Assembled machine body of elevator
By designing a hoist assembly body composed of symmetrical plates, middleware and spliced connectors, and fixing them with fasteners and/or welding, the problems of high production costs and maintenance difficulties in the existing hoist housing structure are solved, and higher stability and maintainability are achieved.
Patent Information
- Application Number
- CN202421592422.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-05
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-07-05
AI Technical Summary
The shell structure of the existing hoist is expensive to produce, and due to the fully enclosed state, it is difficult to clean the material adhered to the inside of the shell and it is difficult to maintain.
Design a hoist assembled body, adopting a multi-stage interdependent body structure, consisting of symmetrical plates, middleware and splicing connectors, and fixing them through fasteners and/or welding to realize the assembly of the body body.
The appearance neatness and accuracy of the body body is achieved, assembly traces are avoided, assembly stability between components is enhanced, operation stability and life are improved, and cleaning and maintenance are facilitated.
Smart Images

Figure CN222934556U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of material transportation equipment, in particular to an assembled fuselage of an elevator. Background Art
[0002] The utility model patent with the Chinese patent number CN202221341859.5 discloses a housing structure of an elevator, which includes a main housing, and the main housing is composed of a feeding channel outer shell assembly, a lifting channel outer shell assembly, and a discharging channel outer shell assembly; the feeding channel outer shell assembly, the lifting channel outer shell assembly, and the discharging channel outer shell assembly are respectively spliced by a plurality of flanged plates. The above structure uses a plurality of flanged plates to splice the feeding channel outer shell assembly, the lifting channel outer shell assembly, and the discharging channel outer shell assembly respectively, which is not only convenient for production and processing, but also can improve the structural strength and reduce the deformation problem of the main housing. However, the elevator with the housing structure has a high production cost. At the same time, since the inside of the housing is in a fully enclosed state, it is very difficult to clean the material adhering to the inside of the housing. In addition, it is also very difficult to maintain when problems occur in the internal components of the housing.
[0003] Therefore, it is necessary to further improve. Summary of the Utility Model
[0004] The utility model aims to provide an assembled fuselage of an elevator to overcome the deficiencies in the prior art.
[0005] An assembled fuselage of an elevator designed according to this purpose includes a fuselage main body, and the fuselage main body is composed of multiple mutually dependent bodies. The body is composed of symmetric plates and an intermediate member located between the symmetric plates. A splicing connecting member is arranged between adjacent bodies, and the inner sides between the intermediate member and the symmetric plates and between the splicing connecting member and the body are respectively fixed to each other by fasteners and / or welding.
[0006] The body at least includes a lower horizontal body and an ascending body. The lower horizontal body and the ascending body are mutually dependent at the head and tail. One of the inner sides of the lower horizontal body and the ascending body is fixed to the splicing connecting member by fasteners, and the other inner side is fixed to the splicing connecting member by welding.
[0007] The lower horizontal body includes lower horizontal plates and a horizontal intermediate member. There are two lower horizontal plates, which are symmetric left and right. There is at least one horizontal intermediate member, which is located between the two lower horizontal plates. The two ends of the horizontal intermediate member are respectively fixed to the inner sides of the two lower horizontal plates by welding.
[0008] The ascending-section body includes ascending plates and an ascending intermediate member. There are two ascending plates which are symmetric left and right. There is at least one ascending intermediate member which is located between the two ascending plates. The two ends of the ascending intermediate member are respectively fixed to the inner sides of the two ascending plates by welding.
[0009] Relying plates are respectively and fixedly arranged at the two ends of the horizontal intermediate member and the ascending intermediate member, and respectively rely on and are welded to the inner sides of the lower horizontal plate and the ascending plate through the relying plates.
[0010] The lower horizontal plate and the ascending plate rely on each other end to end. At least part of the splicing connecting member is fixedly connected to the inner side of the lower horizontal plate through fasteners, and the remaining part of the splicing connecting member is fixedly connected to the inner side of the ascending plate by welding.
[0011] A reinforcing member is also fixedly arranged between the symmetric splicing connecting members.
[0012] An arc or an angle transition is formed between the lower horizontal plate and the ascending plate.
[0013] A first arc segment and an ascending extension segment are integrally arranged in sequence at the end of the lower horizontal plate facing the ascending plate. The ascending extension segment relies on the ascending plate. An end plate is arranged at the end of the lower horizontal plate far from the ascending plate. The two ends of the end plate are respectively fixed to the inner sides of the two lower horizontal plates by welding. A second arc segment and a horizontal extension segment are integrally arranged in sequence at the end of the ascending plate far from the lower horizontal plate.
