plate 176 upper bit has plane 717 in back plate, in back plate, plane 717 exceeds 5 to 7 millimeters of plane in described support side plate 200, and in back plate, plane 717 holds lower plane after test table 190;
In Fig. 1, Fig. 9, Figure 10, Figure 13, Figure 16, Figure 17 and Figure 16, described test table 190 both sides vertical there is plug lockhole 198, for being slidably matched between described lock pin bearing 180 endoporus and light beam lock pin 189 cylindrical;The light beam lock pin 189 of both sides can enter in described plug lockhole 198, by fixing with the support side plate 200 described in both sides for described test table 190 restriction rotation;Described light beam lock pin 189 outer end has outside lock pin 135, has lock pin elongated hole groove 134 on 135 outside lock pin, and operation stock 133 passes through described lock pin elongated hole groove 134;There is operation lever 136 operation stock 133 upper end, operation pivot pin 132 is had between operation stock 133 lower end and operation bearing 131, operation pivot pin 132 two ends are fixed on operation bearing 131, coordinate for rotatable between the endoporus of operation stock 133 lower end with operation pivot pin 132 cylindrical, be fixed on bottom the operation bearing 131 of both sides on operation seat screw 232;As improvement:
In Fig. 1, Fig. 2, Fig. 3, Fig. 4, Fig. 5, Fig. 6, Figure 13, Figure 14, Figure 15, Figure 16 and Figure 19, the turntable rotating shaft 196 of side is further fixed on transmission worm gear 161, transmission worm gear 161 is combined with worm shaft 151, worm shaft 151 two ends are rotatable respectively to be fixed in worm bearing 152, worm bearing 152 is fixed on corresponding support side plate 200 lateral surface, and worm shaft 151 one end also has worm screw crank handle 155;Two described transverse horizontal bars 602 are all sliding combined with shooting cross slider 608, fix shooting square bar 601 between two shooting cross sliders 608, and shooting square bar 601 has screw rod lifting shooting unit 900;
Having a square fluorescent tube 888 on the mobile ring of light 800, there is ring of light plagioclase handle 810 square fluorescent tube 888 shelf side, and ring of light plagioclase handle 810 end is rotation dish 830, and rotation dish 830 has rotating disk endoporus 836 and rotating disk lower surface 832;Ring of light bracing ring 820 has bracing ring endoporus 826 and bracing ring upper surface 823 and bracing ring trip bolt 894, the circular abutment 566 that described bracing ring endoporus 826 is described with heel row one is slidably matched, and ring of light bracing ring 820 is fixed on a circular abutment 566 of heel row by described bracing ring trip bolt 894;Described rotating disk lower surface 832 is held in the palm in described bracing ring upper surface 823, and described rotating disk endoporus 836 also coordinates for rotary sliding with between this described circular abutment 566 of heel row so that the described mobile ring of light 800 rotates in set height position;
Described test table 190 is fixed V-type chute corner by pincers assembly 500 in plane, described turntable bearing 163 and described lock pin bearing 180 together and fix cullet guider 140 between plane in support side plate 200, cullet guider 140 lower port drops within cullet collecting cart 300 upper port;Impact cross bar 562 one end and have cross bar becket 599, impact cross bar 562 other end and have impact slide block 666, impact slide block 666 circular hole to coordinate with the circular abutment 566 cylindrical rotary sliding described in front-seat another, on described impact cross bar 562, slip fixes revolution impacter 590, the material of the jump bit cone point 596 on revolution impacter 590 is molybdenum-base alloy, described molybdenum-base alloy is elementary composition by following percentage by weight: Mo:22%, W:4%, Cr:2.2%, Cu:2.2%, Al:1.2%, C:1.1%, Sn:1.5%, and surplus is Fe and inevitable impurity;The weight percent content of described impurity is: Si is 0.18%, S is 0.008%, P is 0.013%, and the rockwell superficial hardness number of this molybdenum-base alloy is HRC67.
As further improvement: in Fig. 1, Figure 13, Figure 14, Figure 15 and Figure 17, on described circular abutment 566, liftable fixes altitude location circle 565, altitude location circle 565 has holding screw 594, altitude location circle 565 holds in the palm described impact slide block 666, and altitude location circle 565 impacts the height of cross bar 562 for regulating;Described revolution impacter 590 includes impacter frame 567, impacts motor 521 and quadrangular guide rail 595;Described impacter frame 567 have the impact vertical square hole of frame 535 and impacts the horizontal square hole 564 of frame, impacting between the horizontal square hole of frame 564 and described four faceted pebbles impacted on cross bar 562 for being slidably matched;Described motor 521 base holes of impacting is fixed in the upper plane of impacter frame 567, impacts and is fixed with rotating disk 572 on motor 521 output port, and rotating disk 572 has revolution pivot pin 573;It is slidably matched for liftable between described quadrangular guide rail 595 square hole 535 vertical with described impact frame, described quadrangular guide rail 595 lower end is described jump bit cone point 596, the pointed cone angle of jump bit cone point 596 is 45 degree, quadrangular guide rail 595 upper end is horizontal concrete chute 524, for being slidably matched between horizontal concrete chute 524 inwall and described revolution pivot pin 573.
