CN209567773U - A kind of ultra-large type refrigeration equipment boom hoisting - Google Patents
A kind of ultra-large type refrigeration equipment boom hoisting Download PDFInfo
- Publication number
- CN209567773U CN209567773U CN201822217477.1U CN201822217477U CN209567773U CN 209567773 U CN209567773 U CN 209567773U CN 201822217477 U CN201822217477 U CN 201822217477U CN 209567773 U CN209567773 U CN 209567773U
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- Prior art keywords
- fixed frame
- turnover mechanism
- pylon
- driving
- slide rail
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- 238000005057 refrigeration Methods 0.000 title claims abstract description 14
- 230000007246 mechanism Effects 0.000 claims abstract description 104
- 230000007306 turnover Effects 0.000 claims abstract description 78
- 230000009471 action Effects 0.000 claims abstract description 46
- 238000005192 partition Methods 0.000 claims abstract description 9
- 238000000034 method Methods 0.000 description 9
- 230000000694 effects Effects 0.000 description 8
- 230000008569 process Effects 0.000 description 8
- 238000003466 welding Methods 0.000 description 7
- 238000010586 diagram Methods 0.000 description 6
- 230000005540 biological transmission Effects 0.000 description 2
- 239000007787 solid Substances 0.000 description 2
- 230000001360 synchronised effect Effects 0.000 description 2
- RYGMFSIKBFXOCR-UHFFFAOYSA-N Copper Chemical compound [Cu] RYGMFSIKBFXOCR-UHFFFAOYSA-N 0.000 description 1
- 240000009087 Crescentia cujete Species 0.000 description 1
- 235000005983 Crescentia cujete Nutrition 0.000 description 1
- 235000009797 Lagenaria vulgaris Nutrition 0.000 description 1
- 235000014676 Phragmites communis Nutrition 0.000 description 1
- 206010057071 Rectal tenesmus Diseases 0.000 description 1
- 238000004378 air conditioning Methods 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 229910052802 copper Inorganic materials 0.000 description 1
- 239000010949 copper Substances 0.000 description 1
- 230000007812 deficiency Effects 0.000 description 1
- 230000005611 electricity Effects 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 239000004744 fabric Substances 0.000 description 1
- 238000009434 installation Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000008450 motivation Effects 0.000 description 1
- 230000000630 rising effect Effects 0.000 description 1
- 238000009987 spinning Methods 0.000 description 1
- 208000012271 tenesmus Diseases 0.000 description 1
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- Conveying And Assembling Of Building Elements In Situ (AREA)
Abstract
The utility model discloses a kind of ultra-large type refrigeration equipment boom hoistings, it include pylon, it further include having the rollover stand being hinged with pylon bottom end, the fixed frame being articulated on rollover stand and sliding vertically the action bar being connected on pylon, by being matched using the first turnover mechanism, the second turnover mechanism and third turnover mechanism so that the slow reciprocally swinging of fixed frame, wherein, second turnover mechanism and third turnover mechanism are mutually restrained to stablize the wobbling action of fixed frame;The slide rail extended along fixed frame length direction is provided on the fixed frame, wherein, the adjustment driving mechanism that its edge of the slide rail configuration driven is moved back and forth perpendicular to fixed frame length direction, sliding is provided with multiple groups clamp assembly on the slide rail, wherein, clamp assembly described in every group includes the sliding part being slidingly fitted with slide rail and the clamp mould for being fixed on sliding part and be used to clamp heat exchanger partition.
Description
Technical field
The utility model relates to the technical fields of air-conditioning process equipment, refer in particular to a kind of ultra-large type refrigeration equipment lifting
It sets.
Background technique
In refrigeration equipment, for the heat exchanger of some ultra-large types, mainly by several heat exchanger tubes and it is multiple every
Board group is successively worn at, wherein multiple partitions in parallel arrangement and for several heat exchanger tubes, as shown in Fig. 9.Due to heat exchanger tube
Length is longer, has commonly reached the length of 3-5M, and during actual installation, pacify in advance often by by more piece short tube
It loaded on partition, then successively welds more piece short tube to form a root long heat exchanger tube, welding position is between the short copper pipe of two adjacent sections
Circumferential weld position, and it is existing be usually for welding manner used by large heat exchanger be put in workbench for heat exchanger is sleeping, then
It is subjected to by operator, not only operation difficulty is big for the mode of this horizontal welding of circumferential weld, but also welding effect is paid no attention to
Think, be unable to reach required standard, and need to reach preferable welding effect, then needs vertically to put large heat exchanger, then
It is subjected to by operator, but be the absence of one kind can quickly and easily become large heat exchanger by horizontal positioned state
For the boom hoisting vertically placed.
