CN211065758U - Supporting frame - Google Patents
Supporting frame Download PDFInfo
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- CN211065758U CN211065758U CN201920594054.3U CN201920594054U CN211065758U CN 211065758 U CN211065758 U CN 211065758U CN 201920594054 U CN201920594054 U CN 201920594054U CN 211065758 U CN211065758 U CN 211065758U
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Abstract
The utility model discloses a support frame, wherein the support frame includes that at least two hold carrier and at least one connecting piece, wherein each hold carrier and include a carrier and an extension component, wherein carrier has a high-end and a low side, wherein the extension component set up in carrier high-end, wherein the extension component with high-end with a vertical direction vertically horizontal plane that the low side formed forms an extension direction, wherein has two of extension direction in opposite directions extension component is connected in one by detachably the connecting piece.
Description
Technical Field
The utility model relates to a support frame field especially relates to can a support frame.
Background
The cabinets occupy a large space in the kitchen, which provides a work table of a certain height for carrying objects of a certain weight, and the existing cabinets are mostly made of metal materials and/or marble materials, and thus, the weight of the existing cabinets is large. In addition, the bottom of the existing cabinet is usually made of a single flat panel, and if the cabinet is directly placed on a flat kitchen floor, there is no ventilation gap between the kitchen floor and the bottom of the cabinet, so that once the liquid is remained on the bottom of the cabinet, the liquid enters the gap between the cabinet and the bottom, and the cabinet is not only easy to rot due to the partial invasion of the liquid, but also easy to grow mold.
For this reason, the bottom surface of the cabinet in the related art is generally provided with a plurality of support legs to form a gap between the bottom surface of the cabinet and the support surface by supporting the cabinet to a predetermined distance from the ground. Although a certain ventilation gap can be formed between the bottom of the cabinet and the ground by additionally arranging the supporting legs in the prior art, the supporting legs in the prior art are usually arranged integrally with the cabinet, and accordingly, the supporting legs at the bottom of the cabinet bear the weight of the whole cabinet. That is, if the four bottom corners of the bottom surface of the regular square cabinet are respectively provided with one supporting leg, the weight of the whole cabinet is concentrated on the four supporting legs, which easily causes the gravity of the whole cabinet to be concentrated on the four supporting legs, so that the four supporting legs are easily damaged, and especially when the heights of the four supporting legs are not consistent, the distribution of the bearing gravity of the four supporting legs is uneven, thereby affecting the stability of the whole cabinet. The reason why the weight of the cabinet is distributed unevenly on the supporting legs is that the weight of the whole cabinet is not symmetrical about a plurality of supporting legs, and even if the weight of the cabinet is symmetrical about two supporting legs, the supporting legs arranged on the top of the cabinet can bear different weights due to other articles placed on the cabinet. On the other hand, the reason for the support is that when the cabinet is supported by the support legs, the contact area with the cabinet is fixed, so that the stress of the support legs is concentrated, in other words, if the top surface of the support legs is regarded as a point, the support legs in the prior art can only support the cabinet in a point support manner when supporting the cabinet, and such a support manner not only can cause the above-mentioned problem of uneven distribution of the supported gravity, but also can cause stress concentration at other positions of the bottom of the cabinet due to the absence of stress points, so that the service life of the cabinet is shortened. Especially when one of the support legs is damaged, the whole cabinet is difficult to keep stable. And if the user is allowed to replace the entire cabinet, a significant expense is required for the user.
In addition, since the size of the kitchen space in each home is different, and the length, shape, etc. of the cabinets installed in the kitchen are different, although the cabinet support frame in the prior art can support the cabinets and keep the bottom surfaces of the cabinets at a certain height from the support surface, the height of the existing cabinet and the cabinet support frame is usually fixed, so that the distance between the working table of the whole cabinet and the support surface is also fixed, but different people work on the working table of the cabinet, and the requirements for the height of the working table are different. In addition, the shape of the existing cabinet support frame is usually matched with the shape and length of the cabinet, that is, one type of support frame can only adapt to one type of cabinet with one length and shape, which increases the production cost of the supplier of the cabinet support frame.
More importantly, the existing support frame generally forms a regular support area according to the formation of the supported object to support the supported object, so that the bottom of the gravity center position of the supported object is easily not supported by the support frame, which inevitably affects the stability of the support frame and the service life of the support frame.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a support frame, wherein the support frame can form different shapes according to the shape of by the support to make the bottom that corresponds by the focus position of by the support can be supported by the support frame is stable.
Another object of the present invention is to provide a supporting rack, wherein the supporting rack can be assembled quickly according to the structural features of the supporting object, and can stably support at least one supported object.
Another object of the present invention is to provide a supporting frame, wherein the supporting frame can be designed in a modularized manner, and can be assembled quickly to form at least one stable closed structure according to the shape of the bottom surface of the supported object, so that the supporting frame can be adapted to be installed on the bottom surface of the supported object, and therefore, the supporting frame has a wider application range.
Another object of the present invention is to provide a supporting rack, wherein the supporting rack can be supported by the bottom surface of the supported object to a predetermined height from the bottom surface, so that a ventilation space is formed between the bottom surface of the supported object and the bottom surface, thereby keeping the bottom surface of the supported object dry and preventing the generation of mold.
Another object of the present invention is to provide a supporting frame, wherein the supporting frame includes a plurality of bearings, each of which can be adjusted in height, so that when the supporting frame is supported on uneven ground, the supporting frame can be kept stable by adjusting at least one of the heights of the bearings, and accordingly the supported object can be stably supported on the supporting frame.
