WO2012176313A1 - Ascenseur et procédé de réparation d'ascenseur - Google Patents

Ascenseur et procédé de réparation d'ascenseur Download PDF

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Publication number
WO2012176313A1
WO2012176313A1 PCT/JP2011/064453 JP2011064453W WO2012176313A1 WO 2012176313 A1 WO2012176313 A1 WO 2012176313A1 JP 2011064453 W JP2011064453 W JP 2011064453W WO 2012176313 A1 WO2012176313 A1 WO 2012176313A1
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WO
WIPO (PCT)
Prior art keywords
car
pair
counterweight
elevator
suspension
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/JP2011/064453
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English (en)
Japanese (ja)
Inventor
水野 幸臣
中村 英貴
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Mitsubishi Electric Corp
Original Assignee
Mitsubishi Electric Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Mitsubishi Electric Corp filed Critical Mitsubishi Electric Corp
Priority to JP2013521383A priority Critical patent/JP5680198B2/ja
Priority to PCT/JP2011/064453 priority patent/WO2012176313A1/fr
Priority to EP11868277.2A priority patent/EP2724970B1/fr
Publication of WO2012176313A1 publication Critical patent/WO2012176313A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66BELEVATORS; ESCALATORS OR MOVING WALKWAYS
    • B66B19/00Mining-hoist operation
    • B66B19/02Installing or exchanging ropes or cables