Utility model content
The purpose of the utility model is to overcome the deficiencies in the prior art, provide a kind of suitable for different specification size, behaviour
Make convenient, highly-safe ultra-large type refrigeration equipment boom hoisting.
In order to achieve the above purpose, a kind of ultra-large type refrigeration equipment boom hoisting provided by the utility model, including
There is pylon, further includes having the rollover stand being hinged with pylon bottom end, the fixed frame being articulated on rollover stand and the company of sliding vertically
The action bar being connected on pylon, wherein the pylon be equipped with for drive rollover stand make rotary movement the first turnover mechanism,
For drive fixed frame make rotary movement the first turnover mechanism and for drive action bar make vertically back and forth go up and down it is vertical
Driving mechanism;The third turnover mechanism for driving fixed frame to make rotary movement is provided on the rollover stand;By utilizing the
One turnover mechanism, the second turnover mechanism and third turnover mechanism match so that the slow reciprocally swinging of fixed frame, wherein described
Two turnover mechanisms and third turnover mechanism are mutually restrained to stablize the wobbling action of fixed frame;It is provided on the fixed frame along solid
Determine the slide rail of frame length direction extension, wherein its edge of the slide rail configuration driven is perpendicular to fixed frame length direction
The adjustment driving mechanism of reciprocating movement, sliding is provided with multiple groups clamp assembly on the slide rail, wherein fixture described in every group
Component includes the sliding part being slidingly fitted with slide rail and is fixed on sliding part and is used to clamp heat exchanger partition
Clamp mould.
Further, first turnover mechanism is the first Electric Chain Blocks being hung on pylon, wherein first ring
The chain end of chain electric block is connected with rollover stand.
Further, second turnover mechanism includes to slide vertically the lifting portion being connected on pylon, be hung at lifting
The second Electric Chain Blocks in portion and the lifting driving unit for driving lifting portion vertically to move back and forth, wherein described
The chain end of second Electric Chain Blocks is connected with fixed frame.
Further, the vertical driving mechanism is the third Electric Chain Blocks being hung on pylon, wherein the third ring
The chain end of chain electric block is connected with action bar.
Further, the action bar is provided with the sliding seat being slidingly fitted with pylon, wherein the action bar and sliding
Seat be hinged and the action bar configured with drive its around articulated shaft in the horizontal plane reciprocally swinging hand revolve adjustment mechanism.
Further, the clamp mould includes the fixed mold and moving mold opened and closed in opposite directions, wherein the moving mold is configured with
Drive the clamping cylinder of its reciprocal clamping movement.
The utility model uses above-mentioned scheme, the beneficial effect is that: by utilizing the first turnover mechanism, the second overturning
Mechanism and third turnover mechanism match so that the slow reciprocally swinging of fixed frame, wherein second turnover mechanism and third are turned over
Rotation mechanism is mutually restrained to stablize the wobbling action of fixed frame, so that fixed frame is taken during heat exchanger makees wobbling action
More safety and stability, meanwhile, operator stands in action bar, and is configured with vertical driving mechanism so that operator is in perpendicular
Processing operation is carried out to the heat exchanger of arrangement.Above-mentioned boom hoisting is easy to operate, can be according to the specification of real exchanger
Corresponding adjustment clamp assembly position is adapted.
Detailed description of the invention
Fig. 1-3 is the boom hoisting structural schematic diagram of the utility model.
Fig. 4 is that schematic diagram is cutd open in the boom hoisting side of the utility model.
Fig. 5 is first turnover mechanism of the utility model and the structural schematic diagram of the second turnover mechanism.
Fig. 6 is the structural schematic diagram of the fixed frame of the utility model.
Fig. 7 is the cross-sectional view of the fixed frame of the utility model.
Fig. 8 is the structural schematic diagram of the operation basket of the utility model.
Fig. 9 is the structural schematic diagram of heat exchanger.
