CN1476407A - Machine room-less elevator - Google Patents

Machine room-less elevator Download PDF

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Publication number
CN1476407A
CN1476407A CNA018195105A CN01819510A CN1476407A CN 1476407 A CN1476407 A CN 1476407A CN A018195105 A CNA018195105 A CN A018195105A CN 01819510 A CN01819510 A CN 01819510A CN 1476407 A CN1476407 A CN 1476407A
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CN
China
Prior art keywords
cage
block
elevating road
balance block
sheave
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Granted
Application number
CNA018195105A
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Chinese (zh)
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CN1216785C (en
Inventor
滨口修喜
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Mitsubishi Electric Corp
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Mitsubishi Electric Corp
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Publication of CN1476407A publication Critical patent/CN1476407A/en
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Publication of CN1216785C publication Critical patent/CN1216785C/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66BELEVATORS; ESCALATORS OR MOVING WALKWAYS
    • B66B11/00Main component parts of lifts in, or associated with, buildings or other structures
    • B66B11/001Arrangement of controller, e.g. location
    • B66B11/002Arrangement of controller, e.g. location in the hoistway
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66BELEVATORS; ESCALATORS OR MOVING WALKWAYS
    • B66B11/00Main component parts of lifts in, or associated with, buildings or other structures
    • B66B11/04Driving gear ; Details thereof, e.g. seals
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66BELEVATORS; ESCALATORS OR MOVING WALKWAYS
    • B66B11/00Main component parts of lifts in, or associated with, buildings or other structures
    • B66B11/0035Arrangement of driving gear, e.g. location or support
    • B66B11/0045Arrangement of driving gear, e.g. location or support in the hoistway
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66BELEVATORS; ESCALATORS OR MOVING WALKWAYS
    • B66B11/00Main component parts of lifts in, or associated with, buildings or other structures
    • B66B11/0065Roping
    • B66B11/008Roping with hoisting rope or cable operated by frictional engagement with a winding drum or sheave

Abstract

The sheave, cage side deflection wheel and weight side deflection wheel of a machine less room elevator are arranged on a line when viewed along the elevator shaft and the axes of the sheave, cage side deflection wheel and weight side deflection wheel are parallel with each other. A main rope is extended upward from a weight along the elevator shaft, passed over the upper side of the weight side deflection wheel thence over the sheave and the cage side deflection wheel before being extended downward toward the cage & period.

