Liftable displacement support suitable for single-stand-column stacking machine

By designing a liftable displacement bracket, the combination of hinges, clamping handles and cross joints is used to solve the problem of speed sensor installation in the narrow space of the stacker, and the flexible arrangement and efficient testing of the sensor are achieved.

CN222974818UActive Publication Date: 2025-06-13CHANGCHUN BEIFANG INSTR EQUIP +1
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202421791767.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-27
Publication Date
2025-06-13
Estimated Expiration
2034-07-27

AI Technical Summary

Technical Problem

In the compact and compact equipment space of the stacker, it is difficult to effectively install the speed sensor, especially because the shaft is not exposed, the sensor bracket is difficult to fix in the appropriate position.

Method used

A liftable displacement bracket suitable for single column stackers is designed, including base, pole, intermediate pole, cross joint and mounting rod. Through the combination of hinges, clamping handles and cross joints, flexible adjustment of the bracket and stable installation of the sensor are achieved.

Benefits of technology

The bracket can realize the flexible arrangement of the speed sensor in a narrow space, meet the needs of different angles, directions, heights and front and rear positions, and improve test efficiency and accuracy.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN222974818U_ABST
    Figure CN222974818U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of stackers, in particular to a liftable displacement support suitable for a single-column stacker, comprising: a base which can be controlled to be magnetized and demagnetized; one end of the vertical rod is hinged to the base through a hinge piece; one end of the middle rod is rotatably connected with the other end of the vertical rod through a clamping handle; the cross joint is provided with two mounting through holes of which the mounting directions are perpendicular to each other, and the cross joint is arranged on the middle rod in a sleeving manner through one of the mounting through holes and is fastened through a fastener; and the mounting rod is arranged in the other mounting through hole of the cross joint in a penetrating manner and is fastened through a fastener, and one end of the mounting rod is provided with a profiled groove for mounting a sensor. By adjusting the vertical rod, the middle rod and the mounting rod, the adjustment requirements of different angles, directions, heights and front and back positions of the rotating speed sensor are met at the same time, the arrangement requirement of the rotating speed sensor in a narrow and compact equipment space of the stacking machine is met, and the test efficiency and accuracy are improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the technical field of stackers, and particularly to a liftable and displaceable bracket applicable to a single-column stacker. Background Art

[0002] In the process of condition monitoring and fault diagnosis of a stacker, the working state of the reducer is a necessary monitoring and diagnosis item, and the rotational speeds of the rotating shafts at all levels of the reducer are an indispensable factor for judging the working state of the reducer.

[0003] Currently, the rotational speeds of the rotating shafts at all levels of the reducer are usually obtained through rotational speed sensors. However, due to the limited structural space of the stacker, the structural layout of the reducer is relatively compact, the gaps between components are relatively small, and the rotating shafts are usually not exposed outside. Therefore, it is not easy to fix the rotational speed sensor bracket at a position close to the rotating shaft. Moreover, the gearbox of the stacker is relatively large in size, and the axes are relatively high from the ground, resulting in difficulty for ordinary brackets to simultaneously meet the requirements of their vertical height and front-back position. Summary of the Invention

[0004] In view of this, this application aims to provide a liftable and displaceable bracket applicable to a single-column stacker to solve the technical problem of installing a rotational speed sensor in the narrow and compact equipment space of the stacker.

[0005] This application provides a liftable and displaceable bracket applicable to a single-column stacker, including:

[0006] A base 100, which can be controlled to magnetize and demagnetize.

[0007] A vertical rod 200, one end of which is hingedly connected to the base 100 through a hinge member 600.

[0008] An intermediate rod 300, one end of which is rotatably connected to the other end of the vertical rod 200 through a clamping handle 700.

[0009] A cross joint 400, which has two mounting through holes with mutually perpendicular mounting directions. The cross joint 400 is sleeved on the intermediate rod 300 through one of the mounting through holes and fastened with a fastener.

[0010] A mounting rod 500, which is inserted into the other mounting through hole of the cross joint 400 and fastened with a fastener. One end of the mounting rod 500 is provided with a profile groove 510 for installing a sensor.

[0011] Further, the hinge member 600 adopts a spherical hinge connection member.

[0012] Further, the hinge 600 is a universal joint connector.

[0013] Further, one end of the cross joint 400 is provided with a sliding sleeve 410, and the other end is provided with a clamp 420, thereby forming two installation through holes. The sliding sleeve 410 is used for sleeving with the intermediate rod 300, and the clamp 420 is used for sleeving with the installation rod 500.

