ES2550527B1 - Suspension and traction element, lift and control procedure of the adhesion of said element to a pulley - Google Patents
Suspension and traction element, lift and control procedure of the adhesion of said element to a pulley Download PDFInfo
- Publication number
- ES2550527B1 ES2550527B1 ES201430678A ES201430678A ES2550527B1 ES 2550527 B1 ES2550527 B1 ES 2550527B1 ES 201430678 A ES201430678 A ES 201430678A ES 201430678 A ES201430678 A ES 201430678A ES 2550527 B1 ES2550527 B1 ES 2550527B1
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- Prior art keywords
- suspension
- pulley
- traction
- traction element
- adhesion
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Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B66—HOISTING; LIFTING; HAULING
- B66B—ELEVATORS; ESCALATORS OR MOVING WALKWAYS
- B66B7/00—Other common features of elevators
- B66B7/06—Arrangements of ropes or cables
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- D—TEXTILES; PAPER
- D07—ROPES; CABLES OTHER THAN ELECTRIC
- D07B—ROPES OR CABLES IN GENERAL
- D07B1/00—Constructional features of ropes or cables
- D07B1/16—Ropes or cables with an enveloping sheathing or inlays of rubber or plastics
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B66—HOISTING; LIFTING; HAULING
- B66B—ELEVATORS; ESCALATORS OR MOVING WALKWAYS
- B66B15/00—Main component parts of mining-hoist winding devices
- B66B15/02—Rope or cable carriers
- B66B15/04—Friction sheaves; "Koepe" pulleys
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B66—HOISTING; LIFTING; HAULING
- B66B—ELEVATORS; ESCALATORS OR MOVING WALKWAYS
- B66B7/00—Other common features of elevators
- B66B7/06—Arrangements of ropes or cables
- B66B7/062—Belts
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- D—TEXTILES; PAPER
- D07—ROPES; CABLES OTHER THAN ELECTRIC
- D07B—ROPES OR CABLES IN GENERAL
- D07B1/00—Constructional features of ropes or cables
- D07B1/16—Ropes or cables with an enveloping sheathing or inlays of rubber or plastics
- D07B1/162—Ropes or cables with an enveloping sheathing or inlays of rubber or plastics characterised by a plastic or rubber enveloping sheathing
-
- D—TEXTILES; PAPER
- D07—ROPES; CABLES OTHER THAN ELECTRIC
- D07B—ROPES OR CABLES IN GENERAL
- D07B1/00—Constructional features of ropes or cables
- D07B1/22—Flat or flat-sided ropes; Sets of ropes consisting of a series of parallel ropes
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- D—TEXTILES; PAPER
- D07—ROPES; CABLES OTHER THAN ELECTRIC
- D07B—ROPES OR CABLES IN GENERAL
- D07B2201/00—Ropes or cables
- D07B2201/20—Rope or cable components
- D07B2201/2083—Jackets or coverings
- D07B2201/2087—Jackets or coverings being of the coated type
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- D—TEXTILES; PAPER
- D07—ROPES; CABLES OTHER THAN ELECTRIC
- D07B—ROPES OR CABLES IN GENERAL
- D07B2201/00—Ropes or cables
- D07B2201/20—Rope or cable components
- D07B2201/2083—Jackets or coverings
- D07B2201/2092—Jackets or coverings characterised by the materials used
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- D—TEXTILES; PAPER
- D07—ROPES; CABLES OTHER THAN ELECTRIC
- D07B—ROPES OR CABLES IN GENERAL
- D07B2501/00—Application field
- D07B2501/20—Application field related to ropes or cables
- D07B2501/2007—Elevators
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- D—TEXTILES; PAPER
- D07—ROPES; CABLES OTHER THAN ELECTRIC
- D07B—ROPES OR CABLES IN GENERAL
- D07B5/00—Making ropes or cables from special materials or of particular form
- D07B5/005—Making ropes or cables from special materials or of particular form characterised by their outer shape or surface properties
- D07B5/006—Making ropes or cables from special materials or of particular form characterised by their outer shape or surface properties by the properties of an outer surface polymeric coating
Landscapes
- Lift-Guide Devices, And Elevator Ropes And Cables (AREA)
Abstract
Elemento de suspensión y tracción, ascensor y procedimiento de control de la adherencia de dicho elemento a una polea.#La presente invención se refiere a un elemento de suspensión y tracción con control activo de adherencia que comprende una sección portante de cargas (1) provista de al menos un hilo y una funda (2) que recubre al menos parcialmente la sección portante, caracterizado porque la funda comprende una matriz de material polimérico y paramagnético y partículas magnéticas dispersas en dicha matriz en una proporción de al menos el 10% en volumen. La invención se refiere también a un sistema y un ascensor que incorporan dicho elemento y un procedimiento de control de la adherencia.Suspension and traction element, elevator and method of controlling the adhesion of said element to a pulley. # The present invention relates to a suspension and traction element with active adhesion control comprising a load bearing section (1) provided of at least one thread and a sheath (2) that at least partially covers the supporting section, characterized in that the sheath comprises a matrix of polymeric and paramagnetic material and magnetic particles dispersed in said matrix in a proportion of at least 10% by volume . The invention also relates to a system and an elevator incorporating said element and a method of adhesion control.