[0014] Inner bending edges of the lower horizontal plate are respectively turned over towards the inside at the upper and lower edges of the lower horizontal plate, the first arc segment and the ascending extension segment. Inner bending edges of the ascending plate are respectively turned over towards the inside at the upper and lower edges of the ascending plate, the second arc segment and the horizontal extension segment. Inner bending edges of the end plate are respectively turned over towards the inside at the upper and lower edges of the end plate. Horizontal plate notch parts corresponding to the first arc segment are arranged on the upper and lower inner bending edges of the lower horizontal plate. A first arc plate is fixedly welded on the horizontal plate notch parts. Ascending plate notch parts corresponding to the second arc segment are arranged on the upper and lower inner bending edges of the ascending plate. A second arc plate is fixedly welded on the ascending plate notch parts. At least part of the splicing connecting member is fixedly connected to the inner side of the ascending extension segment and / or the inner bending edge of the lower horizontal plate of the ascending extension segment through fasteners, and the remaining part of the splicing connecting member is fixedly connected to the inner side of the ascending plate and / or the inner bending edge of the ascending plate of the ascending plate by welding.
[0015] Through the improvement of the above structure, the utility model fixes the middle piece between the symmetrical plates by means of fasteners and / or welding to form multiple different body parts. Then, after the multiple different body parts rely on each other, the splicing connecting piece is fixed inside the multiple relying body parts by means of fasteners and / or welding, thus realizing the assembly of the fuselage main body. Since the middle piece and the splicing connecting piece are both arranged inside, and at the same time the fasteners and / or welding are fixed inside the symmetrical plates and the adjacent body parts, after the fuselage main body is assembled, there will be no assembly marks on its outer surface, which not only improves the appearance neatness and accuracy of the fuselage main body, but also the middle piece, the splicing connecting piece, the fasteners and / or welding will not leak out, so as to avoid the problem of assembly loosening caused by foreign object contact, effectively ensuring the assembly stability between components and improving the use stability and service life of the fuselage main body. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic diagram of the assembly structure of an embodiment of the utility model.
[0017] Figure 2 It is a schematic diagram of the assembly structure of another perspective of an embodiment of the utility model.
[0018] Figure 3 It is a schematic diagram of the exploded structure of an embodiment of the utility model.
[0019] Figure 4 It is a schematic diagram of the exploded structure of another perspective of an embodiment of the utility model.
[0020] Figure 5 It is a schematic diagram of the assembly structure of the fuselage main body.
[0021] Figure 6 It is a schematic diagram of the assembly structure of another perspective of the fuselage main body.
[0022] Figure 7 For Figure 5 the enlarged schematic diagram of the X position in
[0023] Figure 8 For Figure 6 the enlarged schematic diagram of the Y position in
[0024] Figure 9 It is a schematic diagram of the exploded structure of the fuselage main body.
[0025] Figure 10 It is a schematic diagram of the exploded structure of another perspective of the fuselage main body.
[0026] Figure 11 It is a schematic diagram of the exploded structure of the lower horizontal section body.
[0027] Figure 12It is a schematic diagram of the decomposition structure of the ascending section of the fuselage. Specific implementation mode
[0028] In order to make the above-mentioned objects, features and advantages of the present utility model more obvious and understandable, the specific implementation mode of the present utility model will be described in detail below with reference to the accompanying drawings. Many specific details are set forth in the following description in order to fully understand the present utility model. However, the present utility model can be implemented in many other ways different from those described herein, and those skilled in the art can make similar improvements without departing from the connotation of the present utility model. Therefore, the present utility model is not limited by the specific embodiments disclosed below.
[0029] The present utility model will be further described below with reference to the accompanying drawings and embodiments.
[0030] See Figures 1-12 , the assembled fuselage of this elevator includes a fuselage main body, which is composed of multiple sections of mutually dependent fuselages. The fuselage is composed of symmetric plate members and intermediate members located between the symmetric plate members. A splicing connecting member 1 is provided between adjacent fuselages. The inner sides between the intermediate member and the symmetric plate member, and between the splicing connecting member 1 and the fuselage are respectively fixed to each other by fasteners and / or welding.
