WO2014173180A1 - Dispositif d'interception d'impuretés et panier de lavage doté d'une fonction d'interception d'impuretés - Google Patents

Dispositif d'interception d'impuretés et panier de lavage doté d'une fonction d'interception d'impuretés Download PDF

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Publication number
WO2014173180A1
WO2014173180A1 PCT/CN2014/000435 CN2014000435W WO2014173180A1 WO 2014173180 A1 WO2014173180 A1 WO 2014173180A1 CN 2014000435 W CN2014000435 W CN 2014000435W WO 2014173180 A1 WO2014173180 A1 WO 2014173180A1
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WO
WIPO (PCT)
Prior art keywords
basket
washing
impurity
filter
water
Prior art date
Application number
PCT/CN2014/000435
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English (en)
Chinese (zh)
Inventor
张绮童
Original Assignee
Zhang Qitong
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 Zhang Qitong filed Critical Zhang Qitong
Publication of WO2014173180A1 publication Critical patent/WO2014173180A1/fr

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Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J43/00Implements for preparing or holding food, not provided for in other groups of this subclass
    • A47J43/24Devices for washing vegetables or the like

Definitions

  • Impurity retainer and washing basket having the function of retaining impurities
  • the invention titled “Dishwashing method capable of splitting and capable of splitting and separating impurities and machine for carrying out the method” discloses a method for cleaning fruits and vegetables and applying the method Washing machine.
  • a method and a machine for separating various impurities from fruits and vegetables to be placed in different spaces during the cleaning process discloses a method for cleaning fruits and vegetables and applying the method Washing machine.
  • a method and a machine for separating various impurities from fruits and vegetables to be placed in different spaces during the cleaning process and the present invention is an assembly for use in the novel vegetable washing machine.
  • the first category pesticide viruses that are invisible to the naked eye, such as pesticides and bacteria on the surface of fruits and vegetables, are called Class A impurities; the second category is visible to the naked eye.
  • Class C impurities such as yellow leaf weed hair worms mixed in vegetables and so on.
  • the water and impurities in the first pot can be dumped and then filled with a basin of water and then repeated (X operation + Y operation) for the second washing process.
  • X operation + Y operation the washing of vegetables in our daily life is also the process of repeating A+B by changing water several times.
  • the earliest vegetable washing machine was without mechanical moving parts, and is now called a static vegetable washing machine.
  • the purpose is to degrade the residual pesticides in fruits and vegetables.
  • the method comprises the steps of: introducing water and ozone into a closed container, and immersing the fruits and vegetables in the ozone-dissolved water, so that the pesticide remaining on the surface of the fruits and vegetables is decomposed and dissolved in water by using strong oxidation of ozone o 3 . Pour off with the water.
  • the purpose of this is to wash away the residual pesticides on the surface of vegetables, namely Class A impurities. This type of vegetable washing machine is still widely popular for sale.
  • Patent No. 912008210 discloses a vegetable washing machine with mechanical movement, which is now referred to as a dynamic vegetable washing machine.
  • the solution is as follows: a washing basket is arranged in a washing tub with a sealing cover (this washing basket is referred to as a water-permeable inner tub in the original text of the patent, and the washing tub is called a tub.
  • this article Unifiedly referred to as washing baskets and washing tubs
  • the bottom of the bucket is flat or quasi-planar.
  • the center of the bottom of the bucket has a rotating shaft that is worn from the bottom of the bottom.
  • the bottom of the bottom of the bucket is provided with a water inlet and a drain.
  • the motor and the electronic control device that drive the rotation of the washing basket are fixed with a water retaining plate on the upper inner surface of the washing tub.
  • the machine drives the washing basket to rotate, thereby forcing the water flow to be lifted by the centrifugal force from the inside of the washing basket to the gap between the basket and the barrel, and then raised to the top of the basket and then sucked back to the basket.
  • the basket is then centrifuged to the back of the basket and the crucible.
