Penerangan Produk

 

Penerangan Produk

 

Company Profile

 

IATF16949 and ISO 9001 certified precision CNC machining service company, started in 2006, Infinity provides customers with more than 1 million sensor components every year, such as the hydraulic cylinder, sensor housing, processing connectors, adapters, mounting rods, and mounting plates for flow sensors, pressure sensors, and temperature sensors. Product materials include stainless steel, copper alloy, aluminum alloy, and special alloys. The complex, precise, reliable, and safe manufacturing process ensures the high-quality requirements of customers’ products.
With over 3000m2 production workshop, Infinity company provides whole processing from material cutting to inspection & packing and shipment service.

 

Workshop Overview

Equipment List
 NameNo. of setModel/Spec.Origin
Infinity Precision Machining main Equipment CNC Vertical
 Machining Center
2VJ850,850X500X520/4-AxisZheJiang
CNC Vertical
 Machining Center
2Dooson DNM515,1571*540*510China
CNC Vertical
 Machining Center
1MAZAK VCN530CLChina
Horizontal CNC Lathe8OKUMA L250-EZheJiang
Horizontal CNC Lathe1OKUMA L300-M/2.5-AxisZheJiang
Horizontal CNC Lathe1OKUMA L400-EZheJiang
Horizontal CNC Lathe3OKUMA L200EMYZheJiang
Ultrasonic Cleaning machine2KC-6000WChina
Automatic Metal Band Sawing
machine
4GHS4232China
Flat Grinder1M7132BChina
Wire Cutter1DK7740China
Pipe bending machine2 China
Shape mill1  China
Vibration Burnisher1N/AChina
Co2 gas-shielded welding4FN250China
Swiss-type CNC machine1CSBII 250ZheJiang
Drilling and tapping machine4ZS4116China

 

Quality Control Process

Infinity Industries, Inc. provides customers with complete inspection services, from first article inspection, to process random inspection, and final inspection, all of which are implemented in strict accordance with the customer’s drawings.

 

 NameNo. of setModel/Spec.Origin
Inspection Instrument3D-Measuring System1Hexagon,06.08.06Switzerland
Projector13D Family VME-300ZheJiang
Contour graph 1Mitutoyo contracer CV-2100Japan
Surface rough meter1TR210China
Angle Measurement Instrument30~360°China
Pin Gagevarietyφ25+/-0.05/φ25.3+/-0.05/φ35+/-0.05China
R-gage2R1~R6.5mmChina
Inside Micrometer50-30mmChina
Outside Micrometer525~50mmChina
Digital Height Guage200~300mmChina
Digital Inside Groove Capliers50~150mmChina
Digital Vernier Calipersvariety0~200mm/0~300mmChina
Mechanical Vernier Calipersvariety0~150mmChina
Thread Plug Guagevariety1/2-13UNC,3/4-16UNF,7/16-20UNF,1/4-20UNC-2B/NPSL1/8-27/1/2-14NPT/3/4NPT/M18,26,27X1.5-6h/M4-6h/1/2-14NPSMChina
Thread Ring GuagevarietyM12X0.5-6h/7/8-14UNF,3/4-16UNF,1/2-20UNF,5/8-18UNF,9/8-12UNF,5/8-24UNF,9/16-18UNF-2A/M18X1.5-6g/G1/2A/G1/4-2A/1/4-18NPT/M12X1-6g/M12X1-6h/1/2-14NPTChina

Packaging & Logistics

In principle, all legal requirements must be complied with in our packaging and logistics process. These are in particular: 

–    dangerous goods regulation
–    national/international regulations for the treatment of wooden pallets
–    requirements of sea freight, if necessary
–    requirements of air cargo, if necessary
–    packaging directives from our customers
Further applies to:
–    The transport safety always rests with the consignor. Regarding cargo securing the legal regulations apply according to StVO and HGB and the         VDI Xihu (West Lake) Dis.line 2700. 
–    Infinity Company shall treat the goods during storage and shipping in such a way that the agreed-upon quality standard is preserved.
–    The storage at our location shall be made according to the FIFO principle.
–    All packaging materials must be free of attached silicone (e.g. silicone oil) and contain silicone.
Environmental Requirements / Occupational Safety 
No danger to humans or the environment may occur through the delivery of the products. Hazardous materials (dangerous goods) must be labeled in such a way that the dangers are easily recognizable and visible from the outside. 
–    Individual packs / reusable packaging / refillable containers should not exceed an individual weight of 15 kg.
–    The packing height of the loading unit must not exceed a maximum of 1600 mm.
–    The maximum weight of the load unit must not exceed 1200 kg.
–    The maximum dimension of pallets must not exceed 1200 mm x 1000 mm.
–    Individual packs / reusable packaging / returnable containers/cargo units must not be damaged.
–    Loading units must be accessible (at least 100 mm lower ride height).