Description
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DESCRIPCIONDESCRIPTION
Elemento de suspension y traccion, ascensor y procedimiento de control de la adherencia de dicho elemento a una polea.Suspension and traction element, lift and control procedure of the adhesion of said element to a pulley.
SECTOR DE LA TECNICATECHNICAL SECTOR
La presente invention se refiere a cables, correas, cintas u otros elementos de suspension y traccion usados en ascensores, cabinas de teleferico y funiculares. En particular, la invencion se refiere a un elemento de suspension y traccion donde la section portante de cargas se encuentra recubierta al menos parcialmente de una funda, comprendiendo dicha funda una matriz polimerica paramagnetica y particulas magneticas.The present invention relates to cables, belts, belts or other suspension and traction elements used in elevators, teleferic and funicular cabins. In particular, the invention relates to a suspension and traction element where the load bearing section is at least partially covered with a sheath, said sheath comprising a paramagnetic polymer matrix and magnetic particles.
ESTADO DE LA TECNICASTATE OF THE TECHNIQUE
Durante el funcionamiento normal de los sistemas de suspension y traccion, por ejemplo ascensores, es deseable que la adherencia entre elementos de suspension y traccion y las poleas de traccion sea muy alta, pues de esta manera aumenta la capacidad de traccion. Sin embargo, existen casos en los que interesa minimizar dicha capacidad de traccion:During normal operation of suspension and traction systems, for example elevators, it is desirable that the adhesion between suspension and traction elements and traction pulleys be very high, as this increases the traction capacity. However, there are cases in which it is important to minimize such traction capacity:
1. Para evitar el posible arrollamiento de la cabina fuera de su recorrido nominal, interesa que en determinados casos los cables deslicen sobre la polea tractora. El caso mas conocido es el citado en la norma EN81-1 "Contrapeso apoyado en los amortiguadores”. Estando la cabina en la planta superior, a pesar de que la polea de traccion siga en movimiento en sentido ascendente de la cabina, el cable debe deslizar en la polea para que la cabina no suba. Por consiguiente, en este caso interesa que la adherencia entre la polea tractora y el cable sea baja, para que el cable deslice y asi evitar accidentes.1. To avoid the possible winding of the cab outside its nominal travel, it is of interest that in certain cases the cables slide over the tractor pulley. The best known case is the one mentioned in the EN81-1 standard “Counterweight supported by shock absorbers.” The cab being on the upper floor, even though the traction sheave is still moving upwards from the cab, the cable must slide on the pulley so that the cab does not go up, therefore, in this case it is important that the adhesion between the tractor pulley and the cable is low, so that the cable slides and thus avoid accidents.