Another object of the present invention is to provide a supporting rack, wherein the supporting rack not only can be right supported by the edge of the bottom of the supporting object, but also can be right supported by the center of gravity position of the supporting object.
In order to realize the utility model discloses above at least one purpose, the utility model provides a support frame, wherein the support frame includes:
at least two carriers, wherein each of the carriers comprises a carrier member and an extension member, wherein the carrier member has a high end and a low end, wherein the extension member is disposed at the high end of the carrier member, wherein the extension member forms an extension direction in a horizontal plane perpendicular to a vertical direction formed by the high end and the low end; and
at least one connecting piece, wherein two expansion components with opposite expansion directions are detachably connected to one connecting piece.
According to an embodiment of the present invention, each of the extension members includes an extension main body and at least one extension arm, wherein the extension main body is disposed at the high end of the support member, and wherein each of the extension arms extends from the extension main body along a direction in the horizontal plane.
According to an embodiment of the present invention, each of the extension members comprises an extension main body and at least two extension arms, wherein the extension main body is disposed at the high end of the carrying member, wherein each of the extension arms extends from the extension main body along two different directions in the horizontal plane.
According to an embodiment of the present invention, the extension main body is integrally provided at the high end of the bearing member.
According to an embodiment of the present invention, the extension main body is detachably mounted to the high end of the bearing member.
According to an embodiment of the present invention, each of the carriers includes a mounting structure, wherein the mounting structure includes a first mounting unit and a second mounting unit, wherein the first mounting unit is disposed at the extension main body, wherein the second mounting unit is disposed at the high end of the carrier, wherein the extension main body is detachably connected to the carrier by the first mounting unit and the second mounting unit.
According to an embodiment of the invention, the first mounting unit is implemented as a projection or a threaded hole having a threaded structure, wherein the second mounting unit is implemented as a threaded connection to a threaded hole or a projection having a threaded structure of the first mounting unit.
According to an embodiment of the present invention, the bearing member comprises a bearing body and an adjustable body, wherein one end of the bearing body forms the high end, the other end of the bearing body forms a connecting end, wherein one end of the adjustable body forms the lower end, wherein the other end of the adjustable body forms an adjustable end which is matched with the connecting end, wherein the bearing body is provided with an adjusting structure, the adjusting structure comprises a first adjusting unit and a second adjusting unit, wherein the connecting end of the bearing body is provided with the first adjusting unit, wherein the adjustable end of the adjustable body is provided with a second adjusting unit, wherein the connecting end of the carrier body is rotatably connected to the adjustable end of the adjustable body by the first adjusting unit and the second adjusting unit.
According to an embodiment of the invention, the first adjustment unit is implemented as a projection or a threaded hole having a threaded structure, wherein the second adjustment unit is implemented as a threaded connection to a threaded hole or a projection having a threaded structure of the first adjustment unit.
According to an embodiment of the present invention, two adjacent extension arms are in form an adjustable predetermined included angle on the horizontal plane.
According to an embodiment of the present invention, each of the extension arms has one end rotatably connected to the extension main body.
According to an embodiment of the invention, the connecting piece is implemented as a hollow tubular piece, wherein the connecting piece is provided with at least two connectors towards one direction on the horizontal plane, wherein at least two on the connecting piece the opening orientation of the connectors is located on the same straight line.
According to the utility model discloses an embodiment, the both ends of connecting piece are equipped with respectively the connector.
According to an embodiment of the present invention, at least one side of the connecting member is provided with at least one of the connectors.
According to the utility model discloses an embodiment, the connecting piece is provided with the edge a connecting hole that vertical direction extends, wherein the extension component be equipped with the through-hole that the connecting hole corresponds.
Drawings
Fig. 1 shows a structure of a support frame according to a first embodiment of the present invention.
Fig. 2 shows a structural diagram of a carrier of the support frame according to the first embodiment of the present invention.
Fig. 3 is a schematic view showing the supporting frame of the first embodiment of the present invention being used to support a supported object.
Fig. 4 shows a structural view of a supporting member of a supporting frame in a state according to a second embodiment of the present invention.
Fig. 5 shows a structural view of a supporting member of a supporting frame in another state according to a second embodiment of the present invention.
Fig. 6A shows a view of the support member of the support stand according to the second embodiment of the present invention in a disassembled state.
Fig. 6B shows a schematic view of the detachment of one of the bearing members of the support frame in the first variant of the second embodiment of the invention.
Fig. 7A and 7B are schematic views respectively showing the supporting frame of the second embodiment of the present invention being installed at the bottom of a supported object and in different states.
Fig. 8A and 8B are schematic views respectively showing a supporting member of the supporting frame having two expanding directions at different angles in a second variant embodiment of the present invention.
Fig. 9A and 9B are schematic views respectively showing a supporting member of the supporting frame having two other expanding directions at different angles in a second variant embodiment of the present invention.
Fig. 10A and 10B are schematic views respectively showing a supporting member of the supporting frame having three expanding directions at different angles in a third variant embodiment of the present invention.
Fig. 11A and 11B are schematic views respectively showing a supporting member of the supporting frame having another three expanding directions at different angles in a third variant embodiment of the present invention.
Fig. 12A shows a schematic structural diagram of a support frame in a second embodiment of the present invention.
Fig. 12B shows a schematic structural diagram of another support frame in the second embodiment of the present invention.
Fig. 12C shows a schematic structural diagram of another support frame according to the second embodiment of the present invention.
