Disclosure of Invention
The invention aims to solve the problems of complicated detection, complex operation and low integration degree in the prior art, and provides multifunctional detection equipment for clothing fabric production.
In order to achieve the aim, the multifunctional detection equipment for producing the garment materials comprises a fixed seat and a movable seat, wherein the side walls of the fixed seat and the movable seat are respectively fixed with a closing block, a plurality of closing blocks are electromagnets and correspond to each other in position, sealing rings are embedded at the ends of the fixed seat and the movable seat, an air pump is fixed at the upper end of the movable seat, an exhaust groove is formed in the side wall of the fixed seat in a penetrating manner, a timer and an indicator lamp are fixed at the upper end of the movable seat in a penetrating manner, a low-pressure hole and a high-pressure hole are formed in the side wall of the movable seat in a penetrating manner, a low-pressure actuating mechanism and a high-pressure actuating mechanism are correspondingly arranged on the outer wall of the movable seat, a transmitter and a sensor for monitoring deformation positions are embedded in the inner wall of the fixed seat, and a wear-resistant detection mechanism is arranged at the inner bottom of the fixed seat.
In the vertical greening device for indoor decoration, the low-pressure actuating mechanism comprises a low-pressure block fixed on the outer wall of the movable seat, the low-pressure block corresponds to the low-pressure hole, the side wall of the low-pressure block is connected with a low-pressure plate through a low-pressure spring, the low-pressure plate abuts against the port of the low-pressure hole, and a pressure valve with a low threshold value is arranged in the low-pressure hole.
In the vertical greening device for indoor decoration, the high-pressure actuating mechanism comprises a high-pressure block fixed on the outer wall of the movable seat, the high-pressure block corresponds to the high-pressure hole, the side wall of the high-pressure block is connected with a high-pressure plate through a high-pressure spring, the high-pressure plate is propped against the end opening of the high-pressure hole, a pair of electric shock heads are fixed on the side wall of the high-pressure block, and a pressure valve with a high threshold value is arranged in the high-pressure hole.
In the vertical greening device for indoor decoration, the wear-resistant detection mechanism comprises a supporting spring fixed at the inner bottom of the fixed seat, a supporting table is fixed at the upper end of the supporting spring, a motor is fixed at the upper end of the supporting table, and a polishing plate is fixed at the end part of an output shaft of the motor.
Compared with the prior art, the invention has the advantages that:
1. the air permeability of the fabric is judged by using the amount of the unit air flow passing through the fabric, the fabric is visual, accurate and effective, effective detection is realized by using the simplest equipment, and the detection cost and the operation difficulty can be reduced, so that the detection is more convenient;
2. The air pressure is utilized to push the fabric to deform, so that the elasticity of the fabric is detected, the process pressure is controllable, the damage to the fabric is small, and the whole detection is more accurate and effective;
3. The abrasion resistance of the fabric is effectively detected through continuous friction between the polishing plate and the fabric, and a result is obtained through air flow pressure, so that the detection result is visual and effective;
4. the detection of various properties of the fabric is realized through the ventilation of the air flow, so that the detection time can be greatly saved, and the aim of high-efficiency detection is fulfilled.
Drawings
Fig. 1 is a schematic axial side structure of a multifunctional detecting device for producing clothing fabric;
fig. 2 is a schematic diagram of a front structure of a multifunctional detecting device for producing clothing fabric according to the present invention;
fig. 3 is a top view of a multifunctional detecting device for producing clothing fabric according to the present invention;
FIG. 4 is a partial sectional axial side view of the multifunctional detection device for producing garment materials;
fig. 5 is a front view, partly in section, of a multifunctional detecting device for producing a garment material according to the present invention.
In the figure, a fixed seat 1, a movable seat 2, a closing block 3, a sealing ring 4, an air pump 5, an air exhaust groove 6, a timer 7, a low pressure hole 8, a low pressure block 9, a low pressure spring 10, a low pressure plate 11, a high pressure hole 12, a high pressure block 13, a high pressure spring 14, a high pressure plate 15, an electric shock head 16, an indicator lamp 17, an emitter 18, a sensor 19, a supporting spring 20, a supporting table 21, a motor 22 and a polishing plate 23 are arranged.