Description

Machine room-less elevator
Technical field
The present invention relates to winch, deflector sheave are disposed at the machine room-less elevator at elevating road top.
Background technology
Figure 10~Figure 13 represents the machine room-less elevator of traditional 1: 1 rope volume extension, among the figure, the 1st, elevating road, the 2nd, the elevating road top, the 3rd, cage, the 4th, balance block, the 5th, the deflector sheave of suspension balance block 4, the 6th, be arranged in the elevating road top 2, the winch that constitutes by block sheave 7 and motor section 8, the 9th, a pair of cage side rails of guiding cage 3 liftings, the 10th, a pair of balance block side rails of guiding balance block 4 liftings, 11 are mounted in cage side rails 9 and balance block side rails 10 supporting member of leading section separately, the 12nd, be fixed in supporting member 11 by elastic body, with the mechanical stage of winch 6 and deflector sheave 5 maintenances, the 14th, volume is hung on the block sheave 7 and deflector sheave 5 of winch 6, the lanyard end 50 on balance block 4 tops is fixed in one end, the main rope of the lanyard end 51 on cage 3 tops is fixed in the other end.
The end of main rope 14 is fixed in the lanyard end 50 on balance block 4 tops, after 1 rising, is rolled up the upside that is hung on deflector sheave 5 from lanyard end 50 along elevating road.Then, main rope 14 extends to the block sheave 7 of winch 6.
Secondly, main rope 14 is hung on the block sheave 7 by volume.At this moment, the main rope 14 that extends from winch 5 begins to reel from the bottom of block sheave 7, and after hanging according to roughly full week of the anticlockwise direction volume of Figure 10, descending in elevating road 1 extends to cage 3, is fixed in the lanyard end 51 of cage 3 at last.
In the machine room-less elevator of said structure, in case main rope 14 volumes are hung on block sheave 7, then main rope 14 has formed from deflector sheave 5 and has extended to the form that the position of block sheave 7 and the position that extends to cage 3 from block sheave 7 intersect, but main rope 14 does not collide mutually.
That is, winch 6 is configured in block sheave 7 relative deflector sheave 5 horizontal eccentric 1.5 degree, eccentric 2.5 degree of vertical direction.In addition, Figure 12 and Figure 13 represent the position relation of block sheave 7 with the deflector sheave 5 of Figure 10, and Figure 12 is its birds-eye view, and Figure 13 is its lateral plan.In Figure 12 and Figure 13, X-axis, Y-axis and Z axle are represented the quadrature coordinate system, and X-axis is the axis of revolution direction of deflector sheave 5, and Y-axis is a horizontal direction, and X-axis is a vertical direction.
In the machine room-less elevator of said structure, in case drive the motor section 8 of winch 6, then block sheave 7 revolutions utilize tractive force that main rope 14 is moved.Cage 3 and balance block 4 are along with moving of main rope 14 carried out oppositely directed dipping and heaving up and down respectively.
Traditional machine room-less elevator has adopted above structure, because of winch 6 relative deflector sheaves 5 are level, vertical relatively both sides are inclination, so when steel rope is used for main rope 14, can produce the corner part friction of block sheave 7 and deflector sheave 5 rope groove separately unavoidably, when belt being used for main rope 14, then can producing to belt and apply inclined to one side loading, belt is caused dysgenic problem again.
Summary of the invention
In order to solve the above problems, the object of the invention is to provide a kind of and disposes wheel by the flute profile shape in alignment of the volume of a plurality of wheels being hung main rope, and main rope volume hung on these wheels, with the long lifetime of guaranteeing tractive force and main rope, and can dwindle the machine room-less elevator that the space is set of elevating road vertical direction.
In machine room-less elevator of the present invention, when elevating road is seen, block sheave, cage lateral deviation guide wheel and balance block lateral deviation guide wheel are disposed on the straight line, and, described block sheave, described cage lateral deviation guide wheel and described balance block lateral deviation guide wheel parallel axes separately, after rising from balance block along described elevating road, main rope is hung on the upside of described balance block lateral deviation guide wheel by volume, volume hangs on described block sheave and the described cage lateral deviation guide wheel then, descends to arriving cage in described elevating road.
Again, in machine room-less elevator of the present invention, when elevating road is seen, block sheave, balance block lateral deviation guide wheel and free gear are disposed on the straight line, and, described block sheave, described balance block lateral deviation guide wheel and described free gear parallel axes separately, main rope is hung on described balance block lateral deviation guide wheel, described free gear and the described block sheave by volume after described elevating road rises from balance block, and descending in described elevating road then arrives cage.
Again, in machine room-less elevator of the present invention, when elevating road is seen, block sheave and cage lateral deviation guide wheel are disposed on the straight line, and the overlapping shape of free gear is disposed at the downside of described block sheave, again, described free gear, described block sheave and described cage lateral deviation guide wheel parallel axes separately, main rope is hung on described free gear, described block sheave and the described cage lateral deviation guide wheel by volume after described elevating road rises from balance block, descends to arriving cage in described elevating road.
