A chiller bottom tray assembly

CN224622523UActive Publication Date: 2026-08-11GUANGDONG XIAOYANG GREEN ENERGY TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-29
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

然而,现有的第一支梁和第二支梁安装前,需要通过测量来进行对位,随后进行安装固定,使得底托盘组件的组装过程相对复杂,生产效率较低

Benefits of technology

[0003]本实用新型旨在至少解决现有技术中存在的技术问题之一。为此,本实用新型提出一种冷水机底托盘组件,能够简化组装过程,提高生产效率。

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model discloses a chiller bottom tray assembly, including a tray body and a support beam structure. The tray body is arranged horizontally, and a chiller installation area is provided on the upper side of the tray body. The tray body is provided with a first alignment portion. The support beam structure includes a first support beam and a second support beam. The first support beam is arranged horizontally and installed on the lower side of the tray body. The first support beam is provided with a first mating portion, which mates with the first alignment portion. The second support beam is arranged horizontally and installed on the lower side of the tray body. The second support beam is arranged at an angle to the first support beam. The first support beam is provided with a second alignment portion, and the second support beam is provided with a second mating portion, which mates with the second mating portion.
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Description

Technical Field

[0001] This utility model relates to chiller accessories, and in particular to a chiller bottom tray assembly. Background Technology

[0002] The chiller has a base tray assembly at its bottom to support the weight of the chiller body. Some existing chiller base tray assemblies include a tray body and a support beam structure. The support beam structure includes a horizontally arranged first and second support beams, positioned at an angle to each other. Both the first and second support beams are installed under the tray body to enhance its structural strength. However, the existing first and second support beams require alignment through measurement before installation, making the assembly process relatively complex and resulting in low production efficiency. Utility Model Content

[0003] This invention aims to solve at least one of the technical problems existing in the prior art. To this end, this invention proposes a chiller bottom tray assembly that simplifies the assembly process and improves production efficiency.

[0004] A chiller base tray assembly according to an embodiment of the present invention includes a tray body and a support beam structure. The tray body is arranged horizontally, and a chiller installation area is provided on the upper side of the tray body. The tray body is provided with a first alignment portion. The support beam structure includes a first support beam and a second support beam. The first support beam is arranged horizontally and installed on the lower side of the tray body. The first support beam is provided with a first mating portion, which mates with the first alignment portion. The second support beam is arranged horizontally and installed on the lower side of the tray body. The second support beam is arranged at an angle to the first support beam. The first support beam is provided with a second alignment portion, and the second support beam is provided with a second mating portion, which mates with the second mating portion.

[0005] The chiller bottom tray assembly according to the present invention has at least the following beneficial effects: When manufacturing the tray body, the first support beam, and the second support beam, the first alignment part, the first mating part, the second alignment part, and the second mating part are directly machined. When assembling the bottom tray assembly, the first support beam is first installed on the underside of the tray body. At this time, the first support beam directly mates with the first alignment part through the first mating part to achieve precise alignment, and then the first support beam is fixed. Subsequently, the second support beam is installed on the tray body. At this time, the second support beam mates with the first alignment part through the second mating part to achieve precise alignment, and then the second support beam is fixed. Therefore, the installation and fixing of the first and second support beams do not require prior measurement, which helps to simplify the assembly process and improve production efficiency.

[0006] According to some embodiments of the present invention, there are two first support beams arranged in parallel and spaced apart, and there are two second support beams arranged in parallel and spaced apart. The second support beams are located between the two first support beams, and the two ends of the second support beams are respectively matched with the two first support beams one by one.

[0007] According to some embodiments of the present invention, the second support beam is provided with a second mating part at both ends, and the first support beam is provided with at least two second alignment parts.

[0008] According to some embodiments of the present invention, the second support beam is perpendicular to the first support beam.

[0009] According to some embodiments of the present invention, the vertical dimension of the first support beam is greater than the vertical dimension of the second support beam.

[0010] According to some embodiments of the present invention, the second alignment portion is provided on both sides of the first support beam along the width direction.

[0011] According to some embodiments of the present invention, the first alignment portion includes a first alignment hole, and the first mating portion includes a first insertion block, the first insertion block being inserted into the first alignment hole.

[0012] According to some embodiments of the present invention, the first alignment portion includes at least two first alignment holes, and the first mating portion includes at least two first insertion blocks, wherein the first alignment holes and the first insertion blocks are inserted and mated in a one-to-one correspondence.