As further improvement: in Fig. 1, Fig. 6, Fig. 7, Fig. 8, Figure 13, Figure 14 and Figure 15, described screw rod lifting shooting unit 900 includes slide block guide rail plate 609, shooting motor 910, motor screw 912, lifting nut 921, industrial camera 950;Slide block guide rail plate 609 has slide block square hole 906, for being slidably matched between slide block square hole 906 and described shooting square bar 601 gabarit, there is threading circle 934 slide block guide rail plate 609 side, slide block guide rail plate 609 opposite side has motor seat board 961, motor seat board 961 has four motor screws 941 and a screw rod perforation 949, described motor seat board 961 lower plane there are lifting saddle 930, lifting saddle 930 medial surface have lifting guide groove 932, bottom lifting saddle 930, have hole 948, screw rod location;
Described lifting nut 921 gabarit is step slide block 923, slidably coordinates for vertical between step slide block 923 and described lifting guide groove 932;Four motor screws 941 of described motor seat board 961 are fixed with shooting motor 910, shooting motor 910 outfan axle is motor screw 912, motor screw 912 and described lifting nut 921 threaded engagement, four through hole flanges 914 are had between shooting motor 910 and motor screw 912, motor screw 912 end is location light beam 918, and location light beam 918 positions with described screw rod and coordinates for rotary sliding between hole 948;There is horizontally disposed camera pedestal 925 described lifting nut 921 side, camera pedestal 925 has video camera termination 945 below termination, front, 945 times, video camera termination is industrial camera 950, being backed with shooting power supply signal combination cable 940 on video camera termination 945, shooting power supply signal combination cable 940 is external to distribution box and computer disposal center after passing through described threading circle 934 respectively.
As further improvement: described test table 190 has by pincers fixing threaded hole 197, in every described support side plate 200, plane is respectively arranged with two turntable seat screws 160 and two locking pin seat screws 186, support side plate 200 lateral surface of both sides has described operation seat screw 232, the support side plate 200 of side at least also has four horizontally disposed worm screw bore 157.
As further improvement: in Fig. 1, Figure 13, Figure 14, Figure 15, Figure 19, Figure 20, Figure 21, Figure 22, Figure 23 and Figure 24, described cullet guider 140 by guider biside plate 142 and end swash plate 141 after guider and together with guider front vertical plate 143 defined, described guider biside plate 142 upper end has the guider flange 184 turned up respectively, and guider flange 184 has fixed via 148;Cullet guider 140 lower ending opening four limit constitutes a guider lower ending opening 166;Having collecting cart vertical plates on both sides 612 and collecting cart back incline 619 and collecting cart front vertical plate 610 on described cullet collecting cart 300 flat board respectively, collecting cart vertical plates on both sides 612 front end also has collecting cart handle 622;Described collecting cart vertical plates on both sides 612 and collecting cart front vertical plate 610 surround three contour end faces 616, and the described back incline upper surface 661 on collecting cart back incline 619 is 48 millimeters lower than the distance of three described contour end faces 616;Back incline upper surface 661 and the defined floor projection of three contour end faces 616 are sized larger than described guider lower ending opening 166 floor projection size, it is 23 millimeters that guider lower ending opening 166 position exceeds the distance of described back incline upper surface 661, and guider lower ending opening 166 position is 25 millimeters lower than the distance of three described contour end faces 616;Bottom described cullet collecting cart 300, all around one has four go-cart forked standards 641, go-cart return pulley 640 is had in the middle of go-cart forked standard 641, it is rotatable matched in clearance between go-cart return pulley 640 centre bore and go-cart pivot pin 642 cylindrical, is interference fit between go-cart pivot pin 642 two ends and the through hole on go-cart forked standard 641.