Again, in machine room-less elevator of the present invention, when elevating road is seen, block sheave, free gear and cage lateral deviation guide wheel are disposed on the straight line, and, described block sheave, described free gear and described cage lateral deviation guide wheel parallel axes separately, main rope is hung on the downside of the upside of described block sheave, described free gear and the upside of described cage lateral deviation guide wheel by volume from balance block after described elevating road rises, descend to arriving cage in described elevating road.
The simple declaration of accompanying drawing
Fig. 1 is the block diagram of the machine room-less elevator of the embodiment of the invention 1.
Fig. 2 is the birds-eye view at the elevating road top of Fig. 1.
Fig. 3 is the A-A alignment pseudosection of Fig. 2.
Fig. 4 is the block diagram of the machine room-less elevator of the embodiment of the invention 2.
Fig. 5 is the birds-eye view at the elevating road top of Fig. 4.
Fig. 6 is the block diagram of the machine room-less elevator of the embodiment of the invention 3.
Fig. 7 is the birds-eye view at the elevating road top of Fig. 6.
Fig. 8 is the fixing block diagram of tool of belt ends.
Fig. 9 is the B-B alignment pseudosection of Fig. 8.
Figure 10 is the block diagram of traditional machine room-less elevator.
Figure 11 is the birds-eye view at the elevating road top of Figure 10.
Figure 12 is the block sheave of expression Figure 10 and the birds-eye view of deflector sheave position relation.
Figure 13 is the lateral plan of Figure 10.
The specific embodiment
The embodiment that the present invention is suitable for is described with reference to the accompanying drawings.Same, equal member or part mark prosign among each embodiment describe.
Embodiment 1
Fig. 1 is the block diagram of the machine room-less elevator of the embodiment of the invention 1, and Fig. 2 is the birds-eye view at the elevating road top of Fig. 1, and Fig. 3 is the A-A alignment pseudosection of Fig. 2.
Among the figure, the 1st, elevating road, the 2nd, the elevating road top, the 3rd, cage, the 4th, balance block, the 5th, the deflector sheave of suspension balance block 4, the 6th, be arranged in the elevating road top 2, the winch that constitutes by block sheave 7 and motor section 8, the 9th, a pair of cage side rails of guiding cage 3 liftings, the 10th, a pair of balance block side rails of guiding balance block 4 liftings, 11 are mounted in cage side rails 9 and balance block side rails 10 supporting member of leading section separately, the 13rd, be fixed on the supporting member 11, prevent the elastic body of the driving vibration of winch 6 to the building transmission, the 12nd, be fixed on mechanical stage on the supporting member 11 by elastic body 13,14 is that an end is fixed on the lanyard end 50 on balance block 4 tops, the other end is fixed on the main rope on the lanyard end 51 on cage 3 tops.The 15th, be supported on the cage lateral deviation guide wheel of mechanical stage 12, axis separately is configured to level and parallel row between block sheave 7 and balance block deflector sheave 5, volume is hung block sheave 7, cage lateral deviation guide wheel 15 and the balance block deflector sheave 5 groove configuration in-line separately of main rope 14.
The 16th, be fixed in mechanical stage 12 and control the control panel of elevator, the 17th, the governor that is fixed in mechanical stage 12 and detects elevator speed and stop very much, the 18th, the end is arranged at mechanical stage 12 and scalable freely maintenance staircase swingably.The height of control panel 16, governor 17 and staircase 18 all is lower than the height of winch.In addition, among Fig. 1, governor 17 and staircase 18 have been omitted.
The end of main rope 14 is fixed in the lanyard end 50 on balance block 4 tops, and the upside that is hung on deflector sheave 5 is rolled up in 1 rising back from lanyard end 50 along elevating road.Then, main rope 14 extends to the block sheave 7 of winch 6.
Secondly, main rope 14 is hung on the block sheave 7 by volume.At this moment, the main rope 14 that extends from deflector sheave 5 begins to reel from the bottom of block sheave 7, roughly roll up the extension half cycle according to the anticlockwise direction of Fig. 1 after, continuation is roughly rolled up the extension half cycle on the top of cage lateral deviation guide wheel 15, descending in elevating road 1 then extends to cage 3, is fixed in the lanyard end 51 of cage 3 at last.
Adopt this machine room-less elevator,,, can guarantee the long lifetime and the elevator elevator tractive force of main rope 14 so main rope 14 can be not gratuitously engaged with separately groove because of deflector sheave 5, cage lateral deviation guide wheel 15 and block sheave 7 configuration in-lines.
Again, mechanical stage 12 is incorporated in the zone of winch 6 short transverses, again, and because of control panel 16, governor 17 and maintenance all are lower than the height of winch with the height of staircase 18, so can reduce the space at elevating road top 2.
Again, in this machine room-less elevator, the winding angle of main rope 14 relative block sheaves 7 should be set in can guarantee that the required minimum winding angle of minimum tractive force is that maximum can reach about 270 °, is applicable to the occasion that needs big tractive force more than 120 °.