  • This cycle of reciprocating flow each cycle of each stream of water passes through the gap of the vegetables in the basket, thus forming a rapid relative movement with the surface of the fruit and vegetable.
  • To complete the X operation by separating the impurities and vegetables. (It needs to be explained here: the effect of washing is due to the friction of water, not the drop of water, and some people say that the phenomenon of falling is spray).
  • a vegetable washing machine prior to the "New Method” has a structure in which the power is placed on the basket, that is, the motor is mounted on the lid of the washing tub.
  • the structure of the washing basket is a long shaft with a rod shape protruding from the center of the bottom surface, and the shaft is engaged with the motor output shaft of the lower bottom surface of the lid.
  • the bottom surface of the paint washing bucket has a convex shaft seat which cooperates with a concave hole in the lower surface of the paint basket to carry the load on the washing basket (see Fig. 15).
  • Both of the vegetable washing machines have the characteristics of: 1. There is no function and separation space for separating the class B-type impurities. 2, washing basket The basket opening is open. After washing the vegetables with it, the Class C impurities are still mixed with the vegetables because: Class C impurities are thrown out of the basket as the water flows, and as the water flows up the basket and the barrel rises above the basket, but As the water falls back to the dishes in the basket (if the drop of water is called spray, then the water is sprayed down, the impurities are also sprayed into the basket), so no matter how many times it is washed, Finally, Class C impurities such as weed insect hair yellow leaf rotten leaves are still mixed in the vegetables; the problem of removing Class C impurities cannot be separated.
  • the "New Method” discloses a method for washing vegetables which can be separated and capable of splitting and separating impurities, including: putting fruits and vegetables into a permeable washing set in a washing tub with a sealed lid.
  • the basket is driven by the motor to rotate the washing basket, thereby forcing the water flow to be lifted by the centrifugal force from the inside of the washing basket to the gap between the basket and the barrel and then rising up to the top of the basket, and then sucked back into the basket and then centrifugally pulled into the gap between the basket and the barrel.
  • each cycle of each water flow passes through the gap of the vegetables in the basket, thereby forming a rapid relative movement with the surface of the fruits and vegetables, generating friction to destroy the adhesion and loosening of impurities on the surface of the object.
  • the clamping degree of the dish to the impurity is completed by the X operation, and is characterized by having the following three technical features of A and B and C, or at least one of the following three technical features A and B and C: the characteristic A is The method of "preventing impurities that are rubbed out of the washing basket together with water and recycling them back into the basket with water” gradually purifies the vegetables in the basket; characteristic B uses the method of "vortex center discharge" to remove sewage. B impurity; wherein C is as fruits and vegetables by forcing the method to scroll motion and centrifugal movement of the heart and in the fruit and vegetable wash basket inverted periodically.
  • the new method not only solves the problem of washing X operation (impurities and vegetable splitting), but also solves the problem of washing Y operation (impurity and separation of vegetables). And overcome the technical bias of spray washing.
  • the present invention is a specific structure for a new component of the new type of vegetable washing machine.
  • a new component in a vegetable washing machine referred to as an impurity retainer, is characterized in that: mainly consists of a filter net and a support supporting the filter net, the impurity retainer is located in the washing tub, and its size is covered or The opening of the washing basket is substantially covered, and the function of the impurity retainer is to prevent impurities which are carried by the water flow to the basket from flowing back to the washing basket and to retain impurities in the retainer.
  • the impurity retainer is a subordinate concept of the filter.
  • the impurity retainer may further have the following features: the impurity retainer is disposed in the washing tub and is attached to the washing basket
  • the pore size of the filter mesh on the filter is as small as possible under the premise that the water can flow smoothly, and the preferred range is
  • the "set" its subordinate concept includes hinged fixing, snap fixing, screwing fixing, bolt fixing, friction fixing, bolt insertion fixing, etc.; It means that the height is the position between the turning point and the falling point where the rising water flow is prevented from falling back, and the lower concept includes the washing basket mouth, the inner wall of the washing tub, and the lower surface of the upper cover of the washing tub.