As further improvement: in Figure 13, Figure 14, Figure 15, Figure 25, Figure 26, Figure 27, Figure 28, Figure 29, Figure 30, Figure 31, Figure 32, Figure 33, Figure 34, Figure 35, Figure 36 and Figure 37, described V-type chute corner by pincers assembly 500 include four physical dimensions identical first lean on pincers 540 by pincers the 520, the 3rd by pincers 530 and the 4th by pincers 510, second, every is made up of retained part and sliding corner by pincers, is rotatably connected fixing by pivot pin rivet 100 between every retained part and sliding corner by pincers;The upper surface of described retained part is for by the upper plane 516 of pincers, and the one end by the upper plane 516 of pincers has V-type groove 514, V-type groove 514 bottom surface to be groove-bottom plane 571, and the cross section of V-type groove 514 is isosceles trapezoid, and the single-ended opening of V-type groove 514;Described has step through-hole 109 by the other end of plane 516 on pincers, and there is through hole angle face 102 step through-hole 109 both sides, and going up by pincers between two side through hole angle faces 102 has corner scale 513 in plane 516;
The lower surface of described sliding corner is the lower plane 561 that trackslips, trackslip and lower plane 561 has rotation through hole 108, rotate through hole 108 side and have rotating disk chamfering cambered surface 103, rotating disk chamfering cambered surface 103 is positioned on the back flat of the lower plane 561 that trackslips, and rotating disk chamfering cambered surface 103 has corner cambered surface protrude pointer 531;Described rotation through hole 108 opposite side has V-type protruding rail 541, V-type protruding rail 541 is positioned at and trackslips on lower plane 561, the cross section of V-type protruding rail 541 is also isosceles trapezoid, V-type protruding rail 541 has protruding rail faying face 697, the opposite face of protruding rail faying face 697 is protruding rail top plane 574, protruding rail top plane 574 has the protruding rail stepped hole 692 of two, between protruding rail top plane 574 and V-type protruding rail 541 two sides, has transition arc 694;The effect of transition arc 694 is the processing dead angle avoiding described V-type groove 514, it is ensured that precisely coordinate between V-type protruding rail 541 with V-type groove 514;
Described trackslipping is separable between lower plane 561 and V-type protruding rail 541;Trackslip and lower plane 561 has two plane screws 691, V-type protruding rail 541 also has the protruding rail stepped hole 692 of two;Protruding rail screw 693 passes through described protruding rail stepped hole 692, and protruding rail screw 693 coordinates with described plane screw 691 screw-tightened, and described protruding rail faying face 697 is fixed on described trackslipping on lower plane 561;Described V-type protruding rail 541 adopts self-lubricating material, and this self-lubricating material is ptfe composite, and the weight percentages of components of ptfe composite is: politef 78%, graphite powder 14%, polybenzoate 8%;Above-mentioned self-lubricating material achieves oil-free lubrication, reduces frictional resistance, thoroughly avoids the lubricated oil of glass fragment and is bonded on test table 190, conveniently removes glass fragment.
The hard molybdenum alloy coating having a layer thickness to be 0.22 millimeter on described V-type groove 514 surface, elementary composition by following percentage by weight of this hard molybdenum alloy coating material: 32%, Ti:3.3%, Cr:2.7%, Cu:1.3%, W:2.3%, Ni:1.2%, C:1.1%, surplus is Fe and inevitable impurity;The weight percent content of described impurity is: Si in 0.18%, S be 0.008%, P be 0.013%, the rockwell superficial hardness number of this hard molybdenum alloy coating is HRC56.
As further improvement: described by there being clamping slope 515 inside the upper plane 516 of pincers, clamping slope 515 and described by pincers above angle between plane 516 be 52 degree;Clamping has slip-off preventing groove 585 on slope 515, and slip-off preventing groove 585 degree of depth is 2.4 millimeters, and slip-off preventing groove 585 bottom width is 4.7 millimeters, and slip-off preventing groove 585 A/F is 4.4 millimeters;On clamping slope 515, also extruding is fixed with rubber tabletting 551, and rubber tabletting 551 has slip-off preventing raised line 558, and slip-off preventing raised line 558 is highly 2.2 millimeters, and slip-off preventing raised line 558 width suitable for reading is 4.8 millimeters, and slip-off preventing raised line 558 root width is 4.4 millimeters;
Described rubber tabletting 551 adopts synthesis butadiene rubber, its material composition is: butadiene rubber 37%, acrylate rubber 12%, silicone rubber 12%, white carbon 15%, sulfur 2.5%, zinc oxide 0.8%, tricresyl phosphate 1.3%, oxidic polyethylene 0.8%, accelerator 3.8%, age resistor 2.5%, epoxy Semen Lini oil 0.7%, acetyl triethyl citrate 0.28%, microwax 1.3%, all the other be modified Nano Pulvis Talci, described modified Nano talcum particles degree is 1570 orders.
Described silicone rubber is one or more the compositions in methyl vinyl silicone rubber, methyl phenyl vinyl silicone rubber, methyl trifluoro propyl silicone rubber;The modifying agent that described modified Nano Pulvis Talci adopts is silane coupler, and method of modifying is wet-process modified;Described silane coupler is the one in methoxy silane, Ethoxysilane.
The benefit of above-mentioned design is: have interference fit produce extruding expansive force between inclined-plane, slip-off preventing raised line 558 both sides and inclined-plane, slip-off preventing groove 585 both sides, it is not necessary to gluing is prevented also from coming off, it is to avoid by the aging produced case accident of bonding glue;Matched in clearance is had, it is simple to install and combine between slip-off preventing raised line 558 height and slip-off preventing groove 585 degree of depth.
