Photovoltaic TPV pipe cutting and processing equipment

By designing a photovoltaic TPV tube cutting processing equipment including a fixed pipe sleeve, an auxiliary pipe sleeve and a cutting pipe sleeve, the problem of jagged gap caused by insufficient stability during the cutting process is solved, and the efficient completion of the guide transportation process is achieved.

CN222831927UActive Publication Date: 2025-05-06JIANGSU PETRO HOSE & PIPING SYST CO LTD
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Patent Information

Application Number
CN202421638287.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-11
Publication Date
2025-05-06
Estimated Expiration
2034-07-11

AI Technical Summary

Technical Problem

In the process of cutting TPV tubes, insufficient stability leads to the problem of uneven gaps in the cutting surface.

Method used

A photovoltaic TPV pipe cutting and processing equipment is designed, and a horizontal frame with a bottom plate tiled structure is equipped with three sets of pipe sleeve structures, including a fixed pipe sleeve, an auxiliary pipe sleeve and a cutting pipe sleeve. Through the clamping flange and connecting shaft, the bracket lifting contact structure ensures the stability of the pipe fittings, and guide transportation is achieved through the airbag and auxiliary roller.

Benefits of technology

Through the stable fit of the fixed pipe sleeve, the problem of jagged gap caused by insufficient stability during the cutting process is solved. At the same time, the combined structure of the auxiliary pipe sleeve realizes the guide transportation process for measuring the cutting length.

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Abstract

The utility model discloses photovoltaic TPV pipe cutting processing equipment which comprises a bottom plate and a cutting pipe sleeve. A fixing pipe sleeve, an auxiliary pipe sleeve and a cutting pipe sleeve are installed on the upper end face of the bottom plate through a support. Clamping flanges are mounted on the front and rear end surfaces of the fixed pipe sleeve, the auxiliary pipe sleeve and the cutting pipe sleeve; six groups of connecting shafts are connected between every two adjacent groups of clamping flanges; the support is of a lifting contact structure along the side wall of the clamping flange. A to-be-cut pipe fitting extends into the inner rings of the fixed pipe sleeve, the auxiliary pipe sleeve and the cutting pipe sleeve from left to right; a cutting groove is reserved in the middle section of the cutting pipe sleeve. According to the photovoltaic TPV pipe cutting machining equipment, three sets of pipe sleeve structures are horizontally erected through a structure flatly laid on a bottom plate, and a to-be-cut pipe fitting is horizontally erected through a fixed pipe sleeve, an auxiliary pipe sleeve and a cutting pipe sleeve. The pipe fitting is stabilized through the fixing pipe sleeve to be matched with cutting, and the technical problem that due to the fact that stability is not enough in the cutting process, staggered notches are generated in pipe fitting cutting is solved.
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Description

Technical Field

[0001] The utility model belongs to the technical field, and specifically relates to a photovoltaic TPV tube cutting and processing device. Background Art

[0002] TPV is a polymer elastomeric material composed of highly vulcanized rubber particles dispersed in a continuous polypropylene (PP) phase. It combines the advantages of rubber and plastic and has excellent physical properties and processing properties. TPV exhibits physical properties similar to those of thermosetting rubber at room temperature, such as elasticity, wear resistance and chemical corrosion resistance. At high temperatures, it exhibits the characteristics of thermoplastics, such as plasticity and processability. TPV materials can be quickly, economically and conveniently processed and molded through plastic processing equipment such as injection molding and extrusion molding.

[0003] When cutting TPV pipes, ensure the flatness and precision of the cutting surface. At the same time, the cutting tools should be compatible with the TPV material to avoid damage to the material. During the cutting process, it is necessary to select the appropriate cutting direction and keep the cutting speed stable. During the cutting process, it is necessary to ensure the stability and fixity of the TPV pipe. Tools such as clamps or brackets can be used to fix the pipe in place to prevent deviation or sliding during the cutting process.