Definitions

  • the present invention relates to a 2: 1 roping type elevator and an elevator refurbishing method for refurbishing a 1: 1 roping type elevator into a 2: 1 roping type elevator.
  • a typical 1: 1 roping type elevator is formed on a floor of a machine room by winding a hoisting machine having a sheave provided in a machine room, a baffle provided in the machine room, a sheave and a baffle car.
  • a main rope having both sides suspended in the hoistway through the through hole, and a car and a counterweight connected to both ends of the main rope are provided (for example, see Patent Document 1).
  • a guide rail that extends in the height direction and guides the raising and lowering of the car and the counterweight is provided in the hoistway, and the horizontal of the car and the counterweight is provided. Movement in the direction is substantially restricted.
  • a plurality of main ropes are arranged in the axial direction of the sheave.
  • the center in the arrangement direction of the plurality of main ropes is arranged at the center of the car or counterweight when viewed from the height direction.
  • the main rope is connected to the car and the counterweight so that the suspension position of the car and the counterweight is arranged at the center of the car and the counterweight. In this state, the car and the counterweight are kept in a desired posture.
  • a general 2: 1 roping type elevator includes a hoisting machine having a sheave provided in a machine room, a deflector provided in the machine room, a sheave and a deflector and is wound around the floor of the machine room.
  • a main rope which is suspended in the hoistway through the formed through hole and is fixed to the upper part of the hoistway so that the one end side and the other end side are inverted through the loop portion, and the loop portion respectively.
  • a pair of pulleys that are wound from below and move up and down in opposite directions according to the travel of the main rope, and a car and a counterweight connected to each of the pair of pulleys (for example, Patent Documents) 2).
  • the center of each pulley is arranged at the center of the car and the counterweight, in other words, the suspension position of the car and the counterweight is arranged at the center of the car and the counterweight.
  • a car and a counterweight are connected to each of the pulleys. In this state, the car and the counterweight are maintained in a desired posture.
  • a typical 1: 1 roping type elevator (existing elevator) is refurbished to a common 2: 1 roping type elevator by using existing guide rails.
  • existing elevator existing elevator
  • a 2: 1 roping type elevator is constructed by suspending a main rope used for a new elevator from a rope through hole through which the main rope of an existing elevator has been passed and winding it on a pulley
  • the suspension position of the car and the counterweight when viewed from the direction is shifted by the radius of the pulley as compared with the existing case. That is, in this case, the car and the counterweight are inclined from a predetermined posture.
  • the present invention has been made in order to solve the above-described problems.
  • An existing 1: 1 roping elevator is used without a new rope through hole in the floor of a machine room, and a car and a counterweight are specified. It is an object of the present invention to provide an elevator and a method for repairing an elevator that are suitable for repairing to a 2: 1 roping type without tilting from the attitude.
  • the elevator according to the present invention includes a machine room provided at an upper part of the hoistway, a hoisting machine having a drive sheave, and is wound around the drive sheave, suspended from the machine room in the hoistway, via a loop portion.
  • a pair of suspension carts that are supported by each of the main rope and the loop portion that are fixed to the upper part of the hoistway so that one end side and the other end side are reversed so as to move up and down in opposite directions as the main rope travels
  • a car and a counterweight each having a support frame, a connecting device for connecting between one suspension car and the car, and between the other car and the counterweight, and each of the car and the counterweight.
  • a pair of guide rails for guiding the raising and lowering of the car and the counterweight, and each connecting device is arranged to pass between the pair of guide rails and is different from each other.
  • a pair of abutting portions that are brought into contact with the pair of guide rails at positions in the height direction at both ends, a suspension wheel is rotatably connected around the horizontal axis, and includes a regulating body that supports the support frame. Yes.
  • the regulating body to which the suspension vehicle is connected is provided so as to pass the pair of guide rails, and the contact portions provided at both ends of the regulating body are opposed to each other at different height positions. It is in contact with the wall surface of the guide rail. Therefore, the suspension position of the car and the counterweight when viewed from the height direction deviates from the position that keeps the car and the counterweight in the predetermined posture, and the moment that rotates the suspension center around the suspension position acts on the car and the counterweight.
  • the regulation body restricts the rotation of the car and the counterweight.
  • FIG. 1 is a perspective view of an elevator car and its surroundings according to an embodiment of the present invention.
  • the elevator which concerns on one embodiment of this invention, it is an expansion perspective view which shows the connection state of the connection apparatus of a car side, and a suspension vehicle.
  • the elevator which concerns on one embodiment of this invention, it is an expansion perspective view which shows the connection state of the connection apparatus and suspension vehicle of the counterweight side. It is the C section enlarged view of FIG. It is the D section enlarged view of Drawing 3, and omits a car frame. It is sectional drawing seen from the E direction of FIG. It is a figure explaining the repair method of the elevator which concerns on one embodiment of this invention, and has shown the schematic diagram of the existing elevator. It is a figure explaining the repair method of the elevator which concerns on one embodiment of this invention, and has shown the upper side figure in the machine room of the existing elevator. It is the front view seen from the F direction of FIG.
  • FIG. 1 is a schematic view of an elevator according to an embodiment of the present invention
  • FIG. 2 is a top view of the elevator interior according to the first embodiment of the present invention
  • FIG. 3 is a view of the vicinity of the car of FIG.
  • FIG. 4 is a front view of the vicinity of the counterweight in FIG. 1 as viewed from the direction B