In embodiment, support side plate 200 thickness is 26 millimeters, and rear shear plate 176 thickness is 26 millimeters, and end shear plate 175 thickness is 16 millimeters.Adopting the disposable integral casting forming of grey cast-iron between support side plate 200 and rear shear plate 176 and end shear plate 175 is integral-rack, and bulk strength is high, and shock-absorbing effect is good.The length of side of square fluorescent tube 888 is 160 to 162 millimeters.The gap of 0.3 millimeter is had between groove-bottom plane 571 and protruding rail top plane 574.
In Figure 29, pivot pin rivet 100 passes through rotation through hole 108 and step through-hole 109 successively, and the pivot pin rivet 100 rotatable overlap joint of lower plane 561 that will trackslip is fixed on by the upper plane 516 of pincers, it is ensured that trackslips lower plane 561 and is in sustained height by clamping above plane 516;In Figure 35, Figure 36 and Figure 37, clamping slope 515 and be 58 degree by the angle between the upper plane 516 of pincers, clamping slope 515 extrudes and is fixed with rubber tabletting 551.
Complete machine assembling process:
Cullet guider 140 entirety is placed down from above so that guider flange 184 is taken and is placed on plane in support side plate 200, and four fixed vias 148 of every side are directed at two turntable seat screws 160 and two locking pin seat screws 186 simultaneously;The turntable rotating shaft 196 of test table 190 both sides is rotatable with turntable bearing 163 endoporus to be coordinated, and four platen seat screws pass through the installing hole on turntable bearing 163 and fixed via 148 respectively, are fixed on turntable seat screw 160 by the turntable bearing 163 of both sides;Four locking pin seat screws pass through the installing hole on lock pin bearing 180 and fixed via 148 respectively, are fixed on locking pin seat screw 186 by the lock pin bearing 180 of both sides, and cullet guider 140 is generally in both sides bilinear and fixes, particularly stable firmly.
The light beam lock pin 189 of both sides can enter in the plug lockhole 198 of test table 190 both sides, by test table 190 locking positioning.Transmission worm gear 161 endoporus also has keyway, transmission worm gear 161 endoporus is placed in rotating shaft worm gear section 192, being placed on by worm gear flat key 168 in the rotating shaft keyway 194 in rotating shaft worm gear section 192, the position of the prominent rotating shaft keyway 194 on worm gear flat key 168 is accommodated among the keyway on transmission worm gear 161 endoporus;On the shaft thread 193 of rotating shaft worm gear section 192 outer end, threaded engagement screws on worm gear and nut 188, and transmission worm gear 161 is fastened in the rotating shaft worm gear section 192 in turntable rotating shaft 196 by worm gear and nut 188.
Adjusting ring of light bracing ring 820 height so that during work, square fluorescent tube 888 is 3 to 5 millimeters apart from the height gap of trapezoidal glass plate 600, tightens bracing ring trip bolt 894 and is fixed on a circular abutment 566 of heel row by ring of light bracing ring 820;It is slidably installed between through hole and two transverse horizontal bar 602 cylindricals on two shooting cross sliders 608 at shooting square bar 601 two ends, slide block guide rail plate 609 has between slide block square hole 906 and the shooting square gabarit of square bar 601 for being slidably matched;Shooting motor 910 on motor screw 912 pass through screw rod perforation 949 after with lifting nut 921 threaded engagement, the location light beam 918 making motor screw 912 end positions the rotatable location that coordinates, hole 948 with screw rod, and the step slide block 923 of lifting nut 921 gabarit slidably coordinates for vertical with the lifting guide groove 932 of lifting saddle 930 medial surface;Four shooting screws 944 pass through four through hole flanges 914 and motor screw 941 screw threads for fastening, are fixed on motor seat board 961 by shooting motor 910;The camera pedestal 925 of lifting nut 921 side is to fix video camera termination 945, and on video camera termination 945, the shooting power supply signal combination cable 940 at the back side is external to distribution box and computer disposal center after passing through threading circle 934 respectively.
Being inserted on circular abutment 566 external cylindrical surface by impact slide block 666 through hole impacting cross bar 562 one end, altitude location circle 565 has holding screw 594 be fixed on the another kind of circular abutment 566 at front row, altitude location circle 565 holds in the palm impact slide block 666;The horizontal square hole 564 of frame that impacts in impacter frame 567 is inserted on the rectangle straight-bar impacted on cross bar 562, and fixes;Impacter frame 567 will have impact motor installed surface 544, impact motor 521 be placed and secured on impact motor installed surface 544, rotating disk 572 is fixed on the output shaft end impacted on motor 521;Quadrangular guide rail 595 is inserted among the vertical square hole 535 of the impact frame in impacter frame 567, allow the revolution pivot pin 573 on rotating disk 572 insert among the horizontal concrete chute 524 of quadrangular guide rail 595 upper end simultaneously.
