Multi-layer conveying equipment applied to stainless steel pipe fittings
By designing a multi-layer conveying system, the problem of large space occupation and inconvenient storage caused by inconsistent equipment heights in the processing of stainless steel pipe fittings has been solved, realizing the multi-functionality and space saving of the equipment.
Patent Information
- Application Number
- CN202511691793.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-18
- Publication Date
- 2026-01-23
AI Technical Summary
During the processing and production of stainless steel pipe fittings, the varying heights of the supporting equipment result in complex equipment structures, large space requirements, and inconvenient storage.
The system employs a multi-layer conveyor system, including a horizontal main frame, a top conveyor belt, an electrically controlled conveyor belt, and an embedded transverse guide rail. The conveyor components are moved, flipped, and their height adjusted via an electrically controlled translation frame and a built-in electrically controlled lead screw. An embedded electronic level ensures the stability of the conveying process.
It achieves space reduction when the equipment is idle and storage is carried out, improves functional integration, and has the multi-functionality of horizontal conveying and loading/unloading.
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Figure CN121376465A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of stainless steel pipe fittings conveying, in particular to a multi-layer conveying equipment applied to stainless steel pipe fittings. BACKGROUND
[0002] The core function of stainless steel pipe fittings is mainly to connect stainless steel pipes or equipment of different lengths and specifications to form a continuous fluid conveying passage. Common connecting components include joints, flanges, sleeves, etc. In the production and processing process, because the processing equipment of stainless steel pipe fittings has different heights, it is necessary to cooperate with the feeding and discharging equipment. The structure is complex, and it is not convenient to store at idle time, occupying a large space. SUMMARY
[0003] The technical problem to be solved by the present application is that the height of the supporting equipment of the stainless steel pipe fittings in the current production and processing process is different, which leads to the need to cooperate with the translation and feeding and discharging equipment, the equipment occupies a large space, and is not convenient to store.
[0004] The technical scheme adopted by the present application to solve the technical problem is: a multi-layer conveying equipment applied to stainless steel pipe fittings, comprising a horizontal main frame, a top conveying belt is installed on the upper end of the horizontal main frame, a first electric control feeding belt and a second electric control feeding belt are arranged below the top conveying belt inside the horizontal main frame, a first electric control translation frame for controlling the first electric control feeding belt and a second electric control translation frame for installing the second electric control feeding belt are installed inside the horizontal main frame.
[0005] The embedded horizontal guide rail for controlling the first electric control translation frame and the second electric control translation frame is installed on the inner wall of the horizontal main frame.
[0006] The embedded horizontal guide rail is internally installed with a built-in electric control screw rod.
[0007] The first electric control translation frame is threadedly assembled on the outside of the built-in electric control screw rod and movably assembled with the embedded horizontal guide rail through the two side internal thread assembly blocks, and the second electric control translation frame is threadedly assembled on the outside of the built-in electric control screw rod and movably assembled with the embedded horizontal guide rail through the two side internal thread assembly blocks.
[0008] The first electric control translation frame and the second electric control translation frame comprise an external turnover frame with internal thread assembly blocks on both sides, an internal turnover frame movably installed inside the external turnover frame, a first electric control support foot installed at the lower end of the external turnover frame, and a second electric control support rod installed at the lower end of the internal turnover frame.
[0009] The first electric control support foot and the second electric control support rod are both composed of a turnover support foot, an electric control support rod, and a support wheel installed at the lower end of the turnover support foot.
[0010] The embedded electronic level is arranged on the outer turning frame and the inner turning frame.
[0011] The application has the following advantages: (1) The multilayer conveying device applied to the stainless steel pipe fittings adopts a laminated structure design, can be retracted for storage in idle time, and greatly reduces the storage space; (2) By extending outward and turning, the adjustable angle can be changed, so that the device has the functions of horizontal conveying, feeding and discharging, and the function integration is greatly improved. BRIEF DESCRIPTION OF DRAWINGS
[0012] The application will be further described below in combination with the drawings and examples.
[0013] Figure 1 is a structural schematic diagram of the application.
[0014] Figure 2 is a bottom structure schematic diagram of the application.