  • FIG. 5 is a perspective view of the elevator car and its surroundings according to an embodiment of the present invention.
  • the elevator 1 is of a 2: 1 roping type, and is fixed on a machine room 3 provided above a hoistway 2 formed in a building and a machine base 7 provided in the machine room 3.
  • the winding sheave 5 having the driving sheave 5 and the electric motor 6 that generates torque for rotating the driving sheave 5, the deflecting wheel 8 provided in the machine room 3, and the driving sheave 5 and the deflecting wheel 8 are wound around. Is inserted into rope through holes 3b and 3c formed in the floor 3A of the machine room 3, suspended in the hoistway 2, and lifted up and down at one end and the other end so as to be reversed through the loop portion 9a.
  • the elevator 1 is wound around each of the loop portions 9a from below, and a pair of suspension vehicles 10a and 10b that move up and down in opposite directions in accordance with the travel of the main rope 9, a car 15 and a counterweight 20, A pair is provided for each of the connecting devices 30A and 30B for connecting the suspension vehicle 10a and the cage 15 and the suspension vehicle 10b and the counterweight 20 respectively, and the cage 15 and the counterweight 20. , And a guide rail 25 for guiding the raising and lowering of the car 15 and the counterweight 20.
  • the surface side of the floor 3A of the machine room 3 is composed of cinder concrete 3a. Further, a pair of rope through holes 3b and 3c penetrating the floor 3A of the machine room 3 are formed at positions corresponding to the driving sheave 5 and the deflector 8 as will be described later.
  • the car 15 includes a car room 16 and a car frame 17 as a support frame that supports the car room 16.
  • the car frame 17 includes a pair of vertical frames 17a, a pair of upper frames 17b connecting the upper ends of the pair of vertical frames 17a, and a pair of lower frames 17c connecting the lower ends of the pair of vertical frames 17a. ing.
  • the pair of upper frames 17b is provided between the one end side and the other end side so as to sandwich the upper end sides of the pair of vertical frames 17a.
  • the pair of lower frames 17c is provided so as to sandwich the lower end sides of the pair of vertical frames 17a between one end side and the other end side.
  • a part of the vertical frame 17a of the car frame 17 is omitted in FIG.
  • the car room 16 is placed on the lower frame 17 c of the car frame 17 and supported by the car frame 17. At this time, the vertical frame 17 a extends in the height direction with a space between the outer wall surfaces on both sides in the width direction of the car room 16.
  • the counterweight 20 includes a weight main body 21 and a counterweight frame 22 as a support frame that supports the weight main body 21.
  • the counterweight frame 22 includes a pair of vertical frames 22a, a pair of upper frames 22b connecting the upper ends of the pair of vertical frames 22a, and a pair of lower frames 22c connecting the lower ends of the pair of vertical frames 22a. I have.
  • the pair of upper frames 22b is provided so as to sandwich the upper end sides of the pair of vertical frames 22a between one end side and the other end side.
  • the pair of lower frames 22c is provided so as to sandwich the lower ends of the pair of vertical frames 22a between one end side and the other end side.
  • a part of the vertical frame 22a of the counterweight frame 22 is omitted in FIG.
  • the weight main body 21 is placed on the lower frame 22 c of the counterweight frame 22 and supported by the counterweight frame 22. At this time, the vertical frame 22 a extends in the height direction with a gap between the weight main body 21 and the outer wall surfaces on both sides in the width direction.
  • the machine base 7 provided on the floor 3A of the machine room 3 is H steel as shown in FIGS. Further, the guide rail 25 has a T-shaped cross section perpendicular to the longitudinal direction.
  • FIG. 6 is an enlarged perspective view showing a connection state between the car-side connecting device and the suspension vehicle in the elevator according to the embodiment of the present invention.
  • the connecting device 30 ⁇ / b> A that connects one suspension vehicle 10 a and the car 15 is applied to a pair of guide rails 25 that guide the car 15 at different height positions.
  • a pair of contact rollers 38 serving as a pair of contact portions are provided at both ends, and a restricting body 31A disposed so as to pass between the pair of guide rails 25, and attached to the restricting body 31A to absorb vibration of the car 15.
  • the restriction body 31 ⁇ / b> A includes a restriction arm 32 and the above-described pair of contact rollers 38 connected to both ends of the restriction arm 32.
  • the restriction arm 32 includes a substantially L-shaped main body arm 35 having a first arm 33 and a second arm 34 orthogonal to each other, a first roller mounting arm 36 extending from one end of the main body arm 35, and the main body arm 35.
  • a second roller mounting arm 37 extending from the end is provided.
  • the first arm 33 includes a suspension vehicle support portion 33A having a predetermined length, a first delivery portion 33B coupled to one end of the suspension vehicle support portion 33A, and a second delivery coupled to the other end of the suspension vehicle support portion 33A.
  • a portion 33C is provided.
  • the first transfer portion 33B, the suspension vehicle support portion 33A, and the second transfer portion 33C are connected so that the longitudinal directions thereof are approximately the same.
  • the suspension vehicle support portion 33A includes a pair of branch arm portions 33a that are arranged in parallel with a distance from each other and connected between one end and the other end.
  • Each of the branch arm portions 33a, the first transfer portion 33B, and the second transfer portion 33C has a cross-sectional outer shape that is orthogonal to the longitudinal direction and is formed into a frame having an outer shape having a predetermined width and a predetermined height. Has been.
  • the 2nd arm 34 is connected with the front-end
  • the first roller mounting arm 36 is extended from the tip of the first transfer portion 33B in a direction opposite to the second arm 34 at a predetermined angle with respect to the first transfer portion 33B.
  • a two-roller mounting arm 37 extends from the tip of the second arm 34 in a direction opposite to the first arm 33.
  • the first roller mounting arm 36 and the second roller mounting arm 37 are also formed in a frame having a rectangular cross section.
  • a pair of attachment pieces 36a are provided at the tip of the first roller attachment arm 36 so as to be spaced apart from each other in the same direction as the separation direction of the pair of branch arm portions 33a.
