Switching device for calcium silicate board processing
By using a storage box and clamping block design in the calcium silicate board transfer device, combined with movable connectors and gripping components, the problems of damage and low efficiency of calcium silicate boards during transfer are solved, and stable and efficient multi-board transfer is achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-07
- Publication Date
- 2026-04-07
AI Technical Summary
Existing calcium silicate board transfer devices are prone to damage to calcium silicate boards and have low transfer efficiency, making it impossible to efficiently transfer multiple boards.
Design a transfer device including a storage box and a clamping block on the base, using the clamping block to form a clamping cavity to hold the calcium silicate board, and achieving stable transfer of the calcium silicate board through a movable connector and a gripping assembly, adapting to boards of different sizes and thicknesses.
It improves the stability and efficiency of calcium silicate board transportation, reduces board damage, and adapts to the transportation needs of different processes.
Smart Images

Figure CN224091163U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to calcium silicate board processing equipment technical field especially a kind of switching device for calcium silicate board processing. BACKGROUND
[0002] Calcium silicate board is with inorganic mineral fiber or cellulose fiber etc. Loose short fiber as reinforcing material, with siliceous and calcareous material as main body cementing material, after pulping, forming, in high temperature and high pressure saturated air accelerates solidification reaction, forms calcium silicate gel body and is made into board.
[0003] Calcium silicate board will experience multiple processing procedures in the process of processing, need to flow in different process workshops, the flow process of calcium silicate board in different process workshops and the transportation of complete calcium silicate board after production to warehouse or use place etc. Procedure all need to adopt switching device to receive calcium silicate board so as to transfer calcium silicate board.
[0004] The existing switching device of calcium silicate board is mainly stacked on transfer trolley, easy to make calcium silicate board be damaged by oppression;Or adopt crane hoisting, can only transfer single calcium silicate board, and the efficiency is low. SUMMARY
[0005] The utility model aims at providing a kind of switching device for calcium silicate board processing, which can improve the transfer stability and transfer efficiency of calcium silicate board on the basis of ensuring the transfer quantity of calcium silicate board.
[0006] In order to achieve the above purpose, the utility model provides a kind of switching device for calcium silicate board processing, specific implementation scheme as follows:
[0007] A kind of switching device for calcium silicate board processing, including base, storage tank is equipped on the base, storage cavity with top is formed with open in the storage tank, a plurality of first clamping blocks are arranged in the storage cavity, and the first clamping block is arranged along the first direction of base, clamping cavity for clamping and fixing calcium silicate board is formed between every two adjacent first clamping blocks, and the first clamping block is elastic;
[0008] Connecting piece is equipped on the base, the connecting piece is movably arranged on the second direction of base, gripping assembly for clamping calcium silicate board is equipped on the two sides of connecting piece, and the gripping end of gripping assembly can be close to or away from the storage cavity, so as to put calcium silicate board into clamping cavity or take out from clamping cavity.
[0009] The utility model discloses a switching device for calcium silicate board processing, relative to prior art, through setting up the storage box with the storage cavity of top opening on the base, setting up a plurality of first clamping blocks in the storage cavity, the clamping cavity formed between the adjacent first clamping blocks is used to clamp the calcium silicate board, compared with the traditional stacking mode, the calcium silicate board is more difficult to be damaged, and the connecting piece movably arranged on the base second direction is provided with two grabbing assemblies, and the position of the connecting piece on the base can be adjusted according to the setting number of the storage box on the base in actual use, the purpose that the calcium silicate board is sequentially placed into different storage boxes is realized, and the purpose that the transfer stability and transfer efficiency of the calcium silicate board are improved on the basis of ensuring the transfer number of the calcium silicate board can be realized.
[0010] In some embodiments, the grabbing assembly includes a first telescopic rod fixed on the side wall of the connecting piece, a second telescopic rod connected to the movable end of the first telescopic rod, a mounting plate connected to the movable end of the second telescopic rod, two clamping pieces oppositely arranged on the mounting plate, a clamping area formed between the two clamping pieces, and the first telescopic rod is telescopic in the second direction of the base, and the second telescopic rod is telescopic in the third direction of the base to approach or move away from the storage box.
[0011] By adopting the first telescopic rod to drive the second telescopic rod to displace, the second telescopic rod is telescopic in the third direction of the base to drive the mounting plate and the clamping pieces provided on the movable end thereof to approach or move away from the storage box, so as to realize the purpose of placing the calcium silicate board into the clamping area or taking it out from the clamping area.
