Adjustable laminated slab processing die
Patent Information
- Application Number
- CN202521994285.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-17
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-09-17
AI Technical Summary
[0004]本实用新型的目的在于至少解决现有技术中存在的技术问题之一,提供一种可调节式叠合板加工模具,能够解决更换叠合板长度时,传统模具需先拆除全部螺栓,再人工对齐板件通孔,最后逐个拧紧螺栓完成调节,这一过程操作需多人协作,一人扶持板件防止倾倒,一人专注对齐孔位确保精度,另一人负责拧紧螺栓固定位置,如此协作模式不仅增加了人力成本,更因步骤繁琐导致调节效率低下的问题
1、该可调节式叠合板加工模具,在进行模具拼接时,将横梁架靠近纵梁架,使对接滑板与对接滑槽二对齐,这种特殊形状的对接结构能够严格限制对接滑板在对接滑槽二内的运动方向,使其只能沿对接滑槽二的长度方向滑动,从而实现横梁架与纵梁架在水平方向上的精准初步定位,在拼接过程中,有效防止了横梁架与纵梁架在水平方向出现偏移,避免了因定位不准确而导致的后续拼接困难和模具精度下降等问题,大大提高了拼接效率和拼接质量,无需多人协作,单人即可轻松完成拼接,进一步提高了调节效率。
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Figure CN224795969U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of mold technology with adjustable parts, and in particular to an adjustable composite plate processing mold. Background Technology
[0002] Composite slabs are assembled monolithic floor slabs composed of precast slabs and cast-in-place reinforced concrete layers. Chinese utility model patent, authorized publication number "CN215511559U", discloses an adjustable composite slab mold. This utility model discloses an adjustable composite slab mold including four elongated frame members with several reinforcing bar grooves. Along its length, the frame members consist of a non-standard left end section, a standard middle section, and a non-standard right end section, sequentially spliced together. The standard middle section has several reinforcing bars, which can be adjusted according to requirements. The standard intermediate sections of the corresponding number of bars can be disassembled and spliced sequentially. The non-standard left and right end sections each have several bars with different bar groove positions. The non-standard left end section with the corresponding bar groove position can be selected according to requirements, and its inner end can be detachably connected to the leftmost standard intermediate section. Similarly, the non-standard right end section with the corresponding bar groove position can be selected according to requirements, and its inner end can be detachably connected to the rightmost standard intermediate section. Four frame members form a rectangular mold frame, and the non-standard left end section of each frame member is connected to the non-standard right end section of the adjacent frame member. This utility model has the advantages of adjustable bar groove positions and adjustable overall dimensions.
[0003] When changing the length of the composite plate in the above-mentioned technical solution, the traditional mold requires all bolts to be removed first, then the through holes of the plate to be manually aligned, and finally the bolts to be tightened one by one to complete the adjustment. This process requires the cooperation of multiple people: one person supports the plate to prevent it from tipping over, one person focuses on aligning the holes to ensure accuracy, and another person is responsible for tightening the bolts to fix the position. Such a collaborative mode not only increases labor costs, but also leads to low adjustment efficiency due to the cumbersome steps. Therefore, we propose an adjustable composite plate processing mold. Utility Model Content
[0004] The purpose of this utility model is to solve at least one of the technical problems existing in the prior art, and to provide an adjustable laminated plate processing mold. This mold can solve the problem that when changing the length of laminated plates, the traditional mold requires all bolts to be removed first, then the through holes of the plate to be manually aligned, and finally the bolts to be tightened one by one to complete the adjustment. This process requires the cooperation of multiple people: one person supports the plate to prevent it from tipping over, one person focuses on aligning the holes to ensure accuracy, and another person is responsible for tightening the bolts to fix the position. Such a cooperative mode not only increases labor costs, but also leads to low adjustment efficiency due to the cumbersome steps.