When one, safety glass being done fragmentation test, step is as follows:
(1), with the worm screw crank handle 155 on hand traverse worm shaft 151 one end so that worm shaft 151 drives transmission worm gear 161 to rotate, then driving test table 190 rear end lower plane to push down plane 717 in back plate, test table 190 presents level;The operation lever 136 with the hands holding both sides respectively is drawn close to intermediate pressure so that light beam lock pin 189 enters locking positioning in the plug lockhole 198 of test table 190 both sides, and test table 190 is fixed by horizontal level;
null(2)、By identical for four physical dimensions first by pincers 510、Second leans on pincers 520、3rd is placed on above test table 190 by pincers 540 by pincers 530 and the 4th,For being slidably matched between V-type groove 514 on first retained part 519 and the V-type protruding rail 541 on the 4th sliding corner 548,For being slidably matched between V-type groove 514 on 4th retained part 549 and the V-type protruding rail 541 on the 3rd sliding corner 538,For being slidably matched between V-type groove 514 on second retained part 529 and the V-type protruding rail 541 on the first sliding corner 518,For being slidably matched between V-type groove 514 on 3rd retained part 539 and the V-type protruding rail 541 on the second sliding corner 528,Make four physical dimensions identical first by pincers 510、Second leans on pincers 520、3rd surrounds a surrounding ambient by clamping between 540 by pincers 530 and the 4th;
(3), V-type chute corner has by pincers step through-hole 501 by going up by pincers of at least one retained part in pincers assembly 500 in plane 516, sunk screw 195 passes through and matches with by pincers fixing threaded hole 197 by pincers step through-hole 501, and by pincers assembly 500, V-type chute corner is fixed on plane on test table 190;
Above-mentioned surrounding ambient is sized larger than the physical dimension of the trapezoidal glass plate 600 to be detected, the trapezoidal glass plate 600 that will be detected is placed on above the test table 190 in above-mentioned surrounding ambient, use the immobilizing foundation of the first retained part 519, after a wherein side of trapezoidal glass plate 600 clings to the first retained part 519, second retained part 529 and the 3rd retained part 539 and the 4th retained part 549 are clinged to trapezoidal glass plate 600 one by one, make every four limit outer rims tightly touching the trapezoidal glass plate 600 to be detected by the rubber tabletting 551 on pincers;The produced elastic indenture 105 of rubber tabletting 551 natural resiliency deformation gives trapezoidal glass plate 600 4 limit outer rim flexibility and fixes, it is to avoid rigidity crushes unexpected for trapezoidal glass plate 600 by pincers;
Additionally, V-type chute corner both can have been utilized by pincers assembly 500 own wt, trapezoidal glass plate 600 is fixed on test table 190;Extenal fixation part can also be used remaining second retained part 529 and the 3rd retained part 539 and the 4th retained part 549 are fixed on test table 190 successively;
(4), to be test for after armorplate glass 600 is fixed, regulate impact cross bar 562 height on circular abutment 566, hold cross bar becket 599, impacter 590 will be turned round along with impacting cross bar 562 together, and rotate above armorplate glass 600 around circular abutment 566 cylindrical;
Start and impact motor 521, rotating disk 572 is driven to rotate, when the revolution pivot pin 573 on rotating disk 572 is while making to rotate, revolution pivot pin 573 sliding in the horizontal concrete chute 524 of quadrangular guide rail 595 upper end again, quadrangular guide rail 595 is driven to move up and down so that the jump bit cone point 596 of quadrangular guide rail 595 lower end also moves up and down;When jump bit cone point 596 is displaced downwardly to extreme lower position, armorplate glass 600 can just be touched, and armorplate glass 600 is smashed;Can realize remotely controlling to smash the dangerous step of armorplate glass 600, it is to avoid glass breaking moment surprisingly splashes and injures site operation personnel;
(5), again hold cross bar becket 599, impacter 590 will be turned round along with impacting cross bar 562 together, and be rotated away from above trapezoidal glass plate 600 around circular abutment 566 cylindrical;By square fluorescent tube 888 along with ring of light plagioclase handle 810, centered by rotating disk endoporus 836, rotation moves to and to image, above trapezoidal glass plate 600, the position taken pictures;
Transverse shifting images square bar 601 and vertically moves slide block guide rail plate 609 respectively, make industrial camera 950 to dead square fluorescent tube 888 center, square fluorescent tube 888 energising produces the surrounding ring of light, start shooting motor 910, by shooting motor 910 being adjusted proper height in controlling, shooting is taken pictures and fragmentation pattern picture is sent to computer disposal center, produce computer-readable picture clearly, Figure 38 and Figure 39, require that whether the trapezoidal glass plate 600 carrying out judging to destroy is qualified according to national standard, complete the fragmentation status test of safety glass;