[0012] In some embodiments, the clamping piece includes two fixed plates arranged on the bottom of the mounting plate and a plurality of clamping cylinders arranged on each fixed plate, a second clamping block is arranged on the movable end of the clamping cylinder, the clamping area is formed between the second clamping blocks on both sides, and the second clamping blocks on both sides approach or move away from each other under the drive of the clamping cylinder.
[0013] By adopting the structure that the clamping cylinder pushes the second clamping blocks to approach or move away from each other, the clamping switching of the calcium silicate board with different thicknesses can be adapted, and in actual use, the elastic first clamping block can be used to adapt the switching storage of the calcium silicate board with different thicknesses.
[0014] In some embodiments, a sliding groove is formed in the second direction of the base, a sliding block is arranged on the bottom of the connecting piece, the sliding block is at least partially embedded in the sliding groove and is in sliding cooperation with the sliding groove, a drive cylinder is arranged on the base, the movable end of the drive cylinder is connected with the connecting piece, and the connecting piece is reciprocally movable in the sliding groove under the drive of the drive cylinder.
[0015] By providing a sliding groove on the base and a sliding block on the connecting piece, the telescopic movement of the movable end of the driving cylinder is utilized to drive the connecting piece to displace in the second direction, and the displacement accuracy and stability of the connecting piece are improved under the limiting effect of the sliding block and the sliding groove.
[0016] In some embodiments, a plurality of connecting rods are provided on both inner walls of the storage cavity, and the first clamping blocks are provided on each connecting rod.
[0017] By adopting the structure of connecting the first clamping blocks with connecting rods, the first clamping blocks can be replaced separately when damaged, reducing the loss cost.
[0018] In some embodiments, a guiding surface is provided on the top of the first clamping block, and the guiding surface is inclined from top to bottom towards one side of the clamping cavity.
[0019] By providing a guiding surface on the top of the first clamping block that is inclined from top to bottom towards one side of the clamping cavity, the smoothness and accuracy of placing the calcium silicate board into the clamping cavity are improved.
[0020] In some embodiments, the storage box includes a first connecting portion and a second connecting portion. The first clamping blocks are provided on the opposite inner walls of the first connecting portion and the second connecting portion. The first connecting portion and the second connecting portion are both in a "C" shape. A plugging rod is provided on the first connecting portion, and a plugging groove is provided on the second connecting portion; or a plugging rod is provided on the second connecting portion, and a plugging groove is provided on the first connecting portion. The plugging rod and the plugging groove are in plugging fit, and the plugging depth of the plugging rod in the plugging groove is adjustable.
[0021] By adopting the method of plugging fit between the plugging rod and the plugging groove to connect the first connecting portion and the second connecting portion, the depth of the plugging rod in the plugging groove can be adjusted during actual use, thereby adjusting the distance between the first connecting portion and the second connecting portion to adapt to the transfer storage of calcium silicate boards of different sizes.
[0022] In some embodiments, at least two adjusting cylinders are provided on the first connecting portion, and the other end of the adjusting cylinder is connected to the second connecting portion. The first connecting portion and the second connecting portion approach or move away from each other under the drive of the adjusting cylinder.
[0023] By using one end of the adjusting cylinder to connect the first connecting portion and the other end to connect the second connecting portion, the adjusting cylinder can automatically control the approach or separation of the first connecting portion and the second connecting portion, thereby adjusting the length dimension of the clamping cavity, automatically adapting to the transfer storage of calcium silicate boards of different lengths, and improving the intelligence level and controllability of the transfer device.
[0024] In some embodiments, a placement slot is provided on the base, and the bottom of the storage box is embedded in the placement slot and positioned in conjunction with the placement slot.
[0025] By setting a placement slot on the base, and utilizing the bottom of the storage box to embed into the placement slot and the positioning of the placement slot, the ease of disassembly and assembly of the storage box and the stability of its use are improved.
[0026] Based on the above technical solution, this utility model has the following beneficial effects compared with the prior art:
[0027] By setting a storage box with a top opening on the base, and setting several first clamping blocks in the storage box, the calcium silicate board is clamped by the clamping cavity formed between adjacent first clamping blocks. Compared with the traditional stacking method, the calcium silicate board is less likely to be damaged. In addition, the connector is movable in the second direction of the base, and two gripping components are set on the connector. In actual use, the position of the connector on the base can be adjusted according to the number of storage boxes set on the base, so as to realize the purpose of sequentially placing the calcium silicate board into different storage boxes. This can improve the transfer stability and transfer efficiency of calcium silicate board while ensuring the transfer quantity. Attached Figure Description
[0028] Figure 1 This is the front view of the present invention;
[0029] Figure 2 For the present utility model Figure 1 Partial cross-sectional schematic diagram;
[0030] Figure 3 This is a top view of the disassembled storage box according to this utility model;
[0031] Figure 4 This is a cross-sectional schematic diagram of the storage box of this utility model.
