CN204699650U - A kind of non-equilibrium dual-convolution type paint mixer - Google Patents
A kind of non-equilibrium dual-convolution type paint mixer Download PDFInfo
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- CN204699650U CN204699650U CN201520158691.8U CN201520158691U CN204699650U CN 204699650 U CN204699650 U CN 204699650U CN 201520158691 U CN201520158691 U CN 201520158691U CN 204699650 U CN204699650 U CN 204699650U
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- 239000003973 paint Substances 0.000 title claims abstract description 64
- 230000006835 compression Effects 0.000 claims description 31
- 238000007906 compression Methods 0.000 claims description 31
- 230000005540 biological transmission Effects 0.000 claims description 4
- 238000003756 stirring Methods 0.000 claims description 4
- 238000002156 mixing Methods 0.000 abstract description 37
- 238000012423 maintenance Methods 0.000 abstract 1
- 239000011248 coating agent Substances 0.000 description 10
- 238000000576 coating method Methods 0.000 description 10
- 230000033001 locomotion Effects 0.000 description 7
- 230000009977 dual effect Effects 0.000 description 6
- 230000005484 gravity Effects 0.000 description 6
- 230000001360 synchronised effect Effects 0.000 description 5
- 238000000034 method Methods 0.000 description 3
- 239000003638 chemical reducing agent Substances 0.000 description 2
- 238000005056 compaction Methods 0.000 description 2
- 238000010586 diagram Methods 0.000 description 2
- 238000010009 beating Methods 0.000 description 1
- 230000000007 visual effect Effects 0.000 description 1
Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01F—MIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
- B01F29/00—Mixers with rotating receptacles
- B01F29/10—Mixers with rotating receptacles with receptacles rotated about two different axes, e.g. receptacles having planetary motion
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01F—MIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
- B01F35/00—Accessories for mixers; Auxiliary operations or auxiliary devices; Parts or details of general application
- B01F35/40—Mounting or supporting mixing devices or receptacles; Clamping or holding arrangements therefor
- B01F35/42—Clamping or holding arrangements for mounting receptacles on mixing devices
- B01F35/423—Clamping or holding arrangements for mounting receptacles on mixing devices of the vertically movable, two-plates type
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- Chemical & Material Sciences (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Coating Apparatus (AREA)
Abstract
The utility model provides a kind of non-equilibrium dual-convolution type paint mixer, comprises rotary main shaft, guide rail bracket, upper branch arm, lower branch arm, upper platen and pressing disc; During work, rotary main shaft can drive whole guide rail bracket to rotate along rotary main shaft axis, claim the first dimension revolution, upper platen is driven to rotate around upper platen rotating shaft by the axis of guide, upper platen drives pressing disc to rotate around pressing disc rotating shaft by paint can, claims the second dimension revolution, and the first dimension revolution and second is tieed up revolution and is superimposed as double back and revolves, upper platen shaft axis overlaps with pressing disc shaft axis, and the first dimension revolution and second is tieed up and turned round the double back superposed and revolve imbalance.Improve mixing machine efficiency; There is provided the first dimension revolution uneven, instantly when the gravitational moment of the relative rotary main shaft axis of guide rail bracket assembly is greater than the gravitational moment of upper rail frame component, the support arm position that support arm is downward up and down in basic maintenance, be convenient to V-type guide block assembly accurately locate upper support arm, by motor automatic impaction, save brake location, reduce costs.
Description
Technical field
The utility model relates to the rotating mixing machine of double back of a kind of coating, paint and analog, comprises positioner and the automatic compacting device of support arm on dynamic balance system and dual-convolution type paint mixer.
