HINGE ASSEMBLY FOR A DOOR OF A REFRIGERATING COMPARTMENT
20230091630 · 2023-03-23
Assignee
Inventors
Cpc classification
E05D2011/085
FIXED CONSTRUCTIONS
E05F1/063
FIXED CONSTRUCTIONS
E05D7/081
FIXED CONSTRUCTIONS
E05D11/084
FIXED CONSTRUCTIONS
F16F9/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25D23/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
E05D11/08
FIXED CONSTRUCTIONS
E05D7/081
FIXED CONSTRUCTIONS
E05F1/06
FIXED CONSTRUCTIONS
E05F5/02
FIXED CONSTRUCTIONS
F16F9/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A hinge assembly for a door, the hinge assembly including a hinge pin arranged to be fixed to the door at one end and having a pin connector part at an opposite second end. A rotation damper connected to a damper connector part arranged to cooperate with the pin connector part for transferring torque around an axis of rotation between the damper connector part and the pin connector part throughout an opening angle of the door, such that a rotational movement of the damper connector part about the axis of rotation in at least a first rotational direction is dampened by the rotation damper. The pin connector part and the damper connection part allow an initial closing angle of rotation of the door before the damper acts on the rotation of the hinge pin, the initial closing angle being at least 2°.
Claims
1. A hinge assembly for a door arranged to facilitate opening and closing the door when attached to a refrigerating compartment, wherein the hinge assembly comprises: a hinge pin of a substantially elongated shape, arranged to be fixed to the door at one end and having a pin connector part at an opposite second end, wherein a first axis comprises a longitudinal center-axis of the hinge pin; a rotation damper arranged to be fixed to a frame part of the refrigerating compartment, wherein the rotation damper is connected to a damper connector part arranged to cooperate with the pin connector part for transferring torque around a second axis of rotation between the damper connector part and the pin connector part throughout an opening angle of the door, such that a rotational movement of the damper connector part about the second axis of rotation in at least a first rotational direction is dampened by the rotation damper; wherein the pin connector part and the damper connection part are arranged to allow an initial closing angle of rotation of the door before the rotation damper acts on the rotation of the hinge pin, the initial closing angle being at least 2°, and the initial closing angle being an angle of rotation of the door towards a closed position thereof immediately after an opening rotation of the door in an opposite direction of rotation.
2. The hinge assembly according to claim 1, wherein one of the pin connector part and the damper connector part comprises one or more protrusions extending radially in a direction perpendicular to a longitudinal center-axis of the one of the pin connector part and the damper connector part, and wherein the other of the pin connector part and the damper connector part comprises one or more recesses in one or more walls thereon, wherein each of the one or more protrusions is positioned within one of the one or more recesses during any axial movement and rotational movement of the hinge assembly, the one or more protrusions are arranged to engage with the one or more walls of the other of the damper connector part and the damper connector part upon rotational movement of the hinge pin such that the one of the pin connector part and the damper connector part is forced into a rotational movement about the second axis of rotation, and wherein a radial width of the one or more protrusions is smaller than a radial width of the corresponding one or more recesses, thereby allowing for the initial closing angle of rotation of the door.
3. The hinge assembly according to claim 1, wherein the pin connector part is arranged with the damper connector part so as to allow a tilting of the hinge pin independently of the damper connector part without the tilting causing a torque between the pin connector part and the damper connector part, wherein the tilting may amount to angle between the first axis of the hinge pin and the second axis of rotation of the damper connector part of at least 5°.
4. The hinge assembly according to claim 3, wherein one of the pin connector part and the damper connection part comprises one or more walls surrounding the other of the pin connector part and the damper connector part, wherein a tilting space is concentrically provided between the pin connector part and the damper connector part, wherein the tilting space allows for tilting of the hinge pin independent of the damper connector part.
5. The hinge assembly according to claim 1, further comprising a self-closing mechanism comprising a first sloping surface arranged to rotate with the door and a second sloping surface directed towards the first sloping surface and arranged to be stationary with respect to the refrigerating compartment, wherein the first sloping surface and the second sloping surface are arranged to be in abutment such that a rotational movement of the door relative to refrigerating compartment provides an axial displacement of the door relatively to the refrigerating compartment in a vertical direction.
6. The hinge assembly according to claim 2, wherein the one or more recesses are of a shape allowing at least axial movement of the one or more protrusions within the one or more recesses, provides a guiding slot in the said damper connector part in which the one or more protrusions of the pin connector part can move, so that a rotational movement of the hinge pin in turn forces the damper connector part into a rotational movement about the second axis of rotation caused by an interaction between the one or more protrusions and the one or more walls.
7. A refrigerating compartment comprising: a frame part; at least one door connected with the frame part, wherein the at least one door is provided with a hinge assembly comprising: a hinge pin of a substantially elongated shape, arranged to be fixed to the door at one end and having a pin connector part at an opposite second end, wherein a first axis comprises a longitudinal center-axis of the hinge pin; a rotation damper arranged to be fixed to a frame part of the refrigerating compartment, wherein the rotation damper is connected to a damper connector part arranged to cooperate with the pin connector part for transferring torque around a second axis of rotation between the damper connector part and the pin connector part throughout an opening angle of the door, such that a rotational movement of the damper connector part about the second axis of rotation in at least a first rotational direction is dampened by the rotation damper; wherein the pin connector part and the damper connection part are arranged to allow an initial closing angle of rotation of the door before the rotation damper acts on the rotation of the hinge pin, the initial closing angle being at least 2°, and the initial closing angle being an angle of rotation of the door towards a closed position thereof immediately after an opening rotation of the door in an opposite direction of rotation.