[0032] Explanation of reference numerals in the attached figures:
[0033] 100. Base; 110. Placement slot; 120. Sliding slot; 130. Drive cylinder; 200. Connector; 300. Gripping assembly; 310. First telescopic rod; 320. Second telescopic rod; 330. Mounting plate; 340. Fixing plate; 350. Clamping cylinder; 360. Second clamping block; 400. Storage box; 410. Storage cavity; 420. First clamping block; 430. Connecting rod; 440. First connecting part; 450. Second connecting part; 460. Insertion rod; 470. Insertion slot; 480. Adjusting cylinder; 500. Calcium silicate board. Detailed Implementation
[0034] To facilitate understanding of this utility model, the specific embodiments of this utility model will be described in more detail below with reference to the accompanying drawings.
[0035] Unless otherwise specified or defined, the terms "first," "second," etc., used in this document are for distinguishing names only and do not represent a specific number or order.
[0036] Unless otherwise stated or defined, the term “and / or” as used herein includes any and all combinations of one or more of the related listed items.
[0037] It should be noted that in this article, "fixed to" or "connected to" can mean directly fixed to or connected to a component, or indirectly fixed to or connected to a component.
[0038] like Figures 1-4 As shown, the adapter for processing calcium silicate board provided in this embodiment includes a base 100, a storage box 400 is provided on the base 100, a storage cavity 410 with an open top is formed in the storage box 400, a plurality of first clamping blocks 420 extending along a first direction of the base 100 are provided in the storage cavity 410, a clamping cavity for clamping and fixing calcium silicate board 500 is formed between every two adjacent first clamping blocks 420, and the first clamping blocks 420 are elastic.
[0039] A connector 200 is provided on the base 100. The connector 200 is movably disposed in the second direction of the base 100. On both sides of the connector 200, gripping components 300 for clamping calcium silicate board 500 are provided. The gripping end of the gripping component 300 can be close to or away from the storage cavity 410 so as to put the calcium silicate board 500 into the clamping cavity or take it out from the clamping cavity.
[0040] In some embodiments, the gripping assembly 300 includes a first telescopic rod 310 fixed to the side wall of the connector 200, a second telescopic rod 320 connected to the movable end of the first telescopic rod 310, and a mounting plate 330 connected to the movable end of the second telescopic rod 320. The mounting plate 330 is provided with two opposing clamping members, forming a clamping area between the two clamping members. The first telescopic rod 310 extends and retracts in a second direction of the base 100, and the second telescopic rod 320 extends and retracts upward toward or away from the storage box 400 in a third direction of the base 100.
[0041] By using the first telescopic rod 310 to drive the second telescopic rod 320 to move, the second telescopic rod 320 extends and retracts upward from the third side of the base 100, causing the mounting plate 330 and clamping member set on its movable end to move closer to or away from the storage box 400, thereby achieving the purpose of placing the calcium silicate board 500 into or taking it out of the clamping area.
[0042] In some embodiments, the clamping member includes two fixing plates 340 disposed at the bottom of the mounting plate 330 and a plurality of clamping cylinders 350 disposed on each fixing plate 340. A second clamping block 360 is provided on the movable end of the clamping cylinder 350. The clamping area is formed between the second clamping blocks 360 located on both sides, and the second clamping blocks 360 located on both sides move closer to each other or further away from each other under the drive of the clamping cylinders 350.
[0043] By employing a structure in which the clamping cylinder 350 pushes the second clamping blocks 360 closer or further apart, it is possible to adapt to the clamping and transfer of calcium silicate boards 500 of different thicknesses. In actual use, the elasticity of the first clamping block 420 can be used to adapt to the transfer and storage of calcium silicate boards 500 of different thicknesses.
[0044] In some embodiments, the base 100 has a sliding groove 120 in a second direction, and a sliding block is provided at the bottom of the connector 200. The sliding block is at least partially embedded in the sliding groove 120 and slides in cooperation with the sliding groove 120. A drive cylinder 130 is provided on the base 100, and the movable end of the drive cylinder 130 is connected to the connector 200 to drive the connector 200 to reciprocate within the sliding groove 120.
[0045] By setting a sliding groove 120 on the base 100 and a sliding block on the connector 200, the connector 200 is displaced in the second direction by the extension and retraction of the movable end of the drive cylinder 130. The displacement accuracy and stability of the connector 200 are improved by the limiting effect of the sliding block and the sliding groove 120.
