Showing 1–24 of 102 results

Plastic Appliances Area Polymeric

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Producers of the plastic equipment and devices used in transportation and product packaging industries are among the main usages of polymeric materials. Due to properties such as easier production capability in different shapes and dimensions along with lower prices and higher sustainability and durability, polymeric products have gained a special position in industries. Using cutting-edge equipment and having technical knowledge of its experienced experts, Plus Polymer has taken a major step in producing and developing products which comply with global standards and consumer demands. Plus Polymer is characterized by constant attention to quality and taking advantage of up-to-date technology in producing advanced masterbatches and compoundswith specific properties.

 

Construction Application Area Polymeric

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Today, the use of polymers has significantly increased in the construction industry. Due to their light weight and superior performance and quality, such materials have replaced some old materials and substances.

Having a profound technical insight into the current needs in construction industries, Plus Polymer Company has made dramatic achievements in decreasing raw material consumption, lowering the weight of final products, enhancing impact resistance as well as flexural strength, eliminating distortion and shrinkage, and also reducing final costs. The polymeric additives introduced by Plus Polymer could be used in a variety of substances and materials in the construction industry. Some of the intended uses are as follows.

Container 660 Liters Polymer & Composite

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Container 660 Liters

Code : 1016
Volume (L): 660
Weight approx. (Kg): 38
Useful load (Kg):  265
Height (mm): 1200
Width (mm): 1210
Depth (mm): 765
Material: HDPE

Box pallet BIP1210/S2R Polymer & Composite

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Box pallet BIP1210/S2R

External dimensions (mm):

1200x1000x915

Internal dimensions (mm):

1110x900x70016
Weight (Kg):

43 (±2%)

External dimensions (mm):

1200x1000x915
Internal dimensions (mm):

1110x900x70025

Weight (Kg):

45 (±2%)
Capacity (L):

700

Static Loading (Kg):

5000
Dynamic Loading: (Kg):

1000

Racking loading (Kg):

1000
Trailer loading (pcs):

105

Material:

HDPE lng. Grade + UV Stablizer
Loading Q’ty lx40’ft HC:

82 pcs

Petrochemical Pallet IPH 1311/6R Polymer & Composite

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Petrochemical Pallet IPH 1311/6R

Dimension (mm): 1300 x 1100 x150
Type: Double surface 4way entry
Weight (Kg): (%2±) 26.5
Static load (Kg): 6000
Dynamic load (Kg): 1800
Racking load (Kg): 1200
Material: HDPE lng. Grade + UV Stablizer
Loading Q’ty lx40’ft HC: 320 pcs

Box pallet BIP1210/M2R Polymer & Composite

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Box pallet BIP1210/M2R

Capacity (L): 700
Static Loading (Kg): 5000
Dynamic Loading (Kg): 1000
Racking loading (Kg): 1000
Trailer loading (pcs): 105
Material: HDPE lng. Grade + UV Stablizer
Loading Q’ty lx40’ft HC: 82 pcs

Hygienic Pallet HP12105R Polymer & Composite

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Hygienic Pallet HP1210/5R

Dimension (mm): 1200 x 1000 x160
Type:

single surface 4way entry

Weight (Kg):

22.00 (±3%)
Static load (Kg):

7,5000

Dynamic load (Kg):

1,500
Racking load (Kg):

1,250

Material:

HDPE/PP lnj. Grade + UV Stabilizer
Loading Q’ty lx40’ft HC:

360 pcs

Hygienic Pallet HP1210/3R Polymer & Composite

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Hygienic Pallet HP1210/3R

Dimension (mm): 1200 x 1000 x150
Type:

single surface 4way entry

weight (Kg):

23.5 (±2%)
Static load (Kg):

6000

Dynamic load (Kg):

1500
Racking load (Kg):

1000

Material:

HDPE/PP lnj. Grade + UV Stabilizer
Loading Q’ty 1×40’ft HC:

470 Pcs

Box pallet BIP1210/M9L Polymer & Composite

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Box pallet BIP1210/M9L

External dimensions (mm):

1200x1000x915

Internal dimensions (mm):

1110x900x700M9L
weight (Kg):

41.5 (±2%)

Capacity (L):

700
Static Loading (Kg):

5000

Dynamic Loading (Kg):

1000
Racking loading (Kg):

 –

Trailer loading (pcs):

105
Material:

HDPE lng. Grade + UV Stablizer

Loading Q’ty lx40’ft HC :

82 pcs

Box Pallet with Foldable wall Polymer & Composite

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Box Pallet with Foldable wall

External dimensions (mm): 1200x1000x915 Internal dimensions (mm): 1110x900x7009137
Weight (Kg): 43 (±2%) Capacity (L): 700
Static Loading (Kg): 5000 Dynamic Loading: (Kg): 1000
Racking loading (Kg): 1000 Trailer loading (pcs): 105
Material: HDPE lng. Grade + UV Stablizer Loading Q’ty lx40’ft HC: 82 pcs

Foldable Box Pallet Polymer & Composite

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Foldable Box Pallet

External dimensions (mm): 1200x1000x920
Internal dimensions (mm): 1130x920x870
Weight (Kg): 33 (±2%)
Capacity (L): 900
Static Loading (Kg): 500
Dynamic Loading: (Kg): 250
Trailer loading (pcs): 288
Pallet & Lid Material: HDPE
Sleeve Material: PPC

Box pallet BIP1210/S9L Polymer & Composite

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Box pallet BIP1210/S9L

External dimensions (mm): 1200x1000x915 Internal dimensions (mm): 1110x900x700
Weight (Kg): 43.5 (±2%) Capacity (L): 700
Static Loading (Kg): 5000 Dynamic Loading: (Kg): 1000
Racking loading (Kg): – Trailer loading (pcs): 105
Material: HDPE lng. Grade + UV Stablizer Loading Q’ty lx40’ft HC: 82 pcs