[0005] To achieve the above objectives, this utility model provides the following technical solution: an adjustable laminated board processing mold, comprising: Multiple crossbeams and multiple longitudinal beams are connected to each other by bolts. Each of the multiple crossbeams has two connecting plates 1 fixedly connected inside, and each of the multiple connecting plates 1 has a through hole 1. Each of the multiple longitudinal beams has two connecting plates 2 fixedly connected inside, and each of the multiple connecting plates 2 has a through hole 2. Two docking slides are fixedly connected to one side of each of the multiple crossbeams near the longitudinal beams. Two docking grooves are opened on one side of each of the multiple connecting plates. The two docking slides on the crossbeams are slidably connected to the interior of the corresponding docking grooves. Two docking grooves are opened on one side of each of the multiple connecting plates.
[0006] Preferably, each of the multiple connecting plates 2 and multiple connecting plates 1 is provided with two snap-fit sliding plates, and each of the multiple connecting plates 2 and multiple connecting plates 1 is interconnected by two snap-fit sliding plates, and each of the multiple snap-fit sliding plates is slidably connected to the interior of the corresponding two docking grooves 2 and the corresponding two docking grooves 1.
[0007] Preferably, multiple reinforcing plates are fixedly connected inside the multiple crossbeams and multiple longitudinal beams.
[0008] Preferably, the top of each of the multiple crossbeam frames is provided with multiple reinforcing bar grooves.
[0009] Preferably, the top of each of the longitudinal beams is provided with a plurality of reinforcing bar grooves.
[0010] Preferably, the plurality of docking grooves II, the plurality of docking grooves I, and the plurality of docking slides are all convex structures.
[0011] Preferably, the plurality of the snap-fit sliding plates have an "I" shaped structure.
[0012] Compared with the prior art, the beneficial effects of this utility model are: 1. This adjustable composite board processing mold, during mold assembly, involves bringing the crossbeam frame close to the longitudinal beam frame, aligning the docking slide plate with the second docking groove. This specially shaped docking structure strictly restricts the movement direction of the docking slide plate within the second docking groove, allowing it to slide only along the length of the second docking groove. This achieves precise initial positioning of the crossbeam frame and longitudinal beam frame in the horizontal direction. During the assembly process, it effectively prevents horizontal offset between the crossbeam frame and longitudinal beam frame, avoiding subsequent assembly difficulties and mold precision reduction caused by inaccurate positioning. This significantly improves assembly efficiency and quality. No multiple people are required; a single person can easily complete the assembly, further enhancing adjustment efficiency. Attached Figure Description
[0013] The present invention will be further described below with reference to the accompanying drawings and embodiments: Figure 1 This is a three-dimensional structural diagram of the present invention; Figure 2 This is a schematic diagram of the connecting plate structure of this utility model; Figure 3 This is a schematic diagram of the crossbeam frame structure of this utility model; Figure 4 This is a schematic diagram of the longitudinal beam frame structure of this utility model.
[0014] Attached reference numerals: 1. Horizontal beam frame; 2. Longitudinal beam frame; 3. Reinforcing plate; 4. Connecting plate one; 5. Connecting plate two; 6. Butt joint groove two; 7. Butt joint sliding plate; 8. Snap-fit sliding plate; 9. Through hole two; 10. Through hole one; 11. Reinforcing bar groove one; 12. Butt joint groove one; 13. Reinforcing bar groove two. Detailed Implementation
[0015] This section will describe in detail the specific embodiments of the present utility model. The preferred embodiments of the present utility model are shown in the accompanying drawings. The purpose of the drawings is to supplement the textual description with graphics, so that people can intuitively and vividly understand each technical feature and the overall technical solution of the present utility model, but they should not be construed as limiting the scope of protection of the present utility model.
[0016] In the description of this utility model, it should be understood that the directional descriptions, such as up, down, front, back, left, right, etc., indicate the directional or positional relationship based on the directional or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0017] In the description of this utility model, terms such as greater than, less than, and exceeding are understood to exclude the stated number, while terms such as above, below, and within are understood to include the stated number. The use of "first" and "second" in the description is merely for distinguishing technical features and should not be construed as indicating or implying relative importance, or implicitly indicating the quantity or sequence of the indicated technical features.