  • the impurity retainer may further have the following features: the shape of the bracket of the retainer may be a concave disc-shaped skeleton, and the bottom of the disc is a filter mesh; the bracket may also be an inverted umbrella skeleton shape, corresponding to the covered umbrella fabric. The place is covered with a filter, the inverted umbrella frame, the center is a straight tubular sleeve, the outer circumference is a ring-shaped skeleton, the sleeve is connected with the skeleton by spokes, and the spokes may have one or more layers (for Increase the strength, a point in the spoke and a point on the sleeve can be welded with a supporting steel strip).
  • the bracket may also be a shallow cylindrical shape, which is sleeved or screwed or snapped into the basket mouth of the paint basket, and the filter is covered on the top of the cylinder. That is to say, the subordinate concept of "stent shape” includes a concave disk shape, an umbrella frame shape, a shallow cylindrical shape, and the like.
  • the impurity retainer may also have the following features:
  • the skeleton of the retainer is multi-layered, wherein the lowermost layer is covered with a filter mesh, and the upper layer is a ring-shaped or quasi-annular or dome-shaped plate-shaped block.
  • Water board, between the layers is an upright strip-shaped water-block connection, the water-blocking piece can have multiple strips, cross-shaped to form a cross type or X-shaped or m-shaped or 1 fi-shaped, etc., can also form a ring-shaped external radiation Bars and so on.
  • the washing basket with the impurity retaining function is characterized in that: the washing basket and the filter net are used, and the washing basket also serves as the supporting skeleton of the filter net, that is, the dense filter net directly covers the upward side of the washing basket, and The function of the filter is to retain the impurities brought by the water flow to the bottom of the basket and let the water flow through the filter to continue falling.
  • the washing basket with the impurity cholesteric function may also have the following features:
  • the pore size of the filter mesh meshed on the basket is as small as possible under the premise that the water can flow smoothly, and the preferred range is Between 0.1mm and 1mm, the filter and the basket are detachable.
  • the lower concept of the connection method includes the elastic band and the tight friction connection.
  • the strap is fastened and the velcro is attached.
  • the connecting button is fastened to the hook.
  • the structure on the basket with convenient filter connection cooperates with the above connection method, and the lower position of the structure includes a groove or a bottle neck or a buckle or a hook.
  • the washing basket with the impurity retaining function may also have the following features:
  • the diameter of the mesh of the filter mesh coated on the basket is as small as possible under the premise that the water can flow smoothly, and the preferred range is 0.1 mm. Between 1mm, the filter net and the basket are fixedly connected.
  • the basket circumference or the bottom of the washing basket is provided with a movable movable door for taking vegetables, and the movable door has a locking mechanism.
  • the lower concept of the locking mechanism includes Various lock buckle snap-on mechanisms are commonly known in the field of plastic commodity manufacturing.
  • claim 1 and claim 5 are both intended to solve the same problem (gp allows water flow to continue The drop and the indwelling of the impurities brought by the water flow to the mouth of the basket), according to the same technical idea (adding a filter on the way to the water drop), achieve the same effect, that is, claim 1 and claim 5 belong to one The general inventive concept.
  • the present invention is not a modified invention, but a technological invention. Because the washing machine was used before the "New Method", the technique of filtering was not used on the way of the water flow, that is, the washing machine before the "New Method” did not have any filtering device or even the whole washing on the way of the water flow. No filtering was taken during the course of the dish. That is, the present invention is not an improvement to the existing filtration device in use, and therefore the structural features of any one of the filtration devices are used to limit the inaccuracy of the present invention, and the structural features of any one of the filtration devices are protected. Less than the scope of protection that should be obtained by the present invention (ie, the extension of the concept is too small).