[0046] In some embodiments, a plurality of connecting rods 430 are provided on both inner walls of the storage cavity 410, and the first clamping block 420 is provided on each connecting rod 430.
[0047] By using a connecting rod 430 to connect the first clamping block 420, the first clamping block 420 can be replaced separately when it is damaged, thus reducing wear and tear costs.
[0048] In some embodiments, the top of the first clamping block 420 is provided with a guide surface that is inclined from top to bottom toward the side facing the clamping cavity.
[0049] By providing a guiding surface on the top of the first clamping block 420, which is inclined from top to bottom towards one side of the clamping cavity, the smoothness and accuracy of placing the calcium silicate board 500 into the clamping cavity are improved.
[0050] In some embodiments, the storage box 400 includes a first connecting portion 440 and a second connecting portion 450. The first clamping blocks 420 are provided on the opposite inner walls of the first connecting portion 440 and the second connecting portion 450. Both the first connecting portion 440 and the second connecting portion 450 are in a "C" shape. A plugging rod 460 is provided on the first connecting portion 440, and a plugging groove 470 is provided on the second connecting portion 450; or a plugging rod 460 is provided on the second connecting portion 450, and a plugging groove 470 is provided on the first connecting portion 440. The plugging rod 460 and the plugging groove 470 are in plugging fit, and the plugging depth of the plugging rod 460 in the plugging groove 470 is adjustable.
[0051] By adopting the way of plugging fit between the plugging rod 460 and the plugging groove 470 to realize the connection between the first connecting portion 440 and the second connecting portion 450, the depth of the plugging rod 460 in the plugging groove 470 can be adjusted during actual use, so as to adjust the distance between the first connecting portion 440 and the second connecting portion 450, and adapt to the transfer storage of calcium silicate boards 500 of different sizes.
[0052] In some embodiments, at least two adjusting cylinders 480 are provided on the first connecting portion 440. The other end of the adjusting cylinder 480 is connected to the second connecting portion 450. The first connecting portion 440 and the second connecting portion 450 approach or move away from each other under the drive of the adjusting cylinder 480.
[0053] By using one end of the adjusting cylinder 480 to connect the first connecting portion 440 and the other end to connect the second connecting portion 450, the adjusting cylinder 480 can automatically control the first connecting portion 440 and the second connecting portion 450 to approach or move away from each other, so as to adjust the length dimension of the clamping cavity, automatically adapt to the transfer storage of calcium silicate boards 500 of different lengths, and improve the intelligence and controllability of the transfer device.
[0054] In some embodiments, a placing groove 110 is formed on the base 100. The bottom of the storage box 400 is embedded in the placing groove 110 and is in positioning fit with the placing groove 110.
[0055] By providing the placing groove 110 on the base 100, and using the bottom of the storage box 400 to be embedded in the placing groove 110 and in positioning fit with the placing groove 110, the disassembly and assembly convenience and the use stability of the storage box 400 are improved.
[0056] The first telescopic rod 310 and the second telescopic rod 320 described in this embodiment can be electric actuators, pneumatic rods, hydraulic rods, etc., as described in the prior art. The clamping cylinder 350, the driving cylinder 130, and the adjusting cylinder 480 described in this embodiment can be cylinders, oil cylinders, electric actuators, pneumatic rods, hydraulic rods, etc., as described in the prior art.
[0057] In this embodiment, the first direction of the base 100 is the length direction of the base 100, the second direction of the base 100 is the width direction of the base 100, and the third direction of the base 100 is the height direction of the base 100.
[0058] The adapter for processing calcium silicate boards provided in this embodiment, compared with the prior art, provides a storage box 400 with a storage cavity 410 having a top opening on the base 100. Several first clamping blocks 420 are arranged in the storage cavity 410. The calcium silicate board 500 is clamped by the clamping cavity formed between adjacent first clamping blocks 420. Compared with the traditional stacking method, the calcium silicate board 500 is less likely to be damaged. In addition, a connector 200 is movably arranged in the second direction of the base 100. Two gripping components 300 are arranged on the connector 200. In actual use, the position of the connector 200 on the base 100 can be adjusted according to the number of storage boxes 400 on the base 100 to realize the purpose of sequentially placing the calcium silicate board 500 into different storage boxes 400. This can improve the transfer stability and transfer efficiency of the calcium silicate board 500 while ensuring the transfer quantity.