Fig. 13 is a schematic view of a support frame of the present invention being used to support the bottom of a supported object.
Detailed Description
The following description is presented to disclose the invention so as to enable any person skilled in the art to practice the invention. The preferred embodiments in the following description are given by way of example only, and other obvious variations will occur to those skilled in the art. The basic principles of the invention, as defined in the following description, may be applied to other embodiments, variations, modifications, equivalents and other technical solutions without departing from the spirit and scope of the invention.
It will be understood by those skilled in the art that in the present disclosure, the terms "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," and the like are used in a generic and descriptive sense only and not for purposes of limitation, as the terms are used in the description to indicate that the referenced device or element must have the specified orientation, be constructed and operated in the specified orientation, and not for the purposes of limitation.
It is to be understood that the terms "a" and "an" are to be interpreted as meaning that a number of one element may be one in one embodiment or plural in another embodiment, and the terms "a" and "an" are not to be interpreted as limiting the number, and that "front" and "back" in the present invention mean time and logic in some places, but not limited in this respect.
Referring to fig. 1 to 13, a support frame 2000 according to a preferred embodiment of the present invention will be described in detail below. The supporting frame 100 comprises at least a plurality of supporting members 1000 and a plurality of connecting members 3000, wherein each of the supporting members 1000 can form a supporting point in a vertical direction and an expanding direction in a horizontal plane perpendicular to the vertical direction, and the connecting members 3000 can connect the supporting members 1000 in at least two opposite expanding directions to form the supporting frame 1000, so that the supporting frame 1000 can support a portion of the bottom of the supported object 800 corresponding to the expanding direction.
In the present invention, each of the supporting members 1000 can form at least two expanding directions on the horizontal plane, when the supported object 800 has different shapes, through the mutual matching between the supporting members 1000 and the connecting members 3000, the bottom position of the gravity center of the supported object 800 can be correspondingly set all the time the connecting members 3000 and the supporting frames 2000 formed by the supporting members 10000 support, so that the supported object 800 can be stably supported.
It can be understood by those skilled in the art that the bottom of the center of gravity of the supported object 800 is supported rather than suspended, so that the supported object 800 can be stably supported. Specifically, the carrier 1000 includes a carrier member 10 and an expansion member 20, wherein the expansion member 20 is connected to the carrier member 10.
Referring to fig. 1 to fig. 3 and fig. 12B, in particular, in the first embodiment of the present invention, the supporting frame 2000A includes two supporting members 1000A and one connecting member 3000A, wherein the connecting member 3000A is detachably connected to at least two supporting members 1000A. Specifically, the carrier 1000 includes a carrier member 10 and an expansion member 20A, wherein the expansion member 20A is connected to the carrier member 10A.
Specifically, the carrier member 10A has a high end 101A and a low end 102A opposite to the high end 101A, wherein the direction in which the carrier member 10A extends between the high end 101A and the low end 102A is the vertical direction, and wherein the extension member 20A is connected to the high end 101A of the carrier member 10A and is capable of extending in one direction in a horizontal plane perpendicular to the vertical direction.
In a first embodiment of the invention, the extension member 20A is embodied to extend from the high end 101A of the carrier member 10A in one direction of the horizontal plane towards the outside of the lateral surface 1030A of the carrier member 10A to form one of the support directions in the horizontal plane.
It is worth mentioning that when the bottom of the center of gravity of one of the supported objects 800 in the prior art is not supported, the supporting frame 2000 can be formed by connecting the extension members 20A of the two bearing members 1000A to both ends of the connecting member 3000A, respectively. Then, the supporting frame 2000 is fixed to the bottom of the center of gravity of the supported object 800, so that the supported object 800 can be stably supported by the supporting frame 2000.
In the present embodiment, the extension member 20A is implemented to be integrally extended from the bearing member 10A, and the bearing member 10A and the extension arm 21A are implemented to be made of a material having high strength and high hardness, so that the bearing 1000 can support the supported object 800 with a certain weight. For example, the bearing member 10A and the extension member 20A may be made of a high-strength metal material, or may be made of a high-strength resin, and the present invention is not limited in this respect.
It is worth mentioning that, in the present embodiment, the high end surface 1010A can be expanded in the horizontal plane direction due to the expanding member 20A. In addition, when the carrier 1000A is used to support the supported object 800, the extension member 20A not only can increase the contact area between the carrier 1000A and the supported object 800, but also can offset the gravity of a part of the supported object 800 by its own deformation.
It should be noted that, in the present embodiment, the bearing member 10A has an outer side surface 1030, wherein the outer side surface 1030A of the bearing member 10A is vertically scattered from the lower end 102A to the upper end 101A, so that the high end surface 1010A of the upper end 101A of the bearing member 10A has a larger contact area with the supported object 800, thereby improving the stability of the bearing member 1000.
In the present invention, the connecting member 3000A is implemented as a hollow tubular member, wherein the extension member 20A of the carrier 1000A can be lapped on the connecting member 3000A, thereby forming the supporting frame 200. Illustratively, the top of the connector 3000A is at the same level as the high end 101A of the carrier 1000A.
In this embodiment, the connecting member 3000A is provided with at least two connecting ports 30001A facing in one direction on the horizontal plane. In this embodiment, the connection ports 30001A are provided at both ends of the connection member 3000A.