2. Cuando existe una polea de desvio en el sistema, el alineamiento del cable respecto a las gargantas de la polea de desvio debe ser maximo, ya que cualquier angulo de desviacion (fleet angle) causa una rotation en el cable que provoca esfuerzos de torsion no deseados (figuras 1a y 1b), especialmente en caso de cables recubiertos con una funda polimerica. En la practica no siempre es posible evitar totalmente estas desviaciones. En estos casos, el cable al entrar en contacto con la polea, primero toca un lateral de la garganta (en un punto mas alto o bajo en funcion de la magnitud del angulo de desviacion) para luego, deslizandose y rotando, llegar hasta el fondo de la garganta. La rotacion del cable es indeseable, ya que si existen2. When there is a deflection pulley in the system, the alignment of the cable with respect to the throats of the deflection pulley must be maximum, since any angle of deflection (fleet angle) causes a rotation in the cable that causes torsional stresses unwanted (figures 1a and 1b), especially in the case of cables covered with a polymeric sheath. In practice it is not always possible to totally avoid these deviations. In these cases, the cable when coming into contact with the pulley, first touches one side of the throat (at a higher or lower point depending on the magnitude of the angle of deviation) and then, sliding and rotating, reach the bottom from the throat Cable rotation is undesirable, since there are
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rotaciones, se somete al cable a esfuerzos para los que no ha sido disenado. Por ello, es ventajoso que la adherencia entre cable y polea en estos casos sea minima, como se explica en EP1657208A1.rotations, the cable is subjected to stresses for which it has not been designed. Therefore, it is advantageous that the adhesion between cable and pulley in these cases is minimal, as explained in EP1657208A1.
Otro problema conocido en el estado del arte es el que se presenta en las poleas de desvio debido a la desigualdad de tensiones entre los diferentes cables. Esta diferencia de tensiones hace que los cables avancen diferente de forma tangencial en las gargantas de la polea, lo cual puede verse acentuado debido a la adherencia entre cable y polea. Este fenomeno es indeseable particularmente en cables recubiertos ya que entre otros fenomenos, se produce ruido.Another problem known in the state of the art is that which occurs in deflection pulleys due to the unequal tension between the different cables. This difference in tension causes the cables to advance tangentially differently in the throats of the pulley, which can be accentuated due to the adhesion between cable and pulley. This phenomenon is undesirable particularly in coated cables since among other phenomena, noise is produced.
Es deseable por lo tanto, disponer de sistemas donde la adherencia entre elementos de suspension y traccion y poleas sea variable y controlable.It is therefore desirable to have systems where the adhesion between suspension and traction elements and pulleys is variable and controllable.
Los materiales magnetorreologicos responden a la aplicacion de un campo magnetico con un cambio en su comportamiento mecanico y estan formados por particulas magnetizables en una matriz paramagnetica. Este cambio se debe a las fuerzas magneticas originadas por las interacciones entre los dipolos magneticos provocados por la aplicacion de un campo magnetico externo.The magnetorheological materials respond to the application of a magnetic field with a change in its mechanical behavior and are formed by magnetizable particles in a paramagnetic matrix. This change is due to the magnetic forces caused by the interactions between the magnetic dipoles caused by the application of an external magnetic field.
OBJETO DE LA INVENCIONOBJECT OF THE INVENTION
El objeto de la presente invention es proporcionar un elemento de traccion y suspension cuya adherencia pueda ser controlada activamente dependiendo del tipo de contacto (entre elemento y polea de suspension o de traccion), area de contacto (funcion del diametro de la polea, geometria de las gargantas de la polea y angulo de abrazamiento) y de las condiciones de trabajo del elemento (funcionamiento normal o arrollamiento). El elemento de suspension y traccion de la invencion comprende para ello una section portante de cargas provista de al menos un hilo y una funda que recubre al menos parcialmente la seccion portante, donde la funda comprende una matriz de material polimerico y paramagnetico y particulas magneticas dispersas en dicha matriz en una proportion de al menos el 10% en volumen, en un ejemplo preferencial, al menos un 15%. Preferente, pero no necesariamente, las particulas seran esfericas y tendran una dimension de entre 10 y 105 nm., y la matriz sera de poliuretano termoplastico elastomerico. Las particulas magneticas pueden ser de uno o varios de los siguientes materiales: hierro, ferritas, magnetitas, granates, mquel, cobalto, o mezclas de estos. La invencion comprende tambien un sistema que incorpora poleas y dicho elemento, un ascensor y un procedimiento de control de adherencia.The object of the present invention is to provide a traction and suspension element whose adhesion can be actively controlled depending on the type of contact (between element and suspension or traction pulley), contact area (function of the pulley diameter, geometry of the throats of the pulley and hugging angle) and the working conditions of the element (normal operation or winding). The suspension and traction element of the invention comprises a load bearing section provided with at least one wire and a sheath that at least partially covers the bearing section, where the sheath comprises a matrix of polymeric and paramagnetic material and dispersed magnetic particles. in said matrix in a proportion of at least 10% by volume, in a preferential example, at least 15%. Preferably, but not necessarily, the particles will be spherical and will have a dimension of between 10 and 105 nm., And the matrix will be made of elastomeric thermoplastic polyurethane. The magnetic particles may be of one or more of the following materials: iron, ferrites, magnetites, garnets, nickel, cobalt, or mixtures thereof. The invention also comprises a system incorporating pulleys and said element, an elevator and an adhesion control procedure.