(6), remove glass fragment work: closed by square fluorescent tube 888, and along with ring of light plagioclase handle 810 is centered by rotating disk endoporus 836, reversely rotate removal test table 190;Unclamp extenal fixation part, remove simultaneously V-type chute corner by pincers assembly 500 in adjacent both sides by clamp, the operation lever 136 again with the hands holding both sides respectively is broken into two with one's hands to both sides so that light beam lock pin 189 exits locking positioning in the plug lockhole 198 of test table 190 both sides, releases locking positioning;With the worm screw crank handle 155 on hands opposite direction rocking-turn worm shaft 151 so that hand worm shaft 151 drives transmission worm gear 161 opposite direction to rotate, test table 190 rear end lower plane is then driven to depart from plane 717 in back plate;After test table 190 run-off the straight 10 to 20 is spent, safety glass fragment can be disposed easily through cullet guider 140, fall among cullet collecting cart 300;
(7), reset work: again rotate worm screw crank handle 155 by hand so that worm shaft 151 drives transmission worm gear 161 to rotate, drives test table 190 rear end lower plane to push down plane 717 in back plate then, and test table 190 presents level again;The operation lever 136 again with the hands holding both sides respectively is drawn close to intermediate pressure, light beam lock pin 189 is made to enter locking positioning in the plug lockhole 198 of test table 190 both sides, test table 190 is again at level, prepares as long as being test for trapezoidal glass plate 600 for next;
(8), specific cullet guider 140 lower port drops within cullet collecting cart 300 upper port, its effect is: can be sized larger than guider lower ending opening 166 floor projection size by means of the floor projection that the contour end face 616 in back incline upper surface 661 and three is defined, it is 27 millimeters that guider lower ending opening 166 position exceeds the distance of back incline upper surface 661, it is ensured that sheet glass can all fall in cullet collecting cart 300 through cullet guider 140;It can be 28 millimeters lower than the distance of three contour end faces 616 by means of guider lower ending opening 166 position again, easily cullet collecting cart 300 is separated with cullet guider 140, when the chunk glass in cullet collecting cart 300 is many to, when raftinging, being moved away by cullet collecting cart 300.
Two, the above-mentioned prominent substantive distinguishing features of the present invention, it is ensured that following significant progressive effect can be brought:
Present invention achieves detection test overall process and save disposable product adhesive tape, not only save test consumables cost, it is to avoid contaminated environment;Also shorten the activity duration, the tape residue on test table 190 need not be removed clean after test, it is only necessary to remove clean cullet, so that it may implement experiment test operation next time so that work efficiency improves twice every time.Prior thoroughly avoiding because adhesive tape is burst, by safety glass, the probability that strength collapses out, the personal safety of operator is more secure;
By comparing with the use test data done of disposable product adhesive tape conventionally test by pincers assembly 500 present invention employs V-type chute corner.It is appreciated that: adopt the rubber tabletting 551 of synthesis butadiene rubber, its specific had physical characteristic of material composition formula, guarantee to go through hundred experiment test operations without breakage, and hard molybdenum alloy coating on V-type groove 514 surface is intact, conclusion is to have employed V-type chute corner to be better than using disposable product adhesive tape conventionally test by pincers assembly 500.

Claims (4)

1. worm gear turntable ring of light shooting molybdenum alloy V-type chute corner is by pincers glass detection machine, the support side plate (200) of integral-rack both sides is fixed two described circular abutments (566) respectively, four circular abutment (566) upper ends are all fixed with column termination (604), and four column terminations (604) are respectively fixed with two transverse horizontal bars (602) and two vertical equity bars (603);
The upper plane of support side plate (200) described in both sides is all fixed with turntable bearing (163) and lock pin bearing (180) respectively;There is turntable rotating shaft (196) test table (190) both sides, the turntable rotating shaft (196) of both sides is rotatable respectively to be fixed in turntable bearing (163), described rear shear plate (176) upper bit has plane in back plate (717), and in back plate, plane (717) holds test table (190) lower plane afterwards;
Described test table (190) both sides vertical has plug lockhole (198), for being slidably matched between described lock pin bearing (180) endoporus and light beam lock pin (189) cylindrical;The light beam lock pin (189) of both sides can enter in described plug lockhole (198), by described test table (190) and the fixing restriction rotation of the support side plate (200) described in both sides;Described light beam lock pin (189) outer end has (135) outside lock pin, having lock pin elongated hole groove (134) outside lock pin on (135), described lock pin elongated hole groove (134) is passed through in operation stock (133);There is operation lever (136) operation stock (133) upper end, operation pivot pin (132) is had between operation stock (133) lower end and operation bearing (131), operation pivot pin (132) two ends are fixed in operation bearing (131), coordinating for rotatable between the endoporus of operation stock (133) lower end with operation pivot pin (132) cylindrical, operation bearing (131) bottom of both sides is fixed in operation seat screw (232);It is characterized in that:
