Plate pressurizing construction device
Through the design of operating machines and processing units, the problems of time-consuming and labor-intensive fixture positioning and uneven pressure on fillers in door panel manufacturing were solved, and uniform pressure forming of multiple panels was achieved, thereby improving product yield and processing efficiency.
Patent Information
- Application Number
- CN202422575306.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-24
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2034-10-24
AI Technical Summary
In the existing door panel manufacturing process, the positioning method of the jig and the panel body is time-consuming and labor-intensive, and the uneven pressure on the filler causes the decorative design parts to be easily deformed or cracked, affecting product yield and processing efficiency.
The operating machine and processing unit are used, and the stoppers, pushers and driving components are utilized. Through the separation groove and auxiliary mechanism, multiple plates are uniformly pressurized and formed to ensure that the filling is stably stressed.
The yield rate of door panel processing is improved, processing time and labor intensity are reduced, deformation or cracking of decorative design parts is avoided, and simultaneous processing of multiple panels is achieved.
Smart Images

Figure CN223314625U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a plate pressurizing construction device, and in particular to a construction device capable of performing average pressurizing manufacturing of preset plates. At least one group of processing units is arranged in at least one working space of an operating machine to perform pressurizing construction of at least two or more preset plates, thereby achieving the purpose of stably processing and shaping the preset plates. Background Art
[0002] In today's residential or commercial doors or indoor partitions, building partitions, most of them still use one-piece door panels, or panels are combined on both sides of the main body of the door panel to form a multi-layer plywood door panel, and fillers are filled between the main body and the two side panels to accelerate the combination of the main body and the two side panels, and the fillers are also used as sound insulation, heat insulation or warmth retention materials. And with the different locations where the door panels are installed, such as the main door of a building, the living room door, the room door or the kitchen, bathroom door and other different occasions, the shape and appearance of the door panels will derive many changes in color and style. However, what remains unchanged is that most of the door panels still have concave or convex relief or groove-shaped decorative designs on the panel surface to increase the beauty and novelty of the door panels to cater to the preferences of consumers.
[0003] At present, in the manufacturing process of basic door panels, the panel body is fixed on the main body by means of a jig, and the jig is used to support the surface of the panel body to prevent damage when the filler is filled into the main body. Generally, the jig and the panel body are positioned by means of adhesive tape or other methods to fix the panel body on the jig for subsequent processing. When the manufacturing process of the door panel is completed, the jig will be separated from the panel body. Usually, a set of jigs can only produce one door panel at a time, and the processing process must be repeated. Disassembling and assembling jigs, waiting for the filler to solidify and combine, etc.; and during the filling operation of the door panel, the filler will foam and expand inside the main body, causing the inner side of the panel to be squeezed outward by the filler, and the recessed or protruding decorative design on the panel surface of the door panel forms an uneven pressure situation inside the panel body, which is easy to cause expansion and deformation at the decorative design part of the panel body to cause cracking or damage, resulting in the loss of defective products in the manufacturing process of the door panel, and also causing the related processes of the door panel to be quite time-consuming and labor-intensive.
[0004] Therefore, how to find ways to solve the above-mentioned troubles and problems of the current door panel manufacturing process, such as having to process each door panel one by one, which is time-consuming and labor-intensive, and the problems and defects of the fillers added inside the door panel during processing, are the key issues that relevant manufacturers engaged in this industry are eager to study and improve. Utility Model Content
[0005] Therefore, in view of the above problems and deficiencies, the main purpose of the present invention is to provide a plate pressurizing construction device.
[0006] The utility model provides a plate pressurizing construction device, comprising an operating machine platform and at least one set of processing units, characterized in that:
[0007] The working machine includes at least one working space;
[0008] The at least one group of processing units is arranged in the at least one working space of the working machine, including a processing space, a stopper and a pusher arranged on at least one side of the processing space, and at least one driving part for driving the pusher to move back and forth in the processing space. A plurality of separation grooves are provided in the processing space, and at least one auxiliary mechanism is provided above each of the separation grooves.
[0009] The plate pressurizing construction device, wherein: the at least one working space of the working machine is provided with an adjustment base for assembling and setting at least one group of processing units, so that the adjustment base can adjust the length or width of the at least one working space.
[0010] The plate pressurizing construction device, wherein: the at least one group of processing units assembled at the at least one working space of the working machine includes a base body, the at least one driving part assembled on the base body, the pushing member driven to move by the at least one driving part, and the stop member on the other side relative to the pushing member, and the processing space is formed on the relative inner sides of the pushing member and the stop member.
[0011] The plate pressurizing construction device, wherein: the operating machine is provided with a power unit capable of limiting and fastening the seat body at the at least one operating space, and the power unit is a motor, a hydraulic cylinder or a pneumatic cylinder.
