A size-adjustable metal mold for building slip-form construction

CN224769799UActive Publication Date: 2026-09-18CHINA RAILWAY FIRST GRP SECOND ENG CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202522315671.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-31
Publication Date
2026-09-18
Estimated Expiration
2035-10-31

AI Technical Summary

Technical Problem

市场上已有的滑模施工金属模具功能比较单一,只能满足固定标高标宽的防护栏类施工需求

Benefits of technology

(1)本实用新型通过右侧框架凸板能够沿着左侧框架凹槽左右移动,从而调节模具的左右宽度,通过调节装置驱动调节钢板凹板沿着上下移动能够调节模具的上下高度,通过调节板凸板沿着调节钢板凹板滑动能够补齐右侧框架凸板滑动引起的空隙。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224769799U_ABST
    Figure CN224769799U_ABST
Patent Text Reader

Abstract

The utility model relates to building construction technical field especially relates to a kind of metal mould for building slipform construction with adjustable size, including adjusting device, left frame concave plate, right frame convex plate, adjusting steel plate concave plate and adjusting plate convex plate, the right end face of left frame concave plate is equipped with left frame groove, the left end face of right frame convex plate is cooperated with the left frame groove and is slid, the left side wall below of left frame concave plate is equipped with feed inlet;The upper surface left end of adjusting steel plate concave plate is connected with the bottom end of adjusting device and drives it to slide along the left side inner wall of left frame concave plate, the right end face of adjusting steel plate concave plate is equipped with adjusting steel plate groove, which is cooperated with the adjusting plate convex plate and is slid.The utility model can adjust the left and right width of mould, can adjust the height of mould, and the gap caused by right frame convex plate sliding can be filled by adjusting plate convex plate along adjusting steel plate concave plate sliding.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of building construction technology, and in particular to an adjustable-size metal mold for building slipform construction. Background Technology

[0002] Concrete engineering is an essential component of building construction, primarily encompassing formwork erection, rebar tying, concrete pouring, and curing. Slipform construction integrates these processes (especially formwork erection and pouring) in a highly integrated and continuous manner. Existing slipform metal molds on the market have limited functionality, only suitable for fixed-elevation and fixed-width guardrail construction. Users often cannot meet the needs of variable elevations and widths, requiring manual intervention when such changes are necessary, which is extremely inconvenient and fails to fulfill the purpose and significance of integrated molding construction technology.

[0003] Based on the above problems, this utility model proposes an adjustable metal mold for slipform construction in buildings. Utility Model Content

[0004] The purpose of this utility model is to overcome the shortcomings of the prior art and provide an adjustable metal mold for slipform construction. The right frame protrusion can move left and right along the left frame groove to adjust the left and right width of the mold. The adjusting device drives the adjusting steel plate concave plate to move up and down to adjust the height of the mold. The adjusting plate protrusion can slide along the adjusting steel plate concave plate to fill the gap caused by the sliding of the right frame protrusion.

[0005] To achieve the objective of this utility model, the technical solution adopted by this utility model is as follows: This utility model discloses an adjustable metal mold for slipform construction, comprising an adjusting device, a left frame concave plate, a right frame convex plate, an adjusting steel plate concave plate, and an adjusting plate convex plate. The left frame concave plate and the right frame convex plate are inverted "L" shaped. The right end face of the left frame concave plate is provided with a left frame groove, and the left end face of the right frame convex plate slides in cooperation with the left frame groove. A feed port is provided below the left side wall of the left frame concave plate. The left end of the upper surface of the adjusting steel plate concave plate is connected to the bottom end of the adjusting device, driving it to slide along the left inner wall of the left frame concave plate. The right end face of the adjusting steel plate concave plate is provided with an adjusting steel plate groove that slides in cooperation with the adjusting plate convex plate.

[0006] The left frame recess includes a left vertical plate, a left horizontal plate, and a left back plate. The left end of the left horizontal plate is connected to the upper inner wall of the left vertical plate, and the right end face of the left horizontal plate is provided with the left frame recess. The top of the front wall of the left back plate is connected to the rear wall of the left horizontal plate, and the right end face of the left back plate is provided with a left back plate recess that communicates with the left frame recess.