[0004] Therefore, according to the above requirements, this application adopts a photovoltaic TPV tube cutting and processing equipment. This application uses a three-group pipe sleeve structure to be installed horizontally through a flat bottom plate structure frame, and the pipes to be cut are installed horizontally through fixed pipe sleeves, auxiliary pipe sleeves and cutting pipe sleeves. The fixed pipe sleeve stabilizes the pipes to cooperate with the cutting, which solves the technical problem of uneven gaps in the cutting of pipes due to insufficient stability during the cutting process. At the same time, the combined structure of the auxiliary pipe sleeve can cooperate with the pipe to complete the guide transportation process when measuring the cutting length. Summary of the invention

[0005] In order to achieve the above object, the technical solution of the utility model is as follows:

[0006] A photovoltaic TPV tube cutting and processing device comprises a bottom plate and a cutting tube sleeve; a fixed tube sleeve, an auxiliary tube sleeve and a cutting tube sleeve are installed on the upper surface of the bottom plate through a bracket;

[0007] The front and rear end surfaces of the fixed pipe sleeve, the auxiliary pipe sleeve and the cutting pipe sleeve are all installed with clamping flanges, and six sets of coupling shafts are connected between two adjacent sets of clamping flanges;

[0008] The bracket is in a lifting contact structure along the side wall of the clamping flange;

[0009] The fixed sleeve, the auxiliary sleeve and the inner ring of the cutting sleeve extend from left to right into the pipe to be cut;

[0010] The cutting sleeve middle section is provided with a cutting groove.

[0011] Furthermore, the outer ring of the fixed sleeve is provided with air valves, the input ports of the air valves are connected with the six groups of air bags of the inner ring of the fixed sleeve for air supply, the inner end of the air bags is provided with a pipe extrusion layer, and the pipe extrusion layer is in extrusion contact with the pipe to be cut.

[0012] Furthermore, the six groups of airbags are evenly distributed along the inner circle of the fixed sleeve, and gaps are retained between any two adjacent airbags.

[0013] Furthermore, six groups of auxiliary rollers are distributed on the inner ring of the auxiliary pipe sleeve, and the auxiliary rollers are in guiding contact with the pipe to be cut.

[0014] Furthermore, dustproof rings are installed on the outer sides of the six groups of auxiliary rollers along the inner rings of the auxiliary sleeves.

[0015] The beneficial effects of the utility model are:

[0016] Compared with the prior art, the present application adopts a photovoltaic TPV tube cutting and processing equipment. The present application installs three sets of tube sleeve structures through a flat bottom plate structure horizontal frame, and installs the pipes to be cut through the fixed tube sleeve, auxiliary tube sleeve and cutting tube sleeve horizontal frame. The fixed tube sleeve stabilizes the pipes to cooperate with the cutting, which solves the technical problem of uneven gaps in the cutting of pipes due to insufficient stability during the cutting process. At the same time, the combined structure of the auxiliary tube sleeve can cooperate with the pipe to complete the guide transportation process when measuring the cutting length. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a schematic diagram of the structure of a photovoltaic TPV tube cutting and processing device according to the utility model.

[0018] Figure 2 This is a left view of a fixed tube sleeve of a photovoltaic TPV tube cutting and processing device according to the utility model.

[0019] Figure 3 This is a left view of an auxiliary pipe sleeve of a photovoltaic TPV pipe cutting and processing equipment according to the utility model.

[0020] List of Figure Symbols:

[0021] 1 is a bottom plate, 2 is an air valve, 3 is a fixed pipe sleeve, 4 is a connecting shaft, 5 is a cutting pipe sleeve, 6 is an auxiliary pipe sleeve, 7 is a bracket, 8 is a cutting groove, 9 is a clamping flange, 10 is a pipe extrusion layer, 11 is an air bag, 12 is a sealing ring, 13 is a dust ring, and 14 is an auxiliary roller. DETAILED DESCRIPTION

[0022] The present invention will be further described below in conjunction with the accompanying drawings and specific implementations. It should be understood that the following specific implementations are only used to illustrate the present invention and are not used to limit the scope of the present invention.

[0023] like Figure 1 , Figure 2 and Figure 3 As shown, a photovoltaic TPV tube cutting and processing equipment includes a base plate and a cutting tube sleeve; the upper end surface of the base plate 1 is installed with a fixed tube sleeve 3, an auxiliary tube sleeve 6 and a cutting tube sleeve 5 through a bracket 7; the inner circles of the fixed tube sleeve 3, the auxiliary tube sleeve 6 and the cutting tube sleeve 5 extend from left to right into the tube to be cut; wherein the fixed tube sleeve 3, the auxiliary tube sleeve 6 and the cutting tube sleeve 5 are installed on the upper end surface of the base plate 1 in a horizontal rack structure through the bracket 7. The subsequent tube to be cut is extended horizontally and the fixed-point cutting process is completed.

[0024] The front and rear end faces of the fixed pipe sleeve 3, the auxiliary pipe sleeve 6 and the cutting pipe sleeve 5 are all installed with clamping flanges 9, and six groups of connecting shafts 4 are connected between two adjacent groups of clamping flanges 9; the bracket 7 is in a lifting contact structure along the side wall of the clamping flange 9; wherein, the clamping flange 9 cooperates with the bracket 7 to complete the reinforcement process.

