CN113865224A - Molding and refrigerator with same - Google Patents

Molding and refrigerator with same Download PDF

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Publication number
CN113865224A
CN113865224A CN202010614762.6A CN202010614762A CN113865224A CN 113865224 A CN113865224 A CN 113865224A CN 202010614762 A CN202010614762 A CN 202010614762A CN 113865224 A CN113865224 A CN 113865224A
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CN
China
Prior art keywords
end section
clamping
space
cavity
molding
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.)
Granted
Application number
CN202010614762.6A
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Chinese (zh)
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CN113865224B (en
Inventor
王常志
费斌
夏恩品
朱小兵
李康
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.)
Qingdao Haier Special Refrigerator Co Ltd
Qingdao Haier Refrigerator Co Ltd
Haier Smart Home Co Ltd
Original Assignee
Qingdao Haier Special Refrigerator Co Ltd
Qingdao Haier Refrigerator Co Ltd
Haier Smart Home Co Ltd
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.)
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Publication date
Application filed by Qingdao Haier Special Refrigerator Co Ltd, Qingdao Haier Refrigerator Co Ltd, Haier Smart Home Co Ltd filed Critical Qingdao Haier Special Refrigerator Co Ltd
Priority to CN202010614762.6A priority Critical patent/CN113865224B/en
Publication of CN113865224A publication Critical patent/CN113865224A/en
Application granted granted Critical
Publication of CN113865224B publication Critical patent/CN113865224B/en
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D23/00General constructional features
    • F25D23/006General constructional features for mounting refrigerating machinery components
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D11/00Self-contained movable devices, e.g. domestic refrigerators

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Physics & Mathematics (AREA)
  • Mechanical Engineering (AREA)
  • Thermal Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Refrigerator Housings (AREA)
  • Moulds For Moulding Plastics Or The Like (AREA)

Abstract

The invention provides a fillet and a refrigerator with the same, wherein the fillet comprises: the clamping bag is arranged in the crack space in an expandable mode, a cavity is defined in the clamping bag, and a first end section and a second end section are formed at two ends of the cavity respectively; an adjusting member sequentially passing through the first end section, the cavity and the second end section for driving the first end section and the second end section to move towards each other so that the clamping bag expands to adapt to the crack space; the shielding piece is fixedly connected with the clamping bag and used for shielding the outside of the crack space, so that the filler rod can be directly fixed at the crack space and is simple and easy to adjust. The insertion strip can reduce the installation difficulty of the device, improve the installation efficiency and save time and labor.

