A green compact placement transfer rack
Patent Information
- Application Number
- CN202521384214.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-03
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-07-03
AI Technical Summary
本实用新型通过压坯隔层摆放的方式以免在压坯摆放时对其外形造成撞伤的问题,并且也便于进行逐层的摆放操作。
Smart Images

Figure CN224753050U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of refractory brick processing technology, and in particular to a pressing and transferring rack. Background Technology
[0002] Refractory bricks are processed using a pressing method, which avoids significant deformation after firing. After pressing, the bricks are typically stacked beside the pressing machine, and then operators use carts to transfer them to a drying area. This process requires operators to handle the bricks, and the increased number of handling operations increases the risk of damaging the bricks' shape. To reduce handling during transfers, movable racks are sometimes used, but this method presents inconvenience when transferring the bricks. Utility Model Content
[0003] This utility model provides a pressing billet placement and transfer rack to overcome the shortcomings of the prior art and solve the problem of inconvenient placement of current racks, thus having strong practicality.
[0004] In order to achieve the purpose of this utility model, the following technology is proposed to be adopted: A billet placement and transfer frame includes a base frame with casters welded to the four corners of the base frame. Multiple placement units are stacked on the base frame, with each placement unit located directly above the base frame. Each placement unit is detachably connected to the base frame and connected to each other, thereby facilitating the placement of billets.
[0005] Furthermore, the placement unit includes a placement plate, which provides support for the placement of the pressed blanks. The placement plate has a rectangular structure, with lower insert rods welded to the lower walls at its four corners and upper sleeves welded to the upper walls at its four corners. When two adjacent placement units are connected, the lower insert rod on the upper placement unit is inserted into the upper sleeve on the lower placement unit. This detachable design facilitates the layer-by-layer placement of the pressed blanks.
[0006] Furthermore, in order to facilitate the connection of the placement unit located at the bottom layer to the bottom frame, upper extension tubes are welded at the four corners of the bottom frame. Insertion holes are opened at the upper ends of the upper extension tubes, and the lower insertion rods of the placement unit located at the bottom layer are inserted into the upper extension tubes.
[0007] Furthermore, in order to improve the connection stability between each placement unit, a pair of capped pins are welded to both ends of the placement plate. A movable plate is fitted on the capped pins. A strip hole is opened on the movable plate. The length direction of the strip hole is parallel to the length direction of the placement plate. The capped pins pass through the strip hole. An inner pressure plate is welded to the outer end of the movable plate. An inner insertion rod is welded to both ends of the inner pressure plate. The inner insert rod located at the bottom layer is inserted into the socket; The upper end of the upper sleeve has a socket. When two adjacent placement units are connected, the inner insertion rod on the upper placement unit is inserted into the socket on the lower placement unit and the lower end of the lower insertion rod on the upper placement unit.
[0008] Furthermore, in order to constrain the blanks placed on each placement unit and prevent the blanks from falling during transfer, a pair of protrusions are provided on the outer periphery of the upper sleeve. The display board has side plates on both sides, and the length direction of the side plates is parallel to the length direction of the display board. The two ends of the side plates are formed with protrusions, and the lower end of the protrusions is welded with a connecting rod. The lower end of the connecting rod is inserted into the protrusion. The placement board has end plates at both ends. The length direction of the end plates is parallel to the width direction of the placement board. The two ends of the end plates are formed with connecting protrusions. One of the connecting protrusions is connected to a hinge shaft, which is rotatably mounted on the protrusion. The other connecting protrusion is provided with a connecting pin, the lower end of which is inserted into the protrusion.
[0009] The advantages of the above technical solution are: This invention uses a layered arrangement of pressed billets to avoid damaging their shape during placement and also facilitates layer-by-layer placement. Attached Figure Description
[0010] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be described in further detail below with reference to the accompanying drawings.
[0011] Figure 1 A three-dimensional structural diagram of one embodiment is shown.
[0012] Figure 2 A three-dimensional structural diagram of the base frame is shown.
[0013] Figure 3 A three-dimensional structural diagram of the placement unit is shown.
[0014] Figure 4 A three-dimensional structural diagram of the side plate and end plate is shown. Detailed Implementation
[0015] like Figures 1-4 As shown, a billet placement and transfer rack includes a base frame 1, with casters 10 welded to the four corners of the base frame 1. Multiple placement units are stacked on the base frame 1, with each placement unit located directly above the base frame 1. Upper extension tubes 11 are welded to the four corners of the base frame 1, and insertion holes 12 are opened at the upper ends of the upper extension tubes 11. Lower insertion rods 25 on the bottom placement units are inserted into the upper extension tubes 11.
[0016] The placement unit includes a placement plate 2, which has a rectangular structure. Lower insertion rods 25 are welded to the lower walls at the four corners of the placement plate 2, and upper sleeves 26 are welded to the upper walls at the four corners of the placement plate 2. When two adjacent placement units are connected, the lower insertion rods 25 on the upper placement unit are inserted into the upper sleeves 26 on the lower placement unit.