Background technology
The mixing machine of current coating industry divides vibrating-type mixing machine and swinging mixing machine i.e. Clothoid type mixing machine, and the utility model relates to a kind of swinging mixing machine, is specially a kind of rotatable mixing machine of double back automatically.The rotatable mixing machine of double back is that one makes coating, the equipment of paint and analog mixing or mixing, can make coating is housed, the bucket of paint and analog--be called for short paint can, rotate around the rotating shaft vertical with bucket geometric center lines while the geometric center lines of paint can rotates in the rotatable mixing machine of double back, namely rotation simultaneously and revolution, reach the object that coating double back revolves mixing.When needing the coating in bucket to mix or make to add the color matching mill base in bucket and the white basis coating in bucket is mixed into uniform color, first be that this paint can is placed on the pressing disc between upper platen in dual AC power mixing machine between the upper and lower support arm of upper branch arm and pressing disc, the automatic dual AC power mixing machine of one of such as existing market.The lower branch arm of many this automatic dual AC power mixing machines is made up of two parts, and wherein a part can pull out, and pressing disc is drawn out, and pushes after placing paint can again, to reduce the difficulty putting into paint can.When revolution starts this double back rotating mixing machine mixing coating, the brake block in first machine in a main drive motor 17 ' checks main drive motor, fixes revolution mixing driver part, and the guide rail that rotary main shaft 9 ' is driven and upper branch arm and lower branch arm can not rotate.Simultaneously, mixing machine is rotated by another compression main shaft 8 ' driving compaction driving wheel 15 ' to be driven across rotary main shaft 9 ' central bore for clamping motor 16 ' the energising rear drive holddown belt 19 ' compressing bucket of its inside, drive and compress main shaft 8 ', compress the main compression bevel gear 13 ' that main shaft 8 ' front end is fixing, drive driven wheel of differential 11 ', driving and compressing leading screw 5 ' one end is left-handed leading screw, the other end is dextrorotation leading screw, make the upper platen 1 be arranged on upper branch arm 3 ', the paint can be mixed be placed on pressing disc 2 ' is compressed with the pressing disc 2 ' move toward one another being arranged on lower branch arm 4.After paint can compresses, clamping motor 16 ' power-off for compressing bucket shuts down, electromagnetic brake sheet in electrical equipment control main drive motor 17 ' is thrown off, main drive motor 17 ' energising starts to rotate, revolution belt wheel 14 ' is driven by belt 18 ', rotate, rotary main shaft 9 ' can be made, guide rail 6 ', upper branch arm 3 ' and lower branch arm 4 ', paint can is driven to produce a rotation around rotary main shaft 9 ' axis, simultaneously owing to compressing leading screw 5 ' by guide rail 6 ', synchronous drive is rotated around rotary main shaft 9 ' axis, make to compress the fixing driven wheel of differential 11 ' in leading screw 5 ' middle part, with compressing leading screw 5 ' around rotary main shaft 9 ' and the main compression bevel gear 13 ' that is meshed, the power driving main compression bevel gear 13 ' is produced while rotating.Equally, main compression bevel gear 13 ', reaction force also can make driven wheel of differential 11 ', compress leading screw 5 ' and produce a contrary rotation trend, but compress the trend of paint can because this rotation trend compresses leading screw 5 ' just and stoped can not rotate by paint can.Its result can only be while compression leading screw 5 ' synchronous guide track 6 ' rotates around rotary main shaft 9 ', it can not around own axis, but by driven wheel of differential 11 ', main compression bevel gear 13 ', compress main shaft 8 ', compaction driving wheel 15 ' compress belt pulley 19 ' drive power-off clamping motor 16 ' rotate.In this rotation process, due to driven wheel of differential 11 ' with main compress to only have between bevel gear 13 ' engage, there is no relative gear motion, namely the compression main shaft 8 ' that is fixed together with it of main compression bevel gear 13 ', along with guide rail 6 ', rotary main shaft 9 ' synchronous axial system.While rotation, an other swivel-chain is by the bevel gear wheel 10 ' on large flange dish, bevel pinion 12 ', the axis of guide 7 ', and can above slide at the axis of guide 7 ' and be directed to the driving pulley of axle rotation, belt, the platen on driven pulley be to paint can.This driving-chain can make paint can rotate around the axial line of self again, and namely now paint can produces the mixing rotation of two mutually perpendicular directions rotations, i.e. rotation and revolution.Coating in bucket is driven, and along with also producing effective hybrid motion, thus reaches the immixture of coating.