Wherein, 1- pylon, 2- rollover stand, the first turnover mechanism of 21-, 22- third turnover mechanism, 3- fixed frame, 31- second
Turnover mechanism, 311- lifting portion, the second Electric Chain Blocks of 312-, 313- lift driving unit, 32- support rod, 33- support
Plate, 4- action bar, the vertical driving mechanism of 41-, 5- slide rail, 51- adjustment driving mechanism, 6- clamp assembly, 61- sliding part,
62- clamp mould, A- heat exchanger.
Specific embodiment
The utility model is further described combined with specific embodiments below.
Referring to shown in attached drawing 1 to attached drawing 8, in the present embodiment, a kind of ultra-large type refrigeration equipment boom hoisting, includes tower
It frame 1, the rollover stand 2 being hinged with 1 bottom end of pylon, the fixed frame 3 being articulated on rollover stand 2 and slides vertically and is connected to pylon
Action bar 4 on 1, wherein the pylon 1 of the present embodiment is in the supporting structure of vertically extending arrangement.
2 front end of rollover stand of the present embodiment and 1 bottom end of pylon pass through the link bolt being preset with and are hinged cooperation,
In, pylon 1 is hung oneself equipped with the first turnover mechanism 21 for driving rollover stand 2 to make rotary movement, first driving of the present embodiment
Mechanism is the first Electric Chain Blocks being hung on 1 top end of pylon, the chain end of first Electric Chain Blocks and overturning
2 end-position of frame is connected, to drive rollover stand 2 with rollover stand 2 and pylon 1 using under the action of the first Electric Chain Blocks
Between hinge joint be that shaft makees reciprocal upper pendulum or bottom movement.
3 tail end of fixed frame of the present embodiment and 2 front end of rollover stand pass through the link bolt being preset with and are hinged cooperation,
Wherein, pylon 1 is hung oneself equipped with the first turnover mechanism 21 for driving fixed frame 3 to make rotary movement, and the second of the present embodiment turns over
Rotation mechanism 31 includes to slide vertically the lifting portion 311 being connected on pylon 1, the second loop chain being hung in lifting portion 311 electricity
Dynamic cucurbit 312 and the lifting driving unit 313 for driving lifting portion 311 vertically to move back and forth, wherein the second loop chain is electronic
The chain end of cucurbit 312 is connected with fixed frame 3, thus using fixed frame 3 is driven under the action of the second Electric Chain Blocks 312
Make reciprocally swinging using hinge joint between fixed frame 3 and rollover stand 2 as shaft.Secondly, the lifting driving unit 313 of the present embodiment wraps
Include the driving motor and ball screw being fixedly installed on pylon 1, wherein the output of the screw rod and driving motor of ball screw
The connection that rotates is held, and the nut of ball screw is fixedly connected with 311 phase of lifting portion, thus in lifting driving unit 313
Effect is lower to drive lifting portion 311 vertically to move back and forth, and the vertical position of the second Electric Chain Blocks 312 is adjusted in realization.
Further, multiple idler wheels are provided in the lifting portion 311 of the present embodiment to be slidingly fitted along the vertical bar set on pylon 1, that is, pylon
1 vertical bar is slidingly fitted as track for idler wheel.
The third turnover mechanism 22 for driving fixed frame 3 to make rotary movement is provided on the rollover stand 2 of the present embodiment,
In, the third turnover mechanism 22 of the present embodiment is two in the telescopic cylinder being arranged in parallel, the tail end of each telescopic cylinder and overturning
Frame 2 is hinged and its telescopic end and fixed frame 3 are hinged (being to pass through link bolt), to utilize the flexible of two telescopic cylinders
Effect is to drive between rollover stand 2 and fixed frame 3 opposite rotary movement, that is, when telescopic cylinder elongation, rollover stand 2 and fixed
Angle between frame 3 becomes larger (and when rollover stand 2 is stationary, then can show fixed frame 3 and downwardly turn over);Conversely, when stretching
When contracting cylinder is shunk, angle between rollover stand 2 and fixed frame 3, which reduces, (and when rollover stand 2 is stationary, then can be presented place
Fixed frame 3 is flipped up).