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BREVE DESCRIPCION DE LAS FIGURASBRIEF DESCRIPTION OF THE FIGURES
Con objeto de ayudar a una mejor comprension de las caracteristicas de la invention de acuerdo con un ejemplo preferente de realization practica de la misma, se acompana la siguiente description de un juego de dibujos en donde con caracter ilustrativo se ha representado lo siguiente:In order to help a better understanding of the characteristics of the invention in accordance with a preferred example of practical realization thereof, the following description of a set of drawings is attached, where the following has been represented by way of illustration:
La figura 1 ilustra la rotation de un cable en la polea de desvio debido a desviaciones del cable.Figure 1 illustrates the rotation of a cable in the deflection pulley due to cable deviations.
La figura 2 es una puesta en practica de la invencion en forma de cable.Figure 2 is an implementation of the invention in the form of a cable.
La figura 3 muestra distintas secciones posibles elemento de suspension y traction de la invencion.Figure 3 shows different possible suspension and traction element sections of the invention.
DESCRIPCION DETALLADA DE LA INVENCIONDETAILED DESCRIPTION OF THE INVENTION
Como se puede apreciar en la figura 2, el elemento de traccion y suspension de la invencion comprende una section portante de cargas (1) recubierta total o parcialmente de una funda de material polimerico paramagnetico (2) a la que se anaden parriculas magneticas en una proportion de al menos el 10% en volumen.As can be seen in Figure 2, the traction and suspension element of the invention comprises a load bearing section (1) totally or partially covered with a sheath of paramagnetic polymeric material (2) to which magnetic grids are added in a proportion of at least 10% by volume.
Dentro de los materiales polimericos la matriz sera elastomerica ya que su elasticidad permite que el efecto magnetorreologico sea importante. Preferentemente se usa una matriz de TPU (Poliuretano termoplastico elastomerico) ya que presenta un buen comportamiento desde el punto de vista de adherencia en sistemas cable-polea.Within the polymeric materials the matrix will be elastomeric since its elasticity allows the magnetorheological effect to be important. Preferably, a matrix of TPU (elastomeric thermoplastic polyurethane) is used since it exhibits good performance from the point of view of adhesion in cable-pulley systems.
La seccion portante de cargas puede incluir un solo hilo o una pluralidad de los mismos, con iguales o diferentes caracteristicas (material, recubrimiento, dureza, rigidez...).The load bearing section may include a single thread or a plurality thereof, with the same or different characteristics (material, coating, hardness, stiffness ...).
El tamano de las parriculas es, preferente pero no necesariamente, entre 10 y 105 nm. Las mismas pueden ser de forma acicular, esferica, octaedrica, cubica, de escamas. En un ejemplo preferencial, la forma esferica es la preferida, ya que desde el punto de vista de fatiga del elemento de suspension y traccion presenta el mejor compromiso de vida- propiedades.The size of the grids is, preferably but not necessarily, between 10 and 105 nm. They can be acicular, spherical, octahedral, cubic, of scales. In a preferential example, the spherical shape is preferred, since from the point of view of fatigue of the suspension and traction element it presents the best compromise of life-properties.