  • the invention is a technological technical means for increasing filtration, and the specific filtering device cannot be exhaustive, as long as the function is achieved (ie, the water flow continues to fall and the impurities which are carried by the water flow to the basket mouth) are
  • the first invention of the present invention thus defines the present invention more fully than the structural features of a particular filter device, and more precisely and more fully limits the present invention. Therefore, the present invention uses functional limitations. Statement.
  • the present invention is not a modified invention, but a technological invention. Because the vegetable washing machine was used before the "New Method", the technique of filtering was not used on the way of the water flow. That is, the vegetable washing machine before the "New Method” did not have any filtering device on the way of the water flow, that is, this The invention is not an improvement over the existing filter device in use, so the position of the filter device in claim 1 is a technical feature, and as long as the filter device is in this position, it is the first of the present invention.
  • FIG. 1 is a cross-sectional view showing a first embodiment of the present invention installed in a vegetable washing machine
  • Figure 2 is a schematic view showing the assembly of the first embodiment of the present invention in a vegetable washing machine
  • Figure 3 is a schematic cross-sectional view showing a first embodiment of the present invention
  • Figure 4 is a perspective view of the (uncoated filter) of the first embodiment of the present invention.
  • Figure 5 is a cross-sectional view showing a second embodiment of the present invention.
  • Figure 6 is a cross-sectional view showing a third embodiment of the present invention
  • Figure ⁇ is a cross-sectional view of a fourth embodiment of the present invention
  • Figure 8 is a perspective view of the fifth embodiment of the present invention as seen from obliquely above.
  • Figure 9 is a perspective view of a fifth embodiment of the present invention as seen obliquely from below
  • Figure 11 is a cross-sectional view showing a sixth embodiment of the present invention.
  • Figure 12 is a cross-sectional view showing a seventh embodiment of the present invention.
  • Wine 13 is a schematic diagram of splitting of water flow and class B-type impurities in a vegetable washing machine with an impurity retainer.
  • Figure 14 is a diagram showing the mixing cycle of water flow and Class B-based impurities in a vegetable washing machine without an impurity retainer.
  • Figure 15 is a schematic diagram of the assembly of the washing machine before the "New Method"
  • impurity retainer 2, impurity retainer; 2-1, impurity retainer central bushing; 2-2, spline card key; 2-3, impurity retainer latch; 2-4, ring skeleton; 2-5, spoke 2-6, filter; 2-7, spring; 2-8, spring claw; 2-9, impurity grouping screw thread; 2-10, impurity retainer jaw; 2-11, upper block Water ring; 2-12, middle water stop; 2-13, lower frame; 2-14, door hole 2, 15, door page; 2-16, spring; 2-17, impurity retainer and washing basket Chain shaft; 2-18, impurity retainer lock;
  • washing basket 3-1, water-sprinkling protrusion; 3-2, washing the periphery of the basket mouth; 3-3, bottleneck groove
  • 201 a centrally protruding tubular shaft of the washing basket; 202, a shaft seat disposed at the center of the bottom of the washing tub
  • the lower cavity in the cavity of the body casing 6, the lower cavity is used to set various electrical appliances and water inlet and outlet devices, and the upper cavity is used to set the washing tub 5.
  • the upper cavity is for accommodating the washing basket 3 and the miscellaneous
  • the lower chamber is provided with a tray assembly 7 and a basket lower filter 8.
  • the horizontal projection of the impurity retainer 2 is circular, and the projected area is equal to the size of the washing basket; the impurity retainer has an inverted umbrella-shaped skeleton, including: a tubular sleeve 2-1 with a straight tree center.
  • the outer circumference is a ring-shaped skeleton 2 ⁇ 4, and the spokes and the skeleton are connected by spokes 2-5, and the spokes may have one or more layers (in order to increase the strength, a certain point in the spokes and a certain point of the sleeve can be re-welded There are supporting steel bars, which are not drawn in this case for the sake of simplicity and clarity.)