It is matched by the first above-mentioned turnover mechanism 21, the second turnover mechanism 31 and third turnover mechanism 22 so that fixed
The slow reciprocally swinging of frame 3, i.e. realization fixed frame 3 make slow reciprocally swinging between 0-90 °.In order to make it easy to understand,
1) referring to shown in attached drawing 1 and attached drawing 2, when needing to swing fixed frame 3 by vertical direction (perpendicular to ground direction)
When to horizontal direction (being parallel to ground direction), by successively starting the first turnover mechanism 21, third turnover mechanism 22 and second
Turnover mechanism 31, so that fixed frame 3 passes through three sections of downward wobbling actions, that is, the first turnover mechanism 21 takes the lead in movement to drive
Dynamic rollover stand 2 makees rotary movement, and (rollover stand 2 at this time is hung drawing slowly by horizontal direction by the chain of the first Electric Chain Blocks
It is swung up), while fixed frame 3 is with the synchronous rotary movement of rollover stand 2 (fixed frame 3 at this time from vertical direction to lower swing);
After frame 2 to be flipped swings predetermined angle, 21 stopping of the first turnover mechanism is acted, third turnover mechanism 22 and the second turnover mechanism 31
Starting operation, third turnover mechanism 22(telescopic cylinder elongation at this time) drive the angle between rollover stand 2 and fixed frame 3 to increase
(rollover stand 2 at this time by the chain of the first Electric Chain Blocks hang drawing and can not be to lower swing, to show stationary
State), to enable fixed frame 3 to lower swing;The second turnover mechanism 31 drives fixed frame 3 to continue to lower swing (at this time simultaneously
Fixed frame 3 hung the slow bottom by the chain of the second Electric Chain Blocks 312), by using third turnover mechanism 22 and
Second turnover mechanism, 31 collective effect continues fixed frame 3 to lower swing, and during the bottom, the second turnover mechanism 31
It is mutually restrained so that (3 bottom speed of fixed frame at this time is by the second turnover mechanism for the slow bottom always with third turnover mechanism 22
31 and third turnover mechanism 22 the slow-footed side of the bottom is determined between the two), by such manner, be effectively prevented from fixation
Frame 3 there is a situation where the bottom is too fast, greatly ensure that in use process due to single driving mechanism failure or excessive velocities
Safety.Drive fixed frame 3 to lower swing up to horizontal direction by the second turnover mechanism 31 and third turnover mechanism 22, thus
Just complete the bottom operation of fixed frame 3 (rollover stand 2 at this time is inclined);
2) referring to shown in attached drawing 1 and attached drawing 2, when needing fixed frame 3 being rocked to vertical direction by horizontal direction, pass through
Successively start the second turnover mechanism 31, third turnover mechanism 22 and the first turnover mechanism 21, so that fixed frame 3 passes through three sections
It is swung up movement, that is, 22 starting operation of the second turnover mechanism 31 and third turnover mechanism, wherein third tipper at this time
Structure 22(telescopic cylinder is shunk) driving the angle between rollover stand 2 and fixed frame 3 to reduce, (rollover stand 2 at this time is by the first ring
The chain of chain electric block, which hangs drawing, to show stationary state to lower swing), so that fixed frame 3 be enabled to put upwards
It is dynamic;Simultaneously the second turnover mechanism 31 drive fixed frame 3 to continue upward swing (fixed frame 3 at this time is by the electronic calabash of the second loop chain
The chain of reed 312 hangs drawing slowly upper pendulum), by making to fix using third turnover mechanism 22 and 31 collective effect of the second turnover mechanism
Frame 3 continues upward swing, and during upper pendulum, and the second turnover mechanism 31 is mutually restrained with third turnover mechanism 22 so that solid
Determining frame 3, slowly upper pendulum (put by the second turnover mechanism 31 and third turnover mechanism 22 are upper between the two by upper slew rate degree at this time always
A slow-footed side is determined), in this way, fixed frame 3 is effectively prevented from because of single driving mechanism failure or speed
It is too fast and there is a situation where tenesmus or it is upper pendulum it is too fast, greatly ensure that the safety in use process;To the second turnover mechanism
31 and third turnover mechanism 22 drive fixed frame 3 to be swung up to predetermined angular, 21 starting operation of the first turnover mechanism, third
Turnover mechanism 22 and 31 stopping of the second turnover mechanism movement, the first turnover mechanism 21 drive rollover stand 2 to make rotary movement (at this time
Rollover stand 2 is hung slowly by the chain of the first Electric Chain Blocks from inclined direction to lower swing), while fixed frame 3 can be with
2 synchronous hunting of rollover stand, until rollover stand 2 is rocked to horizontal direction, and fixed frame 3 at this time is rocked to vertical direction, from
And just complete the upper pendulum operation of fixed frame 3.
