CN213647991U - Linkage type stair component mold - Google Patents

Linkage type stair component mold Download PDF

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Publication number
CN213647991U
CN213647991U CN202022209954.7U CN202022209954U CN213647991U CN 213647991 U CN213647991 U CN 213647991U CN 202022209954 U CN202022209954 U CN 202022209954U CN 213647991 U CN213647991 U CN 213647991U
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China
Prior art keywords
linkage
mold
rotating shaft
rod
die
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CN202022209954.7U
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Chinese (zh)
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周兴和
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Sichuan Zhou Xinghe Industry Co ltd
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Sichuan Zhou Xinghe Industry Co ltd
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Abstract

The utility model discloses a coordinated type stair component mould relates to integrated house component mould field, provides a coordinated type stair component mould that can improve production efficiency. The linkage type stair component mold comprises a mold single body, wherein the mold single body comprises a mold single body main body, a supporting frame and a rotating shaft, the mold single body main body comprises a first mold body and a second mold body which are vertical to each other, and the mold single body main body is hinged with the supporting frame through the rotating shaft; the device also comprises a linkage mechanism; the number of the mould single bodies is at least two, the mould single bodies are arranged in the same direction and are arranged at intervals along the direction vertical to the rotating shaft, the rotating shaft is fixedly connected with the main body of the mould single body, one end of the rotating shaft is fixedly connected with a rotating shaft driving rod, and the rotating shaft driving rods are parallel; the linkage mechanism comprises linkage rods, the linkage rods are hinged with the rotating shaft driving rods, and the linkage driving rods move to drive the die single bodies to rotate synchronously.