Mainly said structure and the improvement thereof of dual AC power mixing machine in the market, the patent No. is the utility model patent of 200810049422.2, two motors that above-mentioned mixing machine is needed the compression of paint can and mixing, one of them motor is that the interior brake motor with electromagnetic brake mechanism improves, control with the motion switching of a drive motors by an electromagnetic clutch device, the compression completing paint can drives and turns round mixing driving these two and works alone.Its operation principle and process as follows: need compress paint can time, be sleeved on electromagnetic clutch device on rotary main shaft under cold state, on the top of elastic top gripping members, pressure is pressed on friction brake disk armature disc, and brake rotary main shaft, makes rotary main shaft not rotate.Moving plate and dynamic friction disk detachment simultaneously, and do not drive dynamic friction dish to rotate together by Moving plate, can only drive through the compression main axis in rotary main shaft by motor-driven driving wheel, for the upper branch arm that upper platen is housed provides transfer motion power with the move toward one another of the lower branch arm that pressing disc is housed, platen, pressing disc is made to compress paint can, when needing revolution mixing paint can, solenoid in electromagnetic clutch device is energized, the Xiang Li that the electromagnetic attraction that electromagnetic disc produces overcomes elastic top gripping members holds armature disc, friction brake disk and armature disc depart from simultaneously, Moving plate driven friction disk is pulled together, simultaneously, driving wheel connects with Moving plate, Moving plate and dynamic friction dish are pulled together, combine as a whole with rotary main shaft, because driving wheel and compression main shaft are fixed together, now driving wheel, Moving plate, rotary main shaft, compress the condition that main shaft possesses synchronous axial system, prevent compacted paint can from loosening in the rotation of rotary main shaft subsequently.Now electrical power, drives driving wheel, compresses main shaft, drive Moving plate, dynamic friction dish, rotary main shaft equally, make the rotation of compression main shaft and rotary main shaft keep synchronous axial system, prevents compacted paint can from loosening.The patent No. is the utility model patent of 201210272988.8, is improved to hold down gag by upper hand dynamic pressure tight.
No matter the rotating mixing machine of the double back of which kind of type, when it installs paint can and unloading paint can, support arm is downward up and down all to need support arm, and the rotating mixing machine of the first double back above-mentioned controls upper support arm by the electromagnetic brake sheet in main drive motor 17 ', and support arm is downward up and down; The patent No. is the rotating mixing machine of double back of 200810049422.2, although switch control with a drive motors by the motion of an electromagnetic clutch device, the compression completing paint can drives and turns round mixing driving these two and works alone, and still needs electromagnetic clutch device to control the upper support arm normal danger that support arm is downward up and down; The patent No. is the utility model patent of 201210272988.8, is that braking mechanism makes support arm substantially stop at upright position disclosed in embodiment.In brief, the rotating mixing machine of existing double back is all that brake keeps the upper support arm normal danger that support arm is downward up and down.Occur that the reason of this situation is, Machine Design principles and requirements, rotary part will keep dynamic balancing, be exactly, the gravitational moment of upper rail frame component and the gravitational moment of lower guideway frame component keep dynamic balancing, so, need brake to keep the upper support arm normal danger that support arm is downward up and down.
Utility model content
In fact, because parts are more, upper rail frame component and lower guideway frame component being kept dynamic balancing as far as possible, is a very complicated job, be difficult to reach complete equipilibrium, usual permission unbalanced scope, with regard to the rotating mixing machine of double back, stirs upper branch arm or lower branch arm with hand, guide rail bracket assembly is rotated, guide rail bracket assembly can stop at any angle of 360 degree of anglecs of rotation substantially, and in brief, unbalanced amount is less than the resistance of rotation system; On the contrary, upper rail frame component and lower guideway frame component is made to keep uneven, be easy to many comparatively speaking, the utility model breaks Machine Design principle without hesitation, deliberately make upper rail frame component and lower guideway frame component imbalance, and unbalanced amount is greater than the resistance of rotation system, be called a kind of non-equilibrium dual-convolution type paint mixer.Upper rail frame gravitational moment refers to: the distance of gravity vertical to rotary main shaft of upper rail frame component center of gravity and the product of upper rail frame gravity; Lower guideway frame gravitational moment refers to: the distance of gravity vertical to rotary main shaft of lower guideway frame component center of gravity and the product of lower guideway frame gravity.