[0013] According to some embodiments of the present invention, the second alignment portion includes a second notch, and the second mating portion includes a second insertion block, which is inserted into the second notch.

[0014] According to some embodiments of the present invention, the second alignment portion includes at least two second notches, and the second mating portion includes at least two second insertion blocks, with each second insertion block being inserted into a corresponding second notch.

[0015] Additional aspects and advantages of this invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description

[0016] The above and / or additional aspects and advantages of this utility model will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which: Figure 1 This is a perspective view of the bottom tray assembly according to the first embodiment of the present utility model; Figure 2 This is a three-dimensional schematic diagram of the bottom of the bottom tray assembly according to the first embodiment of the present utility model; Figure 3 This is the first embodiment of the present utility model. Figure 2 A magnified view of a portion of point A; Figure 4 This is an exploded view of the support beam structure of the first embodiment of this utility model; Figure 5 This is the first embodiment of the present utility model. Figure 4 A magnified view of a portion of point B; Figure 6 This is a partial cross-sectional view of the bottom tray assembly according to the second embodiment of the present invention.

[0017] Figure label: The tray body is 100, the chiller installation area is 110, the first alignment part is 120, and the first insertion hole is 130. First support beam 200, first mating part 210, second alignment part 220, clearance observation hole 230, second insertion hole 240; Second support beam 300, second mating part 310, alignment rod 320. Detailed Implementation

[0018] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.

[0019] In the description of this utility model, it should be understood that the orientation descriptions, such as up, down, etc., are based on the orientation or positional relationship shown in the drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0020] In the description of this utility model, "multiple" refers to two or more. The use of "first" and "second" is for distinguishing technical features only and should not be construed as indicating or implying relative importance, or implicitly indicating the number of technical features or their sequential relationship.

[0021] In the description of this utility model, unless otherwise explicitly defined, terms such as "setting," "installation," and "connection" should be interpreted broadly, and those skilled in the art can reasonably determine the specific meaning of the above terms in this utility model in conjunction with the specific content of the technical solution.

[0022] Reference Figures 1 to 6 This utility model discloses a chiller base tray assembly, comprising a tray body 100 and a support beam structure. The tray body 100 is arranged horizontally, and a chiller installation area 110 is provided on the upper side of the tray body 100. The tray body 100 is provided with a first alignment portion 120. The support beam structure includes a first support beam 200 and a second support beam 300. The first support beam 200 is arranged horizontally and installed on the lower side of the tray body 100, and is provided with a first mating portion 210, which mates with the first alignment portion 120. The second support beam 300 is arranged horizontally and installed on the lower side of the tray body 100, and is arranged at an angle to the first support beam 200. The first support beam 200 is provided with a second alignment portion 220, and the second support beam 300 is provided with a second mating portion 310, which mates with the second alignment portion 220.

[0023] When manufacturing the pallet body 100, the first support beam 200, and the second support beam 300, the first alignment part 120, the first mating part 210, the second alignment part 220, and the second mating part 310 are directly machined. When assembling the bottom pallet assembly, the first support beam 200 is first installed on the underside of the pallet body 100. At this time, the first support beam 200 directly mates with the first alignment part 120 through the first mating part 210 to achieve precise alignment, and then the first support beam 200 is fixed. Then, the second support beam 300 is installed on the pallet body 100. At this time, the second support beam 300 mates with the first alignment part 120 through the second mating part 310 to achieve precise alignment, and then the second support beam 300 is fixed. Thus, the installation and fixing of the first support beam 200 and the second support beam 300 do not require prior measurement, which helps to simplify the assembly process and improve production efficiency.

[0024] In the first embodiment, referring to Figure 2 There are two first support beams 200, arranged in parallel and spaced apart. Similarly, there are two second support beams 300, also arranged in parallel and spaced apart, located between the two first support beams 200. Each end of the second support beam 300 corresponds to one of the two first support beams 200. The use of two first support beams 200 and two second support beams 300 appropriately enhances the supporting force of the beam structure on the pallet body 100, thereby further improving the structural strength uniformity of the pallet body 100 without requiring excessive support beams. Furthermore, the angled arrangement of the first support beams 200 and second support beams 300 helps to ensure relatively uniform structural strength in all directions of the pallet body 100.