Plastic Pallet LNP1210/3R Polymer & Composite

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Plastic Pallet IPL1208/3R

Dimension: 1200mm x 800mm x150mm
Weight (Kg): 12.00 (%3±)
Static Load (Kg): 5,000
Dynamic Load (Kg): 1,000
Racking Load (Kg): 400
Material: HDPE lng. Grade + UV Stablizer
Loading Q’ty lx40′ ft HC: 600 pcs

Plastic Pallet LNP12109L Polymer & Composite

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Plastic Pallet LNP1210/9L

Dimension (mm): 1200 x 1000 x140
Type: single surface, 4way entry
weight (Kg): 6.5 (±2%)
Static load (Kg): 1600
Dynamic load (Kg): 800
Racking load (Kg):  –
Material: HDPE lng. Grade + UV Stablizer
Loading Q’ty lx40′ ft HC: 1150 pcs

Plastic Pallet IP1208/3R Polymer & Composite

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Plastic Pallet IP1208/3R

Dimension (mm): 1200 x 800 x170
Type: single surface 4way entry
weight (Kg): 13.5 (±2%)
Static load (Kg): 4000
Dynamic load (Kg): 1250
Racking load (Kg): 600
Material: HDPE lng. Grade + UV Stablizer
Loading Q’ty lx40’ft HC: 570 pcs

Plastic Pallet IP1210/3R Polymer & Composite

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Plastic Pallet IPM1210/3R

Dimension (mm):

1200 x 1000 x170

Type:

single surface, 4way entry

Weight (Kg):

17.5 (±2%)
Static load (Kg):

5000

Dynamic load (Kg):

1250
Racking load (Kg):

800

Material:

HDPE lng. Grade + UV Stablizer
Loading Q’ty lx40’ft HC :

450 pcs

PlasmaDEJ (Textile Plasma Processing Unit)

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Introduction

Textile Plasma Processing Unit is a plasma-based material processing tool which aims at providing surfaces with hydrophobic and dirt-repellent characteristics. This processing unit works based on cold plasma because most textile materials are heat sensitive polymers. In this low-pressure plasma system, plasma is generated in an evacuated chamber containing small amounts of the desired precursor gas. Plasma (ionized gas containing both charged and neutral species, including free electrons, positive and/or negative ions, atoms, and molecules) comes into contact with the material surface and allows subsequent reactions to take place on the material surface.

Cold Plasma for Food Processing

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Introduction

Cold Plasma for Food Processing works based on a novel non-thermal food processing technology that uses energetic and reactive gases for mild surface decontamination of foods and packaging materials. In this system, dielectric barrier discharge (DBD) is used as a common method for generation of non-thermal plasma. DBD is electrical discharge between two electrodes which at least one of them is covered by an insulating dielectric barrier. Applying high voltage alternating current leads to the non-thermal DBD plasma generation at atmospheric pressure.

Plasma Jet

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Introduction

Plasma Jet is a surface treatment tool which works based on cold atmospheric plasma. Such plasmas are not under thermal equilibrium; typical ion temperatures are about 300-400 K while electron temperatures are much higher. This feature enables the users to treat sensitive surfaces without the risk of thermal damage. This device is equipped with a low area, rotating torch which is able to enhance surface properties, especially dyeing and stability of pigments on the surface.

Hybrid PVD System

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Introduction

Hybrid PVD system operates based on both cathodic arc and sputtering processes. In cathodic arc deposition, an electric arc is used to vaporize material from a target, while in sputtering atoms are ejected from a target as a result of the bombardment of the target by high energy particles. Then the vaporized/ejected material condenses on a substrate, forming a thin film. Hybrid PVD is widely used to synthesize extremely hard films to protect the surface of cutting tools and extend their life remarkably.

Cathodic Arc Deposition System

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Introduction

Cathodic Arc Deposition system is a widely used industrial-scale machine for applying high quality thin film coatings. The Arc-PVD process is based on low-voltage, high current cathodic arc physics that produce dense and highly ionized plasma. In this process an electric arc is used to vaporize material from a cathode target. Then the vaporized material condenses on a substrate, forming a thin film. The technique can be used to deposit metallic, ceramic, and composite films.

Wear & Erosion resistant Super hard Nanolayer & Nanocomposite Coatings

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Introduction

Nanolayer and nanocomposite coatings such as TiN, TiAlN, TiCN, TiSiN are deposited on a variety of cutting tools such as drill, reamer, finger milling, grinding tools, etc., for extending their life span (about 3 to 5 times), improving their performance and enhancing the quality of the manufactured components. It is worth mentioning that the deposition of above-mentioned coatings is performed by using a Hybrid PVD system which operates based on both cathodic arc and sputtering processes.

Cathodic Arc & Sputtering System

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Introduction

Cathodic Arc Deposition system is a widely used industrial-scale machine for applying high quality thin film coatings. In cathodic arc process, an electric arc is used to vaporize material from a cathode target. Then the vaporized material condenses on a substrate, forming a thin film. The technique can be used to deposit metallic, ceramic, and composite films.

Wear Erosion & Corrosion resistant Super hard Nanolayer & Nanocomposite Coatings

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Introduction

Extremely hard nanolayer and nanocomposite coatings, resistant to wear, erosion, as well as corrosion, are deposited onto the surface of a variety of forming tools such as die and punch, deep drawing, cold and hot forging, extrusion, die casting, and injection moulding tools to improve the surface quality of the moulds, extend their life span up to 10 times, and enhance their performance remarkably. It is worth mentioning that the deposition of above-mentioned coatings is performed by using a Hybrid PVD system which operates based on both cathodic arc and sputtering processes.