The utility model is achieved through the following technical solutions:
A kind of non-equilibrium dual-convolution type paint mixer, it comprises rotary main shaft, be fixed on the guide rail bracket of rotary main shaft front end, be arranged on upper rail frame and the upper branch arm that can move up and down along it, be arranged on lower branch arm that is on lower guideway frame and that can move up and down along it, the upper platen being arranged on upper branch arm by upper platen rotating shaft and the pressing disc be arranged on by pressing disc rotating shaft on lower branch arm; During work, rotary main shaft can drive whole guide rail bracket to rotate along the axis of rotary main shaft, be called the first dimension revolution, drive upper platen to rotate around upper platen rotating shaft by the axis of guide simultaneously, upper platen drives pressing disc to rotate around pressing disc rotating shaft by paint can, be called the second dimension revolution, first dimension revolution and second tie up turn round to superpose and is become double back and revolve, the axis of upper platen rotating shaft and the dead in line of pressing disc rotating shaft, and described first ties up and turn round and second tie up and turn round the double back be superimposed as and revolve imbalance.
The non-equilibrium dual-convolution type paint mixer of described one, described first dimension revolution is uneven.
The non-equilibrium dual-convolution type paint mixer of described one, described second dimension revolution is uneven.
The non-equilibrium dual-convolution type paint mixer of described one, described first dimension revolution is uneven, and the second dimension revolution is also uneven.
The non-equilibrium dual-convolution type paint mixer of described one, described first dimension revolution is uneven, the axis epimere that guide rail bracket is in rotary main shaft is upper rail frame component, the axis hypomere that guide rail bracket is in rotary main shaft is lower guideway frame component, and upper rail frame component is unequal relative to the gravitational moment of rotary main shaft axis with lower guideway frame component.
The non-equilibrium dual-convolution type paint mixer of described one, the gravitational moment of the relative rotary main shaft axis of described lower guideway frame component is greater than the gravitational moment of upper rail frame component.
The non-equilibrium dual-convolution type paint mixer of described one, described non-equilibrium dual-convolution type paint mixer comprises frame, frame is arranged the traversing carriage driven by mobile motor, traversing carriage is arranged the compression shift fork part driven by electric rotating machine, compress leading screw top fix with compress that shift fork part coordinates dialled parts, compress shift fork part and stir by group tight screw turns of component tape dynamic pressure.
The non-equilibrium dual-convolution type paint mixer of described one, described frame is arranged the traversing carriage driven by mobile motor, coordinated by guideway between frame with traversing carriage, simultaneously, drive traversing carriage to move linearly by lead screw pair between frame and traversing carriage, mobile motor drives leading screw to rotate.
The non-equilibrium dual-convolution type paint mixer of described one, described traversing carriage is arranged the compression shift fork part driven by electric rotating machine, and the output shaft being fixed on the electric rotating machine on traversing carriage connects transmission input shaft, and transmission output shaft connects shift fork rotating shaft.
The non-equilibrium dual-convolution type paint mixer of described one, described second dimension revolution is uneven, the axis of upper platen rotating shaft and the axial offset of upper platen.
The non-equilibrium dual-convolution type paint mixer of described one, described first dimension revolution is uneven, and upper rail frame component is unequal relative to the gravitational moment of rotary main shaft axis with lower guideway frame component; Described second dimension revolution is also uneven, the axis of upper platen rotating shaft and the axial offset of upper platen.
The non-equilibrium dual-convolution type paint mixer of described one, described frame is placed on slow vibrating device.