  • the ring-shaped skeleton and the conical surface of the spoke are fixedly covered with the filter 2-6.
  • the projected area of the filter two is also equivalent to the washing basket mouth; the plug ring 2 - 3 is located under the outer ring skeleton, when working,
  • the impurity retainer 2 covers the basket opening of the washing basket 3, and a plurality of insertion holes 3-2 are arranged around the basket opening, and the insertion holes are engaged with the pins 2-3.
  • the impurity retainer is also a power transmission component, and receives the torque from the upper shaft 1-4 through the sleeve 2-1, and then inserts the jack 3-2 around the washing basket through the pin 2-3 to torque the torque. Passed to the basket.
  • a proper gap 4 is left between the washing basket 3 and the inner wall of the washing tub 5, and the upper cover 1 of the washing ram 5 is hinged to the body through the hinge shaft 1-5, and the opening and closing of the lid is realized by rotating around the hinge shaft.
  • the buckle is tightly closed by the snapping of the spring buckle 1-6, and a waterproof sealing strip is arranged around the cover.
  • Above the cover there is a motor compartment 1-3 for accommodating the geared motor.
  • the output shaft 1-4 of the speed reducer passes through the lower bottom surface of the cover and the head is inserted into the center bushing 2-1 of the impurity retainer, the shaft and Both bushings are connected by loose splines 2-2.
  • the shaft 1-4 drives the sleeve 2-1 to rotate to drive the impurity retainer to rotate.
  • the housing body in the chamber 6 a lower cavity 7 is provided with inlet valve assembly 9-1, the washing tub in communication with the inlet pipe, the inlet pipe may be under the control of the controller 9 and the automatic washing tub 5 Water injection.
  • the controller 9 may be under the control of the controller 9 and the automatic washing tub 5 Water injection.
  • the lower chamber is further provided with a drain pipe 10 and a drain valve assembly 10-1, and the drain pipe is connected to the center of the bottom of the washing tub, or the quasi-center is connected, in this example, washing
  • the lower part of the barrel is funnel-shaped and the lowest point in the center, which can form a strong eddy current discharge effect.
  • the upper part of the front of the fuselage is provided with an operation surface wrench 23, and a corresponding controller 22 is disposed inside the surface wrench.
  • the operation of the controller is achieved by operating the buttons on the control panel.
  • the controller automatically controls the influent drain and cleaning procedures.
  • Figure 2 provides a schematic view of the first embodiment of the present invention. (For the sake of brevity, some parts of the schematic in this specification are not shown).
  • Figure 3 is a cross-sectional view of the impurity retainer of the first embodiment of the present invention.
  • the aperture of the filter mesh is not drawn to scale and is shown as an illustration.
  • Fig. 4 is a perspective view showing the impurity retainer of the first embodiment of the present invention. (The filters of Figures 1 and 4 are not shown).
  • the fruit and vegetable are placed in the washing basket, and the plug 2*3 of the impurity retainer is inserted into the insertion hole 3-2 of the washing basket mouth to cover the impurity retainer 2 at the basket mouth. Then, the lid is covered, and the output shaft ⁇ -4 of the geared motor can be easily inserted into the sleeve 2-1. Then the inlet valve is opened, and the inlet valve is closed after the water is fed to the predetermined water level under the control of the water level controller. Then When the motor starts, the output shaft 1-4 of the geared motor rotates and drives the sleeve 2 1 to rotate by loosening the splines 2 and 2 of the large gap to drive the impurity retainer 2 to rotate.
  • the latch 2-3 of the impurity ancestors is inserted downward into the socket 3-2 of the basket opening, thereby driving the entire washing basket to rotate.
  • the washing basket drives the tray to rotate. Since the tray 7 is fixed to the barrel, it serves as a support for the washing basket.
  • the C-type impurities rise up to the top of the basket along with the rising water flow, and are blocked by the water-blocking ring provided above the bucket lid or the bucket and fall back to the center to the filter screen of the impurity retainer. These impurities cannot pass through.