[0014] Further, the sliding sleeve 410 and the clamp 420 are fastened by a fastener.

[0015] One or more technical solutions provided by this application have at least the following beneficial effects compared with the prior art:

[0016] A liftable and variable-position support applicable to a single-column stacker provided by this application. After the base is magnetized, it can be magnetically adsorbed to the stacker column to fix the position of the entire support. After the base is demagnetized, the position can be adjusted arbitrarily, making the layout of the support more flexible; the vertical rod and the base are hinged through a hinge, which can realize the omnidirectional rotation adjustment of the vertical rod; the vertical rod and the intermediate rod are rotatably connected by a clamping handle, which can adjust the angle between the vertical rod and the intermediate rod; the installation rod is connected to the intermediate rod through a cross joint, which can realize the adjustment of the height position of the installation rod in the vertical direction and the front-back position in the horizontal direction; the rotation speed sensor passes through the shaped hole at the end of the installation rod and is fixed by a fastening screw to realize the fixation of the rotation speed sensor.

[0017] This application provides a liftable and variable-position support applicable to a single-column stacker. By adjusting the vertical rod, the intermediate rod and the installation rod, it can simultaneously meet the adjustment requirements of the rotation speed sensor at different angles, directions, heights and front-back positions, realize the layout requirements of the rotation speed sensor in the narrow and compact equipment space of the stacker, and improve the test efficiency and accuracy. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the technical solutions of the exemplary embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments. Obviously, the introduced drawings are only the drawings of a part of the embodiments to be described by the present invention, rather than all the drawings. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0019] Figure 1 A schematic structural diagram of a liftable and variable-position support applicable to a single-column stacker shown according to an exemplary embodiment.

[0020] Figure 2 A schematic structural diagram of a vertical rod shown according to an exemplary embodiment.

[0021] Figure 3Schematic structural diagram of an intermediate rod shown according to an exemplary embodiment.

[0022] Figure 4 Schematic structural diagram of a cross joint shown according to an exemplary embodiment.

[0023] Figure 5 Schematic structural diagram of a mounting rod shown according to an exemplary embodiment.

[0024] Figure 6 Schematic structural diagrams of different states of a liftable and variable-position bracket applicable to a single-column stacker shown according to an exemplary embodiment.

[0025] In the above-mentioned drawings:

[0026] 100. Base, 110. Magnetic switch;

[0027] 200. Intermediate rod, 210. First connection hole;

[0028] 300. Intermediate rod, 310. Second connection hole;

[0029] 400. Cross joint, 410. Sliding sleeve, 420. Clamp;

[0030] 500. Mounting rod, 510. T-shaped groove;

[0031] 600. Hinge, 610. Ball seat, 620. Ball head;

[0032] 700. Clamping handle. Detailed implementation manners

[0033] In order to better explain the technical solutions in the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the accompanying drawings of the specification and specific implementation manners. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present application. In some instances, for the sake of clarity and conciseness, the descriptions of functions and structures well-known to those skilled in the art are omitted in order to highlight the gist of the present application.

[0034] Refer to Figures 1 to 6 , this embodiment provides a liftable and variable-position bracket applicable to a single-column stacker, including: a base 100, a vertical rod 200, an intermediate rod 300, a cross joint 400, and a mounting rod 500.

[0035] The base 100 is a magnetic base and is provided with a magnetic switch 110. The magnetic switch 110 can be used to control the magnetization and demagnetization of the base 100.

[0036] One end of the vertical rod 200 is hinged to the top surface of the base 100 through a hinge member 600, enabling the vertical rod 200 to be adjusted by rotating in all directions. The other end of the vertical rod 200 is provided with a first connection hole 210.

[0037] In this embodiment, the hinge member 600 adopts a ball hinge connector, including a ball socket 610 arranged at the bottom end of the vertical rod 200 and a ball head 620 arranged on the top surface of the base 100. Through the cooperation of the ball socket 610 and the ball head 620, the vertical rod 200 can rotate in all directions. In another embodiment, the hinge member 600 can also adopt a universal joint connector, as long as the vertical rod 200 can be adjusted by rotating in all directions relative to the base 100 and can stop at any position.

[0038] One end of the intermediate rod 300 is provided with a second connection hole 310. The second connection hole 310 and the first connection hole 210 at one end of the vertical rod 200 are connected through a clamping handle 700 to achieve the rotatable connection and fastening between the intermediate rod 300 and the vertical rod 200. By loosening the clamping handle 700, one end of the intermediate rod 300 can freely rotate around one end of the vertical rod 200 to adjust the angle of the intermediate rod 300. After the adjustment is completed, tightening the clamping handle 700 can fix the relative positions of the intermediate rod 300 and the vertical rod 200.