[0025] In the first embodiment, referring to Figure 4The second support beam 300 has a second mating part 310 at both ends, and the first support beam 200 has two or more second alignment parts 220. The second mating parts 310 at both ends of the second support beam 300 allow both ends of the second support beam 300 to be aligned with the second alignment parts 220 of the first support beam 200, resulting in relatively accurate alignment of the second support beam 300. The first support beam 200 has two or more second alignment parts 220 to accommodate the simultaneous alignment of the two second support beams 300.

[0026] In the first embodiment, referring to Figure 2 The second beam 300 is perpendicular to the first beam 200, which makes the assembly and alignment of the two relatively simple and provides the best reinforcement to the pallet body 100. It is conceivable that the first beam 200 could also be arranged at other angles to the second beam 300, and those skilled in the art can choose according to actual needs.

[0027] In the first embodiment, referring to Figure 2 The vertical dimension of the first support beam 200 is larger than that of the second support beam 200. Since both the first support beam 200 and the second support beam 300 are installed on the pallet body 100, the bottom of the second support beam 300 is higher than the bottom of the first support beam 200, making it relatively easy to control the balance of the bottom pallet assembly and making it relatively stable when placed.

[0028] In the first embodiment, referring to Figure 3 The first support beam 200 has a second alignment part 220 on both sides along the width direction, so that the first support beam 200 does not need to be distinguished by specifications and the two first support beams 200 can be interchanged, so that the two first support beams 200 can be uniformly adopted with the same specification, which is conducive to simplifying the production process.

[0029] In the first embodiment, referring to Figure 3 The first alignment part 120 includes a first alignment hole, and the first mating part 210 includes a first insertion block, which is inserted into the first alignment hole. The first alignment part 120 uses a first alignment hole, and the second mating part 310 uses a first insertion block. The alignment method is simple, reliable, and relatively accurate.

[0030] In the first embodiment, referring to Figure 2The first alignment part 120 includes four first alignment holes, and the first mating part 210 includes four first insertion blocks. The first alignment holes and the first insertion blocks are inserted and mated in a one-to-one correspondence. By having a plurality of first alignment holes correspond one-to-one with a plurality of first insertion blocks, multi-point alignment is achieved, making the alignment of the first support beam 200 relatively accurate. It is conceivable that in other embodiments, the first alignment part 120 may also include two, three, or more first alignment holes, and the corresponding first mating part 210 may include two, three, or more first insertion blocks. Those skilled in the art can choose according to actual needs. It is conceivable that in other embodiments, the first alignment part 120 may also have other structures, such as the first alignment part 120 using first insertion blocks and the first mating part 210 using first alignment holes, etc.

[0031] Specifically, the first support beam 200 is formed by bending the plate. The first support beam 200 has a clearance observation hole 230. The first plug-in block is located on the hole wall of the clearance observation hole 230. The clearance observation hole 230 is located at the bend of the first support beam 200. The first plug-in block protrudes from the bend of the first support beam 200.

[0032] When the first beam 200 is produced, an observation hole 230 is opened at a predetermined position on the plate. When the plate is bent to make the first beam 200, the first interlocking block will not completely follow the bending of the plate, so that the first interlocking block protrudes relative to the bending point to form the first interlocking block. The method of forming the first interlocking block is simple and ingenious, and there is no need to form the first interlocking block through additional bending means.

[0033] In the first embodiment, referring to Figure 4 The second alignment part 220 includes a second notch, and the second mating part 310 includes a second insertion block, which is inserted into the second notch. The second alignment part 220 uses a second notch, and the second mating part 310 uses a second insertion block. When the second insertion block is inserted into the second notch, the two are precisely aligned, and the structure is simple and easy to implement.

[0034] In the first embodiment, referring to Figure 4 The second alignment portion 220 includes two second notches, and the second mating portion 310 includes two second insertion blocks, which are inserted into the second notches in a one-to-one correspondence. Through the insertion and mating of the two second insertion blocks with the two second notches, multiple point alignments are achieved, resulting in relatively accurate alignment of the second support beam 300. It is conceivable that in other embodiments, the second alignment portion 220 may also include one, three, or more second notches, and the corresponding second mating portion 310 may include one, three, or more second insertion blocks; those skilled in the art can choose according to actual needs.

[0035] Specifically, the second alignment part 220 on the first support beam 200 assists in aligning the second support beam 300, so that the pallet body 100 does not need to be machined with too many holes, thus avoiding affecting the structural strength of the pallet body 100.