Major advantage of the present utility model is just: provide the first dimension revolution uneven, turn round superpositing vibration on basis in the first dimension, provide the second dimension revolution uneven, superpositing vibration and to provide the first peacekeeping second to tie up revolution all uneven on the second dimension revolution basis, tie up all superpositing vibrations in the first peacekeeping second, substantially increase the efficiency of mixing machine; There is provided the first dimension revolution uneven simultaneously, instantly when the gravitational moment of the relative rotary main shaft axis of guide rail bracket assembly is greater than the gravitational moment of upper rail frame component, substantially the support arm position that support arm is downward up and down can be kept, the V-type guide block assembly being convenient to coordinate with upper support arm is accurately located upper support arm, then by motor automatic impaction, just save brake location, and location of braking is electromagnetic clutch brake location, the power of electromagnetic clutch is larger, cost is just high, save brake location, just greatly reduce costs.
Accompanying drawing explanation
Fig. 1 is the Dual-motors Driving dual AC power mixing machine side view of prior art.
Fig. 2 is the Dual-motors Driving dual AC power mixing machine rearview of prior art.
Fig. 3 is the utility model movement sectional structure schematic diagram.
Fig. 4 is the utility model automatic impaction part-structure schematic diagram.
Fig. 5 is the axis of platen rotating shaft on the utility model and the axial offset structural representation of upper platen.
Fig. 6 is structural representation when platen and pressing disc are non-disc on the utility model.
Fig. 7 is the structural representation at another kind of visual angle when platen and pressing disc are non-disc on the utility model.
Detailed description of the invention:
A kind of non-equilibrium dual-convolution type paint mixer, rotary main shaft 9 support member 100 is fixed in frame, rotary main shaft 9 is set in the axis hole of support member 100, top chock 61 and step 62 is fixed at rotary main shaft 9 right-hand member, the both sides fixed guide 63 and 64 respectively of top chock 61 and step 62, two guide rails 63 with 64 two ends be up and down fixedly connected with by upper frame plate 68 and lower frame plate 69 respectively, like this, two guide rails 63 with 64 two ends be up and down fixedly connected with by upper frame plate 68 and lower frame plate 69 respectively and two guide rails 63 with 64 middle part be fixedly connected with by top chock 61 and step 62, form guide rail bracket 6, guide rail bracket 6 is divided into upper rail frame 66 and lower guideway frame 67 by rotary main shaft 9, on guide rail bracket 6, parallel with guide rail bracket 6, the compression leading screw 5 of the anti-silk of rotatable two sections screw thread is set, upper branch arm 3 and lower branch arm 4 coordinate with guide rail bracket 6 guideway respectively and coordinate with compression leading screw 5 lead screw pair respectively, form on upper rail frame 66 and on the upper branch arm 3 that can move up and down along it, lower guideway frame 67 and the lower branch arm 4 that can move up and down along it, upper branch arm 3 and lower branch arm 4 are moved in opposite directions, compresses between the upper platen 1 making to be arranged on upper branch arm 3 and the pressing disc 2 being arranged on lower branch arm 4 or unclamp staving, upper platen 1 is arranged on the upper and lower platen 2 of upper branch arm 3 by upper platen rotating shaft 301 and is arranged on lower branch arm 4 by pressing disc rotating shaft 401, and upper platen rotating shaft 301 and pressing disc rotating shaft 401 are coaxial, and in guarantee, platen 1 and pressing disc 2 can coaxial rotatings, upper rail frame 66 arranges the rotatable spline axis of guide 7, bevel pinion 12 is fixed in the spline axis of guide 7 lower end, bevel pinion 12 engages with the bevel gear wheel 10 of the support member 100 be fixed in frame, the drive pulley 37 be slidably located on the spline axis of guide 7, the negative pulley wheel 36 fixing with upper platen rotating shaft 301 is driven to rotate by belt 38, thus drive upper platen 1 to rotate by upper platen rotating shaft 301, when compressing staving between upper platen 1 and pressing disc 2, staving axis and upper platen 1 dead in line, the axis of upper platen 1 is: when the shape of upper platen 1 is disk, axis perpendicular to circle disk center is upper platen 1 axis, the definition of pressing disc 2 axis defines identical with upper platen 1 axis, as shown in Figure 6, Figure 7, during upper platen 1 non-disc, during work, paint can puts into the groove of platen 1 and pressing disc 2, and staving axis is exactly the axis of upper platen through upper platen, certainly, staving axis is also the axis of pressing disc 2, in brief, when upper platen is non-disc, staving axis is exactly the axis of upper platen 1 and pressing disc 2, and pressing disc 2 rotates around upper platen rotating shaft 301 with upper platen 1, during work, above-mentioned rotary main shaft 9 can drive whole guide rail bracket 6 and annex mounted thereto to rotate along the axis of rotary main shaft 9, be called the first dimension revolution, during work, drive upper platen 1 to rotate around upper platen rotating shaft 301 by the spline axis of guide 7, drive pressing disc 2 to rotate around pressing disc rotating shaft 401 by compacted paint can, be called the second dimension revolution, first dimension revolution and second tie up turn round to superpose and is become double back and revolve, and described first ties up and turn round and second tie up and turn round the double back be superimposed as and revolve imbalance.