Description

Linkage type stair component mold
Technical Field
The utility model relates to an integrated house component mould field especially relates to a linkage type stair component mould.
Background
The Chinese patent application with the application number of 201910574393.X discloses a stair component mold, which comprises a mold main body, a support frame and a demolding device; the cross section of the die main body is L-shaped, the die main body comprises a first die body and a second die body which are vertical to each other, a demoulding gap is formed in the first die body, the die main body is horizontally arranged, and the die main body is connected with the supporting frame and can rotate; when the first die body and the second die body rotate to be vertical, the die main body and the supporting frame can be further detachably connected to realize fixation; the demoulding device comprises a support, a lever and a knocking head, wherein the support is fixedly arranged, the lever is hinged with the support, and the knocking head is connected with one end of the lever; when the first die body rotates to be vertical, the knocking head is located right below the demolding gap, and the lever rotates to drive the knocking head to enter the first die body from the demolding gap.
The stair component mould is used for forming an L-shaped stair component, namely, stair steps are produced, the surface layer of the stair component is made of a cement-like component material composed of magnesium chloride, magnesium oxide, straw and the like, and wood battens are arranged inside the stair component material. When the mold body rotates to the level of the first mold body, one side of the stair component is formed, and when the mold body rotates to the level of the second mold body, the other side of the stair component is formed.
The stair component belongs to miniature integrated house component, and it is comparatively loaded down with trivial details with the mould main part that every stair component of shaping all needs to rotate, is unfavorable for improving production efficiency.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is: the utility model provides a coordinated type stair component mould that can improve production efficiency.
The technical scheme adopted for solving the problems is as follows: the linkage type stair component mold comprises a mold single body, wherein the mold single body comprises a mold single body main body, a supporting frame and a rotating shaft, the mold single body main body comprises a first mold body and a second mold body which are vertical to each other, and the mold single body main body is hinged with the supporting frame through the rotating shaft; the device also comprises a linkage mechanism; the number of the mould single bodies is at least two, the mould single bodies are arranged in the same direction and are arranged at intervals along the direction vertical to the rotating shaft, the rotating shaft is fixedly connected with the main body of the mould single body, one end of the rotating shaft is fixedly connected with a rotating shaft driving rod, and the rotating shaft driving rods are parallel; the linkage mechanism comprises linkage rods, the linkage rods are hinged with the rotating shaft driving rods, and the linkage driving rods move to drive the die single bodies to rotate synchronously.
Further, the method comprises the following steps: the linkage mechanism comprises a positioning column, a first positioning unthreaded hole and a second positioning unthreaded hole are formed in the linkage rod, and a positioning threaded hole is formed in any one support frame; when the die single body rotates to the level of the first die body, the first positioning unthreaded hole corresponds to the positioning threaded hole; when the die single body rotates to the level of the second die body, the second positioning unthreaded hole corresponds to the positioning threaded hole; the positioning column is used for being inserted into the first positioning unthreaded hole or the second positioning unthreaded hole and is connected with the positioning threaded hole.
Further, the method comprises the following steps: the linkage mechanism comprises a linkage rod driving mechanism, and the linkage rod driving mechanism can drive the linkage rod.
Further, the method comprises the following steps: the linkage rod driving mechanism comprises a linkage driving rod, a linkage driving rod seat and a transmission rod, the linkage driving rod seat is fixedly arranged, one end of the linkage driving rod is hinged with the linkage driving rod seat, the transmission rod is located between the linkage rod and the linkage driving rod, one end of the transmission rod is hinged with the linkage rod, the other end of the transmission rod is hinged with the middle of the linkage driving rod, and the linkage driving rod swings to drive the linkage rod to move.
Further, the method comprises the following steps: the linkage type stair component mold comprises a mold bottom plate, and a support frame and a linkage driving rod seat are connected with the mold bottom plate.
Further, the method comprises the following steps: the die single body comprises a supporting bolt, the first die body is provided with a demoulding gap, and the supporting bolt is horizontally arranged and connected with the supporting frame; when the second die body rotates to be vertical, the second die body is abutted against the supporting bolt.
The utility model has the advantages that: 1. one end of the rotating shaft is fixedly connected with a rotating shaft driving rod, each rotating shaft driving rod is parallel, and the linkage rod is hinged with each rotating shaft driving rod. And pushing and pulling the linkage rod, wherein the linkage rod can drive the single main bodies of the dies to synchronously rotate. Namely, as shown in fig. 1, the first mould body of each mould monomer main body can be made horizontal by operating the linkage rod so as to form one side of the stair component; then the linkage rod is operated to enable the second die body of each die monomer main body to be horizontal so as to form the other side of the stair component. The utility model discloses a plurality of mould monomer main parts can be rotated in one operation, operating time can obviously be saved to can improve the production efficiency of integrated house stair component.
Drawings
FIG. 1 is a front view of a ganged stair component mold;
FIG. 2 is a close-up view of a linkage stair component mold;
FIG. 3 is a top view of a ganged stair component mold;
FIG. 4 is a front view of the linked stair component mold in another state;