Description

Molding and refrigerator with same
Technical Field
The invention relates to a device mounting technology, in particular to a fillet and a refrigerator with the same.
Background
The molding is used for being installed in a crack space between the device and an installation environment so as to improve the consistency of the device and the installation environment and improve the aesthetic degree of the installation of the device.
Part of the fillet in the prior art can be shielded outside the crack space to decorate the crack space. However, in the installation process of the molding, an additional connecting piece is needed to fix the molding, which causes great operation difficulty and low installation efficiency in the whole installation process.
Therefore, how to improve the structure of the molding to reduce the difficulty of installing the device is a technical problem to be solved by those skilled in the art.
Disclosure of Invention
An object of the present invention is to provide a molding and a refrigerator having the same that at least solves any one of the above technical problems.
A further object of the present invention is to improve the structure of the molding to reduce the difficulty of installation of the device.
It is a further object of the present invention to adapt the molding for use in a plurality of different sized crevice spaces.
It is still a further object of the present invention to simplify a mounting structure of a refrigerator and reduce manufacturing costs.
Still another object of the present invention is to improve the installation beauty of a refrigerator.
According to an aspect of the present invention, there is provided a molding for installation in a gap space, comprising: the clamping bag is arranged in the crack space in an expandable mode, a cavity is defined in the clamping bag, and a first end section and a second end section are formed at two ends of the cavity respectively; the adjusting piece sequentially penetrates through the first end section, the cavity and the second end section and is used for driving the first end section and the second end section to move towards each other so that the clamping bag expands to be adaptive to the gap space; and the shielding piece is fixedly connected with the clamping bag and used for shielding the outside of the crack space.
Optionally, the cartridge is hollow and cylindrical; the first end section and the second end section extend along the longitudinal direction and are oppositely arranged; the clamping bag is also provided with a first side wall and a second side wall which extend along the longitudinal direction and are respectively connected between the first end section and the second end section so as to form a cavity together with the first end section and the second end section; the first and second sidewalls are mirror symmetric with respect to a longitudinal central cross-section of the pod.
Optionally, the first and second sidewalls are arc-shaped plates; and the concave surface of the first sidewall is opposite to the concave surface of the second sidewall.
Optionally, a plurality of ribs are respectively formed on the outer wall surface of the first side wall and the outer wall surface of the second side wall to abut against the wall surface of the crack space; the rib extends along the longitudinal direction; and the plurality of ribs on the first side wall and the plurality of ribs on the second side wall are symmetrically distributed.
Optionally, the adjustment member is a screw, the central axis of which is located in the longitudinal central section plane of the clamp capsule; and the first end section and the second end section are respectively provided with a unthreaded hole for the adjusting piece to be screwed in.
Optionally, the depth of the light hole is greater than a set threshold.
Optionally, the shield has a longitudinally extending shield plate, which is arranged on the side of the first end section facing away from the second end section; the longitudinal center section of the main body plate surface of the shielding plate is coplanar with the longitudinal center section of the clamping bag.
Optionally, the main body panel surface of the shutter has an inner panel surface and an outer panel surface parallel to each other, the inner panel surface being opposite the first end section; the shield also has a latch extending from the inner panel surface toward the first end section in a direction perpendicular to the main body panel surface of the shield; the fillet also comprises a connecting piece which is arranged between the first end section and the shielding plate and extends from the transverse two ends of the first end section back to the second end section towards the shielding plate so as to enclose a clamping cavity for the clamping tongue to extend into with the shielding plate; the inner side of the clamping cavity is provided with a clamping jaw clamped with the clamping tongue.
Optionally, the clamping bags are multiple and are uniformly distributed at intervals along the longitudinal direction.
According to another aspect of the present invention, there is also provided a refrigerator including: at least one molding as in any above for a crevice space between a refrigerator and an installation environment.