[0039] The clamping handle 700 adopts an existing part product, and its specific structure will not be elaborated here.

[0040] The cross joint 400 has two mounting through holes, and the mounting directions of the two mounting through holes are perpendicular to each other. The cross joint 400 is sleeved on the intermediate rod 300 through one of the mounting through holes and fastened by a fastener.

[0041] The mounting rod 500 is inserted into the other mounting through hole of the cross joint 400 and fastened by a fastener. One end of the mounting rod 500 is provided with a groove 510 for mounting a rotational speed sensor, and the rotational speed sensor is mounted in the groove 510 and fastened by screws.

[0042] In this embodiment, one end of the cross joint 400 is provided as a sliding sleeve 410, and the other end is provided as a clamp 420. The installation directions of the sliding sleeve 410 and the clamp 420 are perpendicular to each other, thereby forming two mutually perpendicular installation through holes. The sliding sleeve 410 is sleeved on the intermediate rod 300, and the clamp 420 is sleeved on the installation rod 500 and fastened to each other through fasteners. The fastening holes of the sliding sleeve 410 and the clamp 420 are communicated with each other. Therefore, the sliding sleeve 410 and the clamp 420 can be respectively fastened to the intermediate rod 300 and the installation rod 500 by one fastener. In another embodiment, both ends of the cross joint 400 can be provided as sliding sleeves or both as clamps, as long as the installation directions are perpendicular to each other.

[0043] A method for using a liftable and variable-position support applicable to a single-column stacker provided in this embodiment:

[0044] According to the measurement requirements and the actual space structure of the stacker, place the base 100 at a suitable position on the stacker column, turn on the magnetic switch 110, and firmly adsorb and install the base 100 on the stacker column.

[0045] According to the measurement requirements, adjust the direction of the vertical rod 200; loosen the clamping handle 700 to make one end of the intermediate rod 300 freely rotate around one end of the vertical rod 200 to adjust the angle of the intermediate rod 300. After the adjustment is completed, tighten the clamping handle 700 to fix the relative position of the intermediate rod 300 and the vertical rod 200; loosen the fasteners of the cross joint 400 and adjust the height position and front-back position of the installation rod 500.

[0046] Through the above adjustments, the entire support can have different states, and some states are as Figure 6 shown. Finally, the rotational speed sensor installed on the installation rod 500 can be adjusted to the optimal measurement position.

[0047] The above has introduced in detail a liftable and variable-position support applicable to a single-column stacker provided by this application. Specific examples are used in this article to elaborate on the principle and implementation manner of this application. The description of the above embodiments is only used to help understand the method and its core idea of this application. It should be noted that for those of ordinary skill in the art of this technology, without departing from the principle of this application, several improvements and modifications can still be made to this application, and these improvements and modifications also fall within the protection scope of the claims of this application.

Claims

1. A liftable and positionable bracket suitable for a single-column stacker, characterized in that: include: A base (100), wherein the base (100) can be controlled to be magnetically conductive and magnetically demagnetized; A vertical pole (200), one end of the vertical pole (200) being hingedly connected to the base (100) via a hinge (600); An intermediate rod (300), one end of the intermediate rod (300) being rotatably connected to the other end of the vertical rod (200) via a clamping handle (700); A cross joint (400), the cross joint (400) having two mounting through holes, the mounting directions of the two mounting through holes being perpendicular to each other, the cross joint (400) being sleeved on the middle rod (300) through one of the mounting through holes and being fastened by a fastener; A mounting rod (500) is inserted into another mounting through hole of the cross joint (400) and is fastened by a fastener, and one end of the mounting rod (500) is provided with a groove (510) for mounting a sensor.

2. The liftable and positionable bracket suitable for a single-column stacker according to claim 1, characterized in that: The hinged component (600) is a ball joint connection component.

3. The liftable and displaceable bracket suitable for a single-column stacker according to claim 1, characterized in that: The hinged component (600) adopts a universal joint connection component.

4. The liftable and positionable bracket suitable for a single-column stacker according to claim 1, characterized in that: One end of the cross joint (400) is configured as a sliding sleeve (410), and the other end is configured as a clamp (420), thereby forming two mounting through holes; the sliding sleeve (410) is used to be sleeved with the intermediate rod (300), and the clamp (420) is used to be sleeved with the mounting rod (500).

5. The liftable and positionable bracket suitable for a single-column stacker according to claim 4, characterized in that: The sliding sleeve (410) and the clamp (420) are fastened by a fastener.