Again, cage lateral deviation guide wheel 15, block sheave 7, balance block deflector sheave 5 axis separately are level and parallel, but and nonessential level.
In addition, the flat belt of establishing multiple row funiculus side by side in main rope 14 as the employing replaces rope, and then the block sheave diameter reduces, and the unbalanced moment of elevator reduces, and the diameter of winch 6, block sheave 7, deflector sheave 5,15 reduces, and can dwindle the space at elevating road top.
Embodiment 2
Fig. 4 is the block diagram of the machine room-less elevator of the embodiment of the invention 2.Fig. 5 is the birds-eye view at the elevating road top of Fig. 4.
In the present embodiment, see, be fixed on the mechanical stage 12 block sheave 7 of winch 6, free gear 19 and balance block deflector sheave 5 linearities along elevating road 1.Block sheave 7, free gear 19 and balance block deflector sheave 5 axis separately are level and parallel.
The end of main rope 14 is fixed in the lanyard end 50 on balance block 4 tops, and the upside that is hung on deflector sheave 5 is rolled up in 1 rising back from lanyard end 50 along elevating road.Then, main rope 14 is hung half cycle at the upside volume of block sheave 7 after the downside volume of free gear 19 is hung half cycle.Then, descending in elevating road 1 extends to cage 3, is fixed in the lanyard end 51 of cage 3 at last.
Adopt present embodiment, on the position of the free gear 19 that is fixed in mechanical stage 12, can carry out the winding angle adjustment of 14 pairs of block sheaves 7 of main rope, thus can guarantee fixed tractive force.
Again, block sheave 7, free gear 19 and balance block deflector sheave 5 are configured on the straight line, and axis separately is level and parallel, so can realize the long lifetime of main rope 14.
Again, the height of free gear 19 is lower than the height of winch 6, and is the same with embodiment 1, also can dwindle the space at elevating road top 2.
In addition, block sheave 7, free gear 19 and balance block deflector sheave 5 axis separately are not level yet.
Embodiment 3
Fig. 6 is the block diagram of the machine room-less elevator of the embodiment of the invention 3, and Fig. 7 is the birds-eye view at the elevating road top of Fig. 6.
In the present embodiment, winch 6 is fixed on the mechanical stage 12, and is disposed at balance block 4 tops at elevating road top 2.Be disposed at the downside of winch 6 free gear 19 overlapping shapes.Again, see, be fixed on the mechanical stage 12, and axis separately is parallel block sheave 7 and cage lateral deviation guide wheel 15 linearities along elevating road 1.
The end of main rope 14 is fixed in the lanyard end 50 on balance block 4 tops, and 1 rising back is hung on a side of free gear 19 by volume from lanyard end 50 along elevating road.Then, main rope 14 is after the side volume of block sheave 7 is hung about half cycle, and volume hangs about 1/4 on cage lateral deviation guide wheel 15.Then, main rope 14 descends in elevating road 1 and extends to cage 3, is fixed in the lanyard end 51 of cage 3 at last.
Again, free gear 19, block sheave 7 and cage lateral deviation guide wheel 15 are configured on the straight line, and axis separately is parallel, can realize the long lifetime of main rope 14.
Again, also can free gear 19 be configured between block sheave 7 and the cage lateral deviation guide wheel 15 not shownly, main rope 14 is rolled up the upside that is hung on block sheave 7 in 1 rising back from balance block 4 along elevating road, volume is hung on the downside of free gear 19 then, then, upside volume at cage lateral deviation guide wheel 15 is hung about half cycle, and descending in elevating road 1 at last extends to cage 3.At this moment, see that block sheave 7, free gear 19 and cage lateral deviation guide wheel 15 are configured on the straight line, and block sheave 7, free gear 19 and cage lateral deviation guide wheel 15 axis separately are parallel, can realize the long lifetime of main rope 14 along elevating road 1.
Embodiment 4
Fig. 8 is fixed in the block diagram of the stationary member of belt ends when adopting belts for the main rope 14 of embodiment 1 to embodiment 3, Fig. 9 is the B-B alignment pseudosection of Fig. 8.
Among the figure, the 20th, have the fixedly tool of a plurality of protuberance 20a that horizontal direction protrudes, the 21st, along fixing protuberance 20a compressing member formation, that have recess 21a of tool 20, main rope 14 is clamped in fixedly between the tool 20 and compressing member 21 by bolt 22.Have the fixing accessory 23 in end of the main rope 14 of will turn back on compressing member 21, this accessory 23 is fixed on the compressing member 21 by bolt 24.The 25th, hanging bolt 22 combines with fixing tool 20 by pin 26.
Adopt present embodiment, the same with the shackle of the steel rope of common employing, be that belt also has sufficient confining force to main rope 14, not only can realize miniaturization, but also be convenient to construct in the erecting stage.
In addition, though in the various embodiments described above, do not elaborate, also can adopt corresponding to the change in size of cage or balance block machine room-less elevator with embodiment 1 to 3 combination.
Again, in each embodiment, mechanical stage 12 is fixed on cage side rails 9 and the balance block side rails 10, but also mechanical stage can be fixed on elevating road wall portion be wall or be on the pillar along the wall portion that wall extends.