[0007] The right frame protrusion includes a right horizontal plate, a right first vertical plate, a right inclined plate, a right second vertical plate, and a right back plate. The right horizontal plate slides in conjunction with the left frame groove. The top of the inner wall of the right first vertical plate is connected to the right end of the right horizontal plate. The top of the right inclined plate is connected to the bottom end of the right first vertical plate. The bottom end of the inclined plate is inclined outward. The right second vertical plate is connected to the bottom end of the right inclined plate. The bottom end of the right second vertical plate is flush with the bottom end of the left vertical plate. The front end of the inner wall of the right back plate is connected to the rear wall of the right horizontal plate. The right back plate slides in conjunction with the left back plate groove.

[0008] The adjusting device is a worm gear lift. The adjusting device is fixed to the left end of the upper surface of the left side plate. The bottom end of the adjusting screw of the adjusting device passes through the left side plate and is connected to the connecting flange. The lower surface of the connecting flange is connected to the left end of the upper surface of the left side plate.

[0009] The left vertical plate has dovetail-shaped vertical guide rails on both sides of its inner wall, and the right end face of the right frame protrusion plate has a dovetail groove that slides with the vertical guide rails; the bottom end of the vertical guide rails is higher than the bottom end of the right first vertical plate.

[0010] A feeding hopper is connected to the left side of the left vertical plate. The feeding hopper has a hollow right-angled triangle structure with a top opening and a cross-sectional width that gradually decreases from top to bottom. The feeding port is located below the inner wall of the left vertical plate and is connected to the bottom of the inner cavity of the feeding hopper.

[0011] The right end of the front wall of the adjusting steel plate concave plate is provided with a threaded hole that matches the external thread of the tightening bolt.

[0012] The beneficial effects of this utility model are as follows: (1) The present invention can adjust the left and right width of the mold by moving the right frame protrusion along the left frame groove. The mold height can be adjusted by driving the adjusting steel plate concave plate to move up and down by the adjusting device. The gap caused by the sliding of the right frame protrusion can be filled by the sliding of the adjusting plate protrusion along the adjusting steel plate concave plate. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is an exploded view of the present invention.

[0014] In the diagram: 1 Adjustment device, 2 Left frame concave plate, 3 Right frame convex plate, 4 Adjustment steel plate concave plate, 5 Adjustment plate convex plate, 6 Feed inlet, 7 Vertical guide rail, 8 Dovetail groove, 9 Feed hopper, 10 Tightening bolt, 11 Adjustment screw, 12 Connecting flange, 21 Left vertical plate, 22 Left horizontal plate, 23 Left back plate, 24 Left back plate groove, 31 Right horizontal plate, 32 Right first vertical plate, 33 Right inclined plate, 34 Right second vertical plate, 35 Right back plate. Detailed Implementation

[0015] The present invention will be further described below: Please see Figure 1-2 , This utility model discloses an adjustable metal mold for slipform construction, comprising an adjusting device 1, a left frame concave plate 2, a right frame convex plate 3, an adjusting steel plate concave plate 4, and an adjusting plate convex plate 5. The left frame concave plate 2 and the right frame convex plate 3 are inverted "L" shaped structures. The right end face of the left frame concave plate 2 is provided with a left frame groove 25, and the left end face of the right frame convex plate 3 slides in cooperation with the left frame groove 25. A feed inlet 6 is provided below the left side wall of the left frame concave plate 2. The upper part of the adjusting steel plate concave plate 4... The left end of the surface is connected to the bottom end of the adjustment device 1, driving it to slide along the left inner wall of the left side frame concave plate 2. The right end face of the adjustment steel plate concave plate 4 is provided with an adjustment steel plate groove 41 that slides in cooperation with the adjustment plate protrusion 5. The right side frame protrusion 3 can move left and right along the left side frame groove 25, thereby adjusting the left and right width of the mold. The adjustment device 1 drives the adjustment steel plate concave plate 4 to move up and down, thereby adjusting the up and down height of the mold. The adjustment plate protrusion 5 can slide along the adjustment steel plate concave plate 4 to fill the gap caused by the sliding of the right side frame protrusion 3.

