Elevator door motor mounting and adjusting device
By using a measuring ruler with graduated lines and a spirit level, along with removable pads, during the elevator door operator installation process, the inconvenience and error problems of traditional testing methods are solved, enabling efficient and precise installation of the elevator door operator and improving the stability and safety of elevator operation.
Patent Information
- Application Number
- CN202423262795.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2034-12-27
AI Technical Summary
Traditional elevator door operator installation methods are inconvenient and prone to errors, resulting in insufficient installation accuracy and stability, which affects the stability and safety of elevator operation.
Design an elevator door operator installation and adjustment device, which adopts a measuring ruler body with scale lines and a spirit level, and is equipped with detachable pads for real-time detection and adjustment of the horizontal and verticality of the elevator door operator, and achieves precise installation by adding or removing pads.
It improves the accuracy and stability of elevator door operator installation, reduces operational complexity and errors, enhances the safety and stability of elevator operation, and meets the needs of different installation environments.
Smart Images

Figure CN223534668U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of elevator technology, specifically to an elevator door operator installation and adjustment device. Background Technology
[0002] An elevator door operator is a mechanism responsible for opening and closing elevator hall and car doors. When it receives an elevator door opening or closing signal, the elevator door operator controls the door opening motor through its own control system, converting the torque generated by the motor into a force in a specific direction to close or open the door.
[0003] Currently, during the installation of elevator door operators, to ensure the stability of the connection between the operator and the elevator door, as well as the driving stability of the operator, it is often necessary to test the overall structure of the elevator door operator for horizontal and vertical alignment. Traditional testing methods typically use screwdrivers or wrenches to adjust the gap between the operator and the door by tightening the bolts, while simultaneously using a measuring ruler to measure the distance to ensure a certain level of horizontal and vertical alignment. This testing method is inconvenient and complex to operate; moreover, it introduces certain testing errors, reducing the installation accuracy of the elevator door operator and increasing the instability during elevator operation. Utility Model Content
[0004] The purpose of this utility model is to provide an elevator door operator installation and adjustment device. This device can facilitate the detection of horizontality and verticality during the motor installation process, making operation convenient and effectively improving the efficiency and accuracy of elevator door operator installation.
[0005] The technical solution adopted by this utility model to solve the above problems is:
[0006] An elevator door operator installation and adjustment device includes a plate and a measuring ruler body formed by scale lines and a spirit level bubble on the plate. The measuring ruler body is provided with several sets of pads. The pads are detachably installed on the measuring ruler body through a placement groove on the plate and a sealing cover rotatably provided on the placement groove.
[0007] Preferably, scale lines are provided on the upper and lower sides of the plate, and multiple sets of scale lines are marked along the corresponding side of the plate. The spirit level has protrusions on the upper and lower sides of the plate and is provided in multiple sets corresponding to the marking directions of the multiple sets of scale lines.
[0008] Preferably, the spirit level is detachably mounted on the plate body via multiple sets of slots provided at corresponding positions on the plate body.
[0009] Preferably, a second slot is provided on the corresponding side of the plate, and multiple sets of the second slots are provided with different sizes.
[0010] Preferably, the plurality of pads are arranged with different thicknesses and one end of the pads is provided with a pointed structure, and the plurality of pads are placed in the corresponding cavities through multiple sets of isolation plates provided in the placement groove.
[0011] Preferably, the pad is also marked with a second scale line.
[0012] Preferably, the isolation plate has a groove and an identification card is affixed to the top of the isolation plate along both sides of the groove.
[0013] Preferably, the plate is also provided with a hand catch and a stop for locking the sealing cover. The stop is slidably mounted on the plate through a groove provided at a corresponding position on the plate and multiple sets of compression springs connected to the stop are provided inside the groove.
[0014] Preferably, the stop includes a connecting seat that is slidably disposed on the plate body and connected to the compression spring in a corresponding groove, and a connecting plate that is detachably installed on the connecting seat through a plug-in structure.
[0015] Preferably, the plate body is further provided with a second placement groove and a second sealing cover is rotatably disposed on the second placement groove. The second placement groove forms multiple cavities through a second isolation plate disposed inside, and multiple sets of second grooves are opened along different arrangement directions of the second isolation plate. The second sealing cover is engaged by a second stop block with an adaptive stop block structure slidably disposed at a corresponding position on the plate body.