Claims (16)

1. machine room-less elevator comprises:
Elevating road;
Be arranged at a pair of cage side rails and a pair of balance block side rails in the elevating road;
The cage that on described cage side rails, guides, carry out lifting in the described elevating road;
The balance block that on described balance block side rails, guides, carry out lifting in the described elevating road;
The superiors' stop position that is configured in the described cage of ratio in the described elevating road more upside the elevating road top, have motor section and by the block sheave of described motor section driving rotational and make described cage and the winch of described balance block lifting;
One end is fixed in described balance block, the other end and is fixed in described cage, falls in the road the main rope that cage and balance block are being suspended in midair in described length;
Volume hangs with the cage lateral deviation guide wheel of described main rope between described cage and the described block sheave;
Volume hangs with the balance block lateral deviation guide wheel of described main rope between described balance block and the described block sheave, it is characterized in that,
When described elevating road was seen, described block sheave, described cage lateral deviation guide wheel and described balance block lateral deviation guide wheel were disposed on the straight line, and, described block sheave, described cage lateral deviation guide wheel and described balance block lateral deviation guide wheel parallel axes separately,
Be hung on the upside of described balance block lateral deviation guide wheel after described main rope rises from described balance block along described elevating road by volume, volume hangs on described block sheave and the described cage lateral deviation guide wheel again, and arrival described cage then descends in described elevating road.
2. machine room-less elevator as claimed in claim 1 is characterized in that, described block sheave, described cage lateral deviation guide wheel and described balance block lateral deviation guide wheel axis separately are level.
3. machine room-less elevator comprises:
Elevating road;
Be arranged at a pair of cage side rails and a pair of balance block side rails in the elevating road;
The cage that on described cage side rails, guides, carry out lifting in the described elevating road;
The balance block that on described balance block side rails, guides, carry out lifting in the described elevating road;
The superiors' stop position that is configured in the described cage of ratio in the described elevating road more upside the elevating road top, have motor section and by the block sheave of described motor section driving rotational and make described cage and the winch of described balance block lifting;
One end is fixed in described balance block, the other end and is fixed in described cage, falls in the road the main rope that cage and balance block are being suspended in midair in described length;
Volume hangs with the cage lateral deviation guide wheel of described main rope between described cage and the described block sheave;
Volume hangs with the balance block lateral deviation guide wheel of described main rope between described balance block and the described block sheave, it is characterized in that,
When described elevating road was seen, described block sheave, described balance block lateral deviation guide wheel and described free gear were disposed on the straight line, and, described block sheave, described balance block lateral deviation guide wheel and described free gear parallel axes separately,
Described main rope is hung on the downside of the upside of described balance block lateral deviation guide wheel, described free gear and the upside of described block sheave by volume from described balance block after described elevating road rises, descending in elevating road then arrives described cage.
4. machine room-less elevator as claimed in claim 3 is characterized in that, described block sheave, described balance block lateral deviation guide wheel and described free gear axis separately are level.
5. machine room-less elevator comprises:
Elevating road;
Be arranged at a pair of cage side rails and a pair of balance block side rails in the elevating road;
The cage that on described cage side rails, guides, carry out lifting in the described elevating road;
The balance block that on described balance block side rails, guides, carry out lifting in the described elevating road;
The superiors' stop position that is configured in the described cage of ratio in the described elevating road more upside the elevating road top, have motor section and by the block sheave of described motor section driving rotational and make described cage and the winch of described balance block lifting;
One end is fixed in described balance block, the other end and is fixed in described cage, falls in the road the main rope that cage and balance block are being suspended in midair in described length;
Volume hangs with the cage lateral deviation guide wheel of described main rope between described cage and the described block sheave;
Volume hangs with the balance block lateral deviation guide wheel of described main rope between described balance block and the described block sheave, it is characterized in that,