  • a pair of attachment pieces 37a are provided at the distal end of the second roller attachment arm 37 so as to be spaced apart from each other in the same direction as the separation direction of the pair of branch arm portions 33a.
  • the contact roller 38 includes a cylindrical roller body 38a and a flange portion 38b that extends a predetermined length in the radial direction from the entire outer peripheral edge at both ends in the axial direction of the roller body 38a. Then, the contact roller 38 rotates between the pair of mounting pieces 36a and 37a of the first roller mounting arm 36 and the second roller mounting arm 37 around an axis that coincides with the separating direction of the mounting pieces 36a and 37a. It is attached freely. At this time, a part of each outer peripheral edge portion of the contact roller 38 protrudes from each of the first roller mounting arm 36 and the second roller mounting arm 37.
  • the support unit 40 includes a rubber piece 41 as a first elastic member and a pair of holding plates 42 that sandwich both sides of the rubber piece 41 in the thickness direction.
  • One holding plate 42 has a flange portion that extends to the outside of the rubber piece 41 when viewed from the thickness direction of the rubber piece 41.
  • the flange part is being fixed to the end surface of the height direction of each branch arm part 33a, and the support unit 40 is being fixed to the branch arm part 33a. At this time, the support unit 40 is positioned in the middle portion of the first arm 33 in the longitudinal direction.
  • the reinforcing member 39 is fixed at one end and the other end to the second arm 34 and the second transfer portion 33C so as to pass the intermediate portion of the second arm 34 and the proximal end side of the second transfer portion 33C. .
  • FIG. 7 is an enlarged perspective view showing a connection state between the counterweight-side connecting device and the suspension wheel in the elevator according to the embodiment of the present invention
  • FIG. 8 is an enlarged view of part C of FIG.
  • the connecting device 30 ⁇ / b> B that connects the other suspension vehicle 10 b and the counterweight 20 includes a regulating body 31 ⁇ / b> B, a first support unit 40, and an attachment position adjusting device 60.
  • the restricting body 31B has the same shape as the restricting body 31A except that the first transfer portion 33A is omitted and the first roller mounting arm 36 is directly connected to one end of the suspension vehicle support portion 33A.
  • symbol is attached
  • the attachment position adjusting device 60 includes a U-shaped shaft support fitting 61, a jack bolt 62, and a fixing bolt 63 as a suspension wheel bearing member.
  • the shaft support fitting 61 includes a bottom 61A and support pieces 61B extending from both ends in the longitudinal direction of the bottom 61A and facing each other.
  • a long hole 61a is formed in the support piece 61B with a predetermined length from the vicinity of the bottom 61A toward the tip. Further, a shaft insertion hole 61b is formed on the distal end side of the support piece 61B. Further, although not shown, a pair of screw holes are formed in the bottom portion 61A so as to be separated from each other in the longitudinal direction.
  • the shaft support fitting 61 has a pair of branch arm portions 33a sandwiched between the pair of support pieces 61B, and the bottom portion 61A faces the other surface (lower surface) in the height direction of the pair of branch arm portions 33a. Is provided.
  • a jack bolt 62 is screwed into the screw hole formed in the bottom 61A.
  • the fixing bolt 63 is inserted into the elongated hole 61a, screwed into the side surface of the branch arm portion 33a, and the support piece 61B is fastened to the branch arm portion 33a with the fixing bolt 63, whereby the shaft support fitting 61 is secured. It is fixed to the branch arm portion 33a.
  • the jack bolt 62 By loosening the fixing bolt 63 and adjusting the screwing amount of the jack bolt 62, the jack bolt 62 can be attached to the branch arm portion 33a of the shaft support fitting 61 under the condition that the tip of the jack bolt 62 is in contact with the bottom portion of the branch arm portion 33a.
  • the mounting position can be easily adjusted. Thereby, the height position with respect to the branch arm part 33a of the shaft insertion hole 61b can be adjusted easily.
  • the rope shackle 70 has one end fixed to the end portion of the main rope 9 and the other end side inserted into a brace beam 80 as a fixing portion fixed to the upper part of the hoistway 2.
  • a nut 76 as a connecting means for connecting and fixing to 80.
  • the second support unit 72 includes a rubber piece 73 as a second elastic member, and a pair of holding plates 74 that sandwich both sides of the rubber piece 73 in the thickness direction.
  • the second support unit 72 is formed with an insertion hole (not shown) that penetrates the rubber piece 73 and the holding plate 74.
  • FIG. 9 is an enlarged view of portion D in FIG. 3, and a car frame is omitted.
  • 10 is a cross-sectional view seen from the direction E of FIG. 2, 3, and 4, a pair of machine bases 7 are provided on the floor 3 ⁇ / b> A of the machine room 3 at intervals in parallel to each other.
  • the hoisting machine 4 is disposed so as to pass a pair of machine tables 7 and is fixed to the machine table 7.
  • the driving sheave 5 is disposed between the pair of machine bases 7 with the axial direction thereof parallel to the separating direction of the pair of machine bases 7.
  • the deflector wheel 8 is provided between the pair of machine tables 7 adjacent to the drive sheave 5 so that the outer peripheral surfaces thereof face each other with the axial direction parallel to the axial direction of the drive sheave 5. Yes.
  • the floor 3 ⁇ / b> A of the machine room 3 includes an end portion of the driving sheave 5 that is located on the opposite side of the deflecting wheel 8 in the direction orthogonal to the axial direction of the driving sheave 5 when viewed from the height direction.
  • the rope through hole 3b is formed.
  • the floor 3A of the machine room 3 includes an end portion of the deflecting wheel 8 that is located on the side opposite to the driving sheave 5 with respect to the direction orthogonal to the axial direction of the deflecting wheel 8 when viewed from the height direction.
  • the rope through hole 3c described above is formed.
  • a main rope 9 is wound around the driving sheave 5 and the deflector wheel 8 from above, is inserted into the rope through holes 3b and 3c, and is suspended in the hoistway 2, and one end and the other end are As will be described below, the shackle 70 is fixed to a rope tie 80 fixed to the upper part of the hoistway 2.
  • the rope-fastening beam 80 is supported and fixed to a pair of beam support members 77 provided at the upper part of the hoistway 2.
  • the beam support member 77 has an L-shaped cross section, and the beam support member 77 is fixed to the opposite wall surface of the hoistway 2.