The invention relates to a molding and a refrigerator with the same. Wherein the clamping bag is used for being arranged in the crack space in an expandable mode, and a cavity is defined in the clamping bag. The adjustment may adjust a distance between the first end section and the second end section of the pinch bladder such that the pinch bladder expands to conform to the nip space. The shielding piece is fixedly connected with the clamping bag and used for shielding the outer side of the crack space. In the installation process, the clamping bag can be propped against the wall surface of the crack space through expansion so as to prop the shielding piece outside the crack space, so that the insertion strip can be directly fixed at the crack space and is simple and easy to adjust. The insertion strip can reduce the installation difficulty of the device, improve the installation efficiency and save time and labor.
Further, the filler rod and the refrigerator with the filler rod can adjust and control the expansion degree of the clamping bag by using the adjusting piece, so that the filler rod can be suitable for a plurality of crack spaces with different sizes. And the clamping bags can be distributed uniformly at intervals along the longitudinal direction, and the expansion degrees of the clamping bags are respectively adjusted, so that the clamping bags can adapt to a complex bending crack space, the adaptability of the insertion strip is improved, and the installation integrity of the refrigerator is enhanced.
The above and other objects, advantages and features of the present invention will become more apparent to those skilled in the art from the following detailed description of specific embodiments thereof, taken in conjunction with the accompanying drawings.
Drawings
Some specific embodiments of the invention will be described in detail hereinafter, by way of illustration and not limitation, with reference to the accompanying drawings. The same reference numbers in the drawings identify the same or similar elements or components. Those skilled in the art will appreciate that the drawings are not necessarily drawn to scale. In the drawings:
FIG. 1 is a schematic illustration of a slug, according to one embodiment of the present invention;
FIG. 2 is an exploded view of the molding shown in FIG. 1;
figure 3 is a schematic view of the bladder and attachment of the molding of figure 1;
FIG. 4 is another schematic view of the slug shown in FIG. 1;
FIG. 5 is an enlarged view of a portion of FIG. 4 at A;
figure 6 is a schematic view of the blanking member of the molding shown in figure 1;
fig. 7 is a schematic view of a refrigerator according to one embodiment of the present invention.
Detailed Description
Figure 1 is a schematic illustration of a molding 10 according to one embodiment of the present invention. The molding 10 is provided for installation in a crack space. The molding 10 of the present embodiment is adapted to be installed at a gap space between a device and an installation environment, for example, a gap space between a device and a cabinet, a gap space between a device and a wall, a gap space between a device and another device, or a gap space between a plurality of devices, for improving the uniformity of the device and the installation environment, thereby improving the aesthetic appearance of the installation of the device. The molding 10 of the present embodiment may be applied to various apparatuses, such as a refrigerator 70, an air conditioner, and other home appliances, and may be applied to any other apparatuses, particularly, to an embedded type combination refrigerator 70.
The molding 10 can be used for both vertically and horizontally extending and diagonally extending joint spaces. The embodiment is merely illustrated by way of example for a molding 10 suitable for use in a vertically extending nip space, and it will be appreciated by those skilled in the art that the embodiment is fully capable of expanding to other nip spaces, and is not shown here.
Figure 2 is an exploded view of the molding 10 shown in figure 1.
The molding 10 may generally include a bladder 200, an adjuster 400, and a shield 300, and may further include a connector 500. Wherein the pinch bag 200 is adapted to be expandably disposed within the nip space. The adjusting member 400 is used to adjust the shape of the pod 200 to conform the pod 200 to the nip space. The shielding member 300 is fixedly connected with the clamping bag 200 and used for shielding the outside of the crack space. The connector 500 may be one-piece with the clip bladder 200. The clip bladder 200 may be made of a resilient material, such as rubber, plastic, or any other novel resilient material. The connector 500 and shield 300 may be made of the same material as the clip bladder 200 or may be made of other materials such as stainless steel.
Figure 3 is a schematic view of the clip bladder 200 and attachment 500 of the molding 10 shown in figure 1.
The clip bladder 200 has a hollow cylindrical shape and extends in the longitudinal direction. The "longitudinal direction" is relative to the actual use state of the molding 10, and in the present embodiment, the longitudinal direction may be substantially a vertical direction. That is, the extending direction of the cylinder of the cartridge 200 may be the same as the extending direction of the nip space. The clip 200 may be substantially hollow cylindrical, substantially hollow elliptical cylindrical, or any other hollow cylindrical shape. The two longitudinal ends of the clamping bag are open.
The interior of the pod 200 defines a cavity 210. The interior of the cartridge 200 is a cavity 210. And the cavity 210 directly communicates with the outside through openings at both longitudinal ends of the clip bladder 200.