When described elevating road was seen, described block sheave and described cage lateral deviation guide wheel were disposed on the straight line, and, the overlapping shape of described free gear is disposed at the downside of described block sheave, again, described free gear, described block sheave and described cage lateral deviation guide wheel parallel axes separately
After described main rope rose from described balance block along described elevating road, quilt is rolled up to be hung on described free gear, described block sheave and the described cage lateral deviation guide wheel, and descending in described elevating road then arrives described cage.
6. machine room-less elevator as claimed in claim 5 is characterized in that, described block sheave and cage lateral deviation guide wheel axis separately are level.
7. machine room-less elevator comprises:
Elevating road;
Be arranged at a pair of cage side rails and a pair of balance block side rails in the elevating road;
The cage that on described cage side rails, guides, carry out lifting in the described elevating road;
The balance block that on described balance block side rails, guides, carry out lifting in the described elevating road;
Be configured in the higher upside of the superiors' stop position of the described cage of ratio in the described elevating road the elevating road top, have motor section and by the block sheave of described motor section driving rotational and make described cage and the winch of described balance block lifting;
One end is fixed in described balance block, the other end and is fixed in described cage, falls in the road the main rope that cage and balance block are being suspended in midair in described length;
Volume hangs with the cage lateral deviation guide wheel of described main rope between described cage and the described block sheave;
Volume hangs with the balance block lateral deviation guide wheel of described main rope between described balance block and the described block sheave, it is characterized in that,
When described elevating road was seen, described block sheave, described free gear and described cage lateral deviation guide wheel were disposed on the straight line, and, described block sheave, described free gear and described cage lateral deviation guide wheel parallel axes separately,
Described main rope is rolled up the downside of the upside that is hung on described block sheave, described free gear and the upside of described cage lateral deviation guide wheel after rising from described balance block along described elevating road, and descending in described elevating road then arrives described cage.
8. machine room-less elevator as claimed in claim 7 is characterized in that, described block sheave, free gear and cage lateral deviation guide wheel axis separately are level.
9. as each described machine room-less elevator of claim 1 to 8, it is characterized in that the winding angle of the relative block sheave of described main rope is 120 °~270 °.
10. as each described machine room-less elevator of claim 1 to 9, it is characterized in that described main rope is steel rope or belt.
11. machine room-less elevator as claimed in claim 5 is characterized in that, the downside of the mechanical stage of the supporting winch in described elevating road top is provided with free gear.
12. as each described machine room-less elevator of claim 1 to 11, it is characterized in that, be arranged in the described elevating road top and the mechanical stage that supports winch is configured to be accommodated in the zone of winch short transverse.
13. as claim 11 or 12 described machine room-less elevators, it is characterized in that, the control panel, the detection elevator speed that are respectively arranged with the running of control elevator on the described mechanical stage are carried out governor and the maintenance staircase that stops very much, and described control panel, described governor and described maintenance are lower than the height of winch with the staircase height.
14., it is characterized in that described mechanical stage is fixed in a certain position in the wall portion of cage side rails, balance block side rails and elevating road as each described machine room-less elevator of claim 1 to 13.
15. machine room-less elevator as claimed in claim 14 is characterized in that, described mechanical stage is fixed in a certain position in the wall portion of cage side rails, balance block side rails and elevating road through elastic body.
16., it is characterized in that the end of described belt is by the fixedly tool with protuberance with along the described compressing member clamping with recess that convexes to form as claim 10,12~15 each described machine room-less elevators.
CN018195105A 2001-09-27 2001-09-27 Machine room-less elevator Expired - Fee Related CN1216785C (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/JP2001/008451 WO2003031310A1 (en) 2001-09-27 2001-09-27 Machine room-less elevator

Related Child Applications (1)

Application Number Title Priority Date Filing Date
CN 200510092454 Division CN1724332A (en) 2001-09-27 2001-09-27 Elevator without mechanical chamber

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CN1476407A true CN1476407A (en) 2004-02-18
CN1216785C CN1216785C (en) 2005-08-31

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CN1216785C (en) 2005-08-31
EP1431231A4 (en) 2008-12-10
KR20030048162A (en) 2003-06-18
WO2003031310A1 (en) 2003-04-17
EP2108610B1 (en) 2011-08-17
EP2108610A1 (en) 2009-10-14
JP4849431B2 (en) 2012-01-11
EP1431231B1 (en) 2010-12-15
EP1431231A1 (en) 2004-06-23
DE60143674D1 (en) 2011-01-27

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