  • the pair of beam support members 77 are fixed to the wall surface of the hoistway 2 by anchor bolts 78 with the ends of one piece arranged horizontally facing each other.
  • the ropes 80 are made of H steel, and one end and the other end in the longitudinal direction are disposed on one piece of the pair of beam support members 77 so as to pass between one piece of the pair of beam support members 77. At this time, the ropes 80 are arranged so that the steel pieces facing each other are opposed to each other in the height direction, and one steel piece is arranged so as to contact the top of the hoistway 2.
  • the leashing beam 80 is provided so as to pass through a predetermined position above the car 15 and the counterweight 20.
  • the main rope 9 is connected to one end of the shackle rod 71, and the other end side of the shackle rod 71 is inserted into the rope-holding beam 80 from below. Further, the second support unit 72 is passed through the other end side of the shackle rod 71 inserted through the rope tie 80 and fixed to the rope tie 80. The nut 76 is screwed to the shackle rod 71, and the second support unit 72 and the rope tie 80 are fastened and fixed by the nut 76.
  • the other end of the main rope 9 is similarly connected to a rope retaining beam 80 fixed to the upper part of the hoistway 2.
  • the loop portion 9a is suspended between one end of the main rope 9 and one rope through hole 3b.
  • the extension direction of the main rope 9 is formed at the lower end of this part so as to be reversed.
  • the other loop portion 9a reverses the extending direction of the main rope 9 to the lower end of the main rope 9 portion suspended between the other end of the main rope 9 and the other rope passage hole 3c. Formed as follows.
  • each of the pair of suspension vehicles 10a and 10b is hung from above on each of the pair of loop portions 9a.
  • each of the pair of suspension vehicles 10 a and 10 b is arranged such that each of the pair of loop portions 9 a is wound from below and supported by the main rope 9.
  • one suspension vehicle 10a and the car 15 are connected via a connecting device 30A as follows.
  • the suspension vehicle 10a is disposed between the pair of upper frames 17b constituting the car frame 17 with the axial direction being coincident with the separating direction of the pair of upper frames 17b when viewed from the height direction. At this time, the main part of the suspension vehicle 10a protrudes below the upper frame 17b.
  • the second arm 34 extends above the first arm 33, and the pair of abutting rollers 38 abut against the opposing end surfaces of the pair of guide rails 25 disposed on both sides of the car 15. It is arranged to touch.
  • each contact roller 38 sandwiches the tip end side of the guide rail 25 between the outer peripheral sides of the pair of flange portions 38 b, and sets the outer peripheral surface of the roller body 38 a to a high level. It arrange
  • the one abutting roller 38 abuts on the guide rail 25 through a roller through hole 17d formed in the one vertical frame 17a, and the tip end of the second roller mounting arm 37 is from the upper frame 17b.
  • the other contact roller 38 is disposed above and is in contact with the guide rail 25 without using the other vertical frame 17a.
  • the restriction arm 32 is connected to the suspension vehicle 10a by inserting the shaft of the suspension vehicle 10a through the pair of branch arm portions 33a.
  • the restriction arm 32 is arranged such that the longitudinal direction of one piece of the main body arm 35 coincides with the separating direction of the pair of guide rails 25.
  • the suspension wheel 10a is supported by the branch arm portion 33a so as to be rotatable around the axis of the rotation shaft.
  • the other suspension vehicle 10b and the counterweight 20 are connected via the connection device 30B as follows.
  • the suspension vehicle 10b is disposed between the pair of upper frames 22b constituting the counterweight frame 22 so that the axial direction coincides with the separating direction of the pair of upper frames 22b when viewed from the height direction. At this time, the main part of the suspension vehicle 10b protrudes below the upper frame 22b.
  • the regulating body 31B constituting the coupling device 30B has a second arm 34 extending above the first arm 33 and a pair of contact rollers 38 relative to the pair of guide rails 25 that guide the counterweight 20. It arrange
  • the regulation body 31B to which the shaft support bracket 61 is connected has the bottom 61A of the shaft support bracket 61 directed downward, and the longitudinal direction of one piece (first arm 33) of the main body arm 35 coincides with the separation direction of the pair of guide rails 25. Are arranged. Thereby, since the elongated hole 61a formed in the support piece 61B of the shaft support fitting 61 extends in the height direction, the attachment position of the shaft support fitting 61 in the height direction can be adjusted.
  • the rotary shaft of the suspension wheel 10b is inserted into the shaft insertion hole 61b formed in the support piece 61B in advance, and both ends of the rotation shaft of the suspension wheel 10b are fixed to the pair of support pieces 61B. It can rotate around its axis.
  • the shaft support fitting 61 adjusts the screwing amount of the jack bolt 62 under the condition that the tip of the jack bolt 62 is in contact with the bottom of the branch arm portion 33a, so that the branch arm portion 33a (first step) of the support piece 61B is adjusted.
  • the mounting position in the height direction with respect to one arm 33) can be adjusted.
  • the suspension bolt 10b is fixed at a desired height position with respect to the branch arm portion 33a by inserting the fixing bolt 63 into the long hole 61a and tightening it on the side surface of the branch arm portion 33a.
  • the center of the suspension vehicle 10a and the suspension vehicle 10b when viewed from above is shifted from the center of the car 15 and the counterweight 20. That is, the hanging position of the car 15 and the counterweight 20 when viewed from above is shifted from the center of the car 15 and the counterweight 20. For this reason, the car 15 and the counterweight 20 are moved from the predetermined posture of the car 10 and the counterweight 20 where the vertical frame 17a of the car frame 17 and the counterweight frame 22a of the counterweight frame 22 extend in the height direction. A moment that rotates around the suspension position is generated in the tilting direction.
  • both ends (a pair of contact rollers 38) of the regulation body 31A connected to the suspension wheel 10a are in contact with a pair of guide rails 25 that guide the car 15 at different positions in the height direction,
  • the restriction body 31A restricts the car 15 from rotating from a predetermined posture. For this reason, the car 15 is raised and lowered while being guided by the guide rail 25 in conjunction with the lifting and lowering of the suspension vehicle 10a while maintaining the predetermined posture.