Further, the connection ports 30001A may be provided on both sides of the connection member 3000A. Therefore, when it is necessary to support the bottom position corresponding to the center of gravity of the supported object 800, since the connecting member 3000A is detachably connected to the plurality of carriers 1000A, it is possible to correspond the expanding direction of the two expanding members 20A having the opposite expanding directions to the bottom position corresponding to the center of gravity of the supported object 800, and then connect the connecting member 3000A to the two expanding members 20A, so that the bottom position corresponding to the center of gravity of the supported object 800 is stably supported.
As can be understood by those skilled in the art, in the present invention, the connecting member 3000 and the supporting member 1000 can be assembled quickly by inserting. In addition, the first and second substrates are,
in addition, the connecting member 3000A may be implemented as a solid structure, and the connecting member 3000A and the supporting member 1000A are coupled to each other by a screw connection.
In accordance with another aspect of the present invention, there is provided a method of assembling a support stand 2000 for supporting at least one supported object, wherein the method comprises the steps of:
two of the bearing members 1000A having the same direction of extension and passing through the bottom position corresponding to the center of gravity of the supported object 800 are overlapped by at least one connecting member 3000A.
Referring to fig. 4 to 13, in another embodiment of the present invention, the carrier 1000 comprises a carrier member 10 and an extension member 20, wherein the carrier member 10 has a high end 101 and a low end 102 opposite to the high end 101, and wherein the direction in which the carrier member 10 extends between the high end 101 and the low end 102 is defined as the vertical direction. The carrier member 10 has an outer side surface 1030 extending from the high end 101 to the low end 102, wherein the extension member 20 is connected to the high end 101 of the carrier member 10.
In the present embodiment, the extension member 20 has an upper side 201 and a mounting surface 202 opposite to the upper side 201, wherein when the extension member 20 is mounted on the high end 101 of the carrier member 10, the upper side 201 and the mounting surface 202 of the extension member 20 are respectively perpendicular to the vertical direction, and the mounting surface 202 of the extension member 20 is kept opposite to the high end 101 of the carrier member 10.
Specifically, the extension member 20 includes at least one extension arm 21 and an extension body 22, wherein a side of the extension body 22 forms the mounting surface 202 and the upper side, wherein the extension arm 21 integrally extends from the extension body 22 toward the outer side 1030A of the bearing member 10A along the horizontal direction, thereby forming the extension direction on the horizontal plane perpendicular to the vertical direction.
It should be noted that, in the present embodiment, the outer side surface 1030 of the bearing member 10 is divergent from the lower end 102 to the upper end 101, so that the upper end 101 of the bearing member 10 has a larger contact area with the supported object 800, thereby improving the stability of the bearing member 1000.
It should be noted that, in the present embodiment, the extension arm 21 can extend toward the outer side surface 1030 of the bearing member 10 in the horizontal direction, so that the extension arm 21 is suspended. When the bearing member 1000 is used to support the supported object 800, the extension arm 21 not only can increase the contact area between the bearing member 1000 and the supported object 800, but also can counteract the gravity of part of the supported object 800 through its own deformation.
More preferably, the height of the upper side surface 201 formed by the extension member 20 with respect to the lower end 102 is implemented to be adjustable. In this way, when the lower end 102 of the bearing member 10 is supported on an uneven ground, the upper side surface 201 of the extension member 20 can be ensured to support the supported object 800 by adjusting the extension member 20 to keep the lower end 102 of the bearing member 10 in contact with the ground.
In an embodiment of the present invention, the carrier 1000 further comprises a mounting structure 30, wherein the mounting structure 30 comprises a first mounting unit 31 and a second mounting unit 32, wherein the first mounting unit 31 is disposed at the extension main body 22, wherein the second mounting unit 32 is disposed at the high end 101 of the carrier 10. The second mounting unit 32 provided to the high end 101 of the carrier member 10 is detachably coupled with the first mounting unit 31 of the extension body 22 when the extension member 20 is mounted to the carrier member 10, and the second mounting unit 32 is adjustably and fixably coupled to the first mounting unit 31 so that the second mounting unit 32 and the first mounting unit 31 are relatively fixed when adjusted between the first mounting unit 31 and the second mounting unit 32.
Referring to fig. 6A, the first mounting unit 31 is implemented as a screw hole provided at the middle of the extension body 22 and extending from the upper side 201 to the mounting surface 202, and the second mounting unit 32 is implemented as a protrusion integrally extending from the high end 101 in the vertical direction and having a screw structure. Referring to fig. 6B, in another embodiment of the present invention, the first mounting unit 31 is implemented as a protrusion portion which is disposed in the middle of the extension main body 22 and integrally extends from the mounting surface 102 of the extension main body 22 in the vertical direction, wherein the second mounting unit 32 is implemented as a screw hole which is disposed in the middle of the high end 101 and extends in the vertical direction.
It will be understood by those skilled in the art that the first mounting unit 31 may be implemented as an adjustment hole provided at the middle of the extension main body 22 and extending from the upper side surface 201 to the mounting surface 202, and the second mounting unit 32 is implemented as an adjustment protrusion integrally extending from the high end 101 in the vertical direction and having a screw structure, the adjustment protrusion being rotatable about an axis in which the adjustment hole is in the vertical direction.
It is worth mentioning that, in the present invention, the extension member 20 can be rotated relative to the bearing member 10 by the mounting structure 30. The orientation of the expansion direction formed by the rotated expansion member 20 in the horizontal plane will be adjusted. And the expansion direction of the load bearing member 10 after the expansion direction is adjusted can correspond to having a corresponding different position of the center of gravity at the bottom of the supported object 800.
Preferably, in the present invention, the extension member 20 is implemented to be detachably mounted to the high end 101 of the bearing member 10 by the mounting structure 30.