[0016] Compared with the prior art, this utility model has the following advantages and effects:
[0017] This utility model relates to an elevator door operator installation and adjustment device. The corresponding design of the main structure of this measuring ruler allows for convenient real-time detection and adjustment of the horizontal and vertical alignment during elevator door operator installation via its scale lines and spirit level. Furthermore, the measuring ruler's main body includes shims, facilitating portability and use. Adjustments can be made by adding or removing shims according to the installation requirements of the elevator door operator. This ensures uniformity, convenience, and efficiency in adjusting the height of the elevator door operator at corresponding positions during adjustment. Additionally, it allows for shimming and leveling according to different installation environments, effectively reducing unnecessary damage to the frame during adjustment. This further improves the installation stability, accuracy, and efficiency of the elevator door operator, as well as the stability and safety of the elevator during operation, meeting diverse installation environments and requirements, and enhancing operational convenience and flexibility. Attached Figure Description
[0018] Figure 1-2 This is a schematic diagram of the overall structure of an elevator door operator installation and adjustment device according to an embodiment of the present invention.
[0019] Figure 3 This is a partial enlarged view of the main structure of the measuring ruler according to an embodiment of this utility model.
[0020] Figure 4 This is an enlarged view of the connection structure between the stop block and the plate in an embodiment of this utility model.
[0021] Figure 100: Measuring ruler body 100, plate 1, scale line 11, placement groove 12, isolation plate 13, groove 131, identification card 132, sealing cover 14, card slot 15, second card slot 16, hand buckle 17, second placement groove 18, second sealing cover 181, second isolation plate 182, second groove 183, slide 19, compression spring 191, spirit level 2, pad 3, tip structure 31, second scale line 32, baffle 4, connecting seat 41, pin 411, connecting plate 42, insertion hole 421, second stop block 5. Detailed Implementation
[0022] The present invention will now be described in detail with reference to the accompanying drawings and through embodiments. The following embodiments are explanations of the present invention, but the present invention is not limited to the following embodiments.
[0023] See Figure 1-3 This embodiment relates to an elevator door operator installation and adjustment device, including a plate 1 and a measuring ruler body 100 formed by a scale line 11 and a spirit level 2 provided on the plate 1. The measuring ruler body 100 is provided with a plurality of pads 3. The pads 3 are detachably installed on the measuring ruler body 100 through a placement groove 12 provided on the plate 1 and a sealing cover 14 rotatably provided on the placement groove 12.
[0024] Specifically in this embodiment, such as Figure 1 and Figure 2 The overall structure of the measuring ruler body 100 shown is designed so that, during the installation of the elevator door operator, the distances between the elevator door operator and the elevator car door, and between the elevator door operator and the landing door, can be measured using the scale lines 11 on the measuring ruler body 100 according to installation requirements. Simultaneously, the level and verticality of the elevator door operator can be monitored and adjusted in real time using the spirit level 2 on the measuring ruler body 100. Furthermore, during the installation and adjustment of the elevator door operator, please refer to... Figure 3As shown, the pad 3 in the placement groove 12 is removed by rotating the sealing cover 14 on the plate 1. The pad 3 can be installed in multiple sets of pads at the corresponding gaps between the elevator door operator and the elevator door or the door knife or mounting bracket of the elevator door operator during the elevator door operator adjustment process, according to the elevator door operator installation requirements. The size and thickness of the pad 3 can be set according to the specific installation requirements of the elevator door operator. The pad 3 can be installed in multiple sets of pads of uniform thickness at corresponding positions according to the adjustment needs of the elevator door operator. Then, the gap is adjusted by rotating the bolt connecting parts at the corresponding positions with a screwdriver or wrench. Through the process of adjusting and removing the corresponding number of pads 3, the installation and adjustment process of the elevator door operator at a uniform horizontal height and a certain spacing is achieved. The corresponding design of the main body 100 of this measuring ruler not only allows for real-time detection and adjustment of the horizontal and vertical alignment during elevator door operator installation via the scale lines 11 and the spirit level 2, but also features pads 3 that facilitate carrying and use. These pads can be added or removed according to the installation requirements of the elevator door operator, ensuring uniformity, convenience, and efficiency in height adjustment at corresponding positions. Furthermore, they allow for gap-filling and leveling processes based on different installation environments, effectively reducing unnecessary damage to the frame during adjustment. This further improves the installation stability, accuracy, and efficiency of the elevator door operator, as well as the stability and safety during elevator operation, meeting diverse installation environments and requirements, and enhancing operational convenience and flexibility.