[0018] In the description of this utility model, unless otherwise explicitly defined, terms such as "setting," "installation," and "connection" should be interpreted broadly, and those skilled in the art can reasonably determine the specific meaning of the above terms in this utility model in conjunction with the specific content of the technical solution.
[0019] Please see Figure 1-4 This utility model provides a technical solution: an adjustable composite board processing mold, comprising: Multiple crossbeam frames 1 and multiple longitudinal beam frames 2 are connected to each other by bolts. Each of the multiple crossbeam frames 1 has two connecting plates 1-4 fixedly connected inside, and each of the multiple connecting plates 1-4 has a through hole 10. Each of the multiple longitudinal beam frames 2 has two connecting plates 2-5 fixedly connected inside, and each of the multiple connecting plates 2-5 has a through hole 2-9. Two docking slide plates 7 are fixedly connected to one side of each of the multiple crossbeam frames 1 near the longitudinal beam frame 2. Two docking grooves 6 are opened on one side of each of the multiple connecting plates 2 5. The two docking slide plates 7 on the crossbeam frame 1 are slidably connected to the interior of the corresponding docking grooves 2 6. Two docking grooves 12 are opened on one side of each of the multiple connecting plates 1 4.
[0020] Multiple connecting plates 2 5 and multiple connecting plates 1 4 are provided with two snap-fit sliding plates 8. Multiple connecting plates 2 5 and multiple connecting plates 1 4 are all connected to each other through the two snap-fit sliding plates 8. Multiple snap-fit sliding plates 8 are all slidably connected to the interior of the corresponding two docking slide grooves 2 6 and the corresponding two docking slide grooves 1 12.
[0021] Multiple reinforcing plates 3 are fixedly connected inside multiple crossbeam frames 1 and multiple longitudinal beam frames 2. Multiple reinforcing grooves 11 are opened on the top of multiple crossbeam frames 1, and multiple reinforcing grooves 13 are opened on the top of multiple longitudinal beam frames 2. Multiple connecting slides 6, multiple connecting slides 12 and multiple connecting slide plates 7 are all "convex" shaped structures, and multiple snap-fit slide plates 8 are "I" shaped structures.
[0022] Furthermore, when using this device, before assembling the mold, the quantity and position of the required crossbeam frame 1 and longitudinal beam frame 2 are determined according to the specifications of the composite plate. Multiple reinforcing plates 3 are fixedly connected inside the crossbeam frame 1 and longitudinal beam frame 2. The reinforcing plates 3 can enhance the structural strength of the crossbeam frame 1 and longitudinal beam frame 2, making them less prone to deformation during assembly and subsequent use, thus ensuring the overall stability of the mold.
[0023] Bring the crossbeam frame 1 close to the longitudinal beam frame 2, aligning the two mating slide plates 7 on the crossbeam frame 1 with the corresponding mating grooves 6 on the connecting plate 5 inside the longitudinal beam frame 2. Since both the mating groove 6 and the mating slide plate 7 are convex structures, this special-shaped mating structure can restrict the movement direction of the mating slide plate 7 within the mating groove 6, allowing it to slide only along the length of the mating groove 6. This achieves the initial horizontal positioning of the crossbeam frame 1 and the longitudinal beam frame 2, preventing horizontal offset during the splicing process.
[0024] The snap-fit sliding plate 8 is simultaneously inserted into the docking groove 6 of the two corresponding connecting plates 2 5. The "I"-shaped snap-fit sliding plate 8 can fit tightly with the "convex"-shaped docking groove 2 6. The two ends of the snap-fit sliding plate 8 are respectively snapped into the groove openings of the two corresponding docking grooves 2 6, which further restricts the horizontal displacement of the longitudinal beam frame 2. The snap-fit principle of the transverse beam frame 1 and the longitudinal beam frame 2 is the same, realizing the precise snap-fit fixation of the transverse beam frame 1 and the longitudinal beam frame 2, so that the transverse beam frame 1 and the longitudinal beam frame 2 form a stable integral structure.