In addition, in an example of the present invention, when the carrying member 10 is rotated, the distance between the upper side 201 of the expanding member 20 and the lower end 102 of the carrying member 10 is adjusted accordingly, and accordingly, when the carrying member 1000 is used to carry the supported object 800, the distance between the gravity center of the supported object 800 supported on the upper side 201 of the expanding member 20 and the lower end 102 of the carrying member 10 is also adjusted accordingly. Accordingly, the distance between the bottom of the supported object 800 and the ground is adjusted accordingly, and thus the size of the gap formed between the supported object 800 and the ground is adjusted to adjust the ventilation amount. In addition, after the center of gravity of the supported object 800 is adjusted, the height of the work top formed on the upper portion of the supported object 800 relative to the ground can be adjusted, so that when users with different heights use the supported object 800, the supported object 800 can form work tops with different heights by adjusting the distance between the extension member 20 and the lower end 102 of the bearing member 10, so as to adapt to the users with different heights. Especially when the supported object 800 is implemented as a desk or a cabinet, since users with different body shapes have different heights, the height requirement of the work bench formed by the supported object 800 is usually different, so that the supported object 800 can be adapted to users with different heights by adjusting the height of the work bench formed by the supported object 800.
Further, in some embodiments of the present invention, the bearing member 10 includes a bearing body 11 and an adjustable body 12, wherein one end of the bearing body 11 forms the high end 101, wherein the bearing body 11 further has a connection end 103, wherein the adjustable body 12 forms the low end 102, wherein the adjustable body 12 further has an adjustable end 104, wherein the connection end 103 of the bearing body 11 is adjustably connected to the adjustable end 104 of the adjustable body 12, wherein the height of the bearing member 10 in the vertical direction can be adjusted by adjusting the distance between the adjustable end low end 102 of the adjustable body 12 and the high end 101 of the bearing body 11, and the distance between the supported object 800 at the high end 101 of the bearing body 10 and the low end 102 of the bearing body 10 can be adjusted by such adjustment, thereby adjusting the height of the center of gravity of the supported object 800 relative to the lower end 102 of the bearing body 10.
Preferably, in this embodiment, when the supported object 800 with a certain weight is carried on the bearing member 1000, and the distance between the supported object 800 at the high end 101 of the bearing body 10 and the low end 102 of the bearing body 10 needs to be adjusted, the cross-sectional area of the low end 102 of the adjustable body 12 along the direction perpendicular to the vertical direction is smaller, so that when the adjustable body 12 is adjusted, the friction between the low end 102 of the adjustable body 12 and the supporting surface supporting the low end 102 of the bearing body 10 is smaller, so as to adjust the adjustable body 12. On the other hand, the high end 101 of the bearing body 11 has a larger contact area with the supported object 800.
Referring to fig. 6A and 6B, in the present embodiment, the supporting member 100 includes an adjusting structure 40, wherein the adjusting structure 40 includes a first adjusting unit 41 and a second adjusting unit 42. The connecting end 103 of the bearing body 11 is provided with the first adjusting unit 41. The adjustable end 104 of the adjustable body 12 is provided with the second adjusting unit 42 adapted to the first adjusting unit 41. When the bearing body 11 is adjusted relative to the adjustable body 12, the distance between the high end 101 of the bearing body 11 and the low end 102 of the adjustable body 12 is adjusted, so that when the low end 102 of the bearing member 10 is supported on an uneven bottom surface, the adjustable body 12 is adjusted to keep the low end 102 of the bearing member 10 in contact with the ground, thereby ensuring that the upper side surface 201 of the extension member 20 supports the supported object 800.
Referring to fig. 6A, in the embodiment of the present invention, the first adjusting unit 41 'located at the connecting end 103 of the bearing body 11 is implemented as a threaded hole having a threaded structure extending from the connecting end 103 along the vertical direction, and the second adjusting unit 42' located at the adjustable end 104 of the adjustable body 12 is implemented as a protrusion having a threaded structure extending from the adjustable end 104 along the vertical direction, so that the adjustable body 12 can be kept fixedly connected with the bearing body 11 when the adjustable end 104 of the adjustable body 12 is adjusted relative to the connecting end 103 of the bearing body 11.
As can be appreciated by those skilled in the art, referring to fig. 6B, in a variant embodiment of the present invention, the first adjusting unit 41' located at the connecting end 103 of the bearing body 11 is implemented as a protrusion having a threaded structure extending from the connecting end 103 in the vertical direction. The second adjusting unit 42' located at the adjustable end 104 of the adjustable body 12 is implemented as a threaded hole having a threaded structure extending from the adjustable end 104 along the vertical direction, and the invention is not limited in this respect. It should be noted that, by adjusting the adjustable body 12 by screwing, the distance between the lower end 102 of the adjustable body 12 and the upper end 101 of the carrying body 11 can be relatively adjusted, so as to adjust the height of the center of gravity of the supported object 800 supported by the carrying member 1000, and thus adjust the height of the work bench formed by the supported object 800.
It can be understood by those skilled in the art that the first adjusting unit 41 can be implemented as a rotating hole provided in the middle of the carrying body 11 and extending from the upper side 201 to the mounting surface 202, and the first adjusting unit 42 is implemented as a rotating protrusion integrally extending from the adjustable body 12 in the vertical direction and having a threaded structure, and the adjusting protrusion can rotate about an axis of the rotating hole in the vertical direction.