[0059] Based on the disclosure and teachings of the above specification, those skilled in the art can make changes and modifications to the above embodiments. Therefore, this utility model is not limited to the specific embodiments disclosed and described above, and some modifications and changes to this utility model should also fall within the protection scope of the claims of this utility model. Furthermore, although some specific terms are used in this specification, these terms are only for convenience of explanation and do not constitute any limitation on this utility model.
Claims
1. A transfer device for processing calcium silicate boards, characterized in that, Includes a base (100), on which a storage box (400) is provided, and a storage cavity (410) with an open top is formed in the storage box (400). A plurality of first clamping blocks (420) extending along a first direction of the base (100) are provided in the storage cavity (410). A clamping cavity for clamping and fixing a calcium silicate board (500) is formed between every two adjacent first clamping blocks (420), and the first clamping blocks (420) are elastic. A connector (200) is provided on the base (100). The connector (200) is movably disposed in a second direction on the base (100). On both sides of the connector (200) are gripping components (300) for clamping calcium silicate plates (500). The gripping end of the gripping component (300) can be close to or away from the storage cavity (410) so as to put the calcium silicate plate (500) into the clamping cavity or take it out from the clamping cavity.
2. The adapter for processing calcium silicate board (500) as described in claim 1, characterized in that, The gripping assembly (300) includes a first telescopic rod (310) fixed to the side wall of the connector (200), a second telescopic rod (320) connected to the movable end of the first telescopic rod (310), and a mounting plate (330) connected to the movable end of the second telescopic rod (320). Two clamping members are provided on the mounting plate (330) and are arranged opposite to each other, forming a clamping area between the two clamping members. The first telescopic rod (310) extends and retracts in a second direction on the base (100), and the second telescopic rod (320) extends and retracts upward toward or away from the storage box (400) on a third direction on the base (100).
3. The adapter for processing calcium silicate board (500) as described in claim 2, characterized in that, The clamping member includes two fixed plates (340) disposed at the bottom of the mounting plate (330) and a plurality of clamping cylinders (350) disposed on each fixed plate (340). A second clamping block (360) is provided on the movable end of the clamping cylinder (350). The clamping area is formed between the second clamping blocks (360) located on both sides, and the second clamping blocks (360) located on both sides move closer to each other or further away from each other under the drive of the clamping cylinder (350).
4. The adapter for processing calcium silicate board (500) as described in any one of claims 1-3, characterized in that, A sliding groove (120) is provided in the second direction of the base (100), and a sliding block is provided at the bottom of the connector (200). The sliding block is at least partially embedded in the sliding groove (120) and slides in cooperation with the sliding groove (120). A drive cylinder (130) is provided on the base (100), and the movable end of the drive cylinder (130) is connected to the connector (200) to drive the connector (200) to reciprocate in the sliding groove (120).
5. The adapter for processing calcium silicate board (500) as described in any one of claims 1-3, characterized in that, Several connecting rods (430) are provided on both sides of the inner wall of the storage cavity (410), and the first clamping block (420) is provided on each connecting rod (430).
6. The adapter for processing calcium silicate board (500) as described in any one of claims 1-3, characterized in that, The top of the first clamping block (420) is provided with a guide surface, which is inclined from top to bottom toward the side facing the clamping cavity.
7. The adapter for processing calcium silicate board (500) as described in any one of claims 1-3, characterized in that, The storage box (400) includes a first connecting portion (440) and a second connecting portion (450). The first clamping blocks (420) are provided on the opposite inner walls of the first connecting portion (440) and the second connecting portion (450). Both the first connecting portion (440) and the second connecting portion (450) are in a "C" shape. A plugging rod (460) is provided on the first connecting portion (440), and a plugging groove (470) is provided on the second connecting portion (450); or a plugging rod (460) is provided on the second connecting portion (450), and a plugging groove (470) is provided on the first connecting portion (440). The plugging rod (460) and the plugging groove (470) are in plugging fit, and the plugging depth of the plugging rod (460) in the plugging groove (470) is adjustable.
8. The adapter for processing calcium silicate board (500) as described in claim 7, characterized in that, At least two adjusting cylinders (480) are provided on the first connecting portion (440). The other ends of the adjusting cylinders (480) are connected to the second connecting portion (450). The first connecting portion (440) and the second connecting portion (450) are driven by the adjusting cylinders (480) to approach each other or move away from each other.
9. The adapter for processing calcium silicate board (500) as described in any one of claims 1-3, characterized in that, A placing groove (110) is formed on the base (100). The bottom of the storage box (400) is embedded in the placing groove (110) and is in positioning fit with the placing groove (110).