[0025] The middle section of the cutting sleeve 5 retains a cutting groove 8. The cutting groove 8 is designed to be an upwardly opened cutting structure, which can ensure that an external cutting device extends into the cutting process.

[0026] like Figure 1 , Figure 2 and Figure 3 As shown, the outer ring of the fixed tube sleeve 3 is distributed with air valves 2, and the input port of the air valve 2 is connected to the six groups of air bags 11 in the inner ring of the fixed tube sleeve 3 for air supply. The inner end of the air bag 11 is installed with a pipe extrusion layer 10, and the pipe extrusion layer 10 is in extrusion contact with the pipe to be cut. Among them, the extrusion structure of the air bag 11 can provide pressurized supplementary conditions, because the extrusion contact of the hard contact structure during the extrusion process will affect the smooth structure of the pipe itself. Therefore, the structure extruded by the air bag 11 can complete the horizontal mounting structure of the pipe through the soft contact structure. The filling extrusion structure of the air bag 11 can achieve a multi-area attached extrusion structure to prevent the pipe from shaking during the limiting process due to the existence of local vacancies in the limiting extrusion process.

[0027] like Figure 1 , Figure 2 and Figure 3 As shown, six groups of airbags 11 are evenly distributed along the inner circle of the fixed sleeve 3, and gaps are reserved between two adjacent airbags 11. The gaps between the airbags 11 are reserved spaces for the airbags 11 to expand.

[0028] like Figure 1 , Figure 2 and Figure 3 As shown, the inner ring of the auxiliary sleeve 6 is provided with six groups of auxiliary rollers 14, and the auxiliary rollers 14 are in contact with the guide of the pipe to be cut. The auxiliary rollers 14 are used to guide the pipe for transportation.

[0029] like Figure 1 , Figure 2 and Figure 3 As shown, dust rings 13 are installed on the outside of the six groups of auxiliary rollers 14 along the inner ring of the auxiliary sleeve 6. The dust rings 13 can prevent impurities from entering the installation area of ​​the auxiliary rollers 14, thereby preventing the impurities from affecting the auxiliary guide transportation process of the auxiliary rollers 14.

[0030] It should be noted that the above content only illustrates the technical idea of ​​the utility model and cannot be used to limit the protection scope of the utility model. For ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principle of the utility model. These improvements and modifications all fall within the protection scope of the claims of the utility model.

Claims

1. A photovoltaic TPV tube cutting and processing equipment, comprising a base plate and a cutting tube sleeve; its characteristics are: The upper end surface of the bottom plate (1) is provided with a fixed pipe sleeve (3), an auxiliary pipe sleeve (6) and a cutting pipe sleeve (5) via a bracket (7); The front and rear end surfaces of the fixed pipe sleeve (3), the auxiliary pipe sleeve (6) and the cutting pipe sleeve (5) are all installed with clamping flanges (9), and six sets of connecting shafts (4) are connected between two adjacent sets of clamping flanges (9); The bracket (7) is in a lifting contact structure along the side wall of the clamping flange (9); The inner rings of the fixed pipe sleeve (3), the auxiliary pipe sleeve (6) and the cutting pipe sleeve (5) extend from left to right into the pipe to be cut; A cutting groove (8) is retained in the middle section of the cutting sleeve (5).

2. The photovoltaic TPV tube cutting and processing equipment according to claim 1 is characterized by: The outer ring of the fixed pipe sleeve (3) is provided with an air valve (2), the input port of the air valve (2) is connected to the six groups of air bags (11) on the inner ring of the fixed pipe sleeve (3) for air supply, the inner end of the air bag (11) is provided with a pipe extrusion layer (10), and the pipe extrusion layer (10) is in extrusion contact with the pipe to be cut.

3. The photovoltaic TPV tube cutting and processing equipment according to claim 2 is characterized by: The six groups of air bags (11) are evenly distributed along the inner circle of the fixed sleeve (3), and gaps are retained between any two adjacent air bags (11).

4. The photovoltaic TPV tube cutting and processing equipment according to claim 1 is characterized by: Six groups of auxiliary rollers (14) are distributed on the inner ring of the auxiliary pipe sleeve (6), and the auxiliary rollers (14) are in guiding contact with the pipe to be cut.

5. The photovoltaic TPV tube cutting and processing equipment according to claim 4 is characterized by: Dustproof rings (13) are installed on the outer sides of the six groups of auxiliary rollers (14) along the inner rings of the auxiliary sleeves (6).