[0025] After precise snap-fitting, bolts are used to fix the crossbeam frame 1 through the through hole 9 on the connecting plate 25 and tightened to finally fix the crossbeam frame 1 and the longitudinal beam frame 2, ensuring that the mold will not loosen or shift during subsequent use. The top of the crossbeam frame 1 has multiple reinforcing bar slots 11 and 13. After the mold is assembled and fixed, the reinforcing bars can be placed in the reinforcing bar slots 11 and 13 according to the design requirements of the composite slab, so that concrete can be poured later, so that the reinforcing bars and concrete form a composite slab structure. The reinforcing bar slots 11 and 13 can ensure the accurate position of the reinforcing bars and improve the quality of the composite slab.
[0026] During mold assembly, the crossbeam frame 1 is brought close to the longitudinal beam frame 2, aligning the docking slide plate 7 with the docking groove 2 6. This specially shaped docking structure strictly restricts the movement direction of the docking slide plate 7 within the docking groove 2 6, allowing it to slide only along the length of the docking groove 2 6. This achieves precise initial positioning of the crossbeam frame 1 and the longitudinal beam frame 2 in the horizontal direction. During the assembly process, it effectively prevents the crossbeam frame 1 and the longitudinal beam frame 2 from shifting in the horizontal direction, avoiding subsequent assembly difficulties and mold precision reduction caused by inaccurate positioning. This greatly improves assembly efficiency and quality, eliminating the need for multiple people to collaborate; a single person can easily complete the assembly, further enhancing adjustment efficiency.
[0027] Structural Description: Horizontal Beam 1: Serves as the transverse support frame of the mold, and is spliced with the longitudinal beam 2 to form the main structure of the mold; it has internal fixed connection connecting plate 1 4 and reinforcing plate 3, and has a top reinforcement groove 11 and reinforcement groove 2 13 for supporting the processing of the composite plate and limiting the position of the reinforcing bars; Longitudinal beam frame 2: As the longitudinal support frame of the mold, it is spliced with the crossbeam frame 1 to form the mold as a whole; the internal fixed connection plate 2 5 and reinforcing plate 3 are used to achieve initial positioning by the cooperation of the docking slide plate 7 of the crossbeam frame 1 through the docking slide groove 2 6. Reinforcing plate 3: It is fixedly connected inside the crossbeam frame 1 and the longitudinal beam frame 2 to enhance the structural strength and deformation resistance of both, and to ensure that the mold remains stable during assembly and use; Connecting plate 1 4: It is fixedly connected inside the crossbeam frame 1, and has a through hole 10 and a docking groove 12. The through hole 10 is used for bolt fixing, and the docking groove 12 cooperates with the snap-fit sliding plate 8 to achieve snap-fit with connecting plate 2 5. Connecting plate 25: It is fixedly connected inside the longitudinal beam frame 2, and has through hole 29 and docking groove 26. Through hole 29 is used for bolt fixing, and docking groove 26 cooperates with docking slide plate 7 and snap-fit slide plate 8 to achieve positioning and snap-fit with the crossbeam frame 1. Dating groove 2 6: It is located on one side of connecting plate 2 5 and has a "convex" structure. It is slidably connected to the docking slide plate 7 of the crossbeam frame 1, restricting the movement direction of the docking slide plate 7 and realizing the initial horizontal positioning of the crossbeam frame 1 and the longitudinal beam frame 2; at the same time, it cooperates with the snap-fit slide plate 8 to enhance the snap-fit stability. Dating slide plate 7: It is fixedly connected to the side of the crossbeam frame 1 near the longitudinal beam frame 2. It has a "convex" structure and is slidably connected to the docking groove 6 of the connecting plate 2 5. It serves as a guide structure for splicing the crossbeam frame 1 and the longitudinal beam frame 2 to prevent horizontal displacement. The snap-fit sliding plate 8 has an "I" shaped structure and slides inside the docking groove 2 6 and docking groove 1 12. It snaps and