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silinder hidraulik

How do hydraulic cylinders compare to other methods of force generation like electric motors?

Hydraulic cylinders and electric motors are two different methods of force generation with distinct characteristics and applications. While both hydraulic cylinders and electric motors can generate force, they differ in terms of their working principles, performance attributes, and suitability for specific applications. Here’s a detailed comparison of hydraulic cylinders and electric motors:

1. Working Principle:

– Hydraulic Cylinders: Hydraulic cylinders generate force through the conversion of fluid pressure into linear motion. They consist of a cylinder barrel, piston, piston rod, and hydraulic fluid. When pressurized hydraulic fluid enters the cylinder, it pushes against the piston, causing the piston rod to extend or retract, thereby generating linear force.

– Electric Motors: Electric motors generate force through the conversion of electrical energy into rotational motion. They consist of a stator, rotor, and electromagnetic field. When an electrical current is applied to the motor’s windings, it creates a magnetic field that interacts with the rotor, causing it to rotate and generate torque.

2. Force and Power:

– Hydraulic Cylinders: Hydraulic cylinders are known for their high force capabilities. They can generate substantial linear forces, making them suitable for heavy-duty applications that require lifting, pushing, or pulling large loads. Hydraulic systems can provide high force output even at low speeds, allowing for precise control over force application. However, hydraulic systems typically operate at lower speeds compared to electric motors.

– Electric Motors: Electric motors excel in providing high rotational speeds and are commonly used for applications that require rapid motion. While electric motors can generate significant torque, they tend to have lower force output compared to hydraulic cylinders. Electric motors are suitable for applications that involve continuous rotary motion, such as driving conveyor belts, rotating machinery, or powering vehicles.

3. Control and Precision:

– Hydraulic Cylinders: Hydraulic systems offer excellent control over force, speed, and positioning. By regulating the flow of hydraulic fluid, the force and speed of hydraulic cylinders can be precisely controlled. Hydraulic systems can provide gradual acceleration and deceleration, allowing for smooth and precise movements. This level of control makes hydraulic cylinders well-suited for applications that require precise positioning, such as in industrial automation or construction equipment.

– Electric Motors: Electric motors also offer precise control over speed and positioning. Through motor control techniques such as varying voltage, frequency, or pulse width modulation (PWM), the rotational speed and position of electric motors can be accurately controlled. Electric motors are commonly used in applications that require precise speed control, such as robotics, CNC machines, or servo systems.

4. Efficiency and Energy Consumption:

– Hydraulic Cylinders: Hydraulic systems can be highly efficient, especially when properly sized and designed. However, hydraulic systems typically have higher energy losses due to factors such as fluid leakage, friction, and heat generation. The overall efficiency of a hydraulic system depends on the design, component selection, and maintenance practices. Hydraulic systems require a hydraulic power unit to pressurize the hydraulic fluid, which consumes additional energy.

– Electric Motors: Electric motors can have high efficiency, especially when operated at their optimal operating conditions. Electric motors have lower energy losses compared to hydraulic systems, primarily due to the absence of fluid leakage and lower friction losses. The overall efficiency of an electric motor depends on factors such as motor design, load conditions, and control techniques. Electric motors require an electrical power source, and their energy consumption depends on the motor’s power rating and the duration of operation.

5. Environmental Considerations:

– Hydraulic Cylinders: Hydraulic systems typically use hydraulic fluids that can pose environmental concerns if they leak or are not properly disposed of. The choice of hydraulic fluid can impact factors such as biodegradability, toxicity, and potential environmental hazards. Proper maintenance and leak prevention practices are essential to minimize the environmental impact of hydraulic systems.

– Electric Motors: Electric motors are generally considered more environmentally friendly since they do not require hydraulic fluids. However, the environmental impact of electric motors depends on the source of electricity used to power them. When powered by renewable energy sources, such as solar or wind, electric motors can offer a greener solution compared to hydraulic systems.

6. Application Suitability:

– Hydraulic Cylinders: Hydraulic cylinders are commonly used in applications that require high force output, precise control, and durability. They are widely employed in industries such as construction, manufacturing, mining, and aerospace. Hydraulic systems are well-suited for heavy-duty applications, such as lifting heavy objects, operating heavy machinery, or controlling large-scale movements.