[0025] The plate body 1 has scale lines 11 on both its upper and lower sides. Multiple sets of scale lines 11 are arranged along the corresponding side edges of the plate body 1. The spirit level 2 has protrusions on both sides of the plate body 1 and is arranged in multiple sets corresponding to the marking directions of the scale lines 11. Specifically, from... Figure 1 and Figure 2 As can be seen, the multiple sets of scale lines 11 arranged on the plate 1 and the multiple sets of spirit levels 2 installed at corresponding positions in this manner can facilitate the operator to perform measurement processes in different directions according to different measurement requirements. It can also facilitate the operator to observe and judge the test results in the corresponding directions. Combined with multiple sets of spirit levels 2 facing different directions, the measurement convenience, efficiency and accuracy of this measuring ruler body 100 can be further improved.
[0026] The level bubble 2 is detachably mounted on the plate 1 via multiple sets of slots 15 provided at corresponding positions on the plate 1. Figure 1 or Figure 2As can be seen, the level bubble 2 can be locked in place by the adapter slot 15 opened at the corresponding position on the plate 1, which facilitates the installation, disassembly, replacement, cleaning and other operations, and improves the flexibility and convenience of use.
[0027] The corresponding side of the plate 1 is also provided with a second slot 16. The second slot 16 is provided in multiple sets and is set in different sizes. The multiple sets of second slots 16 with different sizes on the corresponding side of the plate 1 can be used to fit the corresponding frame side block or outer edge of the elevator door operator according to the specific measurement requirements. This can further improve the fit and accuracy of the measuring ruler body 100 in the measurement process at different positions.
[0028] The aforementioned sets of pads 3 are arranged with different thicknesses and each pad 3 has a pointed structure 31 at one end. The aforementioned sets of pads 3 are placed in the corresponding cavities through multiple sets of isolation plates 13 arranged in the placement groove 12. Figure 3 As can be seen, the pad 3 can be set in multiple groups with different thicknesses according to actual usage needs, and placed in the corresponding cavities in the placement groove 12. During padding, multiple groups of pads 3 with corresponding thicknesses can be used in combination. At the same time, the pointed structure 31 set at one end of the pad 3 can facilitate the padding process in the corresponding gaps and grooves, further improving the effect, applicability and practicality of the pad 3.
[0029] The pad 3 is also marked with a second scale line 32. The pad 3 can also be adapted and calibrated with the second scale line 32 according to the usage requirements, so that the pad 3 can be used as a small measuring ruler and for measuring the corresponding depth in the corresponding groove. This facilitates the use and measurement process in different positions, and also improves the uniformity of the pad 3 when it is placed in the corresponding position, improves the placement effect and stability of the pad 3, and meets different usage requirements.
[0030] The isolation plate 13 has a groove 131 and an identification card 132 is attached to the top of the isolation plate 13 along both sides of the groove 131. The identification card 132 on the top of the isolation plate 13 can mark and display the model information of the pad 3 placed in the cavity corresponding to the placement slot 12. At the same time, in conjunction with the groove 131 with a matching shape on the corresponding position of the isolation plate 13, the pad 3 can be easily picked up, improving the convenience and efficiency of the operation process.
[0031] like Figure 3-4As shown, the plate 1 is also provided with a handle 17 and a stop for locking the sealing cover 14. The stop is slidably mounted on the plate 1 through a sliding groove 19 locked at a corresponding position on the plate 1 and multiple sets of compression springs 191 connected to the stop inside the sliding groove 19. In specific use, the handle 17 structure on the plate 1 facilitates the taking, carrying and use of the measuring ruler body 100. At the same time, in use, the baffle 4 can be moved along the sliding groove 19 on the plate 1 in the corresponding direction. With the action of the compression springs 191 connected to it in the sliding groove 19, the sealing cover 14 can be opened and closed, which further improves the sealing effect of the sealing cover 14 and the convenience of taking out the corresponding pad 3 in the placement groove 12.