It should be noted that, in the present invention, the extension member 20 can be rotated relative to the bearing member 10 by the adjusting structure 40. The orientation of the expansion direction formed by the rotated expansion member 20 in the horizontal plane will be adjusted.
It is worth mentioning that, in some embodiments of the present invention, the extension arm 21 is implemented as one or more arms, so as to enable those skilled in the art to understand the present invention, in the following examples of the present invention, the carrier 1000 is only implemented as the third embodiment, as shown in fig. 8A to 11B, which is not a limitation of the present invention. It is understood that, when the extension member 20 is implemented to include the plurality of extension arms 21, the contact area between the supported object 800 and the extension member 20 is further enlarged, so that the gravity of the supported object 800 is further dispersed, thereby reducing the gravity borne by the bearing member 10.
In addition, in the present invention, since each of the extension arms 21 can be extended in various directions along the horizontal plane, when the extension arms 21 are implemented in plural, the carrier 1000 can be formed in plural different expansion directions toward various directions on the horizontal plane.
In a modified embodiment of the third embodiment of the present invention, the extension member 20 includes two extension arms 21 extending in two different directions on the horizontal plane, wherein two extension arms 21 form the carrying surface 20 capable of further enlarging a contact area between the supported object 800 and the carrying member 1000 when the carrying member 1000 is used to support the supported object 800.
It should be noted that, since the extension arm 21a and the extension arm 21b extend in two different directions, respectively, a predetermined included angle is formed between the two extension arms 21. On the other hand, since the extension arm 21a and the extension arm 21b extend in two different directions, when it is required to support the bottom position corresponding to the center of gravity of the supported object 800, one of the connection members 3000 can be connected to one of the extension arms 21 of two expansion members 20 having opposite expansion directions, and the other extension arms 21 of the two expansion members 20 can be spliced with each other by the remaining connection members 3000 to form the supporting frame 2000.
As can be appreciated by those skilled in the art, the support frame 2000 of the present invention can support not only the edge of the supported object 800, but also the bottom of the supported object 800 corresponding to the center of gravity.
Referring to fig. 8A and 8B, in a modified implementation of the third embodiment of the present invention, the two extension arms 21 of the expanding member 20 are respectively an extension arm 21a and an extension arm 21B, wherein the included angle between the two extension arms 21a and 21B is α 1, wherein the size of α 1 is greater than 0 ° but not greater than 90 °, when the angle formed by a portion of the bottom surface of the supported object 800 is matched with the size of α 1, the supporting object 1000 in this embodiment can be installed at the corresponding position of the supported object 800.
Referring to fig. 9A and 9B, in a second variation of the third embodiment of the present invention, an included angle between the two extension arms 21c and the extension arm 21d of the expanding member 20 is α 2, wherein the size of the extension arm α 2 is implemented to be greater than 90 ° but not greater than 180 °, so that the bearing member 1000 in this embodiment can be installed at a corresponding position of the supported object 800 when an angle formed by a portion of the bottom surface of the supported object 800 is matched with the size of the α 2.
It can be understood that the bottom of the supported object 800 has different shapes, therefore, the carrier 1000 of the present invention has an advantage in that the extension member 20 of two extension arms 21 with different included angles can be engaged with the carrier member 10, so that the carrier 1000 can be formed to be adapted to different supported objects 800.
Referring to fig. 10A and 10B, in a third variant embodiment of the present invention, the extension arms 21 of the extension member 20 of the carrier 1000 are implemented in three, respectively as an extension arm 21e, an extension arm 21f and an extension arm 21g, and the extension arms 21e, 21f and 21g extend in three different directions on the horizontal plane perpendicular to the vertical direction, so that an included angle is formed between two adjacent extension arms 21 of the extension arms 21e, 21f and 21g, as in the present embodiment, the included angles formed between the extension arm 21f and the extension arm 21g and between the extension arm 21e and the extension arm 21f are α 3 and α 4, respectively, wherein the included angle between the included angle α 3 and the included angle α 4 is implemented to be greater than 0 ° and less than 180 °.
Preferably, in the above embodiment of the present invention, when the extension arm 21 of the extension member 20 of the carrier 1000 is rotatably mounted on the extension main body 22, after the extension arm 21 is mounted on the extension main body 22, the extension arm 21 of the extension member 20 can rotate at the horizontal plane perpendicular to the vertical direction, that is, the extension arm 21 of the extension member 20 can be rotated to face any direction according to the shape of the supported object 800, for example, as shown in fig. 11A and 11B, which show schematic diagrams of the extension arm 21e, the extension arm 21f and the extension arm 21g of the extension member 20 of the third embodiment of the present invention, respectively facing different directions after being rotated, wherein the extension arm 21e is adjusted to the position of the extension arm 21h, wherein the extension arm 21f is adjusted to the position of the extension arm 21i, wherein the extension arm 21g is adjusted to the position of the extension arm 21j, and further the included angle between the extension arm 21i and the extension arm 21i is equal to 355 and 856, respectively.
In this embodiment, since the extension arm 21 of the extension member 20 can rotate in a plane perpendicular to the vertical direction, the carrier 1000 can be adapted to the supported object 800 having different bottom surface shapes through the extension member 20.
It should be noted that, in some embodiments of the present invention, the extension arm 21 of the extension member 20 not only can extend the contact area between the bearing member 1000 and the supported object 800, but also the extension arm 21 can be connected to the connecting member 3000. The two ends of the connecting member 3000 can be connected to the extension arm 21 of one of the supporting members 1000, so that a plurality of supporting members 1000 are connected by the connecting member 3000 to form the supporting frame 2000.