[0031] In this embodiment, the intermediate member is fixed between the symmetric plate members by means of fasteners and / or welding to form multiple different fuselages. Then, after the multiple different fuselages are mutually dependent, the splicing connecting member 1 is fixed to the inner sides of the multiple mutually dependent fuselages by means of fasteners and / or welding, so as to realize the assembly of the fuselage main body. Since the intermediate member and the splicing connecting member 1 are both arranged on the inner side, and the fasteners and / or welding are both fixed on the inner sides of the symmetric plate members and adjacent fuselages, after the fuselage main body is assembled, no assembly marks will appear on its outer surface, which not only improves the appearance neatness and accuracy of the fuselage main body, but also the intermediate member, the splicing connecting member 1, the fasteners and / or welding will not leak out, so as to avoid the problem of assembly loosening caused by foreign object contact, effectively ensuring the assembly stability between components and improving the use stability and service life of the fuselage main body.
[0032] The fuselage main body is in an open state as a whole after splicing, which is convenient for cleaning the materials adhered to the symmetric plate members, the intermediate member and the splicing connecting member 1. At the same time, it is also convenient for disassembling and maintaining the symmetric plate members, the intermediate member, the splicing connecting member 1, and other parts arranged on the above-mentioned components, with strong practicability.
[0033] The fuselage at least includes a lower horizontal section fuselage A and an ascending section fuselage B. The lower horizontal section fuselage A and the ascending section fuselage B are mutually dependent at the head and tail. One of the inner sides of the lower horizontal section fuselage A and the ascending section fuselage B is fixed to the splicing connecting member 1 by fasteners, and the other inner side is fixed to the splicing connecting member 1 by welding.
[0034] Specifically, the lower horizontal section body A includes a lower horizontal plate member A1 and a horizontal intermediate member A2. There are two lower horizontal plate members A1, which are symmetric left and right. There is at least one horizontal intermediate member A2, which is located between the two lower horizontal plate members A1. Both ends of the horizontal intermediate member A2 are fixedly connected to the inner sides of the two lower horizontal plate members A1 by welding.
[0035] The ascending section body B includes an ascending plate member B1 and an ascending intermediate member B2. There are two ascending plate members B1, which are symmetric left and right. There is at least one ascending intermediate member B2, which is located between the two ascending plate members B1. Both ends of the ascending intermediate member B2 are fixedly connected to the inner sides of the two ascending plate members B1 by welding.
[0036] At both ends of the horizontal intermediate member A2 and the ascending intermediate member B2, there are support plates 2 fixedly arranged, and they are respectively supported and welded to the inner sides of the lower horizontal plate member A1 and the ascending plate member B1 through the support plates 2.
[0037] In this embodiment, there are several horizontal intermediate members A2 and several ascending intermediate members B2. The several horizontal intermediate members A2 are spaced apart along the direction in which the lower horizontal plate member A1 is arranged, and support plates 2 are fixedly welded at both ends. The several horizontal intermediate members A2 are respectively supported against the inner side of the lower horizontal plate member A1 through the support plates 2 and then fixed by welding.
[0038] The several ascending intermediate members B2 are spaced apart along the direction in which the ascending plate member B1 is arranged, and support plates 2 are fixedly welded at both ends. The several ascending intermediate members B2 are respectively supported against the inner side of the ascending plate member B1 through the support plates 2 and then fixed by welding.
[0039] By using a plurality of horizontal intermediate members A2 and ascending intermediate members B2 to be respectively fixed horizontally between the symmetric left and right lower horizontal plate members A1 and ascending plate members B1, the structural strength of the lower horizontal section body A and the ascending section body B is effectively improved. In addition, the setting of the support plates 2 can increase the welding contact area between the horizontal intermediate member A2 and the lower horizontal plate member A1, and between the ascending intermediate member B2 and the ascending plate member B1, avoiding false welding and improving the fastening and stability between them.
[0040] The lower horizontal plate member A1 and the ascending plate member B1 are supported end to end. At least part of the splicing connector 1 is fixedly connected to the inner side of the lower horizontal plate member A1 by fasteners, and the remaining part of the splicing connector 1 is fixedly connected to the inner side of the ascending plate member B1 by welding.
[0041] A reinforcing member 3 is also fixedly arranged between the symmetric splicing connectors 1. By this means, the symmetric splicing connectors 1 are fixed by the horizontally fixed reinforcing member 3, which not only further improves the structural hardness of the lower horizontal section body A and the ascending section body B, but also improves the cooperation stability between the splicing connectors 1 and the lower horizontal plate member A1 and the ascending plate member B1 respectively.
[0042] An arc or an angle transition is formed between the lower horizontal plate member A1 and the ascending plate member B1.
[0043] In this embodiment, an arc transition is preferably adopted between the lower horizontal plate member A1 and the ascending plate member B1.