Realization is matched by the first above-mentioned turnover mechanism 21, the second turnover mechanism 31 and 22 three of third turnover mechanism
Upper pendulum and the bottom operation of fixed frame 3.
In the present embodiment, the slide rail 5 extended along 3 length direction of fixed frame is provided on fixed frame 3, wherein this
The slide rail 5 of embodiment is in dies.On its edge of 55 configuration driven of slide rail perpendicular to 3 length direction of fixed frame
The adjustment driving mechanism 51 of reciprocating movement, that is, 5 both ends of slide rail pass through the roller-coaster being preset with respectively and are connected to fixed frame
In the sliding slot that 3 both ends are preset with, secondly, the adjustment driving mechanism 51 of the present embodiment is set on fixed frame 3, and the adjustment is driven
Motivation structure 51 is two telescopic cylinders, by by two telescopic cylinders along perpendicular to fixed frame 3 length direction arrangement and telescopic cylinder
Telescopic end is connected with 5 one end of slide rail, thus using the telescopic action of telescopic cylinder to drive slide rail 5 to be made toward double action
Make.
In the present embodiment, sliding is provided with multiple groups clamp assembly 6 on slide rail 5, wherein clamp assembly described in every group
6 include the sliding part 61 being slidingly fitted with slide rail 5 and be fixed on sliding part 61 and for clamp heat exchanger A every
The clamp mould 62 of plate, the sliding part 61 of the present embodiment is by sliding clamping to slide rail 5 and sliding part 61 is led with sliding
Multiple idler wheels are equipped between rail 5 in order to which sliding part 61 is slided along 5 phase of slide rail, secondly, also configuring on sliding part 61 manually
(it is a kind of braking member commonly used in this field to the guide-rail brake of formula, and structural principle is for skilled person
Belong to common knowledge, can refer to a kind of lathe linear slide friction extensible guide brake gear of CN207495082U and " ZIMMER "
The guide-rail brake of model, structural principle are no longer repeated herein, i.e., by move manually the handle of guide-rail brake with
So that the braking sliding rail of guide-rail brake is clamped the braking of slide rail 5 or release braking), therefore, in slide rail 5 in horizontally disposed
When, operator is braked by releasing guide-rail brake manually, then multiple sliding parts 61 is pushed to be respectively moved to along slide rail 5
Required position, finally hand-operated clamping braking with the position to clamp assembly 6 is fixed limitation again, it is easy to operate and
The position of each clamp assembly 6 of adjustment of adaptability can be carried out according to the practical heat exchanger A specification processed.The clamping of the present embodiment
Fixed mold and moving mold of the tool 62 by opening and closing in opposite directions form, wherein configured with clamping cylinder, (the clamping cylinder is set to be slided moving mold
In dynamic portion 61), that is, by the way that the telescopic end of clamping cylinder is connected with the moving mold back side, utilize the telescopic action of clamping cylinder
To drive moving mold alternating translational to act, so that realizing fixed mold matches clamp or release movement with moving mold.
Therefore, for the ease of the understanding of the lifting operation of heat exchanging device A, spy is further illustrated its working principle:
In advance by 3 bottom of fixed frame to horizontal direction, secondly, according to the heat exchanger A of heat exchanger A(to be processed at this time in horizontal positioned
In on station) position of each partition of dimensions and heat exchanger A, it is being slided by manually adjusting multiple groups clamp assembly 6
Position on guide rail 5 has one group of clamp assembly 6 corresponding to ensure each partition, then drives cunning by adjusting driving mechanism 51
Dynamic guide rail 5 is moved down towards the direction heat exchanger A to enable each clamp assembly 6 move down therewith, so that it is corresponding to be respectively placed in each partition
Between fixed mold and moving mold, then fixed mold and moving mold is driven to clamp partition in opposite directions by clamping cylinder;Finally, by that will consolidate
Determine frame 3 take heat exchanger A to be processed together slowly upper pendulum to vertical direction.By aforesaid operations, rising for heat exchanging device A is realized
Operation is hung, heat exchanger A that is safe and reliable and being suitable for different specification size during lifting.