[0016] Furthermore, the left frame recess 2 includes a left vertical plate 21, a left horizontal plate 22, and a left back plate 23. The left end of the left horizontal plate 22 is connected to the upper inner wall of the left vertical plate 21, and the right end face of the left horizontal plate 22 is provided with the left frame groove 25. The top of the front wall of the left back plate 23 is connected to the rear wall of the left horizontal plate 22, and the right end face of the left back plate 23 is provided with a left back plate groove 24 that communicates with the left frame groove 25. By setting the left back plate 23, it can be ensured that concrete will not flow out from the rear. During slipform construction, the anti-collision guardrail formed by the concrete poured into the mold can block the front side of the mold behind, so there is no need to set a front plate on the front side of the mold. The left back plate groove 24 facilitates the more stable sliding of the right frame protrusion 3.

[0017] Furthermore, the right frame protrusion 3 includes a right horizontal plate 31, a right first vertical plate 32, a right inclined plate 33, a right second vertical plate 34, and a right back plate 35. The right horizontal plate 31 slides in conjunction with the left frame groove 25. The top of the inner wall of the right first vertical plate 32 is connected to the right end of the right horizontal plate 31. The top of the right inclined plate 33 is connected to the bottom end of the right first vertical plate 32. The bottom end of the inclined plate 33 is inclined outward. The right second vertical plate 34 is connected to the right... The bottom end of the inclined plate 33 is connected, and the bottom end of the second vertical plate 34 on the right is flush with the bottom end of the vertical plate 21 on the left. The front end of the inner wall of the right back plate 35 is connected to the rear wall of the right horizontal plate 31. The right back plate 35 slides in cooperation with the groove 24 of the left back plate. The cavity for pouring concrete is formed by the first vertical plate 32 on the right, the inclined plate 33 on the right, the second vertical plate 34 on the right, the vertical plate 21 on the left, the adjusting steel plate concave plate 4, and the adjusting plate convex plate 5. When the concrete solidifies, it can form a crash barrier.

[0018] Furthermore, the adjusting device 1 is a worm gear jack. The adjusting device 1 is fixed to the left end of the upper surface of the left horizontal plate 22. The bottom end of the adjusting screw 11 of the adjusting device 1 passes through the left horizontal plate 22 and is connected to the connecting flange 12. The lower surface of the connecting flange 12 is connected to the left end of the upper surface of the left horizontal plate 22. The adjusting device 1 is an existing SWL worm gear jack, and its working principle will not be described in detail. The adjusting screw 11 of the worm gear jack can move in the vertical direction. After the bottom end of the adjusting screw 11 passes through the left end of the upper surface of the left horizontal plate 22, it is connected to the upper surface of the adjusting steel plate concave plate 4 through the connecting flange 12, thereby realizing that the adjusting device 1 drives the adjusting steel plate concave plate 4 to move in the vertical direction. Preferably, when the right horizontal plate 31 is fully inserted into the groove 25 of the left frame, there is a gap between the left end of the right horizontal plate 31 and the adjusting screw 11 to ensure that the right horizontal plate 31 will not affect the operation of the adjusting device 1.

[0019] Furthermore, the inner walls of the left vertical plate 21 are provided with dovetail-shaped vertical guide rails 7 on both sides, and the right end face of the right frame protrusion plate 3 is provided with a dovetail groove 8 that slides with the vertical guide rails 7, so that the adjusting steel plate concave plate 4 can move more stably along the inner wall of the left vertical plate 21 vertically; preferably, the bottom end of the vertical guide rail 7 is higher than the bottom end of the right first vertical plate 32.

[0020] Furthermore, a feed hopper 9 is connected to the left side of the left vertical plate 21. The feed hopper 9 has a hollow right-angled triangle structure with a top opening and a cross-sectional width that gradually decreases from top to bottom. The feed inlet 6 is located below the inner wall of the left vertical plate 21. The feed inlet 6 is connected to the bottom of the inner cavity of the feed hopper 9 to facilitate the pouring of concrete.

[0021] Furthermore, the right end of the front wall of the adjusting steel plate concave plate 4 is provided with a threaded hole that matches the external thread of the tightening bolt 10. When the right end of the adjusting plate convex plate 5 contacts the inner wall of the first vertical plate 32 on the right side, the tightening bolt 10 is screwed into the threaded hole and tightened against the front wall of the adjusting plate convex plate 5 to ensure that the adjusting plate convex plate 5 will not move during the concrete pouring process, causing concrete to enter the cavity above the adjusting plate convex plate 5.