[0017] A pair of capped pins 20 are welded to both ends of the placement plate 2. A movable plate 21 is fitted onto the capped pins 20. A strip-shaped hole 22 is opened on the movable plate 21. The length direction of the strip-shaped hole 22 is parallel to the length direction of the placement plate 2. The capped pins 20 pass through the strip-shaped hole 22. An inner pressure plate 23 is welded to the outer end of the movable plate 21. An inner insertion rod 24 is welded to both ends of the inner pressure plate 23. The inner insertion rod 24 at the bottom layer is inserted into the insertion hole 12. An insertion eye 27 is opened at the upper end of the upper sleeve 26. When two adjacent placement units are connected, the inner insertion rod 24 on the upper placement unit is inserted into the insertion eye 27 on the lower placement unit and the lower end of the lower insertion rod 25 on the upper placement unit.
[0018] The upper sleeve 26 has a pair of protrusions 28 on its outer periphery. The two sides of the placement plate 2 have side plates 29. The length direction of the side plates 29 is parallel to the length direction of the placement plate 2. The two ends of the side plates 29 are formed with protrusions 30. The lower end of the protrusions 30 is welded with a connecting rod 31. The lower end of the connecting rod 31 is inserted into the protrusions 28. The two ends of the placement plate 2 have end plates 32. The length direction of the end plates 32 is parallel to the width direction of the placement plate 2. The two ends of the end plates 32 are formed with connecting protrusions 33. One of the connecting protrusions 33 is connected with a hinge shaft 34. The hinge shaft 34 is rotatably mounted on the protrusions 28. The other connecting protrusion 33 is provided with a connecting pin 35. The lower end of the connecting pin 35 is inserted into the protrusions 28.
[0019] In this embodiment, during application, the operator connects the lower placement unit to the base frame 1. During connection, the operator inserts the lower insertion rod 25 of the placement unit into the upper extension tube 11, and then pushes the inner pressure plate 23 inward so that the insertion rod 24 is inserted into the insertion hole 12 and the lower insertion rod 25. Then, the pressed blank is placed. After placement, the side plate 29 is inserted into the protrusion 28, and the end plate 32 is rotated inward. The rotation state of the end plate 32 is locked by the connecting pin 35. After placement, another placement unit is placed on the placement unit that already has the pressed blanks. After placement, the inner pressure plate 23 is pushed inward to insert the inner insertion rod 24 into the insertion hole 27 on the lower placement unit and the lower end of the lower insertion rod 25 on the upper placement unit. Then the pressed blanks are placed again. In this way, multiple pressed blanks are placed in a single layer on each placement unit. If the capacity limit is exceeded, the operator transfers the pressed blanks to the air-drying stacking area for air-drying.
[0020] The above description is merely a preferred embodiment of this utility model and is not intended to limit the scope of this utility model. Obviously, those skilled in the art can make various modifications and variations to this utility model without departing from its spirit and scope. Therefore, if these modifications and variations of this utility model fall within the scope of the claims of this utility model and their equivalents, this utility model also intends to include these modifications and variations.
Claims
1. A billet placement and transfer rack, characterized in that, Includes a base frame (1), with casters (10) welded at the four corners of the base frame (1); Multiple placement units are stacked on the bottom frame (1), and each placement unit is located directly above the bottom frame (1).
2. The green part placement transfer shelf of claim 1, wherein, The placement unit includes a placement plate (2), which has a rectangular structure. The lower wall of the four corners of the placement plate (2) is welded with a lower insert rod (25), and the upper wall of the four corners of the placement plate (2) is welded with an upper sleeve (26). When two adjacent placement units are connected, the lower insertion rod (25) on the upper placement unit is inserted into the upper sleeve (26) on the lower placement unit.
3. The green part placement transfer shelf of claim 2, wherein, The bottom frame (1) has an upper extension tube (11) welded at the four corners. The upper end of the upper extension tube (11) has an insertion hole (12). The lower insertion rod (25) on the bottom placement unit is inserted into the upper extension tube (11).
4. The green part placement transfer shelf of claim 3, wherein, A pair of capped pins (20) are welded to both ends of the placement plate (2). A movable plate (21) is fitted on the capped pins (20). A strip hole (22) is opened on the movable plate (21). The length direction of the strip hole (22) is parallel to the length direction of the placement plate (2). The capped pins (20) are inserted into the strip hole (22). An inner pressure plate (23) is welded to the outer end of the movable plate (21). An inner insertion rod (24) is welded to both ends of the inner pressure plate (23). The inner insert (24) located at the bottom is inserted into the socket (12); The upper end of the upper sleeve (26) is provided with a socket (27). When two adjacent placement units are connected, the inner insertion rod (24) on the upper placement unit is inserted into the socket (27) on the lower placement unit and the lower insertion rod (25) on the upper placement unit.
5. The green part placement transfer shelf of claim 1 wherein, The outer periphery of the upper sleeve (26) is provided with a pair of protrusions (28); The two sides of the placement plate (2) are provided with side plates (29). The length direction of the side plates (29) is parallel to the length direction of the placement plate (2). The two ends of the side plates (29) are formed with protrusions (30). The lower end of the protrusions (30) is welded with a connecting rod (31). The lower end of the connecting rod (31) is inserted into the protrusion (28). The two ends of the placement plate (2) are provided with end plates (32). The length direction of the end plates (32) is parallel to the width direction of the placement plate (2). The two ends of the end plates (32) are formed with connecting protrusions (33). One of the connecting protrusions (33) is connected with a hinge shaft (34). The hinge shaft (34) is rotatably mounted on the protrusion (28). The other connecting protrusion (33) is provided with a connecting pin (35). The lower end of the connecting pin (35) is inserted into the protrusion (28).