In addition, the stability in order to ensure fixed frame 3 in the vertical direction, when especially it carries heat exchanger A, Gu
The support plate 33 with the inconsistent cooperation of heat exchanger A tail end is formed in reservation, while being fixedly installed at the tail end of fixed frame 3
Multiple support rods 32 extended along 3 length direction of fixed frame, wherein when pendulum is to vertical direction on fixed frame 3, support plate 33 with
The inconsistent support of the tail end of heat exchanger A and 32 bottom part of each support rod and the inconsistent cooperation in ground, to play to fixation
The effect of the Auxiliary support of frame 3 and heat exchanger A.
In the present embodiment, action bar 4 is provided with the sliding seat being slidingly fitted with pylon 1, wherein sliding seat one end with
The vertical bar that pylon 1 is preset with mutually slides clamping (multiple idler wheels are equipped between sliding seat and pylon 1).Secondly, being arranged on pylon 1
Have for driving action bar 4 to make vertically movable vertical driving mechanism 41, wherein the vertical driving mechanism 41 of the present embodiment is to hang
Third Electric Chain Blocks on pylon 1, wherein the chain end of the third Electric Chain Blocks and action bar 4(are slided
Seat) it is connected, to drive the vertical reciprocal lifting of action bar 4 under the effect of third Electric Chain Blocks.In addition, action bar 4 with
Sliding seat is hinged and configured with hand rotation adjustment mechanism for driving it around vertical pivot reciprocally swinging, wherein 4 one end of action bar passes through
Link bolt and sliding seat, which are hinged, to be cooperated so that action bar 4 is using link bolt as axis reciprocally swinging in the horizontal plane.This implementation
The hand rotation adjustment mechanism of example is made of handwheel and the vertical kinematic link set on 4 side of action bar, and handwheel is by being preset with bearing
Rotation is installed on 4 top end of action bar and handwheel passes through transmission gear and kinematic link upper end is mutually driven cooperation, and transmission connects
Bar lower end is mutually sequentially connected (driving gear that the lower end of the kinematic link of the present embodiment is arranged with and hinged with link bolt
The driven gear being arranged on bolt is meshed, due to articulated shaft in it is fixed so that driven gear be also it is fixed, into
And circle kinematic link relative to around articulated shaft), to realize the reciprocally swinging movement of action bar 4, that is, grasping
After making on the action bar 4 of personnel station, kinematic link is driven to carry out spinning movement by can be manually rotated handwheel, to make kinematic link
It is opposite to be circled around link bolt, the adjustment of the reciprocally swinging position of action bar 4 is just completed, in this way,
So that action bar 4 swings evacuation 3 swing path of fixed frame or is rocked to 3 front position of fixed frame.In order to make it easy to understand, in reality
In the operating process of border, when fixed frame 3 is when carrying out wobbling action, operator needs that action bar 4 is swung adjustment evacuation in advance
The swing path of fixed frame 3, avoids the case where colliding between the two;And taking pendulum on heat exchanger A in fixed frame 3 is in vertical cloth
When setting, operator can stand on action bar 4, revolve adjustment mechanism by hand and action bar 4 is driven to be put towards the direction heat exchanger A
It is dynamic, so that action bar 4 is enabled to be rocked in front of heat exchanger A in order to which operator heat exchanging device A carries out welding processing processing,
It is secondary, during welding processing processing, action bar 4 can be driven to move in the vertical direction by vertical driving mechanism 41, from
And action bar 4 is made to take operator's movement in required vertical position, in order to weld in the heat exchanger A being vertically arranged
Working process;Finally, after completing corresponding working process, operator can revolve adjustment mechanism towards far from heat exchanger A by hand
Direction is swung, and is resetted under vertical direction by vertical driving mechanism 41 driving action bar 4, in order to which operator is from behaviour
Make column 4 to get off, fixed frame 3 is finally taken to the slow bottom of heat exchanger A completed the process again and is placed on station, exchange is just completed
The working process of hot device A.
The embodiment of the above is only the preferred embodiment of the utility model, not does any form to the utility model
On limitation.Anyone skilled in the art, in the case where not departing from technical solutions of the utility model ambit, in utilization
The technology contents for stating announcement make more possible variations and retouching to technical solutions of the utility model, or modification is that this is practical
Novel equivalent embodiment.Therefore all contents without departing from technical solutions of the utility model, the thinking according to the utility model are made
Equivalent equivalence changes, should all be covered by the protection scope of the utility model.