  • each cycle of each stream of water carries the Class B-type impurities contained in the dish out of the washing basket to the basket stopper and is retained in the impurity retainer, that is, Y operation 5 Said that these impurities are out of the way, there is no return, there is no return to the dish after leaving the dish.
  • the washing machine washing basket is set to 200 rpm, and a program is rotated for 20 minutes, about 4000 rpm, even if there is a little bit of impurities per rpm (note: there is no return of impurities, there will be no up Fall back into the basket), 4000 a little bit, the impurities are not cleaned, which is strange.
  • the water flow not only plays the role of rinsing, but also acts as an impurity porter, without the addition of an impurity retainer, the water flow only serves as a flushing action.
  • the washing basket is likened to the house of the house, the mouth of the basket is the door of the house, the washing machine without the impurity retainer, which is equivalent to the opening of the door, the door is not guarded, the bad guy constantly rushes in.
  • the washing machine of the present invention has a guard at the door of the house. People comes in and is inspected by the guards, so that the bad guys are stopped outside.
  • the impurity retainer is a faithful guard.
  • control panel 23 is predetermined to have a variety of time schemes and speed schemes to suit the needs of different users and the needs of the fruits and vegetables.
  • the protocol of this example sets the entire washing procedure for 24 minutes and runs four times. Each time the water enters the water for 1 minute and then the spin wash takes 4 minutes and then starts to open the drain valve. The water flow is rotated and drained for about one minute to complete the wash. The entire program performs a total of four times of influent-washing-drainage. Rotate clockwise and counterclockwise during 4 minutes of spin wash.
  • the above output shaft 1-4 and the sleeve 2-1 adopt a loose key with a large gap, for example, only four teeth or three teeth, etc., in order to facilitate the insertion of the sleeve 1-4, the shaft 1-4 can be conveniently inserted into the sleeve 2 ⁇ , as far as this is achieved and can be used for transmission, any other conventional known mechanical solution can be used, for example, with a shaft end cross tooth drive in the mechanical field.
  • ozone can be automatically supplied to the washing tub 5 by the ozone generator 11 for a predetermined period of time. Excess ozone residues are discharged through the filter chamber 1-1.
  • FIG. 5 is a second embodiment of the present invention.
  • the impurity retainer 2 is a concave disk-shaped member formed by a ring-shaped skeleton covering the filter mesh, and a plurality of spring claws 2-8 are disposed around the periphery, and the claws are outwardly extended by the action of the springs 2-7.
  • Open use the claw end into the basket mouth, press the filter slightly to the basket of the washing basket, and the claws 2-8 are pressed into the basket and clamp the wall to fix the purpose.
  • a schematic cross-sectional view of the claw structure (For the sake of brevity, the washing bucket cover is not shown in the figure, the gear disc and the pulley disc in this manual are not cutaway).
  • m 6 is a third embodiment of the present invention.
  • the impurity retaining device 2 is a shallow cylindrical skeleton, and the upper surface is covered with a filter mesh to form a shallow simple-shaped member, and the outer circumference of the cylinder has a thread 2-9, which can be screwed and fixed to the paint basket.
  • the inner surface of the basket has a thread on the inner surface of the basket).
  • the impurity retainer can also be directly tightened to the basket by friction.
  • the washing bucket is not shown in the cabinet).
  • FIG 7 is a fourth embodiment of the present invention.
  • the impurity retainer 2 is a concave disc-shaped member which is formed by a ring skeleton 24 covering the filter net 2-6, and is hingedly fixed to the washing basket, that is, rotated around the hinge shaft 2-17 to realize opening. Fitted, and has a lock 2-18 that can be fastened to the wash basket. (for the sake of brevity, not shown in the washing Nangai map)
  • the skeleton of the arrester is double-layered, wherein the most f-layer is a concave disc-shaped member formed by a circular skeleton 2-13 covering the filter net 24, and the upper layer is a circular plate shape.