Detailed Description
The following examples are for illustrative purposes only and are not intended to limit the scope of the invention.
Examples
Referring to fig. 1-5, a multifunctional detection device for clothing fabric production comprises a fixed seat 1 and a movable seat 2, wherein the side walls of the fixed seat 1 and the movable seat 2 are respectively fixed with a closing block 3, a plurality of closing blocks 3 are electromagnets and correspond to each other in position one by one, the end parts of the fixed seat 1 and the movable seat 2 are respectively embedded with a sealing ring 4, the upper end of the movable seat 2 is fixedly provided with an air pump 5, the side wall of the fixed seat 1 is penetrated and provided with an exhaust groove 6, the upper end of the movable seat 2 is fixedly provided with a timer 7 and an indicator light 17, the side wall of the movable seat 2 is penetrated and provided with a low-pressure hole 8 and a high-pressure hole 12, the outer wall of the movable seat 2 is correspondingly provided with a low-pressure actuating mechanism and a high-pressure actuating mechanism, the inner wall of the fixed seat 1 is embedded with a transmitter 18 and a sensor 19 for monitoring deformation positions, and the inner bottom of the fixed seat 1 is provided with a wear-resistant detection mechanism.
The low-pressure actuating mechanism comprises a low-pressure block 9 fixed on the outer wall of the movable seat 2, the low-pressure block 9 corresponds to the low-pressure hole 8 in position, the side wall of the low-pressure block 9 is connected with a low-pressure plate 11 through a low-pressure spring 10, the low-pressure plate 11 abuts against the port of the low-pressure hole 8, and a pressure valve with a low threshold value is arranged in the low-pressure hole 8;
In actual detection, placing the fabric to be detected at the upper end of the fixed seat 1, covering the movable seat 2 above the fixed seat 1, enabling the position of the closing block 3 to correspond to that of the fixed seat 1, and electrifying the closing block 3 to enable the closing block 3 to generate magnetism, so that the fixed seat 1 and the movable seat 2 are combined by mutual adsorption, and the fabric is in an internal and external isolation state after being clamped due to the existence of the sealing ring 4, so that the condition that gas leakage cannot occur is ensured;
After the fabric is placed, the air pump 5 is started, the air pump 5 is used for inflating the inside of the movable seat 2, air flow passes through the fabric and is transferred into the fixed seat 1, so that the air is discharged from the air discharge groove 6, the air inlet of the air pump 5 is kept stable due to the limited air permeability of the fabric, the air pressure in the movable seat 2 is continuously increased until the air pressure value breaks through the threshold value of the pressure valve in the low pressure hole 8, the air flow is discharged through the low pressure hole 8, the discharged air flow can impact the low pressure plate 11, and the low pressure plate 11 compresses the low pressure spring 10, so that a user can easily and obviously observe the discharge of the air flow;
Because the air permeability of the fabric is limited, the air flow passing through the fabric in a certain time is basically consistent or is in a stable range, when the air permeability of the fabric is qualified, the air quantity remained in the movable seat 2 in a unit time is also constant, the air pressure value in the movable seat 2 is also constant, the threshold value of the pressure valve in the low-pressure hole 8 is set to be a limiting pressure value, meanwhile, the time of the timer 7 is observed, as long as the air flow is sprayed out in the low-pressure hole 8 in the unit time, the air permeability of the fabric is qualified, if the air flow is sprayed out in the unit time, the air permeability of the fabric is poor, the air flow accumulation in the movable seat 2 is too fast, and a conclusion that the air permeability of the fabric is unqualified can be obtained;
The air permeability of the fabric is judged by using the amount of the unit air flow passing through the fabric, the fabric is visual, accurate and effective, effective detection is realized by using the simplest equipment, and the detection cost and the operation difficulty can be reduced, so that the detection is more convenient;
Referring to fig. 3-5, the high-pressure actuating mechanism comprises a high-pressure block 13 fixed on the outer wall of the movable seat 2, the high-pressure block 13 corresponds to the high-pressure hole 12 in position, the side wall of the high-pressure block 13 is connected with a high-pressure plate 15 through a high-pressure spring 14, the high-pressure plate 15 abuts against the port of the high-pressure hole 12, a pair of electric shock heads 16 are fixed on the side wall of the high-pressure block 13, and a high-threshold pressure valve is arranged in the high-pressure hole 12;