Described first dimension revolution is uneven, and the unbalanced amount of the first dimension revolution is greater than the resistance of the first dimension revolution rotation system.
Described second dimension revolution is uneven, and the unbalanced amount of the second dimension revolution is greater than the resistance of the second dimension revolution rotation system.
Described first dimension revolution is uneven, and the unbalanced amount of the first dimension revolution is greater than the resistance of the first dimension revolution rotation system, and the second dimension revolution is also uneven, and the unbalanced amount of the second dimension revolution is also greater than the resistance of the second dimension revolution rotation system.
Described first dimension revolution is uneven, the axis epimere that guide rail bracket 6 is in rotary main shaft 9 is upper rail frame component, comprise upper rail frame 66, upper compression leading screw, upper branch arm 3, upper platen 1, upper platen rotating shaft 301, the spline axis of guide 7, bevel pinion 12, drive pulley 37, belt 38, negative pulley wheel 36 and other annex, such as connecting bolt etc.
The axis hypomere that guide rail bracket 6 is in rotary main shaft 9 is lower guideway frame component, comprises lower guideway frame 67, lower compression leading screw, lower branch arm 4, pressing disc 2, pressing disc rotating shaft 401 and other annex, such as connecting bolt etc.
The gravitational moment of upper rail frame component and lower guideway frame component is unequal.Refer to and to be greater than outside rotation system resistance required moment, if the gravitational moment of upper rail frame component is large, upper rail frame component be kept upper, lower guideway frame component under state, the power of brake clutch will strengthen.But Blending Efficiency of Blending is good.When guide rail bracket rotates, the moment that the moment of torsion that guide rail bracket provides by rotary main shaft superposes with gravitational moment, when the moment of torsion that rotary main shaft provides disappears, only gravitational moment works, gravitational moment is uneven, be exactly that gravitational moment is unequal, one end that gravitational moment is large just presents downtrend, one end that final gravitational moment is large stops at lower end, in addition, the gravitational moment of upper/lower guide frame changes with rotational angle, when departing from vertical state, large still large of gravitational moment, only when upper/lower guide frame presents vertical state, the gravitational moment of upper/lower guide frame is zero, so, the gravitational moment of upper/lower guide frame is unequal, get rid of the situation that upper/lower guide frame presents vertical state.
The gravitational moment of described lower guideway frame component is greater than the gravitational moment of upper rail frame component.The axis hypomere that guide rail bracket 6 is in rotary main shaft 9 is lower guideway frame component, comprise lower guideway frame 67, lower compression leading screw, lower branch arm 4, pressing disc 2, pressing disc rotating shaft 401 and other annex, the gravitational moment of such as connecting bolt etc., being greater than the axis epimere that guide rail bracket 6 is in rotary main shaft 9 is upper rail frame component, comprise upper rail frame 66, upper compression leading screw, upper branch arm 3, upper platen 1, upper platen rotating shaft 301, the spline axis of guide 7, bevel pinion 12, drive pulley 37, belt 38, negative pulley wheel 36 and other annex, the gravitational moment of such as connecting bolt etc., add moment required outside rotation system resistance, i.e. sum of the two.In this case, at lower guideway frame component, balancing weight 65 can be installed.Now, stop operating, just can automatically keep upper rail frame component upper, lower guideway frame component under state, do not need brake clutch.
