Adjusting type refractory material forming mechanism
By designing an adjustable refractory material forming mechanism, the problems of non-adjustable forming thickness and easy demolding damage were solved, realizing flexible adjustment of forming thickness and integrity of product demolding, thus ensuring the structural stability of the product.
Patent Information
- Application Number
- CN202423267556.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-12-30
AI Technical Summary
Existing refractory molding equipment cannot adjust the product thickness according to actual needs, and the product is prone to deformation and damage during demolding.
An adjustable refractory material forming mechanism was designed, comprising a bottom drive box, a top fixed plate, a forming pressure plate, a lifting forming sleeve, an adjusting motor, a bottom floating plate, and a longitudinal pushing mechanism. The height of the forming groove is adjusted by the longitudinal pushing mechanism, and the lifting forming sleeve is driven by the adjusting motor to separate from the product, thereby achieving stable demolding of the product.
It enables flexible adjustment of molding thickness and ensures the integrity of product demolding, thus guaranteeing the structural stability and integrity of the product during the demolding process.
Smart Images

Figure CN223671511U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the field of refractory material processing and forming, and particularly relates to an adjustable refractory material forming mechanism. BACKGROUND
[0002] Refractory bricks include unshaped refractory material and shaped refractory material, the unshaped refractory material is also called castable, is a mixed powdery aggregate composed of various aggregates or aggregates and one or more binders, must be stirred uniformly with one or more liquids when used, and has strong fluidity; and the shaped refractory material generally refers to refractory bricks, the shape has standards, and can also be temporarily processed according to needs, a forming device needs to be used in the processing process of the refractory brick blank, refractory material is poured into a mold, and pressing and shaping are carried out, but the existing pressing and shaping mold cannot adjust the thickness of products according to actual needs, and meanwhile, when discharging, the products are generally pushed out upwards, and sometimes, the structure mode can cause the products to be deformed and damaged in the ejection process, therefore, the existing structure needs to be upgraded and reconstructed, and the adjustability of the structure forming thickness and the integrity of product demolding need to be improved. CONTENT OF THE UTILITY MODEL
[0003] In view of the defects in the prior art, the utility model solves the problem of providing an adjustable refractory material forming mechanism with adjustable structure forming thickness and ensuring the integrity of product demolding.
[0004] To solve the above problems, the technical scheme adopted by the utility model is as follows:
[0005] An adjustable refractory material forming mechanism, comprising a bottom driving box body, a top fixed plate, a forming pressing plate, a lifting forming sleeve, an adjusting motor, a bottom floating plate and a longitudinal pushing mechanism, the top fixed plate is installed above the bottom driving box body, the forming pressing plate is installed on the lower side of the top fixed plate, a pre-buried driving groove is formed in the middle of the inside of the bottom driving box body, the upper end of the pre-buried driving groove is open, the lifting forming sleeve is installed above the inside of the pre-buried driving groove, the upper end of the lifting forming sleeve extends to the outside above the pre-buried driving groove, the adjusting motor is installed on one side of the upper end of the bottom driving box body, the adjusting motor drives the lifting forming sleeve to move up and down, the bottom floating plate is installed below the inside of the lifting forming sleeve, the outer side of the four peripheries of the bottom floating plate is in abutment with the inner side of the four peripheries of the lifting forming sleeve, a forming groove is formed between the bottom floating plate and the lifting forming sleeve, the forming pressing plate is located directly above the forming groove, one longitudinal pushing mechanism is installed on the bottom of each side of the pre-buried driving groove, the upper end of the longitudinal pushing mechanism is fixedly connected with the lower side of the bottom floating plate, the bottom floating plate moves up and down and adjusts the height of the forming groove, the lifting forming sleeve moves downward and the upper end face of the lifting forming sleeve moves to below the outer side of the upper end face of the bottom floating plate, thereby realizing discharging.
[0006] Further, the inside of the lifting forming sleeve is uniformly provided with a plurality of heating pipes.
[0007] Further, the inner wall of the lifting forming sleeve and the outer side of the four sides of the bottom floating plate are provided with wear-resistant coating.