The pod 200 includes a first end section 250, a second end section 240, a first sidewall 220, and a second sidewall 230. The first end section 250, the second end section 240, the first sidewall 220, and the second sidewall 230 all extend in a longitudinal direction, collectively enclosing the cavity 210. The bladder 200 forms a first end section 250 and a second end section 240, respectively, at both ends of the cavity 210. That is, the first end section 250 and the second end section 240 are oppositely disposed. The first sidewall 220 and the second sidewall 230 are oppositely disposed. And the first end section 250 and the second end section 240 may be oppositely disposed along the anteroposterior extension direction of the clip bladder 200, and the first sidewall 220 and the second sidewall 230 may be oppositely disposed along the lateral extension direction of the clip bladder 200. The "front-rear extending direction" and the "lateral extending direction" are both substantially horizontal with respect to the actual use state of the molding 10, and may be perpendicular to each other.
The molding 10 in use, the first end section 250, the second end section 240, the first sidewall 220, and the second sidewall 230 all extend in a vertical direction. The second end section 240 may be located at the front end of the clip bladder 200 and form the head of the clip bladder 200, and the first end section 250 may be located at the rear end of the clip bladder 200 and form the tail of the clip bladder 200. During installation of the molding 10, the second end section 240 enters the nip space first, while the first end section 250 enters later. The first end section 250 and the second end section 240 may be rectangular parallelepiped blocks extending in the longitudinal direction on the clip bladder 200, having set lengths in the lateral extension direction and the front-rear extension direction of the clip bladder 200.
In some alternative embodiments, first end section 250 may be bullet-shaped, which may be advantageous to further reduce frictional resistance as cartridge 200 enters the nip space, facilitating insertion of cartridge 200 into the nip space.
The first and second sidewalls 220, 230 are connected between the first and second end sections 250, 240, respectively, to cooperatively enclose the cavity 210 with the first and second end sections 250, 240. In this embodiment, the first side wall 220 extends from one lateral end of the first end section 250 to one lateral end of the second end section 240, and the second side wall 230 extends from the other lateral end of the first end section 250 to the other lateral end of the second end section 240 to be symmetrically disposed with respect to the first side wall 220.
The outer wall surfaces of the first and second side walls 220, 230 are smoothly and transitionally connected with the outer wall surface of the first end section 250 and the outer wall surface of the second end section 240, respectively, which is advantageous for reducing the frictional resistance when the cartridge 200 enters the nip space.
The first sidewall 220 and the second sidewall 230 are mirror symmetric with respect to a longitudinal center section of the pod 200. Wherein the position of the longitudinal central section of the cartridge 200 is shown in dashed lines in figure 1. The longitudinal central cross-section of the clip capsule 200 may lie in a plane that is the median sagittal plane of the entire slug 10, and is a cross-section that divides the slug 10 into left and right halves. The first sidewall 220 may be located to the left of the longitudinal center section and the second sidewall 230 may be located to the right of the longitudinal center section. The longitudinal center section of the clip bladder 200 also divides the first end section 250 and the second end section 240 into two left and right halves.
The first side wall 220 and the second side wall 230 are arc-shaped plates. And the concave surface of the first sidewall 220 is opposite to the concave surface of the second sidewall 230. The concave surface of the first arc-shaped plate and the concave surface of the second arc-shaped plate form the inner wall of the clamping bag 200, and the convex surface of the first arc-shaped plate and the convex surface of the second arc-shaped plate form the outer wall of the clamping bag 200, so that the cavity 210 of the clamping bag 200 is approximately in an outward convex shape.
The concave surface of the first side wall 220 and the concave surface of the second side wall 230 are oppositely arranged so that the cavity 210 of the pod 200 is generally convex, and when the first end section 250 and the second end section 240 are moved towards each other by the adjustment member 400, the curvature of the first side wall 220 and the second side wall 230 increases so that the pod 200 expands laterally outwards to abut against the wall surface of the nip space. Here, "laterally outward" is relative to the actual usage state of the clip bladder 200, and may be a direction extending in a horizontal direction toward the outside of the cavity 210.
A plurality of ribs 260 are formed on the outer wall surfaces of the first and second sidewalls 220 and 230, respectively, to abut against the wall surfaces of the nip space. The ribs 260 may be integrally formed with the first and second sidewalls 220 and 230, and may be formed to protrude outward from the outer wall surfaces of the first and second sidewalls 220 and 230, for example. The ribs 260 may increase the roughness of the outer wall surfaces of the first and second sidewalls 220 and 230, thereby improving the stability of the installation of the molding 10.