  • both ends (a pair of contact rollers 38) of the regulating body 31B connected to the counterweight 20 are in contact with a pair of guide rails 25 that guide the counterweight 20 at different positions in the height direction.
  • the counterweight 31B restricts the counterweight 20 from rotating from a predetermined posture. Therefore, the counterweight 20 is lifted and lowered while being guided by the guide rail 25 in conjunction with the lifting and lowering of the suspension vehicle 10b while maintaining a predetermined posture.
  • the 2: 1 roping type elevator 1 having the above-described configuration is a new rope through hole provided in the floor 3A of the machine room 3 in order to modify the existing 1: 1 roping type elevator described below.
  • the guide rail 25, the car 15, the counterweight 20, and the machine base 7 of the existing elevator 100 can be used.
  • FIG. 11 is a diagram for explaining a method for repairing an elevator according to an embodiment of the present invention, and shows a schematic diagram of an existing elevator.
  • FIG. 12 is a diagram for explaining a method for repairing an elevator according to an embodiment of the present invention, and shows a top view of a machine room of an existing elevator.
  • FIG. 13 is a front view seen from the direction F of FIG. 11 to 13, the same or corresponding parts as those of the elevator 1 are denoted by the same reference numerals, and the description thereof is omitted.
  • the existing elevator 100 is of a 1: 1 roping type, and is fixed to a machine room 3 provided above the hoistway 2 and a machine table 7 provided in the machine room 3.
  • a hoisting machine 104 having an electric motor 106 that generates torque for rotating the wheel 105 and the driving sheave 105, a deflector wheel 108 provided in the machine room 3, and wound around the driving sheave 105 and the deflector wheel 108, And a main rope 109 which is inserted into rope through holes 3b and 3c formed in the floor 3A of the third floor and is suspended in the hoistway 2 at one end side and the other end side.
  • the existing elevator 100 is provided in pairs so that the car 15 and the counterweight 20 connected to one end side and the other end side of the main rope 109 and the car 15 and the counterweight 20 are respectively disposed between them.
  • a guide rail 25 that guides the raising and lowering of the car 15 and the counterweight 20
  • a rope shackle 110 ⁇ / b> A as a rope support device that connects one end of the main rope 109 to the car 15, and the main rope 109.
  • a rope shackle 110B as a rope support device for connecting the other end of the cable to the counterweight 20.
  • the rope through-hole 3b includes the end portion of the drive sheave 105 located on the opposite side of the deflecting wheel 108 in the direction orthogonal to the axial direction of the drive sheave 105 when viewed from the height direction. 3 floors 3A. Further, the rope through hole 3c includes an end portion of the deflecting wheel 108 that is located on the opposite side of the driving sheave 105 with respect to a direction orthogonal to the axial direction of the deflecting wheel 108 when viewed from the height direction. It is formed on the floor 3 ⁇ / b> A of the machine room 3.
  • the rope shackle 110A connects one end of the main rope 109 and the upper frame 17b.
  • the rope shackle 110B connects the other end of the main rope 109 and the upper frame 22b.
  • the existing elevator 100 configured as described above moves up and down in a direction in which the car 15 and the counterweight 20 are opposite to each other in conjunction with the rotation of the driving sheave 105.
  • the car 15 and the counterweight 20 are temporarily fixed (preliminarily supported) at predetermined positions in the hoistway 2 by some method. This type of work has been conventionally performed, for example, when a main rope of a general existing elevator is replaced.
  • the existing hoisting machine 104, the existing deflecting wheel 108, and the existing main rope 109 are removed. Furthermore, a new sloping wheel 8 is provided corresponding to the position where the existing sloping wheel 108 was installed, and the new hoisting machine 4 is made to correspond to the position where the existing hoisting machine 4 was installed, It fixes to the machine base 7 which diverted the existing thing as it is. At this time, the existing machine base 7 is not particularly moved.
  • the end of the drive sheave 4 located on the opposite side of the deflector wheel 8 is The hoisting machine 4 and the baffle wheel 8 are installed so that the end of the baffle wheel 8 included in the rope through hole 3b and located on the side opposite to the drive sheave 4 is included in the rope through hole 3c.
  • a pair of beam support members 77 is fixed to the upper part of the hoistway 2 and a bracing beam 80 is provided so as to pass the pair of beam support members 77.
  • the new main rope 9 is wound around the new drive sheave 5 and the deflector wheel 8 and one end side of the new main rope 9 through the through holes 3b and 3c through which the existing main rope 109 is passed.
  • the rope shackle 70 is used for the leash retaining beam 80 having one end side and the other end side provided at the upper part of the hoistway 2 so that the other end side is suspended in the hoistway 2 and reversed through the loop portion 9a.
  • the pair of suspension wheels 10 a and 10 b are arranged so that the loop portion 9 a is wound from below and supported by the main rope 9.
  • the one suspension wheel 10a and the car 15 are connected using the connecting device 30A (first connecting step).
  • connection device 30B (second connection step). More specifically, in each of the first connection step and the second connection step, the suspension wheels 10a and 10b are connected to the regulation bodies 31A and 31B so as to be rotatable around the horizontal axis, and a pair of contact rollers 38 are provided. It has the process of arrange
  • the first support unit 40 is attached to the first arm 33 of the restricting body 31A, and the first arm 33 is a pair of guides so that the first support unit 40 faces upward.
  • a pair of guide rollers that are horizontally disposed between the rails 25 and that guide the pair of abutment rollers 38 with the restricting body 31 ⁇ / b> A so that the second arm 34 extends above the first arm 33. It abuts on the guide rail 25. Then, the suspension vehicle 10a is moved to a position where the upper frame 17b of the car 15 is placed on the first support unit 40, and the temporary fixing of the car 15 is released.