Described non-equilibrium dual-convolution type paint mixer comprises frame 111, the traversing carriage 121 frame 111 being fixed mobile motor 112 driving moves, traversing carriage 121 is arranged the compression shift fork part 129 driven by electric rotating machine 122, compress leading screw 5 top fix with compress that shift fork part coordinates by group parts, dialled parts and comprised the compression driven pulley 151 compressing leading screw 5 top and fix, compress on driven pulley 151 fixing with compress that shift fork part 129 coordinates by group inserted link 152, compressing shift fork part 129 stirs by group inserted link 152, being dialled inserted link 152 drives compression leading screw 5 to rotate, platen 1 and pressing disc 2 is made to compress or unclamp staving.Described frame is arranged the traversing carriage driven by mobile motor, coordinated by guideway between frame with traversing carriage, namely frame 111 is fixed a pair slide bar 113, fixing a pair sliding sleeve 123 coordinated with slide bar 113 on traversing carriage 121, simultaneously, rotate by frame 111 being fixed the leading screw 131 of mobile motor 112 by belt drive lead screw pair between frame 111 and traversing carriage 121, the screw 124 being fixed on the lead screw pair of traversing carriage 121 coordinates with leading screw 114, leading screw 114 rotarily drives screw 124 and moves linearly, screw 124 drives traversing carriage 121 to move linearly, make the compression shift fork part 129 on traversing carriage 121 and compress fixing being coordinated by group inserted link 152 on driven pulley 151, the shift fork rotating shaft 128 compressing shift fork part 129 is connected with the output shaft of reducer of turbodrill 127, the power shaft of reducer of turbodrill 127 is connected with the output shaft of electric rotating machine 122, like this, electric rotating machine 122, platen 1 and pressing disc 2 just can be made to compress staving, utilize the frictional force between lead screw pair locked after compression.Meanwhile, guide rail bracket keeps upper rail frame component upper substantially, lower guideway frame component under state, traversing carriage 121 rectilinear movement makes the compression shift fork part 129 on traversing carriage 121 and compresses in the process coordinated by group inserted link 152 fixing on driven pulley 151, the V-type guide block assembly of traversing carriage 121 bottom hanging is accurately located upper support arm, this locate mode and the patent No. are that the locate mode of the utility model patent of 201210272988.8 is identical, and direction is contrary.
Described second dimension revolution is uneven, the axis of upper platen rotating shaft 301 and the axial offset of upper platen 1.The axis going up platen rotating shaft 301 does not exactly overlap with the axis of upper platen 1, the axis of upper platen 1, namely go up platen 1 be disk or regular polygon dish time, the axis disk of upper platen 1 or the geometric center of regular polygon dish are perpendicular to the straight line of card, when upper platen 1 is irregularly shaped, it is the axis of the staving that upper platen 1 and pressing disc 2 compress.
Described first dimension revolution is uneven, and the gravitational moment of upper rail frame component and lower guideway frame component is unequal; Described second dimension revolution is also uneven, the axis of upper platen rotating shaft 301 and the axial offset of upper platen 1.
Described frame is placed on slow vibrating device, due to the vibration that imbalance causes, when vibration is little, when not causing machine to be beated, can not add slow vibrating device, when vibration is large, when causing machine to be beated, frame will be placed on slow vibrating device, and prevent machine from beating.
Claims (12)
1. a non-equilibrium dual-convolution type paint mixer, it comprises rotary main shaft, be fixed on the guide rail bracket of rotary main shaft front end, be arranged on upper rail frame and the upper branch arm that can move up and down along it, be arranged on lower branch arm that is on lower guideway frame and that can move up and down along it, the upper platen being arranged on upper branch arm by upper platen rotating shaft and the pressing disc be arranged on by pressing disc rotating shaft on lower branch arm; During work, rotary main shaft can drive whole guide rail bracket to rotate along the axis of rotary main shaft, be called the first dimension revolution, upper platen is driven to rotate around upper platen rotating shaft by the axis of guide during work, upper platen drives pressing disc to rotate around pressing disc rotating shaft by paint can, be called the second dimension revolution, first dimension revolution and second is tieed up to turn round to superpose and is become double back and revolve, the axis of upper platen rotating shaft and the dead in line of pressing disc rotating shaft, is characterized in that: described first dimension revolution and second is tieed up and turned round the double back be superimposed as and revolve imbalance.