[0044] Specifically, a first arc section A3 and an ascending extension section A4 are integrally arranged in sequence at the end of the lower horizontal plate member A1 facing the ascending plate member B1. The ascending extension section A4 leans on the ascending plate member B1. An end plate 4 is arranged at the end of the lower horizontal plate member A1 far from the ascending plate member B1. Both ends of the end plate 4 are fixedly connected to the inner sides of the two lower horizontal plate members A1 by welding. By this means, the structural strength between the ends of the two lower horizontal plate members A1 can be improved. A second arc section B3 and a horizontal extension section B4 are integrally arranged in sequence at the end of the ascending plate member B1 far from the lower horizontal plate member A1. By this means, the overall fuselage main body is in an S shape after splicing.
[0045] The upper and lower edges of the lower horizontal plate member A1, the first arc section A3 and the ascending extension section A4 are respectively turned inwards to form lower horizontal plate inner bending edges A5. The upper and lower edges of the ascending plate member B1, the second arc section B3 and the horizontal extension section B4 are respectively turned inwards to form ascending plate inner bending edges B5. The upper and lower edges of the end plate 4 are respectively turned inwards to form end plate inner bending edges 5.
[0046] In this embodiment, by using the lower horizontal plate inner bending edges A5, the ascending plate inner bending edges B5 and the end plate inner bending edges 5, not only the structural hardness of the lower horizontal section body A, the ascending section body B and the end plate 4 is further improved, but also the edge flash of the lower horizontal section body A, the ascending section body B and the end plate 4 can be avoided, reducing the risk of injury to users during use and improving the use safety of the fuselage main body.
[0047] The upper and lower lower horizontal plate inner bending edges A5 are provided with horizontal plate notch parts A6 corresponding to the first arc section A3, and a first arc plate A7 is fixedly welded on the horizontal plate notch parts A6. The upper and lower ascending plate inner bending edges B5 are provided with ascending plate notch parts B6 corresponding to the second arc section B3, and a second arc plate AB is fixedly welded on the ascending plate notch parts B6. By this means, it is convenient for the first arc section A3 and the second arc section B3 to be formed on the lower horizontal plate member A1 and the ascending plate member B1 respectively, facilitating production and processing.
[0048] The splicing connector 1 is at least partially fixed to the inner side of the rising extension section A4 and / or the inner bent edge A5 of the lower horizontal plate of the rising extension section A4 by fasteners, and the remaining part of the splicing connector 1 is fixed to the inner side of the rising plate member B1 and / or the rising plate inner bent edge B5 of the rising plate member B1 by welding.
[0049] Specifically, six splicing connectors 1 are provided in this embodiment. One end of two of the splicing connectors 1 is respectively fixed to the inner bent edge A5 of the lower horizontal plate of the rising extension section A4 by fasteners, and the other end is respectively fixed to the rising plate inner bent edge B5 of the rising plate member B1 by welding. One end of the other two splicing connectors 1 is respectively fixed to the rising extension section A4 by fasteners, and the other end is respectively fixed to the rising plate member B1 by welding. One end of the last two splicing connectors 1 is respectively fixed to the rising extension section A4 by fasteners, and the other end is respectively fixed to the rising plate member B1 by welding. At the same time, a reinforcing member 3 is also welded and fixed between the two splicing connectors 1. Thereby, the assembly stability between the lower horizontal section body A and the rising section body B can be effectively ensured.
[0050] In this embodiment, a lower horizontal plate support foot 6 is further fixed to the bottom of the lower horizontal plate member A1, a rising plate support foot 7 is further fixed to the outer side of the rising plate member B1, and a connecting bracket 8 is further fixed to the bottom of the rising plate member B1 or the second arc section B3 or the horizontal extension section B4, and the lower inclined material guiding plate 9 is disassembled and assembled through the connecting bracket 8. The lower inclined material guiding plate 9 is located between the bottoms of the left and right rising plate members B1, the second arc section B3, and the horizontal extension section B4.
[0051] The above is the preferred solution of the present invention, which shows and describes the basic principle, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principle of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.
Claims
1. An assembled body of a hoist, comprising a body main body, characterized in that: The fuselage body is composed of multiple sections of mutually dependent fuselages, the fuselages are composed of symmetrical panels and intermediate pieces located between the symmetrical panels, and splicing connectors (1) are provided between adjacent fuselages, and the inner sides between the intermediate pieces and the symmetrical panels and between the splicing connectors (1) and the fuselages are fixed to each other by fasteners and / or welding.