En la figura 2 se muestra una puesta en practica de la invencion en forma de cable, donde la funda rodea a la seccion portante. La seccion portante se compone de diversos cordones formados por hilos. En la figura 3 se aprecian otras puestas en practica: un cable donde laFigure 2 shows an implementation of the invention in the form of a cable, where the sheath surrounds the supporting section. The supporting section is made up of several strands formed by threads. Figure 3 shows other implementations: a cable where the
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funda no solo rodea a la seccion portante, sino que tambien esta presente entre cordones y una puesta en practica donde el elemento de suspension y traccion es una cinta.cover not only surrounds the supporting section, but is also present between cords and an implementation where the suspension and traction element is a tape.
El elemento de suspension y traccion puede ser fabricado utilizando diferentes procesos. La selection dependera del tipo de material polimerico empleado en la matriz:The suspension and traction element can be manufactured using different processes. The selection will depend on the type of polymeric material used in the matrix:
- Proceso de extrusion con material termoplastico con particulas magneticas.- Extrusion process with thermoplastic material with magnetic particles.
- Proceso de pultrusion aplicado a una matriz polimerica con particulas magneticas cuyo curado se realiza con un agente vulcanizante.- Pultrusion process applied to a polymer matrix with magnetic particles whose curing is carried out with a vulcanizing agent.
- Proceso de pultrusion aplicado a una matriz polimerica con particulas magneticas cuyo curado se realiza a temperatura ambiente.- Pultrusion process applied to a polymer matrix with magnetic particles whose curing is carried out at room temperature.
Para el sistema completo, existen las siguientes posibilidades (nos referiremos a cables aunque las mismas puestas en practica son aplicables a todo tipo de elementos de suspension y traccion):For the complete system, there are the following possibilities (we will refer to cables although the same put into practice are applicable to all types of suspension and traction elements):
Polea de traccion:Traction Pulley:
Durante el funcionamiento normal de un ascensor, se quiere que haya una buena adherencia, para que todo el par del motor se transmita al cable. Para ello, se aplicara un campo magnetico radial (respecto de la polea) desde el interior de la polea mediante el uso de un electroiman.During normal operation of an elevator, it is desired that there is good adhesion, so that the entire motor torque is transmitted to the cable. For this, a radial magnetic field (with respect to the pulley) will be applied from inside the pulley by means of the use of an electro-magnet.
Sin embargo, fuera del recorrido nominal de la cabina, para evitar el arrollamiento de la cabina, se requiere una baja adherencia. Para controlar la adherencia se colocan electroimanes en la parte exterior de la polea a lo largo de un arco de longitud igual a la longitud del cable en contacto con la polea. La longitud de cable en contacto con la polea depende del diametro de la misma y del angulo de abrazamiento.However, outside the nominal cab travel, in order to avoid the winding of the car, low adhesion is required. To control the adhesion, electromagnets are placed on the outside of the pulley along an arc of length equal to the length of the cable in contact with the pulley. The length of the cable in contact with the pulley depends on the diameter of the pulley and the angle of hugging.
Polea de desvio:Deflection Pulley:
En el caso de la polea de desvio, siempre interesa que la adherencia minima. Por lo tanto, el electroiman estara colocado en la parte externa de la polea y rodeara la portion de cable en contacto con la polea, de manera que se aplique un campo magnetico perpendicular al mismo (la misma configuracion que en el caso de la polea de traccion en condiciones de arrollamiento).In the case of the deflection pulley, it is always interesting that the minimum adhesion. Therefore, the electromagnet will be placed on the outside of the pulley and will surround the cable portion in contact with the pulley, so that a magnetic field is applied perpendicular to it (the same configuration as in the case of the pulley traction in winding conditions).
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Tanto para la polea de traccion como para la de desvfo, la aplicacion de un campo magnetico superior a 1 mT en la direction radial de la polea modifica la adherencia cable- polea en funcion de las necesidades de funcionamiento.For both the traction and deflection pulley, the application of a magnetic field greater than 1 mT in the radial direction of the pulley modifies the cable-pulley adhesion depending on the operating needs.