In this embodiment, the ribs 260 may extend in the longitudinal direction. The longitudinal length of the ribs 260 can be set according to actual needs and can be slightly less than the longitudinal length of the first and second sidewalls 220, 230. And the plurality of ribs 260 on the first sidewall 220 and the plurality of ribs 260 on the second sidewall 230 are symmetrically distributed.
The number of the ribs 260 can be set according to actual needs, and the number of the ribs 260 on the first side wall 220 and the second side wall 230 can be any value within a range of 1 to 10, for example, can be 3.
The adjustment member 400 passes through the first end section 250, the cavity 210 and the second end section 240 in sequence for bringing the first end section 250 and the second end section 240 towards each other so that the clip bladder 200 expands to conform to the nip space.
That is, the adjuster 400 is inserted through the first end section 250 and the second end section 240 of the clip bladder 200 in the front-rear extending direction of the clip bladder 200. Since the first end section 250 and the second end section 240 are disposed opposite to each other in the front-rear extending direction of the clip bladder 200, the first side wall 220 and the second side wall 230 are disposed opposite to each other in the lateral extending direction of the clip bladder 200. When the first end section 250 and the second end section 240 move toward each other, the first side wall 220 and the second side wall 230 of the clip bag 200 protrude outward in the transverse direction, which can increase the length of the clip bag 200 in the transverse extending direction, thereby reducing the distance between the clip bag 200 and the wall surface of the nip space.
The adjustment member 400 may be a screw, for example, a self-tapping screw. The central axis of the adjustment member 400 is located in the longitudinal central section of the pod 200. And the first end section 250 and the second end section 240 are respectively provided with a light hole 245 into which the adjusting member 400 is screwed. The central axis of the light hole 245 is also located within the longitudinal central cross-section of the clip bladder 200. The screw has a main body portion for mating with the light hole 245 and a head portion at one end of the main body portion. The outer peripheral edge of the main body portion is formed with external threads. The head is formed with a cross slot or a straight slot for mating with a wrench tool. The tail section of the body portion distal from the head portion is adapted to screw into the light aperture 245 of the first end section 250 and the head section of the body portion proximal to the head portion is adapted to screw into the light aperture 245 of the second end section 240.
The depth of the light hole 245 may be greater than a set threshold. The adjustment member 400 may adjust the degree of expansion of the clip bladder 200 in the laterally extending direction by tapping within the aperture 245. An appropriate increase in the depth of the light hole 245 facilitates an increase in the stability of the connection between the adjuster 400 and the first and second end sections 250, 240, thereby increasing the structural stability of the clip bladder 200. The set threshold value can be correspondingly set according to the actual size of the adjusting piece, and can be any value within the range of 0.1-0.5 times of the length of the main body part of the adjusting piece.
Figure 4 is another schematic view of the molding 10 shown in figure 1, figure 5 is an enlarged view of a portion of figure 4 at a, and figure 6 is a schematic view of the shroud 300 of the molding 10 shown in figure 1.
The shield 300 has a shield plate 310 and a latch 320. The shielding plate 310 may be a flat plate extending in the longitudinal direction and disposed on a side of the first end section 250 opposite to the second end section 240. The longitudinal center section of the body panel of the shield 310 is coplanar with the longitudinal center section of the pod 200. And the shield 300 as a whole may be symmetrically distributed about the plane of the longitudinal central section of the cartridge 200.
When the bag 200 is inserted into the gap space, the shielding plate 310 is located outside the gap space to shield the gap space for decoration.
Since the cartridge 200 may abut against the wall surface of the nip space, there is a frictional force between the outer wall surfaces of the first and second sidewalls 220 and 230 of the cartridge 200 and the wall surface of the nip space. The friction force of the clamping bag 200 can be balanced with the self-gravity of the clamping bag 200 to fix the clamping bag 200, and the shielding piece 300 is fixedly connected with the clamping bag 200 or is integrated with the clamping bag 200, so that the shielding piece 300 can be fixed outside the crack space by means of the propping action between the clamping bag 200 and the crack space. The molding 10 of this embodiment can be directly fixed in the gap space and is simple and easy to adjust. By adopting the insertion strip 10 of the embodiment, the installation difficulty of the device can be reduced, the installation efficiency can be improved, and time and labor can be saved.
The longitudinal length of the shutter 310 may be adapted to the longitudinal length of the nip space (e.g., the longitudinal lengths may be the same). The longitudinal length may refer to a vertical length.