8. The refrigerating compartment according to claim 7, wherein one of the pin connector part and the damper connector part comprises one or more protrusions extending radially in a direction perpendicular to a longitudinal center-axis of the one of the pin connector part and the damper connector part, and wherein the other of the pin connector part and the damper connector part comprises one or more recesses in one or more walls thereon, wherein each of the one or more protrusions is positioned within one of the one or more recesses during any axial movement and rotational movement of the hinge assembly, the one or more protrusions are arranged to engage with the one or more walls of the other of the damper connector part and the damper connector part upon rotational movement of the hinge pin such that the one of the pin connector part and the damper connector part is forced into a rotational movement about the second axis of rotation, and wherein a radial width of the one or more protrusions is smaller than a radial width of the corresponding one or more recesses, thereby allowing for the initial closing angle of rotation of the door.
9. The refrigerating compartment according to claim 7, wherein the pin connector part is arranged with the damper connector part so as to allow a tilting of the hinge pin independently of the damper connector part without the tilting causing a torque between the pin connector part and the damper connector part, wherein the tilting may amount to angle between the first axis of the hinge pin and the second axis of rotation of the damper connector part of at least 5°.
10. The refrigerating compartment according to claim 9, wherein one of the pin connector part and the damper connection part comprises one or more walls—surrounding the other of the pin connector part and the damper connector part, wherein a tilting space is concentrically provided between the pin connector part and the damper connector part, wherein the tilting space allows for tilting of the hinge pin independent of the damper connector part.
11. The refrigerating compartment according to claim 7, further comprising a self-closing mechanism comprising a first sloping surface arranged to rotate with the door and a second sloping surface directed towards the first sloping surface and arranged to be stationary with respect to the refrigerating compartment, wherein the first sloping surface and the second sloping surface are arranged to be in abutment such that a rotational movement of the door relative to refrigerating compartment provides an axial displacement of the door relatively to the refrigerating compartment in a vertical direction.
12. The refrigerating compartment according to claim 10, wherein the one or more recesses are of a shape allowing at least axial movement of the one or more protrusions within the one or more recesses, provides a guiding slot in the damper connector part in which the one or more protrusions of the pin connector part can move, so that a rotational movement of the hinge pin in turn forces the damper connector part into a rotational movement about the second axis of rotation caused by an interaction between the one or more protrusions and the one or more walls.
13. The refrigerating compartment according to claim 7, wherein the initial closing angle is in the range of 3° to 20°.
14. The refrigerating compartment according to claim 7, wherein the initial closing angle is in the range of 4° to 8°.
15. The hinge assembly according to claim 1, wherein the initial closing angle is in the range of 3° to 20°.
16. The hinge assembly according to claim 1, wherein the initial closing angle is in the range of 4° to 8°.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Aspects of the present disclosure are exemplified with reference made to the enclosed drawings of which:
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DETAILED DESCRIPTION
[0028] The refrigerating compartment 1 shown in
[0029] The hinge assembly 3 comprises a stationary hinge part 5 mounted to the frame part 10 and enclosing a rotational damper 4, which is shown in
[0030] The damper 4 is a one-way rotational damper, which is arranged for allowing undampened opening movement of the door 2 whereas the closing movement of the door 2 will, at least to a certain extent, be dampened by the damper 4.
[0031] The hinge assembly 3 is provided with a gravity-driven self-closing mechanism comprising a first sloping surface 14 arranged on the hinge mounting bracket 7 as shown in
[0032] The pin connector part 9 is provided with two protrusions 11 extending radially from the pin connector part 9 into corresponding recesses 12 in a wall part 13 of the damper connection part 6, which recesses 12 extend in an axial direction of the damper connection part 9 so as to form guiding slots for the protrusions 11 when the hinge pin 8 is moved axially with respect to the damper 4 and the damper connection part 6 during rotational movement of the door 2.
[0033] The recesses 12 has a radial width Wr which is some degrees larger than the radial width Wp of the protrusions 11 which means that when the door 2 is being opened, the protrusions 11 are in abutment with one side of the recesses 12 as shown in
[0034]
[0035] The outer diameter of the pin connector part 9 is less than the inner diameter of the wall part 13 of damper connection part 6 to allow a tilting of the hinge pin 8 independently of the damper connector part 6 as shown in
LIST OF REFERENCE NUMERALS
[0036] 1 Refrigerating compartment [0037] 2 Door of refrigerated compartment [0038] 3 Hinge assembly [0039] 4 Damper [0040] 5 Stationary hinge part [0041] 6 Damper connection part [0042] 7 Hinge mounting bracket [0043] 8 Hinge pin [0044] 9 Pin connector part [0045] 10 Frame part of refrigerating compartment [0046] 11 Protrusions on pin connector part [0047] 12 Recess [0048] 13 Wall part of damper connection part [0049] 14 First sloping surface [0050] 15 Second sloping surface [0051] 16 Acceleration stage of door closing [0052] 17 Adjustment stage of door closing [0053] 18 Constant speed stage of door closing [0054] Wp Angular extent of protrusion [0055] Wr Angular extent of recesses [0056] X1 First axis [0057] X2 Second axis of rotation