[0015] In the figure, 1 is a horizontal main frame; 2 is a top conveying belt; 3 is a first electric control conveying belt; 4 is a second electric control conveying belt; 5 is a first electric control horizontal frame; 6 is a second electric control horizontal frame; 7 is an embedded horizontal guide rail; 8 is a built-in electric control screw rod; 9 is an outer turning frame; 10 is an inner turning frame; 11 is a first electric control supporting leg; 12 is a second electric control supporting leg; 13 is an embedded electronic level. DETAILED DESCRIPTION
[0016] The application will be further described below in combination with the drawings and examples. These drawings are all simplified schematic diagrams, and only illustrate the basic structure of the application in a schematic manner, and therefore only show the components related to the application.
[0017] In the description of the application, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected", "connected" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the application can be understood according to the specific circumstances.
[0018] Figure 1 and Figure 2 The application relates to a multilayer conveying device applied to stainless steel pipe fittings, which comprises a horizontal main frame 1, a top conveying belt 2 arranged on the upper end of the horizontal main frame 1, a first electric control conveying belt 3 and a second electric control conveying belt 4 arranged below the top conveying belt 2 in the horizontal main frame 1, a first electric control horizontal frame 5 arranged in the horizontal main frame 1 for controlling the first electric control conveying belt 3, and a second electric control horizontal frame 6 arranged in the horizontal main frame 1 for mounting the second electric control conveying belt 4.
[0019] The embedded horizontal guide rail 7 is installed on the inner wall of the horizontal main frame 1 and is used to control the first electrically controlled translation frame 5 and the second electrically controlled translation frame 6.
[0020] The built-in electrically controlled screw rod 8 is installed inside the embedded horizontal guide rail 7.
[0021] The first electrically controlled translation frame 5 is threadedly assembled on the outside of the built-in electrically controlled screw rod 8 and movably assembled with the embedded horizontal guide rail 7 through the two-side internally threaded assembly blocks, and the second electrically controlled translation frame 6 is threadedly assembled on the outside of the built-in electrically controlled screw rod 8 and movably assembled with the embedded horizontal guide rail 7 through the two-side internally threaded assembly blocks.
[0022] The first electrically controlled translation frame 5 and the second electrically controlled translation frame 6 include two-side externally threaded assembly blocks, an internal turnover frame 10 movably installed inside the external turnover frame 9, a first electrically controlled support leg 11 installed at the lower end of the external turnover frame 9, and a second electrically controlled support rod 12 installed at the lower end of the internal turnover frame 10.
[0023] The first electrically controlled support leg 11 and the second electrically controlled support rod 12 are each composed of a turnover support leg, an electrically controlled support rod, and a support wheel installed at the lower end of the turnover support leg.
[0024] The embedded electronic level 13 is installed on the outer wall of the external turnover frame 9 and the internal turnover frame 10.
[0025] The device uses the horizontal main frame 1 as the basic bearing structure, integrates multiple groups of conveying components in a stacked design, realizes the translation, turnover, and height adjustment of the conveying components through electrically controlled driving, and guarantees the conveying stability with the help of the horizontal monitoring component, finally achieving the integrated function of “translation conveying + feeding and discharging”, and can be retracted for space saving. The embedded horizontal guide rail 7 and the built-in electrically controlled screw rod 8 constitute a translation driving mechanism for controlling the extension and retraction of the first electrically controlled translation frame 5 and the second electrically controlled translation frame 6; the first electrically controlled translation frame 5 and the second electrically controlled translation frame 6 are matched with the external turnover frame 9, the internal turnover frame 10, and the support components (the first electrically controlled support leg 11 and the second electrically controlled support rod 12) inside them to realize the adjustment of the conveying angle and height; the embedded electronic level 13 is used to monitor the horizontal state of the conveying component in real time to avoid deviation or dumping of the pipe fittings during conveying.
[0026] 1. Basic conveying state: After the device is started, the top conveying belt 2 at the upper end of the horizontal main frame 1 can directly convey the stainless steel pipe fittings horizontally to meet the basic straight-line conveying requirement.