labeled as: the mold comprises a mold single body 1, a mold single body main body 11, a first mold body 111, a second mold body 112, a demolding notch 113, a support frame 12, a rotating shaft 13, a rotating shaft driving rod 14, a supporting bolt 15, a linkage mechanism 2, a linkage rod 21, a first positioning unthreaded hole 211, a second positioning unthreaded hole 212, a linkage rod driving mechanism 22, a linkage driving rod 221, a linkage driving rod seat 222, a driving rod 223, a positioning column 23 and a mold bottom plate 3.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and the following detailed description.
As shown in fig. 1 to 3, the linked stair component mold comprises a mold single body 1, the mold single body 1 comprises a mold single body main body 11, a support frame 12 and a rotating shaft 13, the mold single body main body 11 comprises a first mold body 111 and a second mold body 112 which are perpendicular to each other, and the mold single body main body 11 is hinged to the support frame 12 through the rotating shaft 13; the device also comprises a linkage mechanism 2; the number of the mould single bodies 1 is at least two, each mould single body 1 is arranged in the same direction and is arranged at intervals along the direction vertical to the rotating shaft 13, the rotating shaft 13 is fixedly connected with the mould single body main body 11, one end of the rotating shaft 13 is fixedly connected with a rotating shaft driving rod 14, and each rotating shaft driving rod 14 is parallel; the linkage mechanism 2 comprises linkage rods 21, the linkage rods 21 are hinged with the rotating shaft driving rods 14, and the linkage driving rods 221 move to drive the mold monomer main bodies 11 to rotate synchronously.
The mould single body 1 is basically the same as the mould of the stair component disclosed in the patent application 201910574393.X, the mould single body 11 is equivalent to the mould body of the patent application, and the support frame 12 is equivalent to the support frame of the patent application.
When the utility model is used, as shown in fig. 1, the linkage rod 21 is firstly operated to make the first mould body 111 of each mould monomer main body 11 horizontal; then, the member material and the wooden lath are added to the first mold body 111; after the component material is solidified, as shown in fig. 4, operating the linkage rod 21 to make the second mold body 112 of each mold monomer main body 11 horizontal; then adding the component material and the wooden lath to the second mold body 112; and then demolding after the component material is solidified.
The stair member is a small item and although hinged to the multiple shaft drive rod 14, the force required to push or pull the linkage rod 21 is not significant. The length of the rotating shaft driving rod 14 is reasonably set to lengthen the force arm, and the number of the die units 1 is reasonably set, so that the linkage rod 21 can be directly pushed and pulled by hands.
When the first mold body 111 and the second mold body 112 are horizontal, the mold unit body 11 should be positioned. The mode of realizing 11 location of mould monomer main part can have the multiple, the utility model discloses preferred mode is: the linkage mechanism 2 comprises a positioning column 23, a first positioning unthreaded hole 211 and a second positioning unthreaded hole 212 are formed in the linkage rod 21, and a positioning threaded hole is formed in any one support frame 12; when the die single body 11 rotates to the level of the first die body 111, the first positioning unthreaded hole 211 corresponds to the positioning threaded hole; when the mold monomer main body 11 rotates to the level of the second mold body 112, the second positioning unthreaded hole 212 corresponds to the positioning threaded hole; the positioning post 23 is used for being inserted into the first positioning light hole 211 or the second positioning light hole 212 and connected with the positioning threaded hole.
As shown in fig. 1, when the mold unit body 11 is rotated to the level of the first mold body 111, the positioning posts 23 are inserted into the first positioning unthreaded holes 211 and connected with the positioning threaded holes. As shown in fig. 4, when the mold unit body 11 is rotated to the level of the second mold body 112, the positioning posts 23 are inserted into the second positioning unthreaded holes 212 and connected with the positioning threaded holes. The positioning columns 23 limit the linkage rods 21 to move, so that the mould single body main body 11 is limited to rotate, and the mould single body main body 11 is positioned.
As previously mentioned, the linkage 21 can be pushed and pulled directly by hand. For more labor saving, a linkage rod driving mechanism 22 can also be arranged to drive the linkage rod 21.
The specific setting mode of the linkage rod driving mechanism 22 can be as shown in fig. 2, the linkage rod driving mechanism 22 includes a linkage driving rod 221, a linkage driving rod seat 222 and a driving rod 223, the linkage driving rod seat 222 is fixedly arranged, one end of the linkage driving rod 221 is hinged to the linkage driving rod seat 222, the driving rod 223 is located between the linkage rod 21 and the linkage driving rod 221, one end of the driving rod 223 is hinged to the linkage rod 21, the other end of the driving rod 223 is hinged to the middle of the linkage driving rod 221, and the linkage driving rod 221 swings to drive the linkage rod 21 to move.
The support frame 12 and the linkage driving rod seat 222 can be installed on the ground, in order to ensure the size precision, the linkage type stair component mold also comprises a mold bottom plate 3, and the support frame 12 and the linkage driving rod seat 222 are connected with the mold bottom plate 3.
To facilitate demoulding of the stair component, the mould cell 1 may comprise a demoulding device, identical to the demoulding device disclosed in patent application 201910574393. X. However, when the ejector knocks, vibration and force are all transmitted to the link mechanism 2, which easily causes deformation or damage of the link mechanism 2. The utility model discloses preferred mould monomer 1 includes brace bolt 15, has drawing of patterns breach 113 on the first mould body 111, and brace bolt 15 level sets up and is connected with support frame 12; when the second die body 112 is rotated to be vertical, the second die body 112 abuts on the supporting bolt 15. The axial position of the support bolt 15 can be adjusted by rotating the support bolt 15, so that the second die body 112 of each die unit 1 can abut against the support bolt 15.
As shown in fig. 4, at the time of mold release, the stair member is horizontally struck with a hammer from the mold release notch 113. The second die body 112 is supported by the support bolts 15. Only a small part of vibration and force during demoulding is transmitted to the linkage mechanism 2, so that the deformation and damage of the linkage mechanism 2 caused by demoulding knocking can be avoided.