– Electric Motors: Electric motors are widely used in various industries and applications that require rotational motion, speed control, and precise positioning. They are commonly found in appliances, transportation, robotics, HVAC systems, and automation. Electric motorsare suitable for applications that involve continuous rotary motion, such as driving conveyor belts, rotating machinery, or powering vehicles.In summary, hydraulic cylinders and electric motors have different working principles, force capabilities, control characteristics, efficiency levels, and application suitability. Hydraulic cylinders excel in providing high force output, precise control, and durability, making them ideal for heavy-duty applications. Electric motors, on the other hand, offer high rotational speeds, precise speed control, and are commonly used for applications that involve continuous rotary motion. The choice between hydraulic cylinders and electric motors depends on the specific requirements of the application, including the type of motion, force output, control precision, and environmental considerations.

silinder hidraulik

Adaptation of Hydraulic Cylinders for Medical Equipment and Aerospace Applications

Hydraulic cylinders have the potential to be adapted for use in medical equipment and aerospace applications, offering unique advantages in these industries. Let’s explore how hydraulic cylinders can be adapted for these specialized fields:

  1. Medical Equipment: Hydraulic cylinders can be adapted for various medical equipment applications, including hospital beds, patient lifts, surgical tables, and rehabilitation devices. Here’s how hydraulic cylinders are beneficial in medical equipment:
    • Positioning and Adjustability: Hydraulic cylinders provide precise and smooth movement, allowing for accurate positioning and adjustments of medical equipment. This is crucial for ensuring patient comfort, proper alignment, and ease of use.
    • Load Handling: Hydraulic cylinders offer high force capabilities, enabling the safe handling of heavy loads in medical equipment. They can support the weight of patients, facilitate smooth transitions, and provide stability during procedures.
    • Controlled Motion: Hydraulic cylinders provide controlled and stable motion, which is essential for delicate medical procedures. The ability to adjust speed, position, and force allows for precise and controlled movements, minimizing patient discomfort and ensuring accurate treatment.
    • Durability and Reliability: Hydraulic cylinders are designed to withstand rigorous use and demanding environments, making them suitable for medical equipment applications. Their durability and reliability contribute to the long-term performance and safety of medical devices.
  2. Aerospace Applications: Hydraulic cylinders can also be adapted for aerospace applications, where lightweight yet robust systems are essential. Here’s how hydraulic cylinders are advantageous in aerospace:
    • Flight Control Systems: Hydraulic cylinders play a critical role in aircraft flight control systems, including ailerons, elevators, rudders, and landing gear. They provide precise and reliable actuation, allowing pilots to control the aircraft’s movements with accuracy and responsiveness.
    • Weight Optimization: Hydraulic cylinders can be designed using lightweight materials, such as aluminum alloys or composite materials, to reduce overall weight. This weight optimization is crucial in aerospace applications to enhance fuel efficiency, payload capacity, and aircraft performance.
    • Shock and Vibration Resistance: Aerospace environments involve significant shock and vibration forces. Hydraulic cylinders can be engineered to withstand these dynamic loads while maintaining performance and reliability, ensuring consistent operation even under extreme conditions.
    • Space Constraints: Hydraulic cylinders can be designed to fit within the space constraints of aircraft or spacecraft. Their compact size and flexible mounting options allow for efficient integration into the limited available space.

In summary, hydraulic cylinders can be adapted for use in medical equipment and aerospace applications, leveraging their precise positioning, load handling capabilities, controlled motion, durability, and reliability. In medical equipment, hydraulic cylinders enable comfortable patient positioning, smooth transitions, and controlled movements during procedures. In aerospace, hydraulic cylinders provide precise actuation, weight optimization, shock and vibration resistance, and space-efficient solutions. By adapting hydraulic cylinders to these specialized fields, manufacturers can meet the unique requirements and enhance the performance of medical equipment and aerospace systems.

silinder hidraulik

Bagaimanakah silinder hidraulik dapat menampung variasi dalam panjang lejang dan keperluan daya?

Silinder hidraulik direka bentuk untuk menampung variasi dalam panjang lejang dan keperluan daya, memberikan fleksibiliti dan kebolehsuaian untuk aplikasi yang berbeza. Ia boleh disesuaikan untuk memenuhi keperluan khusus dengan mempertimbangkan faktor seperti diameter omboh, diameter rod, tekanan hidraulik dan reka bentuk silinder. Berikut ialah penjelasan terperinci tentang bagaimana silinder hidraulik menampung variasi dalam panjang lejang dan keperluan daya:

1. Saiz dan Reka Bentuk Silinder:

– Silinder hidraulik didatangkan dalam pelbagai saiz dan reka bentuk untuk menampung panjang lejang dan keperluan daya yang berbeza. Diameter silinder, luas omboh dan diameter rod adalah faktor utama yang menentukan output daya. Diameter silinder dan luas omboh yang lebih besar boleh menghasilkan daya yang lebih besar, manakala diameter yang lebih kecil sesuai untuk aplikasi yang memerlukan daya yang lebih rendah. Dengan memilih saiz dan reka bentuk silinder yang sesuai, panjang lejang dan keperluan daya boleh ditampung dengan berkesan.