For example, as shown in fig. 1, both ends of the connecting member 3000 can be connected to the extension arm 21A of one of the extension members 20A, respectively.
In some embodiments, the connecting member 3000 is detachably mounted to the extension arm 21, in these embodiments, when the connecting member 3000 is connected to the extension arm 21, a top surface of the connecting member 3000 is on the same plane as the upper side surface 201 of the extension member 20, so as to further extend the length of the extension arm 21 while the connecting member 3000 is connected to the extension arm 21, thereby further enlarging the contact area between the supporting member 1000 and the supported object 800. In order to enable those skilled in the art to understand the present invention, the following examples of the present invention are described only by taking the extension arm 21 as an integral extension of the extension main body 22, but those skilled in the art can understand that this is not a limitation of the present invention.
It should be noted that, in some embodiments of the present invention, since the connecting member 3000 is detachably mounted to the extension arm 21, the connecting member 3000 can also be made in a modular manner, that is, the extension arm 21 of the extension member 20 can be connected to the connecting member 3000 with different lengths or different widths, so as to form different contact areas between the supported object 800 and the supporting object 1000. It should be noted that, since the sizes of the bottom surfaces of the supported objects 800 are generally different, the connecting member 3000 can be made into a module to adapt the supporting object 800 having bottom surfaces with different sizes.
In the present invention, the connecting member 3000 is implemented as a hollow tubular structure, and the connecting member 3000 is provided with at least two connecting ports 3001 facing one direction on a horizontal plane
In an example of the present invention, the connecting member 3000 is provided with at least one connecting hole 3002, wherein the extension arm 21 can be inserted into the connecting port 30001 of the connecting member 3000. The position that extension arm 21 corresponds is equipped with the through-hole, connecting piece 3000 be equipped with the connecting hole 30002 of through-hole adaptation. After the extension arm 21 is inserted into one of the connection ports 30001 of the connection member 3000, the connection hole 30002 of the connection member 3000 is aligned with the through hole of the extension arm 21, and at this time, the connection member 3000 and the extension arm 21 can be fixed relative to each other by at least one screw.
As shown in fig. 9, the supporting frame 200 includes a plurality of the supporting members 1000 and a plurality of the connecting members 3000, and both ends of each of the extension ends 31 of each of the connecting members 3000 are respectively fixed to one of the extension arms 21 of the extension member 20 in one of the supporting members 1000.
Referring to fig. 12A, 12B and 12C, the supporting frame 2000 formed by the plurality of the carrier members 1000 and the plurality of the connecting members 3000 collectively carries the supported object 800, and the plurality of the connecting members 3000 are connected to the carrier members 1000, so that the bottom corresponding to the center of gravity of the supported object 800 can be stably supported.
For example, in fig. 12A and 13, when the length of the supported object 800 in the lateral direction is long, the supported object 800 may be regarded as a left part and a part. Since the bottom corresponding to the center of gravity of the left portion of the supported object 800 is located at the intersection of the bottom diagonals of the left portion, the bottom corresponding to the center of gravity of the right portion of the supported object 800 is located at the intersection of the bottom diagonals of the right portion, and the bottom corresponding to the geometric intersection of the whole supported object 800 is located at the bottom corresponding to the center of the whole supported object 800. Therefore, it is necessary to select the bearing member 1000 first, wherein the bearing member 1000 has at least three expansion directions, wherein the three expansion directions respectively pass through the bottom corresponding to the center of gravity of the left portion of the supported object 800 and the bottom corresponding to the center of gravity of the right portion of the supported object 800 at the intersection point of the diagonal lines of the bottom of the right portion, the bottom corresponding to the geometric center of the supported object 800 is at the bottom position corresponding to the intersection point of the whole supported object 800, and then select the connecting member 3000, so that the supporting frame 2000 forms at least one closed structure. In the example shown in fig. 12B, when the length of the supported object 800 in the lateral direction is long and the center of gravity of the supported object 800 is not located at the geometric center of the bottom surface of the supported object 800, the connecting member 3000 having the connecting ports 3002 at both sides and ends thereof is first selected, and the extension members 20 of at least two carriers 1000 are inserted into the connecting ports 3002 at the sides of the connecting member 3000. Followed by a subsequent lap joint. By such waterproofing, the support frame 2000 finally formed can form different support patterns according to the change of the position of the center of gravity of the supported object 800.
As can be understood by those skilled in the art, when a plurality of the supporting frames 2000 are installed at the bottom of the supported object 800, by adjusting the adjustable body 12 of each of the bearing members 10 in the supporting frames 2000, the height of the supported object 800 supported on the bearing member 1000 relative to the lower end 102 can be further adjusted, and particularly when the supported object 800 is a cabinet, the height of the cabinet can be further adjusted, so that the working table formed by the cabinet can be adapted to users with different heights.
It is worth mentioning that in the utility model discloses in, a plurality of hold the carrier 1000 cooperation different length the connecting piece 3000 and then can form not unidimensional the support frame 2000, that is to say, when by support 800 has not unidimensional, can through the equipment with its adaptation size hold carrier 1000 with connecting piece 3000, and then can form with by support 800 looks adaptation the support frame 2000.
In accordance with another aspect of the present invention, a method of assembling a support frame 2000 is provided, wherein the method comprises the steps of:
2001: at least one connecting piece 3000A is used to lap two bearing pieces 1000A with the same expansion direction and the expansion direction passing through the bottom position corresponding to the gravity center of the supported object 800.