The turntable rotating shaft (196) of side is further fixed on transmission worm gear (161), transmission worm gear (161) is combined with worm shaft (151), worm shaft (151) two ends are rotatable respectively to be fixed in worm bearing (152), worm bearing (152) is fixed on corresponding support side plate (200) lateral surface, and worm shaft (151) one end also has worm screw crank handle (155);Two described transverse horizontal bars (602) are all sliding combined with shooting cross slider (608), fix shooting square bar (601) between two shootings cross slider (608), shooting square bar (601) has screw rod lifting shooting unit (900);
The mobile ring of light (800) there is a square fluorescent tube (888), there is ring of light plagioclase handle (810) square fluorescent tube (888) shelf side, ring of light plagioclase handle (810) end is rotation dish (830), and rotation dish (830) has rotating disk endoporus (836) and rotating disk lower surface (832);Ring of light bracing ring (820) has bracing ring endoporus (826) and bracing ring upper surface (823) and bracing ring trip bolt (894), described bracing ring endoporus (826) and one described circular abutment (566) of heel row are slidably matched, and ring of light bracing ring (820) is fixed on a circular abutment (566) of heel row by described bracing ring trip bolt (894);Described rotating disk lower surface (832) is held in the palm in described bracing ring upper surface (823), described rotating disk endoporus (836) also coordinates for rotary sliding with between this described circular abutment (566) of heel row so that the described mobile ring of light (800) rotates in set height position;
The upper plane of described test table (190) fixes V-type chute corner by pincers assembly (500), described turntable bearing (163) and described lock pin bearing (180) together and fix cullet guider (140) between the upper plane of support side plate (200), and cullet guider (140) lower port drops within cullet collecting cart (300) upper port;
nullImpact cross bar (562) one end and have cross bar becket (599),Impact cross bar (562) other end and have impact slide block (666),Impact slide block (666) circular hole to coordinate with circular abutment (566) the cylindrical rotary sliding described in front-seat another,The upper slip of described impact cross bar (562) fixes revolution impacter (590),The material of jump bit cone point (596) in revolution impacter (590) is molybdenum-base alloy,Described molybdenum-base alloy is elementary composition by following percentage by weight: Mo:21 ~ 23%、W:3~5%、Cr:2.1~2.3%、Cu:2.1~2.3%、Al:1.1~1.3%、C:1.0 ~ 1.2%、Sn:.1.4~1.6%,Surplus is Fe and inevitable impurity;The weight percent content of described impurity is: Si less than 0.21%, S less than 0.013%, P less than 0.016%, the rockwell superficial hardness number of this molybdenum-base alloy is HRC66 ~ 68.
2. the worm gear turntable ring of light according to claim 1 shooting molybdenum alloy V-type chute corner is by pincers glass detection machine, it is characterized in that: the upper liftable of described circular abutment (566) fixes altitude location circle (565), altitude location circle (565) has holding screw (594), altitude location circle (565) holds in the palm described impact slide block (666), and altitude location circle (565) is used for regulating the height impacting cross bar (562);Described revolution impacter (590) includes impacter frame (567), impacts motor (521) and quadrangular guide rail (595);Described impacter frame (567) have the impact vertical square hole of frame (535) and impacts the horizontal square hole of frame (564), impacting between four faceted pebbles on the horizontal square hole of frame (564) and described impact cross bar (562) for being slidably matched;Described impact motor (521) base holes is fixed in the upper plane of impacter frame (567), impact and motor (521) output port is fixed with rotating disk (572), rotating disk (572) has revolution pivot pin (573);
It is slidably matched for liftable between described quadrangular guide rail (595) square hole (535) vertical with described impact frame, described quadrangular guide rail (595) lower end is described jump bit cone point (596), quadrangular guide rail (595) upper end is horizontal concrete chute (524), for being slidably matched between horizontal concrete chute (524) inwall and described revolution pivot pin (573).
3. the worm gear turntable ring of light according to claim 1 shooting molybdenum alloy V-type chute corner is by pincers glass detection machine, it is characterized in that: described screw rod lifting shooting unit (900) includes slide block guide rail plate (609), shooting motor (910), motor screw (912), lifting nut (921), industrial camera (950);Slide block guide rail plate (609) has slide block square hole (906), there is threading circle (934) slide block guide rail plate (609) side, slide block guide rail plate (609) opposite side has motor seat board (961), motor seat board (961) has four motor screws (941) and screw rod perforation (949), described motor seat board (961) lower plane there is lifting saddle (930), lifting saddle (930) medial surface has lifting guide groove (932), and screw rod hole, location (948) is arranged at lifting saddle (930) bottom;
Described lifting nut (921) gabarit is step slide block (923), four motor screws (941) of the motor seat board (961) stated are fixed with shooting motor (910), shooting motor (910) outfan axle is motor screw (912), having four through hole flanges (914) between shooting motor (910) and motor screw (912), motor screw (912) end is location light beam (918);
There is horizontally disposed camera pedestal (925) described lifting nut (921) side, video camera termination (945) is had below camera pedestal (925) termination, under video camera termination (945), front is industrial camera (950), and video camera termination (945) are backed with shooting power supply signal combination cable (940).