[0012] The plate pressurizing construction device, wherein: the processing space of the at least one group of processing units, and the at least one processing space includes the multiple adjacently arranged separation grooves, at least one auxiliary mechanism is respectively arranged above each separation groove, and each auxiliary mechanism respectively includes a power part, a first pushing member driven by each power part to move toward each separation groove, a second pushing member pushed by each first pushing member, and a third pushing member pushed by each first pushing member and each second pushing member.
[0013] The present invention can place at least two or more preset plates inside the processing space to abut against the stopper (if there is no preset plate, an auxiliary plate is used to fill the space), and then use the driving part to drive the pushing member to push the preset plates toward the stopper, so as to keep the preset plates inside the processing space evenly stressed and firmly pressed, thereby improving the product yield, and can press multiple preset plates at the same time, with the advantages of saving time and labor in the processing process, so as to achieve the purpose of processing and shaping each preset plate, and provide the effect of firmly combining and shaping each preset plate. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a top view of the utility model.
[0015] Figure 2 It is a front sectional view of the present utility model.
[0016] Figure 3 It is a side sectional view of the feeding and discharging operation of the utility model.
[0017] Figure 4 This is a side sectional view of the processing operation of the utility model (1).
[0018] Figure 5 This is a side sectional view (2) of the processing operation of the utility model.
[0019] Figure 6 It is a side sectional view (3) of the processing operation of the utility model.
[0020] Figure 7 This is a side sectional view (four) of the processing operation of the utility model.
[0021] Explanation of the accompanying drawings: 1-operating machine; 10-operating space; 11-adjusting base; 12-power unit; 2-processing unit; 20-processing space; 201-partitioning groove; 21-stopper; 22-sliding member; 23-driving part; 24-base; 25-side block; 26-auxiliary mechanism; 261-power part; 262-first pushing member; 263-second pushing member; 264-third pushing member; 265-driving connecting rod; 3-preset plate. DETAILED DESCRIPTION
[0022] In order to achieve the above-mentioned objectives and effects, the technical means adopted by the present invention and its structure, implementation method, etc. are now described in detail with reference to the accompanying drawings for the characteristics and functions of the preferred embodiments of the present invention to facilitate a complete understanding.
[0023] See also As shown, the utility model provides a plate pressurizing construction device, comprising an operating machine 1 and at least one set of processing units 2, wherein:
[0024] The working machine 1 includes at least one working space 10 .
[0025] The at least one processing unit 2 is disposed in at least one working space 10 of the working machine 1, and includes a processing space 20, a stopper 21 and a pusher 22 disposed on at least one side of the processing space 20, and at least one driving part 23 for driving the pusher 22 to move back and forth in the processing space 20.
[0026] The operating machine 1 of the present invention has at least one operating space 10 therein, and an adjustment base 11 may be provided at the at least one operating space 10, on which at least one processing unit 2 can be assembled and set to the adjustment base 11, so as to accommodate preset plates 3 of different sizes. The adjustment base 11 can be used to adjust the length or width of the at least one operating space 10, the distance, space size, etc., so as to facilitate the at least one operating space 10 to accommodate preset plates 3 of various sizes.
[0027] The working machine 1 of the present invention has at least one working space 10 inside which at least one processing unit 2 can be assembled, and the processing unit 2 includes a base 24, at least one driving part 23 assembled on the base 24, a pusher 22 driven by the at least one driving part 23 for displacement, and a stopper 21 on the other side of the pusher 22, and a side block 25 is provided on the outer side of the stopper 21 and the pusher 22, that is, a processing space 20 is formed on the relative inner sides of the stopper 21, the pusher 22 and the side block 25, then the working machine 1 is provided with a power unit 12 in at least one working space 10, which can be movably adjusted and can limit and tighten the base 24; and the at least one driving part 23, the power unit 12, etc. can be a motor, a hydraulic cylinder or a pneumatic cylinder, etc.
[0028] The processing space 20 of at least one group of processing units 2 includes a plurality of adjacent and equally spaced partition grooves 201, and at least one auxiliary mechanism 26 is respectively provided above each partition groove 201. Each auxiliary mechanism 26 includes a power unit 261, a first pushing member 262 driven by each power unit 261 to move toward each partition groove 201, a second pushing member 263 pushed by each first pushing member 262, and a third pushing member 264 pushed by each first pushing member 262 and each second pushing member 263; in the preferred embodiment of the present case, the auxiliary mechanism 26 on the 20,000 side is provided. 6 are provided with power parts 261, and the auxiliary mechanism 26 located in the center is connected by a driving connecting rod 265 between the two power parts 261. When the power parts 261 on the two sides actuate and drive the first pushing member 262, the second pushing member 263 and the third pushing member 264, the first pushing member 262, the second pushing member 263 and the third pushing member 264 of the auxiliary mechanism 26 located in the center are actuated and moved synchronously through the driving connecting rod 265. The power parts 261 of the auxiliary mechanisms 26 can be powered by a pneumatic cylinder, a hydraulic cylinder or a motor.