[0027] 2. Extended conveying / loading and unloading operation: when it is necessary to adapt to different height processing equipment for loading and unloading, or to increase the conveying channel, the built-in electric control screw rod 8 is started, the built-in electric control screw rod 8 is operated to drive the first electric control translation frame 5 and the second electric control translation frame 6 to translate outward along the embedded horizontal guide rail 7 through the two side threaded assembly blocks, until they extend outside the horizontal main rack 1; then according to the height of the target equipment and the conveying angle requirement, the external turnover frame 9 and the internal turnover frame 10 in the first electric control translation frame 5 and the second electric control translation frame 6 are adjusted to turn over, and the first electric control support leg 11 at the lower end of the external turnover frame 9 and the second electric control support rod 12 (composed of a turnover support leg, an electric control support rod and a support wheel) at the lower end of the internal turnover frame 10 are controlled to extend and retract, adjusting the height of the conveying assembly and supporting stably through the support wheel; in this process, the embedded electronic level 13 on the outer wall of the external turnover frame 9 and the internal turnover frame 10 monitors the level of the assembly in real time, ensuring that the first electric control conveying belt 3 and the second electric control conveying belt 4 remain stable, avoiding deviation during pipe conveying; at this time, the first electric control conveying belt 3 and the second electric control conveying belt 4 can cooperate with the top conveying belt 2 to realize multi-channel conveying, or can be connected to different height processing equipment to complete loading and unloading operation.
[0028] 3. Shrinking storage state: when the equipment is idle, first shrink the first electric control support leg 11 and the second electric control support rod 12 to reset the external turnover frame 9 and the internal turnover frame 10, then start the built-in electric control screw rod 8 to drive the first electric control translation frame 5 and the second electric control translation frame 6 to shrink along the embedded horizontal guide rail 7 to the inside of the horizontal main rack 1, forming a stacked structure, greatly reducing the occupied space of the equipment.
[0029] Based on the above ideal embodiments according to the present application, through the above description, relevant personnel can make various changes and modifications without deviating from the technical idea of the present application. The technical scope of the present application is not limited to the contents of the specification, and must be determined by the scope of the claims.
Claims
1. A multi-layer conveying device applied to stainless steel pipe fittings, comprising a horizontal main frame (1), characterized in that: The top conveying belt (2) is installed on the upper end of the horizontal main frame (1), the first electric control conveying belt (3) and the second electric control conveying belt (4) are arranged below the top conveying belt (2) in the horizontal main frame (1), the first electric control conveying belt (3) is controlled by the first electric control translation frame (5) installed in the horizontal main frame (1), and the second electric control conveying belt (4) is controlled by the second electric control translation frame (6) installed in the horizontal main frame (1).
2. A multi-layer conveyor system for use with stainless steel pipe fittings as defined in claim 1, wherein: The embedded horizontal guide rail (7) is installed on the inner wall of the horizontal main frame (1) and is used for controlling the first electric control translation frame (5) and the second electric control translation frame (6).
3. A multi-layer conveyor system for use with stainless steel pipe fittings as defined in claim 2, wherein: The embedded horizontal guide rail (7) is installed on the inner wall of the horizontal main frame (1) and is used for controlling the first electric control translation frame (5) and the second electric control translation frame (6).
4. The multi-layer conveyor system for stainless steel pipe fittings of claim 2, wherein: The first electric control translation frame (5) is screw-assembled on the outer side of the built-in electric control screw rod (8) and the embedded horizontal guide rail (7) through the two side inner thread assembly blocks, and the second electric control translation frame (6) is screw-assembled on the outer side of the built-in electric control screw rod (8) and the embedded horizontal guide rail (7) through the two side inner thread assembly blocks.
5. The multi-layer conveyor system for stainless steel pipe fittings of claim 1, wherein: The first electric control translation frame (5) and the second electric control translation frame (6) include the outer turnover frame (9) with the inner thread assembly blocks on the two sides, the inner turnover frame (10) movably installed in the outer turnover frame (9), the first electric control support leg (11) installed at the lower end of the outer turnover frame (9) and the second electric control support rod (12) installed at the lower end of the inner turnover frame (10).
6. A multi-layer conveyor system for use with stainless steel pipe fittings as defined in claim 5, wherein: The first electric control support leg (11) and the second electric control support rod (12) are both composed of a turnover support leg, an electric control support rod and a support wheel installed at the lower end of the turnover support leg.
7. The multi-layer conveyor system for stainless steel pipe fittings of claim 5, wherein: The embedded electronic level (13) is installed on the outer wall of the outer turnover frame (9) and the inner turnover frame (10).