The longitudinal length of the clamping pocket 200 may be less than the longitudinal length of the shielding plate 310, for example, the clamping pocket 200 may be one, and the longitudinal length of the clamping pocket 200 may be 0.5 to 0.9 times the longitudinal length of the shielding plate 310, which is advantageous for reducing the volume of the molding 10 and saving the manufacturing cost.
In this embodiment, the number of the clipping bags 200 may be multiple, and the clipping bags 200 may be uniformly distributed at intervals along the longitudinal direction (i.e. the extending direction of the shielding plate 310), and the longitudinal length of the clipping bags 200 may be 0.01 to 0.1 times the longitudinal length of the shielding plate 310. By adjusting the degrees of expansion of the plurality of clipping bladders 200, the clipping bladders 200 can be adapted to a complicated curved clipping space, which is advantageous in improving the adaptability between the molding 10 and the clipping space.
In other alternative embodiments, the longitudinal length of the clamping bag 200 may be equal to the longitudinal length of the shielding plate 310, which may increase the contact area between the clamping bag 200 and the crack space, thereby improving the supporting effect between the clamping bag 200 and the crack space and improving the installation stability.
The main body panel of the shutter 310 has an inner panel and an outer panel that are parallel to each other, the inner panel being opposite the first end section 250. The outer plate surface is exposed outside the crack space.
The shield 300 also has a latch 320 extending from the inner plate face in a direction perpendicular to the main body plate face of the shield 310 towards the first end section 250. The connector 500 of the molding 10 is disposed between the first end section 250 and the shielding plate 310 and extends from both lateral ends of the first end section 250 facing away from the second end section 240 toward the shielding plate 310 to enclose with the shielding plate 310 a clamping cavity 510 into which the clamping tongue 320 protrudes. The inner side of the clamping cavity 510 is formed with a jaw 520 which is clamped with the clamping tongue 320, so that the clamping tongue 320 is clamped with the jaw 520, thereby fixedly connecting the shade 300 to the clamping bag 200.
Fig. 7 is a schematic view of a refrigerator 70 according to one embodiment of the present invention.
The refrigerator 70 includes a molding 10 for providing a crevice space between the refrigerator 70 and an installation environment. The installation environment may refer to a cabinet or a wall, or may refer to another refrigerator 70 in the combination refrigerator 70.
The refrigerator 70 of the present embodiment may be a combination refrigerator 70, and the number of the combination refrigerators 70 may be any value greater than or equal to 2. The present embodiment is only illustrated with two combination refrigerators 70, and those skilled in the art should be able to arrange other combination refrigerators 70 based on the understanding of the present embodiment, and the description is not repeated here.
A gap space exists between each of the refrigerators 70 in the combination refrigerator 70. The molding 10 may be provided in a gap space of the combination refrigerator 70 and may be installed in a gap space between the refrigerator 70 and the cabinet to enhance the integrity of the installation of the refrigerator 70.
In the installation process of the refrigerator 70, after each refrigerator 70 in the combination refrigerator 70 is fixed, the clamping pocket 200 of the molding 10 can be inserted into the gap space of the combination refrigerator 70, and the clamping tongue 320 of the shielding piece 300 is clamped with the clamping jaw 520 of the connecting piece 500, so that the installation of the combination refrigerator 70 can be completed, and the whole operation process is very simple.
In some alternative embodiments, the combination refrigerator 70 may further include a fastener for coupling the top end of the molding 10 to the refrigerator 70, so that the mounting stability of the molding 10 may be further enhanced.
The molding 10 of the present embodiment and the refrigerator 70 having the same, the molding 10 includes a cartridge 200, a regulator 400, and a shutter 300. Wherein the clip bladder 200 is adapted to be expandably disposed within the nip space and defines a cavity 210 therein. The adjustment member 400 may adjust the distance between the first and second ends of the clip bladder 200 such that the clip bladder 200 expands to conform to the nip space. The shielding member 300 is fixedly connected with the clamping bag 200 and used for shielding the outside of the crack space. During installation, the molding 10 of this embodiment can be secured directly in the nip space and is simple and easy to adjust, since the bladder 200 can be urged against the wall of the nip space by expansion to urge the shield 300 against the outside of the nip space. By adopting the insertion strip 10 of the embodiment, the installation difficulty of the device can be reduced, the installation efficiency can be improved, and time and labor can be saved.
Thus, it should be appreciated by those skilled in the art that while a number of exemplary embodiments of the invention have been illustrated and described in detail herein, many other variations or modifications consistent with the principles of the invention may be directly determined or derived from the disclosure of the present invention without departing from the spirit and scope of the invention. Accordingly, the scope of the invention should be understood and interpreted to cover all such other variations or modifications.