2. The assembled body of the hoist according to claim 1, characterized in that: The machine body at least comprises a lower horizontal section machine body (A) and an ascending section machine body (B), wherein the lower horizontal section machine body (A) and the ascending section machine body (B) are mutually supported end to end, and the inner side of one of the lower horizontal section machine body (A) and the ascending section machine body (B) is fixed to the splicing connection piece (1) by a fastener, and the inner side of the other one of the lower horizontal section machine body (A) and the ascending section machine body (B) is fixed to the splicing connection piece (1) by welding.
3. The assembled body of the hoist according to claim 2, characterized in that: The lower horizontal section body (A) comprises a lower horizontal plate (A1) and a horizontal middle piece (A2), wherein two lower horizontal plates (A1) are provided and are symmetrical on both sides, and at least one horizontal middle piece (A2) is provided and is located between the two lower horizontal plates (A1), and the two ends of the horizontal middle piece (A2) are respectively fixed to the inner sides of the two lower horizontal plates (A1) by welding.
4. The assembled body of the hoist according to claim 3, characterized in that: The ascending section body (B) comprises an ascending plate (B1) and an ascending middle piece (B2), wherein two ascending plates (B1) are provided and are symmetrical on both sides, and at least one ascending middle piece (B2) is provided and is located between the two ascending plates (B1), and the two ends of the ascending middle piece (B2) are respectively fixed to the inner sides of the two ascending plates (B1) by welding.
5. The assembled body of the hoist according to claim 4, characterized in that: Both ends of the horizontal middle piece (A2) and the rising middle piece (B2) are respectively fixedly provided with supporting plates (2), and the supporting plates (2) are respectively supported and welded to the inner sides of the lower horizontal plate (A1) and the rising plate (B1).
6. The assembled body of the hoist according to claim 5, characterized in that: The lower horizontal plate (A1) and the rising plate (B1) are supported end to end, and at least a portion of the spliced connecting member (1) is fixed to the inner side of the lower horizontal plate (A1) by fasteners, and the remaining portion of the spliced connecting member (1) is fixed to the inner side of the rising plate (B1) by welding.
7. The assembled body of the hoist according to claim 6, characterized in that: Reinforcement members (3) are also fixedly arranged between the symmetrical splicing connectors (1).
8. The assembled body of the hoist according to claim 6, characterized in that: The lower horizontal plate (A1) and the rising plate (B1) are transitioned in an arc or at an angle.
9. The assembled body of the hoist according to claim 6, characterized in that: The lower horizontal plate (A1) is provided with a first arc section (A3) and a rising extension section (A4) in sequence and in an integral manner towards the end of the rising plate (B1); the rising extension section (A4) rests on the rising plate (B1); the lower horizontal plate (A1) is provided with an end plate (4) at the end away from the rising plate (B1); the two ends of the end plate (4) are respectively fixed to the inner sides of the two lower horizontal plates (A1) by welding; the rising plate (B1) is provided with a second arc section (B3) and a horizontal extension section (B4) in sequence and in an integral manner at the end away from the lower horizontal plate (A1).
10. The assembled body of the hoist according to claim 9, characterized in that: The upper and lower edges of the lower horizontal plate (A1), the first arc section (A3) and the rising extension section (A4) are respectively turned inwardly with lower horizontal plate inner bending edges (A5); the upper and lower edges of the rising plate (B1), the second arc section (B3) and the horizontal extension section (B4) are respectively turned inwardly with rising plate inner bending edges (B5); the upper and lower edges of the end plate (4) are respectively turned inwardly with end plate inner bending edges (5); the upper and lower lower horizontal plate inner bending edges (A5) are provided with horizontal plate notches (A6) corresponding to the first arc section (A3); the horizontal plate notches (A6) are welded and fixed A first arc-shaped plate (A7) is provided, and an ascending plate notch (B6) is provided on the upper and lower ascending plate inner bent edges (B5) corresponding to the second arc-shaped section (B3); a second arc-shaped plate (AB) is welded and fixed on the ascending plate notch (B6); at least a portion of the splicing connection member (1) is fixed to the inner side of the ascending extension section (A4) and / or the inner bent edge (A5) of the lower horizontal plate of the ascending extension section (A4) by fasteners; and the remaining portion of the splicing connection member (1) is fixed to the inner side of the ascending plate member (B1) and / or the inner bent edge (B5) of the ascending plate member (B1) by welding.
Citation Information
Patent Citations
Housing structure of elevator
CN217707494U