[0008] Further, the lower end of the lifting forming sleeve is provided with adjusting sliding blocks on both sides, the pre-buried driving groove is provided with adjusting sliding grooves on both sides, the adjusting sliding blocks are slidably installed on the adjusting sliding grooves, the adjusting sliding grooves are rotatably provided with adjusting columns, the adjusting columns are threadedly connected with the adjusting sliding blocks, and the lower side of the adjusting motor is connected with the upper end of the adjusting column through a driving shaft.
[0009] Further, the longitudinal pushing mechanism is a power cylinder.
[0010] Further, the top fixed plate is connected to the bottom driving box through positioning columns on both sides and front and back, the lifting cylinder is arranged on the top fixed plate, and the lifting cylinder is connected with the forming pressing plate through an extension shaft.
[0011] The beneficial effects of the utility model are as follows:
[0012] The utility model discloses a longitudinal pushing mechanism drives the bottom floating plate to move up and down in the inside of the lifting forming sleeve, so that the height of the forming groove can be adjusted, the forming thickness of the product can be adjusted, and flexible use is realized; the lifting forming sleeve can be driven to move down by the adjusting motor, so that the lifting forming sleeve is separated from the product, when the upper end surface of the lifting forming sleeve moves to the lower side of the upper end surface of the bottom floating plate, the lifting forming sleeve is completely separated from the product, and then the product is stripped, and the whole process does not need to move the product, so that the structural stability of the product is guaranteed. DRAWINGS
[0013] Fig. 1 It is a structural schematic view of the utility model.
[0014] Fig. 2 It is a structural schematic view of the bottom driving box and the lifting forming sleeve of the utility model.
[0015] Fig. 3 It is a structural schematic view of the utility model Fig. 2 after the bottom floating plate moves up.
[0016] Fig. 4 It is a structural schematic view of the utility model Fig. 3 after the lifting forming sleeve moves down to strip the product. CONCRETE IMPLEMENTING METHOD
[0017] The utility model discloses a further in detail the content of the utility model below in conjunction with the drawing.
[0018] As Figs. 1 to 4 The utility model discloses a kind of adjustable refractory forming mechanism, including bottom drive box 1, top fixed plate 2, forming pressing plate 3, lifting forming sleeve 4, adjusting motor 5, bottom floating plate 6, longitudinal pushing mechanism 7;The top fixed plate 2 is installed above the bottom drive box 1;Forming pressing plate 3 is installed in the middle of the lower side of top fixed plate 2;Bottom drive box 1 is internally provided with pre-buried type drive groove 11;The upper end of pre-buried type drive groove 11 is opened;Lifting forming sleeve 4 is installed in the inside upper portion of pre-buried type drive groove 11;The upper end of lifting forming sleeve 4 extends to the outside of the upper portion of pre-buried type drive groove 11;Adjusting motor 5 is installed in the upper end side of bottom drive box 1, and adjusting motor 5 drives lifting forming sleeve 4 to move up and down;Bottom floating plate 6 is installed in the inside lower portion of lifting forming sleeve 4;The outside four sides of bottom floating plate 6 and the inside four sides of lifting forming sleeve 4 abut;Forming groove 8 is formed between bottom floating plate 6 and lifting forming sleeve 4;Forming pressing plate 3 is located directly above forming groove 8;Pre-buried type drive groove 11 is installed with one longitudinal pushing mechanism 7 on the bottom two sides respectively;The upper end of longitudinal pushing mechanism 7 is fixedly connected with the lower side of bottom floating plate 6;Bottom floating plate 6 moves up and down and adjusts the height of forming groove 8;Lifting forming sleeve 4 moves downwards and makes the upper end surface of lifting forming sleeve 4 move to the outside lower portion of the upper end surface of bottom floating plate 6, to realize material removal in turn.
[0019] As Figs. 1 to 4 As shown in the figure, in order to have the function of heating and rapid shaping, further, a plurality of heating pipes 9 are uniformly installed around the inside of the lifting forming sleeve 4. In order to improve the abutting stability of the lifting forming sleeve 4 and the bottom floating plate 6, further, a wear-resistant coating is provided on the four inner walls of the lifting forming sleeve 4 and the four outer sides of the bottom floating plate 6.