Claims (6)
1. a kind of ultra-large type refrigeration equipment boom hoisting includes pylon (1), it is characterised in that: further include having and pylon (1) bottom
It holds the rollover stand (2) being hinged, the fixed frame (3) being articulated on rollover stand (2) and slides vertically and be connected on pylon (1)
Action bar (4), wherein the pylon (1) is equipped with for driving rollover stand (2) to make the first turnover mechanism of rotary movement
(21), for driving fixed frame (3) to make the first turnover mechanism (21) of rotary movement and for driving action bar (4) to make vertically
The vertical driving mechanism (41) back and forth gone up and down;It is provided on the rollover stand (2) for driving fixed frame (3) to make rotary movement
Third turnover mechanism (22);By utilizing the first turnover mechanism (21), the second turnover mechanism (31) and third turnover mechanism (22)
It matches so that fixed frame (3) slow reciprocally swinging, wherein second turnover mechanism (31) and third turnover mechanism (22) phase
It mutually restrains to stablize the wobbling action of fixed frame (3);It is provided on the fixed frame (3) and extends along fixed frame (3) length direction
Slide rail (5), wherein slide rail (5) configuration driven its along perpendicular to fixed frame (3) length direction move back and forth
Adjustment driving mechanism (51), sliding is provided with multiple groups clamp assembly (6) on the slide rail (5), wherein presss from both sides described in every group
Tool component (6) includes the sliding part (61) being slidingly fitted with slide rail (5) and is fixed on sliding part (61) and uses
In the clamp mould (62) for clamping heat exchanger (A) partition.
2. a kind of ultra-large type refrigeration equipment boom hoisting according to claim 1, it is characterised in that: first tipper
Structure (21) is the first Electric Chain Blocks being hung on pylon (1), wherein the chain end of first Electric Chain Blocks with turn over
Pivoted frame (2) is connected.
3. a kind of ultra-large type refrigeration equipment boom hoisting according to claim 1, it is characterised in that: second tipper
Structure (31) includes to slide vertically the lifting portion (311) being connected on pylon (1), the second ring being hung on lifting portion (311)
Chain electric block (312) and lifting driving unit (313) for driving lifting portion (311) vertically to move back and forth, wherein institute
The chain end for stating the second Electric Chain Blocks (312) is connected with fixed frame (3).
4. a kind of ultra-large type refrigeration equipment boom hoisting according to claim 1, it is characterised in that: the vertical driving machine
Structure (41) is the third Electric Chain Blocks being hung on pylon (1), wherein the chain end of the third Electric Chain Blocks and behaviour
Make column (4) to be connected.
5. a kind of ultra-large type refrigeration equipment boom hoisting according to claim 1, it is characterised in that: the action bar (4)
It is provided with the sliding seat being slidingly fitted with pylon (1), wherein the action bar (4) is hinged with sliding seat and the operation
Column (4) configured with drive its around articulated shaft in the horizontal plane reciprocally swinging hand revolve adjustment mechanism.
6. a kind of ultra-large type refrigeration equipment boom hoisting according to claim 1, it is characterised in that: the clamp mould (62)
It include the fixed mold and moving mold opened and closed in opposite directions, wherein the moving mold is configured with the clamping for driving its reciprocal clamping movement
Cylinder.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201822217477.1U CN209567773U (en) | 2018-12-27 | 2018-12-27 | A kind of ultra-large type refrigeration equipment boom hoisting |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201822217477.1U CN209567773U (en) | 2018-12-27 | 2018-12-27 | A kind of ultra-large type refrigeration equipment boom hoisting |
Publications (1)
Publication Number | Publication Date |
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CN209567773U true CN209567773U (en) | 2019-11-01 |
Family
ID=68331183
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201822217477.1U Withdrawn - After Issue CN209567773U (en) | 2018-12-27 | 2018-12-27 | A kind of ultra-large type refrigeration equipment boom hoisting |
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CN (1) | CN209567773U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109607434A (en) * | 2018-12-27 | 2019-04-12 | 佛山市科威力制冷设备有限公司 | A kind of ultra-large type refrigeration equipment boom hoisting |
-
2018
- 2018-12-27 CN CN201822217477.1U patent/CN209567773U/en not_active Withdrawn - After Issue
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109607434A (en) * | 2018-12-27 | 2019-04-12 | 佛山市科威力制冷设备有限公司 | A kind of ultra-large type refrigeration equipment boom hoisting |
CN109607434B (en) * | 2018-12-27 | 2023-12-01 | 佛山市科威力制冷设备有限公司 | Hoisting device for ultra-large refrigeration equipment |
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