  • the first support unit 40 is attached to the first arm 33 of the regulating body 31B constituting the connecting device 30B, the second arm 34 is extended above the first arm 33, and The pair of contact rollers 38 are brought into contact with the pair of guide rails 25 that guide the weights 20 with the regulating body 31 ⁇ / b> B directed so that the first support unit 40 is disposed on the first arm 33. Then, the suspension vehicle 10b is moved to the position where the upper frame 22b of the counterweight 20 is placed on the first support unit 40, and the temporary fixing of the counterweight 20 is released. Thus, the repair of the elevator is completed.
  • the elevator according to the present invention is of a 2: 1 roping type, and includes connecting devices 30A and 30B for connecting between one suspension vehicle 10a and the car 15 and between the other suspension vehicle 10b and the counterweight 20 respectively. ing.
  • Each of the connecting devices 30A and 30B is disposed so as to pass between a pair of guide rails 25 that guide the car 15 and the counterweight 20, and is applied to the opposing end surfaces of the pair of guide rails 25 by changing the position in the height direction.
  • Regulating bodies 31A and 31B having a pair of contact rollers 38 at both ends, the suspension wheels 10a and 10b being rotatably connected around the horizontal axis, and supporting the support frame (the car frame 17 and the counterweight frame 22). It has.
  • the hanging position of the car 15 and the counterweight 20 when viewed from the height direction is deviated from the center of the car 15 and the counterweight 20, and the car 15 and the counterweight 20 is rotated from the predetermined posture around the hanging position. Even if the moment to move acts, it is controlled by the regulation bodies 31A and 31B that the car 15 and the counterweight 20 rotate.
  • the elevator 1 configured as described above, when the existing 1: 1 roping type existing elevator 100 is modified to a 2: 1 roping type, the hanging position of the car 15 and the counterweight 20 is Since it may deviate from the existing one, it is possible to use the guide rail 25 of the existing elevator 100 and the base material such as the machine base 7 as they are.
  • the 2: 1 roping type elevator 1 is constructed by using the new main rope 9 passed through the rope through holes 3b and 3c formed in the floor 3A of the machine room 3 through which the main rope 109 has been passed.
  • the hanging position of the car 15 and the counterweight 20 is shifted.
  • a new rope through hole is provided in the floor 3A of the machine room 3 in order to shift the hanging position of the car 15 and the counterweight 20. There is no need to provide or move the machine base 7.
  • the vibration of the suspension vehicles 10a and 10b is caused by the car 15 and the counterweight 20. It is possible to suppress vibrations transmitted to.
  • the connecting device 30B provided on the counterweight 20 side includes a shaft support fitting 61 as a suspension vehicle support member provided on the regulating body 31B so as to support the suspension vehicle 10b and adjust the position in the height direction. . Therefore, even when the length of the main rope 9 is extended, by shifting the height position of the shaft support fitting 61, the extension of the main rope 9 can be absorbed and the same state as the initial state can be maintained.
  • the movement of the shaft support fitting 61 in the height direction may be half of the extension amount of the main rope 9, and the extension of the main rope 9 corresponding to twice the movable range of the shaft support fitting 61 is It can be absorbed by the movement of the support fitting 61 to maintain the initial state.
  • the shaft support fitting 61 is provided in the restricting body 31B so that the position in the height direction can be adjusted, for example, the shackle rod 71 is inserted and the part of the leash retaining beam 80 that supports the shackle rod 71 is moved up and down.
  • the length between the ceiling of the road 2 is short, there is a limit in adjusting the extension of the main rope 9 by moving the attachment position of the shackle rod 71 to the ceiling side. It is desirable to arrange the ropes 80 as close to the ceiling of the hoistway 2 as possible. Even if the ropes 80 are arranged as close to the ceiling of the hoistway 2 as possible, the main rope 9 can be adjusted by adjusting the position of the shaft support fitting 61 in the height direction. The unnecessary space can be omitted by narrowing the space at the top of the.
  • the regulation bodies 31A and 31B have a substantially L-shaped main body arm 35 in which the contact roller 38 is disposed on one end side and the other end side, and a pair of the longitudinal directions of one piece (first arm 33) of the main body arm 35 are arranged.
  • the guide rails 25 are arranged so as to coincide with the separating direction of the guide rails 25.
  • the main parts of the regulating bodies 31A and 31B have a simple configuration of L-shape, so that they can be easily manufactured, and the car 15 and the counterweight 20 are simply placed on the car frame 17 and the counterweight frame 22, Since 15 and the counterweight 20 can be supported by the regulating bodies 31A and 31B, the manufacturing cost of the regulating bodies 31A and 31B and the cost for connecting the cage 15 and the counterweight 20 to the regulating bodies 31A and 31B can be reduced.
  • each of the one end side and the other end side of the main rope 9 is connected to a rope holding beam 80 fixed to the upper part of the hoistway 2 via a rubber piece 73 as a second elastic member, the suspension wheel 10a, It can suppress that the vibration of 10b is transmitted to the cage
  • the first connecting step of connecting the one suspension car 10a and the car 15 using the connecting device 30A and the other suspension car 10b and the counterweight 20 are already performed.
  • a second connecting step for connecting using one connecting device 30B is already performed.
  • the suspension bodies 10A and 10b are freely rotatable around the horizontal axis.
  • the regulating bodies 31A and 31B are arranged so that the pair of contact rollers 38 are applied to the pair of guide rails 25 at different height positions. Therefore, as described above, it is not necessary to make a rope insertion hole in the floor 3A of the machine room 3 in order to upgrade the existing elevator 100 of the 1: 1 roping type to the elevator 1 of 2: 1.
  • the connecting device 30B provided on the counterweight 20 side has been described as having the shaft support fitting 61 as the suspension wheel bearing member.
  • the connecting device 30A provided on the car 15 side is provided with the shaft support. It may have a metal fitting 61.
  • both of the connecting devices 30 ⁇ / b> A and 30 ⁇ / b> B provided on the car 15 side and the counterweight 20 side may have a shaft support fitting 61.
  • the car frame 17 and the counterweight frame 22 have been described as being supported on the regulating body 31 via the first support unit 40 having the first elastic member, the first elastic member is not necessarily provided. .