[0022] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent modifications made based on the content of this utility model specification and drawings, or direct or indirect applications in related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A metal mold with adjustable dimensions for slipform construction in buildings, characterized in that: It includes an adjustment device (1), a left frame concave plate (2), a right frame convex plate (3), an adjustment steel plate concave plate (4), and an adjustment plate convex plate (5). The left frame concave plate (2) and the right frame convex plate (3) are inverted "L" shaped structures. The right end face of the left frame concave plate (2) is provided with a left frame groove (25). The left end face of the right frame convex plate (3) slides in cooperation with the left frame groove (25). The left side wall of the left frame concave plate (2) is provided with a feed port (6). The upper surface of the adjusting steel plate concave plate (4) is connected to the bottom end of the adjusting device (1) to drive it to slide along the left inner wall of the left frame concave plate (2). The right end face of the adjusting steel plate concave plate (4) is provided with an adjusting steel plate groove (41) that slides in cooperation with the adjusting plate protrusion (5).

2. The adjustable-size metal mold for slipform construction in buildings according to claim 1, characterized in that: The left frame recess (2) includes a left vertical plate (21), a left horizontal plate (22) and a left back plate (23). The left end of the left horizontal plate (22) is connected to the upper inner wall of the left vertical plate (21), and the right end face of the left horizontal plate (22) is provided with the left frame groove (25). The top of the front wall of the left back plate (23) is connected to the rear wall of the left horizontal plate (22), and the right end face of the left back plate (23) is provided with a left back plate groove (24) that communicates with the left frame groove (25).

3. The adjustable-size metal mold for slipform construction in buildings according to claim 2, characterized in that: The right frame protrusion (3) includes a right horizontal plate (31), a right first vertical plate (32), a right inclined plate (33), a right second vertical plate (34), and a right back plate (35). The right horizontal plate (31) slides in cooperation with the left frame groove (25). The top of the inner wall of the right first vertical plate (32) is connected to the right end of the right horizontal plate (31). The top of the right inclined plate (33) is connected to the bottom end of the right first vertical plate (32). The bottom end of the inclined plate (33) is inclined outward. The right second vertical plate (34) is connected to the bottom end of the right inclined plate (33). The bottom end of the right second vertical plate (34) is flush with the bottom end of the left vertical plate (21). The front end of the inner wall of the right back plate (35) is connected to the rear wall of the right horizontal plate (31). The right back plate (35) slides in cooperation with the left back plate groove (24).

4. The adjustable-size metal mold for slipform construction in buildings according to claim 3, characterized in that: The adjusting device (1) is a worm gear lift. The adjusting device (1) is fixed to the left end of the upper surface of the left side plate (22). The bottom end of the adjusting screw (11) of the adjusting device (1) passes through the left side plate (22) and is connected to the connecting flange (12). The lower surface of the connecting flange (12) is connected to the left end of the upper surface of the left side plate (22).

5. A metal mold with adjustable dimensions for slipform construction in buildings according to claim 4, characterized in that: The left vertical plate (21) has dovetail-shaped vertical guide rails (7) on both sides of its inner wall, and the right end face of the right frame protrusion plate (3) has a dovetail groove (8) that slides with the vertical guide rails (7); the bottom end of the vertical guide rails (7) is higher than the bottom end of the right first vertical plate (32).

6. A metal mold with adjustable dimensions for slipform construction in building construction according to claim 5, characterized in that: The left side of the left vertical plate (21) is connected to a feeding hopper (9). The feeding hopper (9) has a hollow right-angled triangle structure with a top opening and a cross-sectional width that gradually decreases from top to bottom. The feeding port (6) is located below the inner wall of the left vertical plate (21). The feeding port (6) is connected to the bottom of the inner cavity of the feeding hopper (9).

7. The adjustable-size metal mold for slipform construction of buildings according to claim 1, characterized in that: The right end of the front wall of the adjusting steel plate concave plate (4) is provided with a threaded hole that matches the external thread of the tightening bolt (10).