[0020] As Figs. 1 to 4 As shown in the figure, in order to adjust the motor 5 to drive the lifting forming sleeve 4 up and down, further, adjusting sliding blocks 41 are provided on the lower end of the lifting forming sleeve 4 on both sides; adjusting sliding grooves 111 are provided on both sides of the pre-buried type drive groove 11; the adjusting sliding blocks 41 are slidably installed on the adjusting sliding grooves 111; adjusting columns 112 are rotatably provided in the adjusting sliding grooves 111, and the adjusting columns 112 are threadedly connected with the adjusting sliding blocks 41; the lower side of the adjusting motor 5 is connected with the upper end of the adjusting column 112 through a drive shaft 51. Further, the longitudinal pushing mechanism 7 is a power cylinder. Further, the top fixed plate 2 is connected to the bottom drive box 1 through positioning columns 10 on both sides front and back; a lifting cylinder 21 is provided on the top fixed plate 2; the lifting cylinder 21 is connected with the forming pressing plate 3 through a telescopic shaft 211 on the lower side.
[0021] The utility model discloses a drive of longitudinal pushing mechanism 7 makes the bottom floating plate 6 can move up and down in the inside of lifting forming sleeve 4, can adjust the height of forming groove 8 in this way, so realize the purpose of adjusting the forming thickness of product, realize flexible use, the utility model discloses can be separated by adjusting motor 5 drive lifting forming sleeve 4 and move down, make lifting forming sleeve 4 with product, when the upper end surface of lifting forming sleeve 4 moves to the upper end surface of bottom floating plate 6 four around outside lower side, lifting forming sleeve 4 completely with product, and then realize the material, whole process does not need product to move, guarantees the structural stability of product.
[0022] The above only is the preferred embodiment of the utility model and does not limit the utility model, and any modification, equivalent replacement, improvement etc. within the spirit and principle of the utility model should be included in the protection scope of the utility model.
Claims
1. A conditioned refractory forming mechanism, characterized by, The utility model relates to a bottom drive box, top fixed plate, forming pressing plate, lifting forming sleeve, adjusting motor, bottom floating plate, longitudinal pushing mechanism are included, the top fixed plate is installed the top of bottom drive box, the lower side middle installation forming pressing plate of top fixed plate, the inside middle of bottom drive box is equipped with pre -buried type drive groove, the upper end opening of pre -buried type drive groove, the inside upper of pre -buried type drive groove is installed lifting forming sleeve, the upper end of lifting forming sleeve extends to the outside of pre -buried type drive groove upper, adjusting motor is installed the upper end side of bottom drive box, and adjusting motor drives lifting forming sleeve to move up and down, the inside lower of lifting forming sleeve is installed bottom floating plate, the four -corner outside of bottom floating plate and the four -corner inside of lifting forming sleeve abut, bottom floating plate and lifting forming sleeve between constitute forming groove, forming pressing plate is located the just above of forming groove, the bottom both sides of pre -buried type drive groove are installed one longitudinal pushing mechanism respectively, the upper end of longitudinal pushing mechanism and the lower side fixed connection of bottom floating plate, the height of forming groove is adjusted when bottom floating plate moves up and down, lifting forming sleeve moves down and makes the upper end surface of lifting forming sleeve move to the four -corner outside lower of bottom floating plate upper end surface, and then realizes the material of getting rid of.
2. The adjustable refractory forming mechanism of claim 1, wherein, The inside four -corner of lifting forming sleeve is evenly installed a plurality of heating pipes.
3. The adjustable refractory forming mechanism of claim 1, wherein, The four -corner inner wall of lifting forming sleeve and the four -corner outside of bottom floating plate are equipped with wear -resisting coating.
4. The adjustable refractory forming mechanism of claim 1, wherein, The lower end both sides of lifting forming sleeve are equipped with adjusting sliding block respectively, the both sides of pre -buried type drive groove are equipped with adjusting sliding groove respectively, adjusting sliding block is slidably installed on adjusting sliding groove, adjusting column is rotatably arranged in adjusting sliding groove, adjusting column is screw threaded with adjusting sliding block, the lower side of adjusting motor is connected with the upper end of adjusting column through drive shaft.
5. The adjustable refractory forming mechanism of claim 1, wherein, The longitudinal pushing mechanism is a power cylinder.
6. The adjustable refractory forming mechanism of claim 1, wherein, The front and back of both sides of top fixed plate are connected on bottom drive box through positioning column respectively, lifting cylinder is equipped on top fixed plate, and lifting cylinder lower side is connected with forming pressing plate through telescopic shaft. The longitudinal pushing mechanism is a power cylinder.