[0032] The stop block includes a connecting seat 41 slidably disposed on the plate 1 within a corresponding groove 19 and connected to a compression spring 191, and a connecting plate 42 detachably mounted on the connecting seat 41 via a plug-in structure. See details for further information. Figure 4 As shown, the stop block is detachably connected by a pin 411 on its corresponding seat body with a corresponding insertion hole 421 and a connecting seat 41. This further improves the structural detachability and disassembly flexibility of the measuring ruler body 100, making it easy to adjust and meet different usage needs.
[0033] The plate 1 is further provided with a second placement groove 18, and a second sealing cover 181 is rotatably mounted on the second placement groove 18. The second placement groove 18 forms multiple cavities through a second partition plate 182 provided inside, and multiple sets of second grooves 183 are provided along different arrangement directions of the second partition plate 182. The second sealing cover 181 is engaged by a second stop 5 with a matching stop structure slidably provided at a corresponding position on the plate 1. Figure 3 As shown, the second placement slot 18 is designed to fit the structure of the placement slot 12. Multiple cavities formed by the second partition plate 182 allow for the storage and organization of installation tools such as screwdrivers or wrenches, with adaptable structures to meet usage requirements. Combined with the second groove 183 on the second partition plate 182, the second sealing cover 181 rotatably mounted on the second placement slot 18, and the second stop block 5 on the plate 1 for engaging the second sealing cover 181, the placement slot 12, along with the pad block 3 stored within, facilitates the retrieval and use of the corresponding installation tools. This further enhances the functionality, ease of use, and efficiency of the measuring ruler body 100, improving its applicability and practicality.
[0034] The above description in this specification is merely illustrative of the present invention. Those skilled in the art to which this invention pertains may make various modifications or additions to the described specific embodiments or use similar methods to replace them, as long as they do not depart from the content of this specification or exceed the scope defined in the claims, all of which shall fall within the protection scope of this invention.
Claims
1. An elevator door operator installation and adjustment device, comprising a plate and a measuring ruler body formed by scale lines and a spirit level bubble disposed on it, characterized in that: The measuring ruler body is provided with several sets of pads, which are detachably installed on the measuring ruler body through placement slots opened on the plate and sealing covers rotatably set on the placement slots.
2. The elevator door operator installation and adjustment device according to claim 1, characterized in that: The plate has scale lines on both the upper and lower sides. The scale lines are marked along the corresponding side of the plate and there are multiple sets of them. The spirit level has protrusions on both the upper and lower sides of the plate and is set in multiple sets corresponding to the marking direction of the scale lines.
3. The elevator door operator installation and adjustment device according to claim 1, characterized in that: The leveling bubble can be detachably installed on the plate body through multiple sets of slots provided at corresponding positions on the plate body.
4. The elevator door operator installation and adjustment device according to claim 1, characterized in that: The corresponding side of the plate is also provided with a second slot, and there are multiple sets of the second slots with different sizes.
5. The elevator door operator installation and adjustment device according to claim 1, characterized in that: The aforementioned sets of pads are arranged with different thicknesses and one end of each pad has a pointed structure. The aforementioned sets of pads are placed in the corresponding cavities through multiple sets of isolation plates arranged in the placement groove.
6. The elevator door operator installation and adjustment device according to claim 5, characterized in that: The pad is also marked with a second scale line.
7. The elevator door operator installation and adjustment device according to claim 5, characterized in that: The isolation plate has grooves and identification cards are affixed to the top of the isolation plate along both sides of the grooves.
8. The elevator door operator installation and adjustment device according to claim 1, characterized in that: The plate is also provided with a hand catch and a stop for locking the sealing cover. The stop is slidably mounted on the plate through a groove provided at a corresponding position on the plate and multiple sets of compression springs connected to the stop are provided inside the groove.
9. The elevator door operator installation and adjustment device according to claim 8, characterized in that: The stop block includes a connecting seat that is slidably disposed on the plate body and connected to the compression spring in a corresponding groove, and a connecting plate that is detachably installed on the connecting seat through a plug-in structure.
10. The elevator door operator installation and adjustment device according to claim 9, characterized in that: The plate body is also provided with a second placement groove and a second sealing cover is rotatably installed on the second placement groove. The second placement groove forms multiple cavities through the second isolation plate provided inside, and multiple sets of second grooves are opened along different arrangement directions of the second isolation plate. The second sealing cover is locked by a second stop block with an adaptive stop block structure that is slidably provided on the corresponding position of the plate body.