Claims (6)

1. The linkage type stair component mold comprises a mold single body (1), wherein the mold single body (1) comprises a mold single body main body (11), a support frame (12) and a rotating shaft (13), the mold single body main body (11) comprises a first mold body (111) and a second mold body (112) which are perpendicular to each other, and the mold single body main body (11) is hinged with the support frame (12) through the rotating shaft (13); the method is characterized in that: comprises a linkage mechanism (2); the number of the mould single bodies (1) is at least two, the mould single bodies (1) are arranged in the same direction and are arranged at intervals along the direction vertical to the rotating shaft (13), the rotating shaft (13) is fixedly connected with the mould single body main body (11), one end of the rotating shaft (13) is fixedly connected with a rotating shaft driving rod (14), and the rotating shaft driving rods (14) are parallel; the linkage mechanism (2) comprises linkage rods (21), the linkage rods (21) are hinged with the rotating shaft driving rods (14), and the linkage driving rods (221) move to drive the die single body bodies (11) to synchronously rotate.
2. The linked stair component mold of claim 1, wherein: the linkage mechanism (2) comprises a positioning column (23), a first positioning unthreaded hole (211) and a second positioning unthreaded hole (212) are formed in the linkage rod (21), and a positioning threaded hole is formed in any support frame (12); when the die single body (11) rotates to the level of the first die body (111), the first positioning unthreaded hole (211) corresponds to the positioning threaded hole; when the die single body (11) rotates to the level of the second die body (112), the second positioning unthreaded hole (212) corresponds to the positioning threaded hole; the positioning column (23) is used for being inserted into the first positioning unthreaded hole (211) or the second positioning unthreaded hole (212) and connected with the positioning threaded hole.
3. The linked stair component mold of claim 2, wherein: the linkage mechanism (2) comprises a linkage rod driving mechanism (22), and the linkage rod driving mechanism (22) can drive the linkage rod (21).
4. The coordinated stair component mold of claim 3, wherein: the linkage rod driving mechanism (22) comprises a linkage driving rod (221), a linkage driving rod seat (222) and a driving rod (223), the linkage driving rod seat (222) is fixedly arranged, one end of the linkage driving rod (221) is hinged to the linkage driving rod seat (222), the driving rod (223) is located between the linkage rod (21) and the linkage driving rod (221), one end of the driving rod (223) is hinged to the linkage rod (21), the other end of the driving rod (223) is hinged to the middle of the linkage driving rod (221), and the linkage driving rod (221) swings to drive the linkage rod (21) to move.
5. The linked stair component mold of claim 4, wherein: comprises a die bottom plate (3), a support frame (12) and a linkage driving rod seat (222) are connected with the die bottom plate (3).
6. The coordinated stair component mold according to any one of claims 1 to 5, wherein: the die single body (1) comprises a supporting bolt (15), a demolding notch (113) is formed in the first die body (111), and the supporting bolt (15) is horizontally arranged and connected with the supporting frame (12); when the second die body (112) is rotated to be vertical, the second die body (112) abuts against the supporting bolt (15).
CN202022209954.7U 2020-09-30 2020-09-30 Linkage type stair component mold Active CN213647991U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022209954.7U CN213647991U (en) 2020-09-30 2020-09-30 Linkage type stair component mold

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022209954.7U CN213647991U (en) 2020-09-30 2020-09-30 Linkage type stair component mold

Publications (1)

Publication Number Publication Date
CN213647991U true CN213647991U (en) 2021-07-09

Family

ID=76699524

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022209954.7U Active CN213647991U (en) 2020-09-30 2020-09-30 Linkage type stair component mold

Country Status (1)

Country Link
CN (1) CN213647991U (en)

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