[0036] It is conceivable that the second alignment part 220 can also have other structures. For example, the second alignment part 220 can adopt a second alignment hole, and the corresponding second mating part 310 can adopt a second insertion block; or the second alignment part 220 can adopt a second insertion block, and the corresponding second mating part 310 can adopt a second alignment hole.

[0037] Specifically, the second support beam 300 is formed by bending the plate, and the second plug-in block is part of the second support beam 300, so that the second plug-in block does not require additional processing, simplifying the production process.

[0038] To simplify the alignment of the support beam structure, in the second embodiment, refer to... Figure 6 Alternatively, an alignment rod 320 can be provided on the second support beam 300, a first insertion hole 130 can be provided on the pallet body 100, the first insertion hole 130 forms a first alignment part 120, a second insertion hole 240 can be provided on the first support beam 200, the second insertion hole 240 forms a second alignment part 220, the alignment rod 320 passes through the first insertion hole 130 and the second insertion hole 240, the part of the alignment rod 320 located in the first insertion hole 130 forms a first mating part 210, and the part of the alignment rod 320 located in the second insertion hole 240 forms a second mating part 310. By forming a first mating part 210 and a second mating part 310 at different positions on an alignment rod 320 of the second support beam 300, the second support beam 300 is first aligned and assembled with the first support beam 200. At this time, the alignment rod 320 passes through the second insertion hole 240 of the first support beam 200. The part of the alignment rod 320 extending out of the second insertion hole 240 forms the first mating part 210 of the first support beam 200. Then, the first mating part 210 is inserted into the first insertion hole 130 to complete the alignment of the first support beam 200 with the pallet body 100, and at the same time complete the alignment of the second support beam 300 with the pallet body 100. The structure is further simplified, which helps to reduce processing costs.

[0039] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "illustrative embodiment," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0040] Although embodiments of the present invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the claims and their equivalents.

Claims

1. A chiller bottom tray assembly, characterized in that, include: The pallet body (100) is arranged in a horizontal direction, and a chiller installation area (110) is provided on the upper side of the pallet body (100). The pallet body (100) is provided with a first alignment part (120). The support beam structure includes a first support beam (200) and a second support beam (300). The first support beam (200) is arranged horizontally and installed on the lower side of the pallet body (100). The first support beam (200) is provided with a first mating part (210), which mates with the first alignment part (120). The second support beam (300) is arranged horizontally and installed on the lower side of the pallet body (100). The second support beam (300) is arranged at an angle to the first support beam (200). The first support beam (200) is provided with a second alignment part (220), and the second support beam (300) is provided with a second mating part (310), which mates with the second alignment part (220).

2. The chiller base tray assembly according to claim 1, characterized in that: There are two first support beams (200), which are arranged in parallel and spaced apart. There are also two second support beams (300), which are arranged in parallel and spaced apart. The second support beam (300) is located between the two first support beams (200), and the two ends of the second support beam (300) are respectively matched with the two first support beams (200).

3. The chiller base tray assembly according to claim 2, characterized in that: The second support beam (300) is provided with a second mating part (310) at both ends, and the first support beam (200) is provided with at least two second alignment parts (220).

4. The chiller base tray assembly according to claim 2, characterized in that: The second support beam (300) is perpendicular to the first support beam (200).

5. The chiller base tray assembly according to claim 2, characterized in that: The vertical dimensions of the first support beam (200) are greater than the vertical dimensions of the second support beam (300).

6. The chiller base tray assembly according to claim 2, characterized in that: The first support beam (200) has a second alignment part (220) on both sides along the width direction.

7. The chiller base tray assembly according to claim 1, characterized in that: The first alignment part (120) includes a first alignment hole, and the first mating part (210) includes a first insertion block, which is inserted into the first alignment hole.

8. The chiller bottom tray assembly according to claim 7, characterized in that: The first alignment part (120) includes at least two first alignment holes, and the first mating part (210) includes at least two first insertion blocks, with the first alignment holes and the first insertion blocks corresponding to each other for insertion and mating.

9. The chiller bottom tray assembly according to claim 1, characterized in that: The second alignment part (220) includes a second notch, and the second mating part (310) includes a second insertion block, which is inserted into the second notch.

10. The chiller base tray assembly according to claim 9, characterized in that: The second alignment part (220) includes at least two second notches, and the second mating part (310) includes at least two second insertion blocks, which are inserted into the second notches one by one.