1. Technical Field
The present invention relates to the field of household appliances, and in particular, to a refrigerator having a mullion bar.
2. Related Art
A problem exists in a multi-door refrigerator: there is a gap between doors that are arranged on the left and right sides, and leakage of cool air needs to be prevented. A common method is to pivotally arrange a sealing mullion bar on one of the doors, and the mullion bar needs to pivot to a certain angle in the process of opening or closing the door. To ensure that the mullion bar can pivot normally, a torsion spring is arranged on a pivot between the mullion bar and the door, so that the mullion bar is maintained in a pivoting state under an elastic force of the torsion spring. To prevent formation of dew or frost on the mullion bar, a heating wire is arranged inside the mullion bar, and a cable is introduced from the outside of the mullion bar to provide power for the heating wire. As the number of times of rotation of the mullion bar increases, the cable is easily worn out or even broken, which affects defrosting of the mullion bar and results in potential electrical hazards.
To solve at least one problem in the prior art, the present invention provides a refrigerator which has a good appearance and can reduce potential electrical hazards caused by rotation of the mullion bar.
To achieve the foregoing objectives, the present invention provides a refrigerator, having a door, where one side of the door is connected to a rotatable mullion bar, a cable is arranged inside the mullion bar, and the cable is connected to the inside of the door by a cable-connecting part between the mullion bar and the door, characterized in that a shell forming the mullion bar has a first accommodating part that extends along a rotation axis of the mullion bar, and the cable is at least partially received in the first accommodating part.
A part of the cable is received in the first accommodating part that extends along the rotation axis of the mullion bar, and when the mullion bar rotates, the rotation axis of the mullion bar passes through the first accommodating part, and the part of the cable can rotate along with the rotation of a rotatable part of the cable-connecting part, where the part of the cable and the rotatable part rotate about a same rotation axis, so that excessive friction between the cable and the rotatable part of the cable-connecting part is prevented, thereby prolonging the service life of the cable. Because a part of the cable is received in the first accommodating part, the cable is kept away from a heat insulation part and a connecting part inside the mullion bar, so that the arrangement of the heat insulation part and the connecting part inside the mullion bar is not affected by the layout of the cable, which is conducive to the manufacturing consistency of products.
Optionally, the cable between the heating wire and the cable-connecting part is bent at least once to form a first segment and a second segment, where the second segment close to the cable-connecting part is almost completely located inside the first accommodating part. The bending is carried out in the following manner: the cable directly extends from the connecting point with the heating wire to the first accommodating part, and then is bent to form the second segment, so that the second segment passes along an extending direction of the first accommodating part until it passes through the cable-connecting part. The length of the second segment of the cable that is located inside the first accommodating part should be as long as possible, because provided that the rotating amplitude is fixed, the longer the cable length is, the smaller the amount of deformation per unit length of the cable is. Another cable bending manner is: the cable firstly extends a small distance in a direction away from the cable-connecting part, and then is bent and enters the first accommodating part. According to this manner, the length of the second segment of the cable is increased while making use of the space of the first accommodating part as much as possible, so that the amount of deformation per unit length of the cable located inside the first accommodating part is minimized during rotation.
Optionally, the second segment of the cable is parallel to the rotation axis of the mullion bar, so as to reduce friction between the cable and the cable-connecting part during rotation.
Optionally, the shell of the mullion bar further has a second accommodating part for accommodating a part of the cable-connecting part, and a shell of the second accommodating part extends along the rotation axis of the mullion bar to form a shell of the first accommodating part. In this way, a good appearance is provided, and there is no gap between the second accommodating part and the first accommodating part, which is conducive to the protection of the cable.
Optionally, at least a pivot mechanism is further arranged between the door and the mullion bar, the shell of the first accommodating part further extends along the rotation axis of the mullion bar to form a third accommodating part, and the rotatable part of the pivot mechanism is received in the third accommodating part. The pivot mechanism enhances the strength of connection between the mullion bar and the door. In addition, two pivot mechanisms may be arranged in symmetry on two sides of the cable-connecting part, and to prevent excessive extension of the protruding shell, the accommodating part of the other pivot mechanism is arranged independently.
Optionally, the pivot mechanism is a pivot mechanism having a torsion spring.
Optionally, the shell of the second accommodating part, the shell of the first accommodating part, and the shell of the third accommodating part form an integral structure, which provides a good appearance and is easy to manufacture.
Optionally, a heating wire is arranged inside the mullion bar, a fixing part is arranged at a position where the heating wire and the cable are connected, and one end of the cable is fixed onto the fixing part.
Optionally, a part of the cable-connecting part is a hollow cylinder, which is received in the second accommodating part. The second segment of the cable that is received in the first accommodating part may enter a hollow passageway inside the cylinder in a parallel manner, so that friction between the cable and the rotatable part of the cable-connecting part during rotation can be prevented as much as possible.
Optionally, the cable passes through the cable-connecting part and is connected to a control apparatus located inside the door.
The structure, other objectives and beneficial effects of the present invention will be more readily understood from the description of the preferred embodiments with reference to the accompanying drawings.
The present invention will become more fully understood from the detailed description given herein below for illustration only, and thus are not limitative of the present invention, and wherein:
To make the objectives, solutions and beneficial effects of the present invention more comprehensible, the present invention is further described below with reference to
A rotatable part 24 (as shown in
Number | Date | Country | Kind |
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201320466203.0 | Jul 2013 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/IB2014/063186 | 7/17/2014 | WO | 00 |