After the air permeability of the fabric is detected to be qualified, the inside of the movable seat 2 can be continuously inflated, so that the air pressure value in the inside of the movable seat 2 is continuously increased, the fabric with good elasticity is deformed due to the increase of the air pressure, the fabric protrudes downwards along the air flow direction, and the deformation amount is larger as the pressure value is larger;
When the qualified fabric meets the action of unit acting force, deformation of deformation quantity in a range can occur, so that whether the elasticity of the fabric is qualified can be detected only by detecting whether the deformation quantity of the fabric reaches the value after the fabric receives the unit acting force;
As the air flow continuously flows into the movable seat 2, the air pressure in the movable seat 2 is continuously increased until the air pressure value breaks through the threshold value of the pressure valve in the high-pressure hole 12, the air flow is sprayed out of the high-pressure hole 12, so that the high-pressure plate 15 is pushed to move, the high-pressure plate 15 is propped against the electric shock heads 16, and the two electric shock heads 16 are connected;
If the fabric is qualified, when the pressure is reached, the fabric is deformed to the position of the emitter 18, so that the light of the emitter 18 is blocked, the sensor 19 cannot receive the light with specific wavelength emitted by the emitter 18, the sensor 19 transmits an electric signal, and the indicator lamp 17 is effectively lightened by combining the electrifying of the electric shock head 16, so that whether the elasticity of the fabric is qualified can be effectively judged;
The air pressure is utilized to push the fabric to deform, the pressure is controllable, the damage is small, and the whole detection is more accurate and effective;
If the high-pressure hole 12 is sprayed by air flow, the pressure is qualified, and the indicator lamp 17 is not lightened, the deformation of the fabric is unqualified, and the elasticity of the fabric is defective;
referring to fig. 5, the wear-resistant detection mechanism comprises a supporting spring 20 fixed at the inner bottom of the fixed seat 1, a supporting table 21 is fixed at the upper end of the supporting spring 20, a motor 22 is fixed at the upper end of the supporting table 21, a polishing plate 23 is fixed at the end part of an output shaft of the motor 22, and the polishing plate 23 is attached to the fabric for wear-resistant detection;
In the process of continuously deforming the fabric, the motor 22 always drives the polishing plate 23 to rotate, so that continuous polishing treatment is carried out on the surface of the fabric, and the continuously deforming fabric also pushes the supporting table 21 to move downwards integrally, so that the effective fit between the polishing plate 23 and the fabric is ensured, and the effectiveness of the polishing process is ensured;
After the air permeability of the fabric is qualified, the air pressure increment in the movable seat 2 is basically stable, in unit time, the high-pressure hole 12 is required to jet air flow, if the air flow is not jetted out from the high-pressure hole 12 in unit time, the fabric is damaged in the polishing process, the air flow is greatly discharged, the air pressure in the movable seat 2 is further reduced, the air pressure increment time is prolonged, and therefore, after the unit time is exceeded, even if the indicator lamp 17 is lighted again, the elasticity of the fabric cannot be judged to be qualified, and only the wear resistance of the fabric can be judged to be unqualified;
If the air flow is sprayed out of the high-pressure hole 12 in unit time, the elasticity of the fabric is detected to be qualified, the indicator lamp 17 is lightened, then the ventilation gas is continuously conducted, after the limit time is reached, if the indicator lamp 17 is still lightened, the fabric is enabled to be polished effectively in the specified time, the wear resistance is qualified, if the indicator lamp 17 is lightened to be extinguished after the limit time, the surface fabric is damaged, the air flow is leaked too fast, the wear resistance of the fabric is unqualified, the detection of various properties of the fabric is realized through the introduction of the air flow, the detection time can be greatly saved, and the purpose of high-efficiency detection is achieved.