According to an embodiment of the present invention, before the step 2001, the assembling method of the supporting frame 200 includes the steps of:
2002: by installing an expanding member 20 at the high end of a carrying member 10, the expanding direction of the expanding member 20 is aligned with the position corresponding to the bottom of the center of gravity of the supported object 800.
It should be noted that, in the present invention, the extension member 20 includes an extension main body 22 and at least one extension arm 21, wherein after the extension main body 22 is installed at the high end of the bearing member 10, each extension arm 21 extends toward a direction along the horizontal plane.
Preferably, the expansion body 22 is detachably mounted to the carrier member 10.
According to an embodiment of the present invention, before the step 2001, the assembling method of the supporting frame 200 includes the steps of:
2003: the expansion member 20 is rotated relative to the carrier member 10 to adjust the orientation of the expansion member 20 along a horizontal plane.
The embodiments have been fully illustrated and described for the purpose of explaining the functional and structural principles of the present invention, and the present invention is not limited by changes based on the principles of these embodiments. Accordingly, this invention includes all modifications encompassed within the scope and spirit of the following claims.
Claims (15)
1. A support frame, wherein the support frame includes:
at least two carriers, wherein each of the carriers comprises a carrier member and an extension member, wherein the carrier member has a high end and a low end, wherein the extension member is disposed at the high end of the carrier member, wherein the extension member forms an extension direction in a horizontal plane perpendicular to a vertical direction formed by the high end and the low end; and
at least one connecting piece, wherein two expansion components with opposite expansion directions are detachably connected to one connecting piece.
2. The support bracket of claim 1 wherein each said extension member includes an extension body and at least one extension arm, wherein said extension body is disposed at said high end of said load bearing member, wherein each said extension arm extends from said extension body in a direction within said horizontal plane.
3. The support bracket of claim 1 wherein each said extension member includes an extension body and at least two extension arms, wherein said extension body is disposed at said high end of said load bearing member, wherein each said extension arm extends from said extension body in two different directions within said horizontal plane.
4. The support bracket of any one of claims 2 to 3 wherein the extension body is integrally provided at the high end of the carrier member.
5. A support stand according to any one of claims 2 to 3 wherein the extension body is removably mounted at the high end of the carrier member.
6. The support bracket of claim 5 wherein each said carrier includes a mounting structure, wherein said mounting structure includes a first mounting unit and a second mounting unit, wherein said first mounting unit is disposed at said extension body, wherein said second mounting unit is disposed at said high end of said carrier member, wherein said extension body is removably attached to said carrier member by said first mounting unit and said second mounting unit.
7. The support bracket of claim 6 wherein said first mounting unit is implemented as a threaded projection or a threaded hole, and wherein said second mounting unit is implemented as a threaded hole or a threaded projection that is threadedly coupled to said first mounting unit.
8. The support bracket of claim 1 wherein said load bearing member comprises a load bearing body and an adjustable body, wherein one end of the bearing body forms the high end, the other end of the bearing body forms a connecting end, wherein one end of the adjustable body forms the lower end, wherein the other end of the adjustable body forms an adjustable end which is matched with the connecting end, wherein the bearing body is provided with an adjusting structure, the adjusting structure comprises a first adjusting unit and a second adjusting unit, wherein the connecting end of the bearing body is provided with the first adjusting unit, wherein the adjustable end of the adjustable body is provided with a second adjusting unit, wherein the connecting end of the carrier body is rotatably connected to the adjustable end of the adjustable body by the first adjusting unit and the second adjusting unit.
9. The support stand of claim 8 wherein the first adjustment unit is implemented as a projection having a threaded configuration or a threaded hole, and wherein the second adjustment unit is implemented as a threaded connection to a threaded hole or a projection having a threaded configuration of the first adjustment unit.
10. The support bracket of claim 3 wherein adjacent two of said extension arms form a predetermined angle adjustable in said horizontal plane.
11. The support bracket of claim 10 wherein one end of each of said extension arms is rotatably connected to said expansion body.
12. The support frame according to claim 1, wherein said connecting member is implemented as a hollow tubular member, wherein said connecting member is provided with at least two connecting ports facing in one direction in a horizontal plane, wherein the openings of at least two of said connecting ports on said connecting member face in a same straight line.
13. The support bracket of claim 12 wherein said connectors are provided at opposite ends thereof with said connectors, respectively.
14. The support bracket of claim 13 wherein at least one side of said connector is provided with at least one said connection port.
15. The support bracket according to any one of claims 11 to 14, wherein said connector is provided with a connection hole extending in said vertical direction, wherein said extension member is provided with a through hole corresponding to said connection hole.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201920594054.3U CN211065758U (en) | 2019-04-28 | 2019-04-28 | Supporting frame |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201920594054.3U CN211065758U (en) | 2019-04-28 | 2019-04-28 | Supporting frame |
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| CN211065758U true CN211065758U (en) | 2020-07-24 |
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| CN201920594054.3U Active CN211065758U (en) | 2019-04-28 | 2019-04-28 | Supporting frame |
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| CN (1) | CN211065758U (en) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN111839046A (en) * | 2019-04-28 | 2020-10-30 | 宁波欧琳整体厨房有限公司 | Support frame and assembly method thereof |
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2019
- 2019-04-28 CN CN201920594054.3U patent/CN211065758U/en active Active
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN111839046A (en) * | 2019-04-28 | 2020-10-30 | 宁波欧琳整体厨房有限公司 | Support frame and assembly method thereof |
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