2. Konfigurasi Omboh dan Rod:

– Silinder hidraulik boleh direka bentuk dengan konfigurasi omboh dan rod yang berbeza untuk menampung variasi panjang lejang. Silinder tindakan tunggal mempunyai omboh tunggal dan boleh memberikan lejang dalam satu arah. Silinder tindakan berganda mempunyai omboh di kedua-dua belah pihak, yang membolehkan lejang dalam kedua-dua arah. Silinder teleskopik terdiri daripada berbilang peringkat yang boleh memanjang dan menarik balik, memberikan panjang lejang yang lebih panjang berbanding silinder standard. Dengan memilih konfigurasi omboh dan rod yang sesuai, panjang lejang yang diingini dapat dicapai.

3. Tekanan dan Aliran Hidraulik:

– Tekanan dan kadar aliran hidraulik yang dibekalkan kepada silinder memainkan peranan penting dalam menampung variasi keperluan daya. Meningkatkan tekanan hidraulik meningkatkan output daya silinder, membolehkannya mengendalikan keperluan daya yang lebih tinggi. Dengan melaraskan tekanan dan kadar aliran melalui injap dan pam hidraulik, output daya boleh dikawal dan dipadankan dengan keperluan khusus aplikasi.

4. Pengubahsuaian dan Jahitan:

– Silinder hidraulik boleh disesuaikan dan dijahit untuk memenuhi keperluan panjang lejang dan daya tertentu. Pengilang menawarkan pelbagai saiz silinder, panjang lejang dan kapasiti daya untuk dipilih. Di samping itu, silinder yang direka khas boleh dikeluarkan untuk disesuaikan dengan aplikasi unik dengan panjang lejang dan permintaan daya tertentu. Dengan bekerjasama rapat dengan pengeluar silinder hidraulik, adalah mungkin untuk mendapatkan silinder yang sepadan dengan keperluan panjang lejang dan daya yang diperlukan.

5. Berbilang Silinder dan Penyegerakan:

– Dalam aplikasi yang memerlukan daya yang tinggi atau panjang lejang yang lebih panjang, berbilang silinder hidraulik boleh digunakan secara gabungan. Dengan menyegerakkan pergerakan berbilang silinder melalui sistem hidraulik, panjang lejang dan output daya boleh ditingkatkan dengan berkesan. Penyegerakan boleh dicapai menggunakan penghubung mekanikal, kawalan elektronik atau litar hidraulik, memastikan pergerakan yang diselaraskan dan pengagihan daya merentasi silinder.

6. Pengesanan Beban dan Kawalan Tekanan:

– Sistem hidraulik boleh menggabungkan mekanisme pengesanan beban dan kawalan tekanan untuk menampung variasi keperluan daya. Sistem pengesanan beban memantau permintaan beban dan melaraskan tekanan hidraulik dengan sewajarnya, memastikan silinder memberikan daya yang diperlukan tanpa mengenakan daya yang berlebihan. Injap kawalan tekanan mengawal tekanan dalam sistem hidraulik, membolehkan kawalan dan pelarasan output daya yang tepat berdasarkan keperluan aplikasi.

7. Pertimbangan Keselamatan:

– Apabila menampung variasi dalam panjang lejang dan keperluan daya, adalah penting untuk mempertimbangkan faktor keselamatan. Silinder hidraulik hendaklah dipilih dan direka bentuk dengan margin keselamatan yang sesuai untuk mengendalikan beban yang tidak dijangka atau variasi dalam keadaan operasi. Mekanisme keselamatan seperti injap perlindungan beban lampau dan injap pelega tekanan boleh digabungkan untuk mencegah kerosakan atau kegagalan dalam situasi di mana had daya dilampaui.

Dengan mempertimbangkan faktor-faktor seperti saiz dan reka bentuk silinder, konfigurasi omboh dan rod, tekanan dan aliran hidraulik, pilihan penyesuaian, penyegerakan, pengesanan beban, kawalan tekanan dan pertimbangan keselamatan, silinder hidraulik dapat menampung variasi panjang lejang dan keperluan daya dengan berkesan. Fleksibiliti ini membolehkan silinder hidraulik disesuaikan untuk memenuhi permintaan khusus pelbagai aplikasi, memastikan prestasi dan kecekapan yang optimum.

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penyunting oleh Dream 2024-11-29

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