2. a kind of non-equilibrium dual-convolution type paint mixer as claimed in claim 1, is characterized in that: described first dimension revolution is uneven.
3. a kind of non-equilibrium dual-convolution type paint mixer as claimed in claim 1, is characterized in that: described second dimension revolution is uneven.
4. a kind of non-equilibrium dual-convolution type paint mixer as claimed in claim 1, is characterized in that: described first dimension revolution is uneven, and the second dimension revolution is also uneven.
5. a kind of non-equilibrium dual-convolution type paint mixer as claimed in claim 2, it is characterized in that: described first dimension revolution is uneven, the axis epimere that guide rail bracket is in rotary main shaft is upper rail frame component, the axis hypomere that guide rail bracket is in rotary main shaft is lower guideway frame component, and upper rail frame component is unequal relative to the gravitational moment of rotary main shaft axis with lower guideway frame component.
6. a kind of non-equilibrium dual-convolution type paint mixer as claimed in claim 5, is characterized in that: the gravitational moment of the relative rotary main shaft axis of described lower guideway frame component is greater than the gravitational moment of upper rail frame component.
7. a kind of non-equilibrium dual-convolution type paint mixer as claimed in claim 6, it is characterized in that: described non-equilibrium dual-convolution type paint mixer comprises frame, frame is arranged the traversing carriage driven by mobile motor, traversing carriage is arranged the compression shift fork part driven by electric rotating machine, compress leading screw top fix with compress that shift fork part coordinates dialled parts, compress shift fork part and stir by group tight screw turns of component tape dynamic pressure.
8. a kind of non-equilibrium dual-convolution type paint mixer as claimed in claim 7, it is characterized in that: described frame is arranged the traversing carriage driven by mobile motor, coordinated by guideway between frame with traversing carriage, simultaneously, drive traversing carriage to move linearly by lead screw pair between frame and traversing carriage, mobile motor drives leading screw to rotate.
9. a kind of non-equilibrium dual-convolution type paint mixer as claimed in claim 7, it is characterized in that: described traversing carriage is arranged the compression shift fork part driven by electric rotating machine, the output shaft being fixed on the electric rotating machine on traversing carriage connects transmission input shaft, and transmission output shaft connects shift fork rotating shaft.
10. a kind of non-equilibrium dual-convolution type paint mixer as claimed in claim 3, is characterized in that: described second dimension revolution is uneven, the axis of upper platen rotating shaft and the axial offset of upper platen.
11. a kind of non-equilibrium dual-convolution type paint mixers as claimed in claim 4, is characterized in that: described first dimension revolution is uneven, and upper rail frame component is unequal relative to the gravitational moment of rotary main shaft axis with lower guideway frame component; Described second dimension revolution is also uneven, the axis of upper platen rotating shaft and the axial offset of upper platen.
12. non-equilibrium dual-convolution type paint mixers of one as described in any one of claim 7 to 9, is characterized in that: described frame is placed on slow vibrating device.
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CN201520158691.8U CN204699650U (en) | 2015-03-20 | 2015-03-20 | A kind of non-equilibrium dual-convolution type paint mixer |
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CN201520158691.8U CN204699650U (en) | 2015-03-20 | 2015-03-20 | A kind of non-equilibrium dual-convolution type paint mixer |
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CN104707524A (en) * | 2015-03-20 | 2015-06-17 | 沈如华 | Unbalanced double-rotation type coating mixing machine |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
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CN104707524A (en) * | 2015-03-20 | 2015-06-17 | 沈如华 | Unbalanced double-rotation type coating mixing machine |
CN104707524B (en) * | 2015-03-20 | 2017-02-01 | 沈如华 | Unbalanced double-rotation type coating mixing machine |
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