Puesto que la dureza es un parametro mucho mas facil de cuantificar que la adherencia, se han realizado ensayos sobre la primera aplicando un campo magnetico perpendicular al elemento de suspension y traccion desde fuera de la polea (polea de desvio). Dichos ensayos se muestran en la siguiente tabla;Since the hardness is a parameter much easier to quantify than the adhesion, tests have been carried out on the first one by applying a magnetic field perpendicular to the suspension and traction element from outside the pulley (deflection pulley). These tests are shown in the following table;
- Material Material
- Campo magnetico Sh A 1 Sh A 2 Sh A 3 Media Sh A Magnetic field Sh A 1 Sh A 2 Sh A 3 Media Sh A
- 0% particulas 0% particles
- 0 mT 33 33 34 33,33 0 mT 33 33 34 33.33
- 15% particulas 15% particles
- 0 mT 48 48 45 47,00 0 mT 48 48 45 47.00
- 15% particulas 15% particles
- 130 mT 55 55 57 55,67 130 mT 55 55 57 55.67
- 15% particulas 15% particles
- 0 mT (tras retirar anterior) 50 48 48 48,67 0 mT (after previous withdrawal) 50 48 48 48.67
- 15% particulas 15% particles
- 180 mT 55 57 57 56,33 180 mT 55 57 57 56.33
- 15% particulas 15% particles
- 0 mT (tras retirar anterior) 50 47 45 47,33 0 mT (after previous withdrawal) 50 47 45 47.33
Los ensayos se realizaron con un elemento de suspension y traccion sin particulas magneticas (primera lmea de la tabla) y a continuation se uso un elemento segun la invention con un 15% de particulas magneticas en volumen. La medicion de la dureza segun la escala de Shore A se realizo tres veces, obteniendose una media para minimizar errores. La matriz utilizada fue una silicona WACKER Elastosil® M 4644 que consta de dos componentes: la silicona (WACKER Elastosil® M 4644 A) y el agente vulcanizante (WACKER Elastosil® M 4644 B). La proportion entre el vulcanizante y la matriz, es de 1:10 respectivamente. La selection de esta matriz se debe a que el curado se realiza a temperatura ambiente y ademas, el inicio de dicho proceso se controla con el agente vulcanizante.The tests were carried out with a suspension and traction element without magnetic particles (first line of the table) and then an element according to the invention was used with 15% of magnetic particles in volume. The hardness measurement according to the Shore A scale was performed three times, obtaining an average to minimize errors. The matrix used was a WACKER Elastosil® M 4644 silicone consisting of two components: silicone (WACKER Elastosil® M 4644 A) and the vulcanizing agent (WACKER Elastosil® M 4644 B). The proportion between the vulcanizer and the matrix is 1:10 respectively. The selection of this matrix is due to the fact that the curing is carried out at room temperature and also, the beginning of said process is controlled with the vulcanizing agent.
Las particulas magneticas utilizadas fueron de hierro, CIP (Carbonyl Iron Powder por sus siglas en ingles), de un tamano medio de 1.27±0.54 ^m y forma es esferica.The magnetic particles used were iron, CIP (Carbonyl Iron Powder), of an average size of 1.27 ± 0.54 ^ m and shape is spherical.
En primer lugar se estudio la dureza segun la escala de Shore A para un elemento al que no se le aplicaba ningun campo magnetico (0mT). Posteriormente se aplico un campo perpendicular de 130mT al elemento. Tras retirar dicho campo se volvio a hacer una medicion. En un cuarto paso se volvio a aplicar un campo, esta vez de 180mT. Finalmente se retiro de nuevo el campo y se efectuo una ultima medicion. Como puede apreciarse, trasFirst, the hardness was studied according to the Shore A scale for an element to which no magnetic field (0mT) was applied. Subsequently, a perpendicular field of 130mT was applied to the element. After removing said field, a measurement was made again. In a fourth step a field was reapplied, this time of 180mT. Finally the field was withdrawn and a last measurement was made. As can be seen, after
la retirada del campo magnetico la dureza vuelve a valores muy proximos a los iniciales. Con la aplicacion de un campo, la dureza aumenta. Como apreciara cualquier experto en la materia, un cambio de dureza implica un cambio en la rigidez y la adherencia.the removal of the magnetic field the hardness returns to values very close to the initials. With the application of a field, the hardness increases. As any expert in the field will appreciate, a change in hardness implies a change in stiffness and adhesion.