Claims (10)

1. A molding for installation in a nip space, comprising:
the clamping bag is arranged in the crack space in an expandable mode, a cavity is defined in the clamping bag, and a first end section and a second end section are formed at two ends of the cavity respectively;
an adjusting member sequentially passing through the first end section, the cavity and the second end section for driving the first end section and the second end section to move towards each other so that the clamping bag expands to adapt to the crack space;
and the shielding piece is fixedly connected with the clamping bag and used for shielding the outer side of the crack space.
2. The molding according to claim 1,
the clamping bag is in a hollow cylinder shape;
the first end section and the second end section both extend in the longitudinal direction and are oppositely arranged;
the clip bladder further having first and second longitudinally extending side walls connected between the first and second end sections, respectively, to enclose the cavity with the first and second end sections; the first and second sidewalls are mirror symmetric with respect to a longitudinal central cross-section of the clip pocket.
3. The molding according to claim 2,
the first side wall and the second side wall are arc-shaped plates; and is
The concave surface of the first sidewall is opposite the concave surface of the second sidewall.
4. The molding according to claim 2,
a plurality of convex ribs are respectively formed on the outer wall surface of the first side wall and the outer wall surface of the second side wall so as to be abutted against the wall surface of the crack space;
the rib extends along the longitudinal direction; and is
The plurality of ribs on the first side wall and the plurality of ribs on the second side wall are symmetrically distributed.
5. The molding according to claim 2,
the adjusting piece is a screw, and the central axis of the adjusting piece is positioned in the longitudinal central section of the clamping bag; and is
The first end section and the second end section are respectively provided with a unthreaded hole for the adjusting piece to be screwed in.
6. The molding according to claim 5,
the depth of the light hole is larger than a set threshold value.
7. The molding according to claim 2,
the shield has a longitudinally extending shield plate arranged on the side of the first end section facing away from the second end section; the longitudinal center section of the main body plate surface of the shielding plate is coplanar with the longitudinal center section of the clamping bag.
8. The molding according to claim 7,
the main body panel surface of the shielding plate is provided with an inner panel surface and an outer panel surface which are parallel to each other, and the inner panel surface is opposite to the first end section;
the shield also has a latch extending from the inner panel surface in a direction perpendicular to the main body panel surface of the shield toward the first end section;
the fillet further comprises a connecting piece, the connecting piece is arranged between the first end section and the shielding plate, and extends from the transverse two ends of the first end section back to the second end section towards the shielding plate so as to enclose a clamping cavity into which the clamping tongue extends; and a clamping jaw clamped with the clamping tongue is formed on the inner side of the clamping cavity.
9. The molding according to claim 1,
the clamp bags are multiple and are uniformly distributed at intervals along the longitudinal direction.
10. A refrigerator, characterized by comprising:
molding according to any one of claims 1 to 9, intended to be arranged in a crevice space between the refrigerator and an installation environment.
CN202010614762.6A 2020-06-30 2020-06-30 Filler rod and refrigerator with same Active CN113865224B (en)

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CN202010614762.6A CN113865224B (en) 2020-06-30 2020-06-30 Filler rod and refrigerator with same

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Application Number Priority Date Filing Date Title
CN202010614762.6A CN113865224B (en) 2020-06-30 2020-06-30 Filler rod and refrigerator with same

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CN113865224A true CN113865224A (en) 2021-12-31
CN113865224B CN113865224B (en) 2023-06-16

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