Landscapes

  • Lift-Guide Devices, And Elevator Ropes And Cables (AREA)

Abstract

L'invention porte sur un ascenseur qui comporte : un câble principal qui est enroulé sur une poulie d'entraînement, qui traverse le plancher de la pièce de machine et qui est suspendu à l'intérieur de la cage, et dont une extrémité et l'autre extrémité sont fixées à la partie supérieure de la cage d'ascenseur de telle manière que le câble principal est inversé à travers des sections de boucle ; une paire de poulies de suspension supportées respectivement par les section de boucle ; une cabine et un contrepoids ayant respectivement des cadres de support ; des dispositifs de liaison fournissant respectivement la liaison entre l'une des poulies de suspension et la cabine et entre l'autre poulie de suspension et le contrepoids ; et des paires de rails de guidage disposées respectivement sur la cabine et le contrepoids et commandant respectivement le déplacement de la cabine et le déplacement du contrepoids. Chacun des dispositifs de liaison est disposé de façon à réaliser un pont entre chacune des paires de rails de guidage et a une paire de sections de contact qui sont disposées aux deux extrémités du dispositif de liaison et qui sont réalisées de façon à être en contact avec la paire de rails de guidage à des positions de hauteur différentes. Les poulies de suspension sont reliées de façon à être aptes à tourner autour d'axes horizontaux et comportent des corps de limitation pour supporter les cadres de support.
PCT/JP2011/064453 2011-06-23 2011-06-23 Ascenseur et procédé de réparation d'ascenseur Ceased WO2012176313A1 (fr)

Priority Applications (3)

Application Number Priority Date Filing Date Title
JP2013521383A JP5680198B2 (ja) 2011-06-23 2011-06-23 エレベータ及びエレベータの改修方法
PCT/JP2011/064453 WO2012176313A1 (fr) 2011-06-23 2011-06-23 Ascenseur et procédé de réparation d'ascenseur
EP11868277.2A EP2724970B1 (fr) 2011-06-23 2011-06-23 Ascenseur et procédé de réparation d'ascenseur

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/JP2011/064453 WO2012176313A1 (fr) 2011-06-23 2011-06-23 Ascenseur et procédé de réparation d'ascenseur

Publications (1)

Publication Number Publication Date
WO2012176313A1 true WO2012176313A1 (fr) 2012-12-27

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PCT/JP2011/064453 Ceased WO2012176313A1 (fr) 2011-06-23 2011-06-23 Ascenseur et procédé de réparation d'ascenseur

Country Status (3)

Country Link
EP (1) EP2724970B1 (fr)
JP (1) JP5680198B2 (fr)
WO (1) WO2012176313A1 (fr)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPWO2018047298A1 (ja) * 2016-09-09 2018-11-29 三菱電機株式会社 エレベータの吊車装置及び吊車装置の取付方法
CN110683451A (zh) * 2018-07-06 2020-01-14 株式会社日立大厦系统 电梯安装装置

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS58104885A (ja) * 1981-12-11 1983-06-22 三菱電機株式会社 エレベ−タ装置
JPH0213589A (ja) * 1988-06-30 1990-01-17 Toshiba Corp エレベータ綱車装置
JPH05193867A (ja) 1992-01-22 1993-08-03 Hitachi Ltd エレベーター主ロープ保持装置
JP2002173280A (ja) 2000-12-11 2002-06-21 Hitachi Ltd エレベータの重量補償装置
JP2007514622A (ja) * 2003-06-30 2007-06-07 コネ コーポレイション エレベータの巻上機能の最新化方法よび最新化装置
JP2008030885A (ja) * 2006-07-27 2008-02-14 Toshiba Elevator Co Ltd エレベータのリニューアル方法

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JPS5054051A (fr) * 1973-09-17 1975-05-13
JPS58192872U (ja) * 1982-06-18 1983-12-22 三菱電機株式会社 エレベ−タの据付装置
JP4350094B2 (ja) * 2006-02-07 2009-10-21 学校法人早稲田大学 カラーレーション検出装置およびカラーレーション検出方法

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Publication number Priority date Publication date Assignee Title
JPS58104885A (ja) * 1981-12-11 1983-06-22 三菱電機株式会社 エレベ−タ装置
JPH0213589A (ja) * 1988-06-30 1990-01-17 Toshiba Corp エレベータ綱車装置
JPH05193867A (ja) 1992-01-22 1993-08-03 Hitachi Ltd エレベーター主ロープ保持装置
JP2002173280A (ja) 2000-12-11 2002-06-21 Hitachi Ltd エレベータの重量補償装置
JP2007514622A (ja) * 2003-06-30 2007-06-07 コネ コーポレイション エレベータの巻上機能の最新化方法よび最新化装置
JP2008030885A (ja) * 2006-07-27 2008-02-14 Toshiba Elevator Co Ltd エレベータのリニューアル方法

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See also references of EP2724970A4 *

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPWO2018047298A1 (ja) * 2016-09-09 2018-11-29 三菱電機株式会社 エレベータの吊車装置及び吊車装置の取付方法
CN110683451A (zh) * 2018-07-06 2020-01-14 株式会社日立大厦系统 电梯安装装置

Also Published As

Publication number Publication date
EP2724970A1 (fr) 2014-04-30
EP2724970B1 (fr) 2015-11-18
EP2724970A4 (fr) 2014-11-26
JP5680198B2 (ja) 2015-03-04
JPWO2012176313A1 (ja) 2015-02-23

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