[0029] The plate pressurizing construction device of the present invention can be used in practice. In the processing space 20 of at least one processing unit 2 in at least one working space 10 of the working machine 1, at least one preset plate 3 (for example, various plates such as door panels, sandwich panels or composite panels) can be placed according to the position of each partition groove 201. Then, according to the number of preset plates 3 placed in each partition groove 201, the auxiliary mechanism 26 is used to adjust the position of the preset plates 3, and only three preset plates 3 can be placed in one of the partition grooves 201 (please also refer to FIG. Figure 4 As shown, the number of preset plates 3 supported in each dividing groove 201 of the present invention can be adjusted according to the actual application implementation status, and can be one, two, three or more plates, etc., and is not limited to the number of preset plates supported by each dividing groove 201). The power part 261 of the auxiliary mechanism 26 above it can be used to drive the first pushing member 262 to drive the second pushing member 263 and the third pushing member 264 to press against the side of the adjacent preset plate 3, so that the three preset plates 3 can be firmly limited in the dividing groove 201, so as to limit the three preset plates 3 in the dividing groove 201.
[0030] If only two preset plates 3 are placed in one of the partition slots 201 (see also Figure 5 As shown), the power portion 261 of the auxiliary mechanism 26 above it can be used to drive the second pushing member 263 to drive the third pushing member 264 to press against the side of the adjacent preset plate 3, so that the two preset plates 3 can be firmly limited in the separation groove 201.
[0031] When only one preset plate 3 is placed in one of the partition slots 201 (see also Figure 6As shown), the power portion 261 of the auxiliary mechanism 26 above it can be used to drive the first pushing member 262 to drive the third pushing member 264 to press against the side of the adjacent preset plate 3, so that a preset plate 3 can be firmly limited in the separation groove 201.
[0032] And no preset plate 3 is placed in one of the partition slots 201 (please also refer to Figure 7 As shown), the power portion 261 of the auxiliary mechanism 26 above it can be used to drive the third pushing member 264 to move to the bottom of the separation groove 201 adjacent to the separation groove 201 to fill the separation groove 201.
[0033] By means of the above-mentioned processing space 20 of at least one processing unit 2, the preset plates 3 placed inside each partition groove 201 can be the same or different in number, or no preset plates 3 can be placed in any one or more partition grooves 201, and the auxiliary mechanism 26 above each partition groove 201 is used to drive the first push member 262, the second push member 263 or the third push member 264 in different operation modes to fill the internal space of each partition groove 201, and then drive the push member 262 through the driving part 23 of at least one processing unit 2. The predetermined plates 3 accommodated in the respective dividing grooves 201 in the processing space 20 are pressed and squeezed toward the stopper 21, so that the predetermined plates 3 can evenly bear the pressure, the internal filling materials (such as foaming agent, adhesive or limiting material, etc.) can be stably stressed and evenly pressed to form a tight bond, and the decorative design parts on the predetermined plates 3 will not expand or deform to cause cracks or damage, thereby improving the yield rate in the manufacturing process of the predetermined plates 3 and saving time and labor in the relevant manufacturing processes of the predetermined plates 3.
[0034] The above description is merely a preferred embodiment of the present invention and does not limit the patent scope of the present invention. Therefore, any simple modifications and equivalent structural changes made by using the contents of the present invention specification and drawings should be included in the patent scope of the present invention and are hereby stated.
Claims
1. A plate pressurizing construction device, comprising an operating machine and at least one set of processing units, characterized in that: The working machine includes at least one working space; The at least one group of processing units is arranged in the at least one working space of the working machine, including a processing space, a stopper and a pusher arranged on at least one side of the processing space, and at least one driving part for driving the pusher to move back and forth in the processing space. A plurality of separation grooves are provided in the processing space, and at least one auxiliary mechanism is provided above each of the separation grooves.
2. The plate pressurizing construction device according to claim 1, characterized in that: An adjustment base for assembling and setting at least one group of processing units is provided at the at least one working space of the working machine, so that the adjustment base can adjust the length or width of the at least one working space.
3. The plate pressurizing construction device according to claim 1, characterized in that: The at least one group of processing units assembled at the at least one working space of the working machine includes a base body, the at least one driving part assembled on the base body, the pushing member driven to move by the at least one driving part, and the stop member on the other side relative to the pushing member, and the processing space is formed on the relative inner sides of the pushing member and the stop member.
4. The plate pressurizing construction device according to claim 3, characterized in that: The operating machine is provided with a power unit capable of limiting and fastening the seat body at the at least one operating space, and the power unit is a motor, a hydraulic cylinder or a pneumatic cylinder.
5. The plate pressurizing construction device according to claim 1, characterized in that: The processing space of the at least one group of processing units, and the at least one processing space includes the plurality of adjacently arranged separation grooves, at least one auxiliary mechanism is respectively arranged above each of the separation grooves, and each of the auxiliary mechanisms includes a power part, a first pushing member driven by each of the power parts to move toward each of the separation grooves, a second pushing member pushed by each of the first pushing members, and a third pushing member pushed by each of the first pushing members and each of the second pushing members.