4. the worm gear turntable ring of light according to claim 1 shooting molybdenum alloy V-type chute corner is by pincers glass detection machine, it is characterized in that: described V-type chute corner by pincers assembly (500) include four physical dimensions identical first by pincers (510), second by pincers (520), the 3rd by clamping (530) and the 4th by clamping (540), every is made up of retained part and sliding corner by pincers, is rotatably connected fixing by pivot pin rivet (100) between every retained part and sliding corner by pincers;
The upper surface of described retained part is for by the upper plane (516) of pincers, there is V-type groove (514) one end by the upper plane (516) of pincers, V-type groove (514) bottom surface is groove-bottom plane (571), the cross section of V-type groove (514) is isosceles trapezoid, and V-type groove (514) single-ended opening;The described other end by the upper plane (516) of pincers has step through-hole (109), there is through hole angle face (102) step through-hole (109) both sides, and going up by pincers between two side through hole angle faces (102) has corner scale (513) in plane (516);
The lower surface of described sliding corner is the lower plane that trackslips (561), trackslip and lower plane (561) has rotation through hole (108), rotate through hole (108) side and have rotating disk chamfering cambered surface (103), rotating disk chamfering cambered surface (103) is positioned on the back flat of the lower plane that trackslips (561), rotating disk chamfering cambered surface (103) has corner cambered surface protrude pointer (531);
Described rotation through hole (108) opposite side has V-type protruding rail (541), V-type protruding rail (541) is positioned on the lower plane that trackslips (561), the cross section of V-type protruding rail (541) is also isosceles trapezoid, V-type protruding rail (541) has protruding rail faying face (697), the opposite face of protruding rail faying face (697) is protruding rail top plane (574), protruding rail top plane (574) has the protruding rail stepped hole (692) of two, between protruding rail top plane (574) and V-type protruding rail (541) two sides, has transition arc (694);The effect of transition arc (694) is the processing dead angle avoiding described V-type groove (514), it is ensured that precisely coordinate between V-type protruding rail (541) with V-type groove (514);
Between the described lower plane that trackslips (561) and V-type protruding rail (541) separable;Trackslip and lower plane (561) has two plane screws (691), V-type protruding rail (541) also has the protruding rail stepped hole (692) of two;Protruding rail screw (693) passes through described protruding rail stepped hole (692), protruding rail screw (693) coordinates with described plane screw (691) screw-tightened, is fixed on the described lower plane that trackslips (561) by described protruding rail faying face (697);
Described V-type protruding rail (541) adopts self-lubricating material, and this self-lubricating material is ptfe composite, and the weight percentages of components of ptfe composite is: politef 77 ~ 79%, graphite powder 13 ~ 15%, polybenzoate 7 ~ 9%;Described V-type groove (514) surface has one layer of hard molybdenum alloy coating, described has clamping slope (515) by upper plane (516) inner side of pincers, in clamping slope (515), also extruding is fixed with rubber tabletting (551), and rubber tabletting (551) adopts synthesis butadiene rubber.
CN201610216195.2A 2016-04-09 2016-04-09 Optical-ring photographing type glass detection machine provided with worm wheel, rotary table and molybdenum alloy V-shaped slide groove corner clamp Withdrawn CN105758749A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113483832A (en) * 2020-11-07 2021-10-08 济南和一汇盛科技发展有限责任公司 Online measuring device for water flow of channel

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101622521A (en) * 2007-02-15 2010-01-06 皮尔金顿集团有限公司 Glazing inspection
CN105241764A (en) * 2015-11-09 2016-01-13 温州经济技术开发区滨海志杰机电产品设计工作室 Worm wheel rotary table tungsten alloy impact hammer bearing pressing plate glass detection machine frame
CN105280058A (en) * 2015-11-17 2016-01-27 陈俞任 Triangle instrument which is provided with aluminium-chromium alloy step slot corner pointer and is adjustable in the same plane
CN105424508A (en) * 2015-11-09 2016-03-23 温州经济技术开发区滨海志杰机电产品设计工作室 Glass testing method adopting handle, rotary table, stepped press plates and rotation impactor

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101622521A (en) * 2007-02-15 2010-01-06 皮尔金顿集团有限公司 Glazing inspection
CN105241764A (en) * 2015-11-09 2016-01-13 温州经济技术开发区滨海志杰机电产品设计工作室 Worm wheel rotary table tungsten alloy impact hammer bearing pressing plate glass detection machine frame
CN105424508A (en) * 2015-11-09 2016-03-23 温州经济技术开发区滨海志杰机电产品设计工作室 Glass testing method adopting handle, rotary table, stepped press plates and rotation impactor
CN105280058A (en) * 2015-11-17 2016-01-27 陈俞任 Triangle instrument which is provided with aluminium-chromium alloy step slot corner pointer and is adjustable in the same plane

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113483832A (en) * 2020-11-07 2021-10-08 济南和一汇盛科技发展有限责任公司 Online measuring device for water flow of channel
CN113483832B (en) * 2020-11-07 2023-10-31 济南和一汇盛科技发展有限责任公司 Channel water flow on-line measuring device

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Application publication date: 20160713