  • the flaps ⁇ 11, between the upper and lower layers are two straight water retaining strips 2-12 that cross into a cross.
  • the claws 2-10 are stuck on the edge of the washing tub.
  • the jaws are pressed tightly (Fig. 10).
  • the entire impurity retainer has no contact with the washing basket, but it is basically covered. Throughout the basket, the impurity retainer does not rotate when the basket is rotated.
  • the arrow in the figure shows the direction of refraction after the water flow is blocked.
  • the water flow is centrifugally pulled from the basket to the gap between the washing tub and the basket, and rises along the gap to the top of the basket by the upper annular plate-shaped flap 2-11. Blocking the drop while being affected
  • the blockage of the water stop 2-12 cannot continue to rotate, thereby being forced toward the screens 2, 6, and then the water flows through the filter to continue falling, and the impurities are retained on the two 2-6.
  • Embodiment 5 can also have a variety of equivalent transformations, for example, the upper annular flap can also be changed to a round cover without an opening in the middle; for example, the upper annular flap can also be changed to a middle a quasi-annular or square-opening of a square hole, etc.; for example, two cross-over water-blocking sheets between the upper layer and the lower layer, or a plurality of water-blocking sheets may be crossed into a square shape or a circle Round and circle plus a few ribs and so on.
  • the washing basket is a bottle-shaped basket having a bottle neck
  • the filter net 2-6 is fastened to the basket mouth by a spring or elastic band 2-16
  • the groove-shaped bottle neck 3-3 is just Spring or elastic band 2-16.
  • the upper surface of the washing basket 3 is non-detachably fixed with a filter net 2-6
  • the bottom of the basket is provided with a movable door
  • the door pages 2-15 are matched with the door opening 2-14
  • the door sheet can be Open and merge can be locked at the bottom of the basket.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Food Science & Technology (AREA)
  • Cleaning By Liquid Or Steam (AREA)
  • Centrifugal Separators (AREA)

Abstract

L'invention concerne un dispositif d'interception d'impuretés (2) de laveuse de légumes, constitué d'un tamis (2-6) et d'un support destiné à soutenir ledit tamis (2-6), le dispositif d'interception d'impuretés (2) étant disposé dans un corps de lavage (5) et il est dimensionné de sorte à recouvrir l'ouverture du panier de lavage (3). L'invention concerne également un panier de lavage (3) doté d'une fonction d'interception d'impuretés, ledit panier (3) doublant comme cadre de support pour le tamis compact (2-6), ce dernier (2-6) étant disposé directement sur la surface du panier (3) tournée vers le haut. Il est hautement souhaitable que les trous du tamis (2-6) soient aussi petits que possible pour permettre le passage régulier de l'eau, de préférence entre 0,1mm et 1mm, de sorte que les impuretés entraînées par l'eau vers l'ouverture du panier de lavage soient interceptées et que l'eau continue de passer par le tamis (2-6).
PCT/CN2014/000435 2013-04-25 2014-04-23 Dispositif d'interception d'impuretés et panier de lavage doté d'une fonction d'interception d'impuretés WO2014173180A1 (fr)

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CN201310168937.5 2013-04-25
CN201310168937.5A CN104116427B (zh) 2013-04-25 2013-04-25 杂质阻留器和有阻留杂质的功能的洗涤筐

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US11089808B2 (en) 2013-04-25 2021-08-17 Qisi ZHANG Vegetable washing method capable of separating and splitting impurities, and machine for implementing same

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CN105937257B (zh) * 2016-06-01 2018-03-20 宁波欧琳实业有限公司 一种水槽
CN105937256B (zh) * 2016-06-01 2018-08-10 宁波欧琳实业有限公司 一种改进型水槽
CN109124307B (zh) * 2018-10-26 2021-07-13 珠海优特智厨科技有限公司 烹饪设备
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