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Continuous processing and production equipment for composite geotextile drainage network

A technology of composite geotechnical and production equipment, which is applied in the direction of nets, other household appliances, household appliances, etc., can solve the problems of increasing the number of defective products, poor precision, cumbersome work, etc., to achieve increased output output, high quality of finished products, and firm cementation Effect

Inactive Publication Date: 2020-04-07
李孟朋
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] The purpose of the present invention is to address the deficiencies of the prior art, complete the automatic uploading and transmission of the drainage net by setting the drainage net loading mechanism, and realize the automatic uploading of the coating by using the push component and the coating top loading component for pushing the drainage net, Ensure that when the drainage net is conveyed to the bottom of the double-sided cladding mechanism, the cladding has been completed and is waiting for the composite work. After the double-sided cladding is completed, the finished product will automatically enter the discharge component to complete the collection work under the pushing and reset work of the push component, thereby solving the problem. Solved the tedious work of manually bonding the upper and lower layers to the drainage net with an adhesive, poor precision in the bonding work, and the technical problems of increasing the number of defective products

Method used

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  • Continuous processing and production equipment for composite geotextile drainage network
  • Continuous processing and production equipment for composite geotextile drainage network
  • Continuous processing and production equipment for composite geotextile drainage network

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0066] Such as figure 1 , figure 2 As shown, a composite geotechnical drainage network continuous processing and production equipment, including:

[0067] The drainage net installation mechanism 1, the drainage net installation mechanism 1 includes a frame 11, a push assembly 12 installed on the frame 11, a feed assembly 13 arranged above the input end of the push assembly 12, and a feed assembly arranged on the top of the push assembly 12. The discharge assembly 14 at the output end of the push assembly 12, the drain net 10 is conveyed from the feed assembly 13 to the discharge assembly 14 under the drive of the push assembly 12;

[0068] A switching mechanism 2, the switching mechanism 2 is installed on the push assembly 12 and is used to switch the front and back sides of the drainage network 10 in transmission by 180°;

[0069] Double-sided cladding mechanism 3, described double-sided cladding mechanism 3 includes the first composite mechanism 3a and the second composit...

Embodiment 2

[0109] Such as Figure 20 , Figure 21 , Figure 25 and Figure 26 As shown, the components that are the same as or corresponding to those in the first embodiment are marked with the corresponding reference numerals in the first embodiment. For the sake of simplicity, only the differences from the first embodiment will be described below. The difference between this embodiment two and embodiment one is:

[0110] further, such as Figure 20 As shown, the flattening assembly 35 includes a pressing assembly 351 slidably arranged in the sliding groove 3411 of the mounting frame 341 along the vertical direction, a flattening assembly 352 arranged at the center of the cladding 20 and An adjusting assembly 353 for driving the pressing assembly 351 to move up and down in the vertical direction;

[0111] The pressing component 351 includes a pressing block 3511 with an I-shaped structure and an elastic unit e3512 for connecting the pressing block 3511 and the mounting frame 341; ...

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Abstract

The invention relates to continuous processing and production equipment for a composite geotextile drainage network. The equipment comprises a drainage network loading mechanism, a switching mechanismand a double-sided coating mechanism; the drainage network loading mechanism comprises a rack, a pushing assembly, a feeding assembly and a discharging assembly, and the drainage network is driven bythe pushing assembly to be conveyed from the feeding assembly to the discharging assembly; the switching mechanism is installed on the pushing assembly and used for switching the front face and the back face of the drainage network in the conveying process by 180 degrees; and the double-sided coating mechanism comprises a first composite mechanism and a second composite mechanism, the first composite mechanism and the second composite mechanism are located at the two sides of the switching mechanism respectively, and each composite mechanism comprise a brushing assembly, a coating layer loading assembly, a clamping assembly driven by the driving assembly to synchronously convey with the drainage net, and a flattening assembly for flattening the coating layer on the clamping assembly to cover the drainage net, and the brushing assembly, the coating layer loading assembly, the clamping assembly and the flattening assembly are sequentially arranged in the pushing direction of the pushingassembly. The technical problems that manually adhering of an upper covering layer and a lower covering layer to the drainage network through an adhesive is tedious, low in the adhering precision andincrease inferior-quality products is solved.

Description

technical field [0001] The invention relates to the technical field of composite geotechnical drainage nets, in particular to continuous processing and production equipment for composite geotechnical drainage nets. Background technique [0002] Composite drainage network is an important part of civil engineering drainage equipment. Under northern climate conditions, the laying of composite drainage nets can help reduce the impact of frost heave. If the freezing depth is deep, the drainage nets can be laid at a shallower position in the foundation to block capillary action. In addition, it is often necessary to use non-freezing Replacement of expansive granular subbase, extending down to freezing depths; laid between foundations and sub-bases to drain water accumulated between sub-bases, block capillary water and effectively incorporate into edge drainage, which This structure automatically shortens the drainage path of the foundation, greatly shortens the drainage time, and...

Claims

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Application Information

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IPC IPC(8): B29C65/52B29C65/78B29L28/00
CPCB29C65/526B29C65/7841B29C65/7861B29L2028/00
Inventor 李孟朋
Owner 李孟朋
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