Claims (10)
Priority Applications (3)
Application Number | Priority Date | Filing Date | Title |
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ES201430678A ES2550527B1 (en) | 2014-05-09 | 2014-05-09 | Suspension and traction element, lift and control procedure of the adhesion of said element to a pulley |
ES15382238.2T ES2642612T3 (en) | 2014-05-09 | 2015-05-08 | Suspension and traction system, elevator that uses it and friction control procedure |
EP15382238.2A EP2942316B1 (en) | 2014-05-09 | 2015-05-08 | Suspension and traction system, elevator using the same and friction control method |
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ES201430678A ES2550527B1 (en) | 2014-05-09 | 2014-05-09 | Suspension and traction element, lift and control procedure of the adhesion of said element to a pulley |
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ES2550527A1 ES2550527A1 (en) | 2015-11-10 |
ES2550527B1 true ES2550527B1 (en) | 2016-09-08 |
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ES201430678A Expired - Fee Related ES2550527B1 (en) | 2014-05-09 | 2014-05-09 | Suspension and traction element, lift and control procedure of the adhesion of said element to a pulley |
ES15382238.2T Active ES2642612T3 (en) | 2014-05-09 | 2015-05-08 | Suspension and traction system, elevator that uses it and friction control procedure |
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ES15382238.2T Active ES2642612T3 (en) | 2014-05-09 | 2015-05-08 | Suspension and traction system, elevator that uses it and friction control procedure |
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ES (2) | ES2550527B1 (en) |
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CN115130350B (en) * | 2022-07-06 | 2023-06-20 | 广西路桥工程集团有限公司 | Nonlinear sliding calculation method of continuous cable |
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---|---|---|---|---|
GB1292959A (en) * | 1968-12-06 | 1972-10-18 | Dunlop Holdings Ltd | Improvements relating to magnetic support |
US3610583A (en) * | 1970-04-20 | 1971-10-05 | Cons Electric Corp | Permanent horseshoe magnet traction line haul |
GB1355039A (en) * | 1970-05-16 | 1974-06-05 | Dunlop Holdings Ltd | Conveyor handrails |
SE464045B (en) * | 1989-12-29 | 1991-02-25 | Ivano Frankovsk I Nefti Gaza | sheave |
TW222668B (en) * | 1992-03-19 | 1994-04-21 | Minnesota Mining & Mfg | |
JP3517511B2 (en) * | 1995-11-28 | 2004-04-12 | 東芝エレベータ株式会社 | Driving force transmission device, elevator, crane, cableway, cable car |
DE19837916A1 (en) * | 1998-08-20 | 2000-03-02 | Otis Elevator Co | Linear handrail drive |
US20030062226A1 (en) * | 2001-10-03 | 2003-04-03 | Stucky Paul A. | Elevator load bearing assembly having a ferromagnetic element that provides an indication of local strain |
EP2125594A2 (en) * | 2007-03-12 | 2009-12-02 | Inventio Ag | Elevator system, carrying means for an elevator system, and method for the production of a carrying means |
CN100494729C (en) * | 2007-04-05 | 2009-06-03 | 湖南科技大学 | Magnetic transmission belt |
-
2014
- 2014-05-09 ES ES201430678A patent/ES2550527B1/en not_active Expired - Fee Related
-
2015
- 2015-05-08 ES ES15382238.2T patent/ES2642612T3/en active Active
- 2015-05-08 EP EP15382238.2A patent/EP2942316B1/en active Active
Also Published As
Publication number | Publication date |
---|---|
EP2942316A2 (en) | 2015-11-11 |
EP2942316A3 (en) | 2016-02-17 |
ES2642612T3 (en) | 2017-11-17 |
EP2942316B1 (en) | 2017-07-19 |
ES2550527A1 (en) | 2015-11-10 |
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