fixes the connecting plate 2 5 and the connecting plate 1 4, restricting the relative displacement of the crossbeam frame 1 and the longitudinal beam frame 2, and achieving precise splicing. Through hole 2 9: It is opened on the connecting plate 2 5, corresponding to through hole 1 10, for bolts to pass through, and is used for the final fixation of the crossbeam frame 1 and the longitudinal beam frame 2; Through hole 10: It is opened on the connecting plate 14, corresponding to through hole 29, for bolts to pass through, and together with the bolts, the crossbeam frame 1 and the longitudinal beam frame 2 are fastened. Reinforcing bar groove 11: It is opened at the top of the crossbeam frame 1 to place reinforcing bars, limit the lateral position of the reinforcing bars, and ensure that the distribution of reinforcing bars in the composite slab meets the design requirements; Dating groove 12: It is located on one side of connecting plate 14 and has a "convex" structure. It is slidably connected with the snap-fit slide plate 8 and works with the snap-fit slide plate 8 to achieve snap-fit positioning with connecting plate 25. Reinforcing bar groove 2 13: It is opened at the top of the crossbeam frame 1 and cooperates with reinforcing bar groove 1 11. It is used to place reinforcing bars, limit the longitudinal position of the reinforcing bars, and ensure the accuracy of the reinforcing bar layout of the composite slab.
[0028] The embodiments of the present utility model have been described in detail above with reference to the accompanying drawings. However, the present utility model is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present utility model.
Claims
1. An adjustable die for processing laminated boards, characterized in that, include: Multiple crossbeam frames (1) and multiple longitudinal beam frames (2) are connected to each other by bolts. The interior of each of the multiple crossbeam frames (1) is fixedly connected to two connecting plates (4), and each of the multiple connecting plates (4) has a through hole (10). The interior of each of the multiple longitudinal beam frames (2) is fixedly connected to two connecting plates (5), and each of the multiple connecting plates (5) has a through hole (9). Two docking slide plates (7) are fixedly connected to one side of the multiple crossbeam frames (1) near the longitudinal beam frame (2). Two docking grooves (6) are opened on one side of the multiple connecting plates (5). The two docking slide plates (7) on the crossbeam frame (1) are slidably connected to the interior of the corresponding docking grooves (6). Two docking grooves (12) are opened on one side of the multiple connecting plates (4).
2. The adjustable laminated plate processing mold according to claim 1, characterized in that: Two snap-fit sliding plates (8) are provided on the multiple connecting plates two (5) and multiple connecting plates one (4). The multiple connecting plates two (5) and multiple connecting plates one (4) are all connected to each other through the two snap-fit sliding plates (8). The multiple snap-fit sliding plates (8) are all slidably connected to the interior of the corresponding two docking grooves two (6) and the corresponding two docking grooves one (12).
3. The adjustable laminated plate processing mold according to claim 1, characterized in that: Multiple reinforcing plates (3) are fixedly connected inside the multiple crossbeam frames (1) and multiple longitudinal beam frames (2).
4. The adjustable laminated plate processing mold according to claim 1, characterized in that: Multiple reinforcing bar slots (11) are provided on the top of each of the aforementioned crossbeam frames (1).
5. The adjustable laminated plate processing mold according to claim 1, characterized in that: Multiple reinforcing bar slots (13) are provided on the top of each of the longitudinal beam frames (2).
6. The adjustable laminated plate processing mold according to claim 1, characterized in that: The multiple docking grooves (6), multiple docking grooves (12), and multiple docking slides (7) are all convex structures.
7. The adjustable laminated plate processing mold according to claim 2, characterized in that: The multiple snap-fit sliding plates (8) are of an "I" shape.
Citation Information
Patent Citations
Adjustable laminated slab mold
CN215511559U